ULTRASOUND SCANNER SUPPORT DEVICES
Ultrasound scanner support devices and associated methods are disclosed herein. In various embodiments, an ultrasound scanner support device can include a body having a first surface and a second surface opposite the first surface. The ultrasound scanner support device can further include a recess having an interior surface between the first and second surfaces and a sidewall extending from the first surface to the interior surface. The recess can be shaped to releasably retain an ultrasound scanner connector. The ultrasound scanner support device can further include a peripheral channel extending around a perimeter of the body. The peripheral channel can have a curve at each directional change. Additionally, the ultrasound scanner support device can include a holder coupled to the body and configured to releasably retain an ultrasound scanner.
The present technology is related to support devices for transporting and/or storing ultrasound scanner assemblies and associated methods of manufacturing.
BACKGROUNDUltrasound imaging systems are widely used in medicine for visualizing tendons, muscles, joints, vessels, internal organs, and/or other subcutaneous body structures. Ultrasound imaging systems are also frequently used in obstetrics to visualize embryos or fetuses while in utero. Ultrasound imaging systems are often portable and typically include a processing station (e.g., a computer) linked to an ultrasound scanner with a cable. The cable is generally fixedly attached to the ultrasound scanner at one end and has a detachable connector configured to interface with the processing station at the other end. In operation, the connector on the cable is plugged into the processing station to provide power and allow communication between the ultrasound scanner and the processing station. The cables generally have a coaxial line for each transducer in the scanner. For example, sophisticated scanners with 128, 256 or even more transducers require cables with a corresponding number of small