Pressure-sensitive adhesive component for ankle and use thereof
To provide a pressure-sensitive adhesive component that can be quickly and easily used to fix an ankle joint by persons having no expert knowledge on taping without causing problems such as difficulty in wearing shoes due to thickening upon application of the tape, a pressure-sensitive adhesive component includes a bottom portion; a first tape-shaped body; and a second tape-shaped body, wherein a cut is provided between the first and second tape-shaped bodies running in a longitudinal direction, the first tape-shaped body including a first front tape body and a first rear tape body, and the second tape-shaped body including a second front tape body and a second rear tape body, and wherein a ratio of a width of the front tape body to a width of the rear tape body is within the range of 5:5 to 5:3.
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1. Field of the Invention
The present invention relates to a pressure-sensitive adhesive component for an ankle and to a method for using it. More particularly, the present invention relates to a pressure-sensitive adhesive component used for fixing ankle joints and the like in the fields of medicine, sports, chiropractics and so on and to a method for using such a pressure-sensitive adhesive component.
2. Description of Related Art
An ankle is a portion of a body that supports the body and thus is loaded with the body weight and that tends to suffer a sprained ankle in sporting, daily life and so on. Since the ankle is closely involved in walking, a pain in the ankle makes daily motion difficult. Accordingly, there has been a keen desire for a countermeasure to alleviate the pain that occurs in the ankle. For example, a treatment to fix the ankle joint and the like has been performed.
A method for fixing the ankle joint and the like without requiring expert knowledge includes a method of attaching a supporter around an ankle as disclosed in Japanese Patent Application Laid-Open No. 10-24055. The supporter has a shin pad formed to have a large thickness and use of the pad results in thickening of the ankle so that one cannot wear shoes or the like when he or she has attached the shin pad around the ankle. This is inconvenient to daily life motions. Further, a supporter for a foot joint made of an elastic tape-shaped body, including an anchor strap that winds up around an ankle, a figure eight strap that winds up around a dorsum of the foot and a sole of the foot in the form of a figure eight (8), and a stirrup strap that winds up around the foot from a medial malleolus to a lateral malleolus through the sole is disclosed in Japanese Patent Application Laid-Open No. 10-248865. The supporter loosens with a lapse of time, thus failing to fix the ankle joint and the like sufficiently.
Fixing or otherwise restricting the movement of an ankle joint by using a pressure-sensitive adhesive tape in order to alleviate the pain of the ankle (taping) is a conventional treatment performed in the fields of sports and medicine. Appropriate taping can sufficiently fix the ankle to alleviate the pain of the ankle and will not reduce the ability of the ankle and the like to move. However, the conventional treatment has the defect that appropriate taping cannot be readily performed since expert knowledge is required for performing such taping. Also, it has the problem that taping by spirally winding a pressure-sensitive adhesive tape around an ankle in an overlapping manner tends to cause local circulation disturbance and nervous disturbance due to over constriction.
SUMMARY OF THE INVENTIONThe present invention has been made under the above-mentioned circumstances and an object of the present invention is to provide a pressure-sensitive adhesive component for an ankle portion with which a person having no expert knowledge on taping can fix the ankle quickly and easily and which causes no problems such as failure to wear shoes due to the attachment of a fixing member or the like and thickening of the ankle as a result of application of the tape. Another object of the present invention is to provide a method for fixing an ankle joint and the like by using the pressure-sensitive adhesive component for an ankle portion.
The present invention provides a pressure-sensitive adhesive component for an ankle comprising an H-shaped pressure-sensitive adhesive component including:
-
- a bottom portion;
- a first tape-shaped body provided on the bottom portion; and
- a second tape-shaped body provided on the bottom portion,
- wherein a cut is provided between the first and second tape-shaped bodies running in a longitudinal direction with respect to the first and second tape-shaped bodies from edges of the first and second tape-shaped bodies, the first tape-shaped body including a first front tape body and a first rear tape body, and the second tape-shaped body including a second front tape body and a second rear tape body, and
- wherein a first ratio of a width of the first front tape body to a width of the first rear tape body and a second ratio of a width of the second front tape body to a width of the second rear tape body are independently within the range of 5:5 to 5:3.
According to one aspect, the pressure-sensitive adhesive component for an ankle of the present invention includes an H-shaped pressure-sensitive adhesive component including: a bottom portion; a first tape-shaped body provided on the bottom portion; and a second tape-shaped body provided on the bottom portion, wherein one edge of the bottom portion is concave, wherein a cut is provided between the first and second tape-shaped bodies running in a longitudinal direction with respect to the first and second tape-shaped bodies from edges of the first and second tape-shaped bodies, the first tape-shaped body including a first front tape body and a first rear tape body, and the second tape-shaped body including a second front tape body and a second rear tape body, and wherein a first ratio of a width of the first front tape body to a width of the first rear tape body positioned on the side of the concave edge and a second ratio of a width of the second front tape body to a width of the second rear tape body positioned on the side of the concave edge are independently within the range of 5:5 to 5:3.
Here, the H-shaped pressure-sensitive adhesive component may have a length of 300 mm to 600 mm and the first and second tape-shaped bodies may independently have a width of 50 mm to 150 mm.
According to another aspect, the pressure-sensitive adhesive component for an ankle of the present invention includes a modified H-shaped pressure-sensitive adhesive component, including a rectangular bottom portion; a first rear tape body and a front tape body extending from one edge of the bottom portion having respective axes parallel to each other; and a second rear tape body and a second front tape body extending from an opposite edge of the bottom portion having respective axes parallel to each other, wherein the first and second rear tape bodies have lengths shorter than those of the first and second front tape bodies.
Here, the pressure-sensitive adhesive component may have a length from an edge of the first front tape body to an end of the second front tape body of 400 mm to 650 mm, and the first and second tape-shaped body may independently have a width of 50 mm to 150 mm.
Further, the first and second front tape bodies may independently have a length of 200 mm to 270 mm.
Still further, the first and second rear tape bodies may independently have a length of 80 mm to 150 mm.
In the present invention, it is preferable that head portions of the first rear tape body, the first front tape body, the second rear tape body, and the second front tape body are each tongue-shaped.
It is preferable that the pressure-sensitive adhesive component for an ankle includes a substrate and a pressure-sensitive adhesive layer and the pressure-sensitive adhesive layer is covered with a release liner.
Here, the substrate may be made of a high twist fabric, an elastic knitted fabric or an elastic woven fabric.
The pressure-sensitive adhesive layer may be made of an acrylic-based pressure-sensitive adhesive or a gel-based pressure-sensitive adhesive.
The pressure-sensitive adhesive component for an ankle of the present invention may further include an auxiliary pressure-sensitive adhesive component in a rectangular form having a shorter side and a longer side and a curved corner, as an independent element.
In the present invention, the H-shaped pressure-sensitive adhesive component or the modified H-shaped pressure-sensitive adhesive component may include a release liner that covers the pressure-sensitive adhesive layer and is separated by a back slit and has indicated thereon a character or an image thereon.
Here, one can recognize an order from the character or image put on the release liners separated by the back splits.
The taping method by using the H-shaped pressure-sensitive adhesive component of the present invention includes: removing a release liner on a bottom portion; placing a heel such that an edge of the heel is in line with a concave edge of the bottom portion; removing a release liner on a front tape portion to be applied to an outer side of the ankle portion and applying the front tape portion with holding a head portion of a front tape body while expanding the front tape portion so as to cover a medial malleolus of the ankle portion from a heel toward a knee joint; removing a release liner on a front tape head portion and applying the front tape head portion; removing a release liner on a front tape portion to be applied to an inner side of the ankle portion and applying the front tape portion while drawing up the front tape portion just above and expanding; removing a release liner on a front tape head portion and applying the front tape head portion; removing a release liner on a rear tape portion positioned on an outer side of the ankle portion and applying the rear tape portion by holding a head portion of a rear tape body so as to pass along the back side of the ankle portion and cover over the medial malleolus while expanding the rear tape portion; removing a release liner of a rear tape head portion and applying the rear tape head portion; removing a release liner on a rear tape portion positioned on the inner side of the ankle portion and applying the rear tape portion by holding a head portion of a rear tape body and while expanding the rear tape portion so as to pass along the back side of the ankle portion and cover over the lateral malleolus; and removing a release liner of a rear tape head portion and applying the rear tape head portion.
Here, one edge of the auxiliary pressure-sensitive adhesive may be applied onto the rear tape portion so as to cover the lateral malleolus of the ankle portion in an overlapping manner and then the other edge of the auxiliary pressure-sensitive adhesive component may be applied to onto the other rear tape portion so as to cover the medial malleolus of the ankle portion in an overlapping manner.
The taping method by using the modified H-shaped pressure-sensitive adhesive component includes: removing a release liner of a bottom portion and placing a heel sole on the bottom portion such that a rear tape body covers a surface of malleolus when elevated vertically; removing a release liner of one of the rear tape bodies and applying the rear tape body by holding a head portion of the rear tape body to lift the rear tape body vertically while expanding the rear tape body so as to cover the lateral malleolus of the ankle portion; removing a release liner of the other rear tape body to be applied to an inner side of the ankle portion and applying the rear tape body while lifting the rear tape body vertically to expand the rear tape body so as to cover an inner side of the ankle portion; removing a release liner of one of the front tape bodies positioned on an outer side of the ankle portion and applying the front tape body while holding a head portion of the front tape body to expand the front tape body so as to pass along an entire loop from above the dorsum of foot and the ankle portion and cover over the lateral malleolus and further pass Achilles' tendon on the back side of the ankle to the lateral malleolus; and removing a release liner of the other front tape body positioned on the inner side of the ankle portion and applying the front tape body while holding a head portion of the front tape body to expand the front tape body so as to pass along an entire loop including crossing at the ankle portion above the dorsum of foot to cover over the lateral malleolus, passing the Achilles' tendon to reach the medial malleolus.
In the present invention, it is preferable that the head portion is applied after relaxation of elongation of the head portion.
BRIEF DESCRIPTION OF THE DRAWINGS
The pressure-sensitive adhesive component for ankle of the present invention is an H-shaped pressure-sensitive adhesive component that includes a bottom portion, a first tape-shaped body and a second tape-shaped body, with the first and second tape-shaped each being constituted by a front tape portion and a rear tape portion. The bottom portion may be rectangular or may form a concave edge on one end.
Hereinafter, the present invention will be described in detail by embodiments with reference to the attached drawings.
The same or like constituent elements are indicated by the same reference numerals and detailed explanation thereof is omitted.
Here, explanation will be made on a pressure-sensitive adhesive component for an ankle including an H-shaped pressure-sensitive adhesive component.
In
The bottom portion 1 has a concave edge 7 on one side edge on the side of the rear tape portions. The shape of the concave edge 7 is preferably such that it allows the end of the heel of foot to run off from the bottom portion 1 to some extent.
Although the layer structure of the pressure-sensitive adhesive component for an ankle of the present invention will be described in detail later on, here a brief explanation is made. To prevent attachment of dust and the like to the pressure-sensitive adhesive layer to protect it until use, it is preferable that a release liner is laminated on the pressure-sensitive adhesive layer. It is also preferable that the release liner is provided with a back split at several positions. For example, back splits are provided at a boundary portion 8 between the bottom portion 1 and the first front tape portion 2 and rear tape portion 4 and similarly at the left-hand side boundary portion 8′. The back splits are also provided at a boundary portion 10 between the first front tape portion 2 and the front tape head portion 3 and similarly at the boundary portion 9 between the second front tape portion 2′ and the front tape head portion 3′. Further, back splits are provided at the boundary portion 12 between the first rear tape portion 4 and the rear tape head portion 5 and similarly at the boundary portion 11 between the second rear tape portion 4′ and the rear tape head portion 5′. In the case of the H-shaped pressure-sensitive adhesive component shown in
The substantially rectangular H-shaped pressure-sensitive adhesive component shown in
Further, the each cut 6, 6′ has a length of preferably 150 mm to 250 mm. It is preferable that the length and a size and a shape of the bottom portion are designed appropriately within such a range in consideration of the body type, foot type and so forth.
In
The release liner may be one that can be used pressure-sensitive adhesive tapes generally applied to the skin. Specifically, use can be made of high-quality paper, glassine paper, parchment paper and the like coated thereon with a releasing agent having an ability to release, such as silicone; high-quality paper anchor-coated with a resin or laminated with polyethylene, further coated with a releasing agent having an ability to release, such as silicone; and so forth.
The pressure-sensitive adhesive component for an ankle of the present invention preferably has suitable kickback property, good handling property (workability), and fixability.
Therefore, it is preferable that the pressure-sensitive adhesive component for an ankle of the present invention (for example, the pressure-sensitive adhesive component without the release liner, that is, pressure-sensitive adhesive component consisting of a support and a pressure-sensitive adhesive layer) has an elongation (degree of elongation) in a longitudinal direction (in the direction of larger length of a rectangle) of about 30% to about 110%, more preferably 30% to 70%. Such a pressure-sensitive adhesive component has a tensile strength of preferably 10 N/19 mm width or more and 200 N/19 mm width or less and a 20% modulus (tensile stress at 20% elongation) of preferably 0.5 N/19 mm width or more and 8 N/19 mm width or less. If the elongation is greater than 110%, there is the fear that the pressure-sensitive adhesive component in the region where it contacts the ankle portion is elongated to the limit by repeated expansion and contraction caused in response to the expansion and contraction motions of the ankle portion.
It is preferable that the substrate 14 that constitutes the pressure-sensitive adhesive component for an ankle of the present invention has a tensile stress at 20% elongation is 10 N/19 mm width or less and more preferably, from the viewpoint of fixability of ankle joint and the like, 9 N/19 mm width or less. Further, it is preferable that the substrate has a hysteresis at 80% elongation of 85% or more and a tensile stress at 80% elongation of 15 N/19 mm width or more. To further alleviate the load on the ankle joint and the like, it is more preferable that the substrate has a hysteresis at 80% elongation of 88% or more and a tensile stress at 80% elongation of 16 N/19 mm width or more. The pressure-sensitive adhesive component for an ankle that contains the substrate having such characteristics can realize followability and fixability to the ankle joint and the like.
Here, the term “hysteresis at 80% elongation” refers to an index that indicates restoration when the pressure-sensitive adhesive component for an ankle is expanded to 80% of the maximum elongation. On the other hand, the term “tensile stress at 20% elongation (20% modulus)” refers to a tensile strength when a sample having a predetermined form is elongated to 20% elongation at a predetermined speed, and the term “tensile stress at 80% elongation (80% modulus)” refers to a tensile strength when a sample having a predetermined form is elongated to 80% elongation at a predetermined speed.
It is preferable that the substrate 14 has a degree of elongation suitable for fixing the ankle joint and the like and examples of the material of such a substrate include nonwoven fabrics, woven fabrics, high twist fabrics containing high twist yarn in the longitudinal direction, longitudinally expanding fabric containing elastic yarn as warp (for example, spandex fabric using an elastic yarn having urethane as a core of the yarn), elastic fabric using elastic yarn as warp and weft, made of nylon, polyester, polyurethane, rayon, polypropylene, polyethylene, cotton and so forth. In the present invention, in consideration of the above-mentioned characteristics, it is preferable that a knitted fabric having elasticity (hereinafter, referred to as “elastic knitted fabric”) is used. For example, knitted fabric knitted from a single material selected from stretch yarn made of nylon, polyester and the like fibers subjected to special processing to impart elasticity therewith, or synthetic fiber yarn having high elasticity such as polyurethane elastic fiber or knitted fabric knitted from a mixture of such a synthetic fiber and a fiber having low elasticity such as polyester fiber or cotton, knitted fabric made of spun bond nonwoven fabric in which an elastic fiber such as polyurethane elastic yarn is knitted and so forth may be used. Knitting methods that can be used include (warp) knitting including tricot knitting, Rachel knitting, and Milanese knitting, and (weft) knitting including plain knitting and circular knitting. Among them, warp knit goods are more preferable since they do not fray when they are cut. The thickness of the synthetic yarn is preferably about 40 to about 160 deniers.
The substrate 14 that constitutes the pressure-sensitive adhesive component for an ankle of the present invention may be made of natural rubber sheet and synthetic rubber sheet having elasticity, natural and synthetic rubber sheets provided with perforations to have moisture permeability, sheet made of the above-mentioned woven fabric or knitted fabric laminated with a polyurethane film and so forth. In the present invention, it is preferable to use a high twist fabric having a longitudinal elongation of about 30% to about 110%, a tensile strength of 10 N/19 mm width to 200 N/19 mm width, and a 20% modulus of 0.5 N/19 mm width to 10 N119 mm width. Use of such a high twist fabric enables the pressure-sensitive adhesive component for an ankle to exhibit handling property (workability), followability, fixability, compressibility (kickback property) and so forth that are important when taping is performed.
It is preferable that the thickness of the substrate 14 is appropriately determined depending on the material characteristics and so forth of the substrate. In consideration of the followability to the skin, fixability of tape, workability of taping and so forth, the thickness of the substrate 14 is preferably 200 μm to 1,000 μm, more preferably 300 μm to 1,000 μm, particularly preferably 300 μm to 800 μm, and most preferably 500 μm to 800 μm. The substrate 14 may be either of a single layer structure or of a double layer structure. In the case of multi-layer structures, it is preferable that the total thickness of all the layers is within the above-mentioned range.
Further, it is preferable that the pressure-sensitive adhesive component for an ankle of the present invention has a thickness of the pressure-sensitive adhesive component without the release liner is 300 μm to 1,100 μm.
The substrate 14 is provided with a polyurethane layer on its outer surface (in
The polyurethane layer may be formed from known urethanes such as ether-based urethanes and ester-based urethanes. In the present invention, polyurethane films may be used as the polyurethane layer. The thickness of the polyurethane layer is preferably 5 μm or more and less than 30 μm. When the thickness of the polyurethane layer is 5 μm or more, the unevenness of the surface of the substrate made of, for example, elastic knitted fabric and the like is sufficiently coated so that no pinholes are formed. On the other hand, when the thickness of the polyurethane layer is less than 30 μm, sufficient moisture permeability can be maintained.
For example, when the substrate is applied so as to overlap on the back surface of the same substrate having unevenness thereon, sometimes an end of the overlappingly applied pressure-sensitive adhesive component is turned. However, the adhesive power onto the own back surface of the substrate can be improved. Further, when the substrate having poor waterproof property is used in rain and is wetted, the applied portion tends to be peeled off. However, provision of the polyurethane layer can impart the substrate with waterproof property. Furthermore, adjustment of the thickness of the polyurethane layer can control the degree of the kickback property.
It is preferable that the pressure-sensitive adhesive layer 15 has flexibility and viscoelasticity such that it can follow up the skin onto which it is applied and is formed by using a pressure-sensitive adhesive having less stimulation to the skin. For this purpose, various pressure-sensitive adhesives well-known or practically used in the field of common pressure-sensitive adhesive tape for taping may be used. Specific examples of the pressure-sensitive adhesive that can be used include acrylic-based pressure-sensitive adhesives, rubber-based pressure-sensitive adhesives, synthetic rubber-based pressure-sensitive adhesives, vinyl ether-based pressure-sensitive adhesives, silicone-based pressure-sensitive adhesives, and gel-based pressure-sensitive adhesives. In consideration of stimulation to the skin and so forth, it is preferable that the acrylic-based pressure-sensitive adhesives and gel-based pressure-sensitive adhesives are used. For example, oily gel pressure-sensitive adhesives have relatively low adhesive power whereas they have excellent adherence to the skin and are satisfactory for use in taping and so forth. They can be used advantageously since they do not harm the horny layer of the skin upon peeling off. Reference is made to Published Translation of PCT Application. No. 2000-513287.
The pressure-sensitive adhesive layer 15 may be provided on the entire surface or a part of the surface one side of the substrate 14 (support 19). When it is provided on the surface of the support 19 partly, the pressure-sensitive adhesive layer may be formed as dots or stripes. The region where no pressure-sensitive adhesive layer is formed serves as an air passage as well. Therefore, the air permeability and moisture permeability of the pressure-sensitive adhesive component can be improved, so that steaming, skin irritation and so forth due to sweating can be prevented. The stripes may be of linear, undulated or the like forms. Generally, it is preferable that an undulated form that undergoes less variation with time in sectional area of inter-stripe interstices is adopted. However, it is preferable that the form of the stripes may be determined appropriately depending on the characteristics and so forth of the pressure-sensitive adhesive to be used. On the other hand, when the pressure-sensitive adhesive layer is provided on the surface of the substrate partly, it is preferable that the size and arrangement of dots, the size of the inter-stripe interstices and so forth are appropriately designed such that a space that serves as an air passage can be assured between the adjacent stripes.
When the pressure-sensitive adhesive is coated on a desired region, for example, a pressure-sensitive adhesive layer having a desired streak-like or wave-like form maybe formed on a release liner by using a mold having, for example, comb-like form with fixing or moving in amplitude the comb during coating and then the streak-like or wave-like form may be transferred on the surface of the substrate 14.
It is preferable that the thickness of the pressure-sensitive adhesive layer 15 is determined appropriately depending on the type, characteristics and so forth of the pressure-sensitive adhesive to be used; for example, the thickness of the pressure-sensitive adhesive layer 15 is preferably 20 μm to 120 μm and more preferably 40 μm to 100 μm.
The pressure-sensitive adhesive component for an ankle may be provided with perforations as necessary so far as they do not deteriorate the effects of the present invention.
Then, a pressure-sensitive adhesive component including, besides the H-shaped pressure-sensitive adhesive component, an auxiliary pressure-sensitive adhesive component as an independent member will be described.
Here, the H-shaped pressure-sensitive adhesive component shown in
The pressure-sensitive adhesive component has a shorter rectangular edge length (W20) of preferably 50 mm to 100 mm and a longer rectangular edge length (L20) of preferably 100 mm to 350 mm. It is preferable that the pressure-sensitive adhesive component is designed appropriately within the above-mentioned range in consideration of the body type, foot type and so forth.
The layer structure of the auxiliary pressure-sensitive adhesive component shown in
As one example of the method of performing taping by using the pressure-sensitive adhesive component for an ankle of the present invention, an example in which a pressure-sensitive adhesive component for an ankle having the H-shaped pressure-sensitive adhesive component A and the auxiliary pressure-sensitive adhesive component B as shown in
In
Subsequently, the release liner (marking {circle over (7)}) on one edge portion 22 of the auxiliary pressure-sensitive adhesive component B is removed, and the auxiliary pressure-sensitive adhesive component is applied onto the H-shaped pressure-sensitive adhesive component A in an overlapping manner so as to cover the foot from the dorsum of foot to the lateral malleolus. Thereafter, the release liner (marking {circle over (6)}) on the tape portion 6 is removed and the tape portion 6 is applied while expanding the tape portion 6 by drawing it so as to cover an Achilles' tendon of a back of the ankle. Finally, after the release liner (marking {circle over (7)}′) on the remaining edge portion 22′ is removed, the edge portion 22′ is applied so as to cover the medial malleolus and further cover the dorsum of foot (see
Use of the pressure-sensitive adhesive component for an ankle shown in
Here, a pressure-sensitive adhesive component for an ankle consisting of a modified H-shaped pressure-sensitive adhesive component having a substantially trapezoidal contour will be described.
In
The first front tape body 43 and the second front tape body 43′ are tapes to be applied around the ankle so as to cover the Achilles' tendon and longer than the first and second rear tape bodies 42 and 42′.
Each of the head edges of the first rear tape body, first front tape body, second rear tape body, and second front tape body are tongue-shaped.
The bottom portion 41 are rectangular and the first rear tape body 42 and the first front tape body 43 are arranged on one side of the rectangle and the second rear tape body 42′ and the second front tape body 43′ are arranged on the opposite side of the rectangle. Note that the edge on the side of the rear tape body of the bottom portion 41 may be formed into a concave form.
The layer structure of the modified H-shaped pressure-sensitive adhesive component C shown in
Further, in the present embodiment, similarly to the H-shaped pressure-sensitive adhesive component shown in
The substantially trapezoidal pressure-sensitive adhesive component for an ankle (modified H-shaped pressure-sensitive adhesive component C) shown in
As one example of the method of performing taping by using the pressure-sensitive adhesive component for an ankle of the present invention, an example in which a modified H-shaped pressure-sensitive adhesive component for an ankle having a substantially trapezoidal shape as shown in
In
Subsequently, as shown in
Then, as shown in
Similarly, as shown in
In addition, the taping may be performed by moderately loading the body weight on the bottom portion as necessary. This allows taping to be performed in a state close to the state of the ankle joint upon which a load is imposed when exercising.
According to the present invention, taping by using the modified H-shaped pressure-sensitive adhesive component having a substantially trapezoidal contour can fix the ankle joint and the like appropriately as described above.
In the present invention, after performing taping by using a modified H-shaped pressure-sensitive adhesive component, a rectangular auxiliary component formed of nonelastic cotton tape or elastic tape as shown in
Hereinafter, the reinforcing method of performing taping by using the auxiliary pressure-sensitive adhesive component B (hereinafter, sometimes referred to as “method D”) will be described. Note that although the auxiliary pressure-sensitive adhesive component is applied to the previously applied modified H-shaped pressure-sensitive adhesive component in an overlapping manner, the figure illustrating the auxiliary pressure-sensitive adhesive component and the modified H-shaped pressure-sensitive adhesive component in an overlapping state is complicated, so that hereinafter, explanation will be made with referring to diagrams in which the previously applied modified H-shaped pressure-sensitive adhesive component is omitted and only the auxiliary pressure-sensitive adhesive component is shown.
In
In
In
Use of the pressure-sensitive adhesive component for an ankle of the present invention shown in
Note that after taping the H-shaped pressure-sensitive adhesive component A according to the method A, reinforcing may be performed by using the auxiliary pressure-sensitive adhesive component according to one of the first to fourth reinforcing methods (method D) mentioned above instead of the method B. That is, in the present invention, the method D can be applied to the method A and the method B can be applied to the method C.
When markings indicating the order of application are shown on the release liners of the pressure-sensitive adhesive component for an ankle of the present invention and optional auxiliary pressure-sensitive adhesive component, application of the tapes in the order indicated enables users having no expert knowledge on taping to perform taping readily and at proper positions.
Further, in addition to the taping method of the present invention, a conventional taping method may also be used.
EXAMPLESHereinafter, the present invention will be described in more detail by examples. However, the present invention should not be considered as being limited to the examples and various applications are possible without departing from the spirit and scope of the present invention.
Example 1A mixture of 90 parts by weight of 2-ethylhexyl acrylate and 9 parts by weight of acrylic acid was copolymerized with ethyl acetate under an inert gas atmosphere to obtain an acrylic-based pressure-sensitive adhesive. The acrylic-based pressure-sensitive adhesive was coated on a treated surface of a release liner having a high-quality paper laminated with a polyethylene, further subjected to treatment with silicone on the laminated surface to a thickness of 80 μm on dry basis and the resultant was dried at 120° C. for 3 minutes to form a pressure-sensitive adhesive layer. On this pressure-sensitive adhesive layer was superposed and applied an elastic knitted fabric having a thickness of 450 μm prepared by knitting 75-denier polyester yarn by interlock weaving so as to expand and contract to obtain a laminate having a layer structure of substrate/pressure-sensitive adhesive layer/release liner. The elastic knitted fabric had a tensile stress at 20% elongation of 2.5 N/19 mm width and a hysteresis at 80% elongation of 92%, and a tensile stress at 80% elongation of 19 N/19 mm width.
The obtained laminate was punched to obtain a pressure-sensitive adhesive component made of an H-shaped pressure-sensitive adhesive component and an auxiliary pressure-sensitive adhesive component having a shape as shown in
By using the obtained pressure-sensitive adhesive component for an ankle, taping on the ankle portion according to the above mentioned method A.
Example 2An oily gel pressure-sensitive adhesive agent was coated on a treated surface of a release liner composed of polyethylene laminated high-quality paper, further treated with silicone, to a thickness of 70 μm on dry basis and was dried at 120° C. for 3 minutes to form a pressure-sensitive adhesive layer. An elastic knitted fabric having a thickness of 450 μm having the same material as the substrate in Example 1, knitted by interlock weaving 75 denier polyester yarn so that it could expand and contract was superposed and applied on the pressure-sensitive adhesive layer to obtain a laminate having a layer structure of substrate/pressure-sensitive adhesive layer/release liner.
The obtained laminate was punched to obtain a pressure-sensitive adhesive component made of an H-shaped pressure-sensitive adhesive component and an auxiliary pressure-sensitive adhesive component having a shape as shown in
By using the obtained pressure-sensitive adhesive components (H-shaped pressure-sensitive adhesive component and auxiliary pressure-sensitive adhesive component), taping of an ankle portion was performed according to the above-mentioned method B.
Example 3A pressure-sensitive adhesive layer was prepared in the same manner as in Example 1. A fabric (high twist fabric) obtained by twill weaving a mixed yarn composed of cotton and rayon prepared in advance as a substrate was superposed and laminated on the pressure-sensitive adhesive layer to obtain a laminate having a layer structure of substrate/pressure-sensitive adhesive layer/release liner. Note that the thickness of the substrate and the pressure-sensitive adhesive layer was 750 μm.
The obtained laminate was punched to obtain a pressure-sensitive adhesive component for an ankle having a shape as shown in
The height of the trapezoid in
The release liners provided with back slits were stamped with continuous numbers indicating the order of application.
By using the obtained pressure-sensitive adhesive components, taping of an ankle portion was performed according to the above-mentioned taping method C for the modified H-shaped pressure-sensitive adhesive component.
Example 4An oily gel pressure-sensitive adhesive agent was coated on a treated surface of a release liner composed of polyethylene laminated high-quality paper, further treated with silicone, to a thickness of 65 μm on dry basis and was dried at 120° C. for 3 minutes to form a pressure-sensitive adhesive layer. An about 13-μm polyurethane film was bonded and laminated on one surface of a substrate, i.e., an elastic knitted fabric having a thickness of about 252 μm prepared by nitting 75 denier polyeser yarn by interlock weaving so as to expand and contract to form a support. Superposing and applying the pressure-sensitive adhesive layer on the substrate side of the support formed a laminate having a layer structure of polyurethane film/substrate/pressure-sensitive adhesive layer/release liner. Note that the thickness of the laminate (excluding the release liner), specifically a total of the thicknesses of the support and the pressure-sensitive adhesive layer was about 320 μm.
The obtained laminate was punched to obtain a pressure-sensitive adhesive component for an ankle having a shape as shown in
The release liners provided with back slits were stamped with continuous numbers indicating the order of application.
By using the obtained pressure-sensitive adhesive components, taping of an ankle portion was performed according to the above-mentioned taping method C for modified H-shaped pressure-sensitive adhesive component.
Comparative Example 1By using a conventional tape generally known as a taping tape for sports, taping was performed by a common method. That is, first an underlap tape was applied centered on the ankle. Then two anchor tapes (38 mm in width), i.e., nonelastic cotton tapes, were applied on positions about 5 cm above the ankle. The two anchor tapes were applied off to the side by about ⅓ to about ½ or spirally wound around. Then, three stirrup tapes (38 mm in width) were applied by drawing up from the position of the inner anchor tape passing the medial malleolus to the position of the outer side anchor tape. Note that three stirrup tapes were applied off to the side by about ⅓ to about ½. Thereafter, to fasten the ends of the stirrup tapes with the anchor tapes, the two anchor tapes were wound around at the position of about 5 cm above the ankle. Then, to prevent tottering of the ankle by pressing the periphery of the ankle, a figure eight tape was applied by winding it around the foot starting from the position of the Achilles' tendon passing the lateral malleolus and around the dorsum of foot, passing the plantar arch, crossing the dorsum of foot, passing above the medial malleolus, returning to the original point, and further running over the Achilles' tendon to the outer side to make a half round trip. Thereafter, heel lock taping was performed. That is, an elastic tape made of a high twist fabric was made to pass from the dorsum of foot as an original point, medial malleolus, back side of the heel, underneath the lateral malleolus, to the plantar arch, and crossing the dorsum of foot. Subsequently, the elastic tape was made to pass above the lateral malleolus, the Achilles' tendon to the heel, underneath the medial malleolus, obliquely passing the plantar arch, and then the dorsum of foot. This operation was performed repeatedly and the tape was continuously wound around the foot upward to the position where the anchor tape was applied above the ankle.
Twenty volunteers of thirties in age were asked to apply pressure-sensitive adhesive components around their ankles by the taping methods of Examples 1 to 4 and Comparative Example 1 and evaluate the operability of taping and the conditions immediately after the taping according to the standards described below. Further, after exercising jogging for 1 hour after applying the pressure-sensitive adhesive components, stability of adhesion and fixability after the exercise were evaluated according to the standards described below. The number of persons meeting each standard is shown in Table 1.
<Standards of Evaluation>
{circle over (1)} Operability of Taping
- [1]: Very easy to apply, cases in which taping could be performed within 3 minutes;
- [2]: Difficult to apply, taping time being longer than 3 minutes and less than 10 minutes;
- [3]: Very difficult to apply, cases in which taping took 10 minutes or longer.
{circle over (2)} Conditions Immediately After Taping - [1]: No local thickening, very comfortable;
- [2]: After the application, no discomfort but a slight feeling of strangeness being felt;
- [3]: After the application, discomfort of being aware of taping, with some pain;
- [4]: Very painful and discomfortable, unable to wear shoes.
{circle over (3)} Stability of Adhesion and Fixability After Exercise - [1]: 90% or more of the applied pressure-sensitive adhesive showing no peel, with the taping function on the ankle continuing sufficiently;
- [2]: 50% or more and less than 90% showing no peel, with partial loosening but maintaining the taping function;
[3]: Less than 50% showing no peel, with showing loosening and loss of the taping function.
The results shown in Tables 1 and 2 indicate that taping using the pressure-sensitive adhesive components for an ankle in Examples 1 to 4 by the method described in Examples 1 to 4 resulted in best evaluations by 13 persons or more out of the 20 person in all the evaluations of “Operability of taping”, “Conditions immediately after taping”, and “Stability of adhesion and fixability after exercise”. That is, the pressure sensitive adhesive components for an ankle of the present invention are good in the feeling of wearing and operability and exhibit satisfactory taping function. Furthermore, it revealed that the pressure sensitive adhesive components for an ankle of the present invention have waterproof property.
On the other hand, Comparative Example 1 in which taping was performed by the conventional method indicated that the taping took a long time and many persons complained for discomfort in the feeling of wearing the taping.
As described above in detail, use of the pressure-sensitive adhesive component for an ankle of the present invention enables a person having no expert knowledge on taping to perform readily and in a short time appropriate taping only by following the order indicated, for example, on the release liner. Since everybody can perform taping with ease, the present invention is very useful for preventing recurrence of sprained ankle that would otherwise tend to become chronic and also preventing serious physical damages.
The pressure-sensitive adhesive component for an ankle of the present invention enables sufficient fixing of an ankle joint and the like and assures continued fixability, so that they are useful for various kinds of athletes including walkers, joggers, hikers, climbers and so forth as well as rehabilitation trainees for the functional recovery of foot joints and the like. Furthermore, use of the pressure-sensitive adhesive components for an ankle of the present invention causes no thickening upon application and makes users to feel no inconvenience in daily life, allowing users to wear shoes, also allowing wearing athletes' shoes.
According to the taping method of the present invention, taping can be performed by placing the heel sole on the bottom portion of the H-shaped pressure-sensitive adhesive component or the like and loading the body weight thereon, so that there is no need to hold the pressure-sensitive adhesive component by one hand, thus allowing free use of hands, so that taping can be performed with free hands, thus assuring effective taping effects. Furthermore, according to the taping method of the present invention, taping can be performed in a state close to the state of that ankle joint or the like upon which a load is imposed when exercising, so that an effective taping effect tends to be shown easy.
According to the taping method of the present invention, neither local circulation disturbance nor nervous disturbance will occur due to over winding since no spiral winding around the ankle is involved.
The present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiment is therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
Claims
1. A pressure-sensitive adhesive component for an ankle, comprising an H-shaped pressure-sensitive adhesive component comprising:
- a bottom portion;
- a first tape-shaped body provided on the bottom portion; and
- a second tape-shaped body provided on the bottom portion,
- wherein a cut is provided between the first and second tape-shaped bodies running in a longitudinal direction with respect to the first and second tape-shaped bodies from edges of the first and second tape-shaped bodies, the first tape-shaped body including a first front tape body and a first rear tape body, and the second tape-shaped body including a second front tape body and a second rear tape body, and
- wherein a first ratio of a width of the first front tape body to a width of the first rear tape body and a second ratio of a width of the second front tape body to a width of the second rear tape body are independently within the range of 5:5 to 5:3.
2. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, wherein the pressure-sensitive adhesive component is an H-shaped pressure-sensitive adhesive component,
- wherein one edge of the bottom portion is concave, the one edge of the bottom portion is the edge on the side of the first and second rear tape bodies.
3. The pressure-sensitive adhesive component for an ankle as claimed in claim 2, wherein the H-shaped pressure-sensitive adhesive component has a length of 300 mm to 600 mm and the first and second tape-shaped bodies independently have a width of 50 mm to 150 mm.
4. The pressure-sensitive adhesive component for an ankle as claimed in claim 1,
- wherein the pressure-sensitive adhesive component is a modified H-shaped pressure-sensitive adhesive component, and
- wherein the first and second rear tape bodies have lengths shorter than those of the first and second front tape bodies.
5. The pressure-sensitive adhesive component for an ankle as claimed in claim 4,
- wherein the pressure-sensitive adhesive component has a length from an edge of the first front tape body to an end of the second front tape body of 400 mm to 650 mm, and
- wherein the first and second tape-shaped body independently have a width of 50 mm to 150 mm.
6. The pressure-sensitive adhesive component for an ankle as claimed in claim 4, wherein the first and second front tape bodies independently have a length of 200 mm to 270 mm.
7. The pressure-sensitive adhesive component for an ankle as claimed in claim 4, the first and second rear tape bodies independently have a length of 80 mm to 150 mm.
8. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, wherein head portions of the first rear tape body, the first front tape body, the second rear tape body, and the second front tape body are each tongue-shaped.
9. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, wherein a pressure-sensitive adhesive layer of the H-shaped pressure-sensitive adhesive component is covered with a release liner that is provided with a back slit at several positions.
10. The pressure-sensitive adhesive component for an ankle as claimed in claim 9, wherein the release liner that covers the pressure-sensitive adhesive layer and is separated by a back slit has indicated thereon a character or an image thereon.
11. The pressure-sensitive adhesive component for an ankle as claimed in claim 10, wherein one can recognize an order from the character or image on the release liner separated by the back slit.
12. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, wherein the substrate pressure-sensitive adhesive component includes a substrate made of one material selected from the group consisting of a high twist fabric and an elastic knitted fabric.
13. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, wherein the pressure-sensitive adhesive component includes a pressure-sensitive adhesive layer that is formed from one material selected from the group consisting of an acrylic pressure-sensitive adhesive and a gel pressure-sensitive adhesive.
14. The pressure-sensitive adhesive component for an ankle as claimed in claim 1,
- wherein the pressure-sensitive adhesive component includes a support and a pressure-sensitive adhesive layer, and
- wherein the total of a thickness of the support and a thickness of the pressure-sensitive adhesive layer is 300 μm to 1,100 μm, and
- wherein the pressure-sensitive adhesive component consisting of a support and a pressure-sensitive adhesive layer has an elongation of 110% or less.
15. The pressure-sensitive adhesive component for an ankle as claimed in claim 1, further comprising an auxiliary pressure-sensitive adhesive component in a rectangular form having a shorter side and a longer side and a curved corner, as an independent element.
16. The pressure-sensitive adhesive component for an ankle as claimed in claim 15, wherein the auxiliary pressure-sensitive adhesive component includes a pressure-sensitive adhesive layer having thereon a release liner, the release liner is separated by a back split at two positions.
17. The pressure-sensitive adhesive component for an ankle as claimed in claim 16, wherein the pressure-sensitive adhesive component has a shorter side of 50 mm to 100 mm, a longer side of 100 mm to 350 mm.
18. A taping method of performing taping an ankle joint by using an H-shaped pressure-sensitive adhesive component, comprising:
- removing a release liner on a bottom portion;
- placing a heel such that an edge of the heel is in line with a concave edge of the bottom portion;
- removing a release liner on a front tape portion to be applied to an outer side of the ankle portion and applying the front tape portion with holding a head portion of a front tape body while expanding the front tape portion so as to cover a medial malleolus of the ankle portion from a heel toward a knee joint;
- removing a release liner on a front tape head portion and applying the front tape head portion;
- removing a release liner on a front tape portion to be applied to an inner side of the ankle portion and applying the front tape portion while drawing up the front tape portion just above and expanding;
- removing a release liner on a front tape head portion and applying the front tape head portion;
- removing a release liner on a rear tape portion positioned on an outer side of the ankle portion and applying the rear tape portion by holding a head portion of a rear tape body so as to pass along the back side of the ankle portion and cover over the medial malleolus while expanding the rear tape portion;
- removing a release liner of a rear tape head portion and applying the rear tape head portion;
- removing a release liner on a rear tape portion positioned on the inner side of the ankle portion and applying the rear tape portion by holding a head portion of a rear tape body and while expanding the rear tape portion so as to pass along the back side of the ankle portion and cover over the lateral malleolus; and
- removing a release liner of a rear tape head portion and applying the rear tape head portion.
19. The taping method as claimed in claim 18, wherein one edge of the auxiliary pressure-sensitive adhesive is applied onto the rear tape portion so as to cover the lateral malleolus of the ankle portion in an overlapping manner and then the other edge of the auxiliary pressure-sensitive adhesive component is applied to onto the other rear tape portion so as to cover the medial malleolus of the ankle portion in an overlapping manner.
20. A taping method by using a modified H-shaped pressure-sensitive adhesive component, comprising:
- removing a release liner of a bottom portion and placing a heel sole on the bottom portion such that a rear tape body covers a surface of malleolus when elevated vertically;
- removing a release liner of one of the rear tape bodies and applying the rear tape body by holding a head portion of the rear tape body to lift the rear tape body vertically while expanding the rear tape body so as to cover the lateral malleolus of the ankle portion;
- removing a release liner of the other rear tape body to be applied to an inner side of the ankle portion and applying the rear tape body while lifting the rear tape body vertically to expand the rear tape body so as to cover an inner side of the ankle portion; removing a release liner of one of the front tape bodies positioned on an outer side of the ankle portion and applying the front tape body while holding a head portion of the front tape body to expand the front tape body so as to pass along an entire loop from above the dorsum of foot and the ankle portion and cover over the lateral malleolus and further pass Achilles' tendon on the back side of the ankle to the lateral malleolus; and
- removing a release liner of the other front tape body positioned on the inner side of the ankle portion and applying the front tape body while holding a head portion of the front tape body to expand the front tape body so as to pass along an entire loop including crossing at the ankle portion above the dorsum of foot to cover over the lateral malleolus, passing the Achilles' tendon to reach the medial malleolus.
Type: Application
Filed: Jun 10, 2004
Publication Date: Feb 3, 2005
Applicant:
Inventors: Osamu Oohira (Osaka), Yoshitada Morikawa (Osaka), Kotaro Shimobayashi (Osaka)
Application Number: 10/864,444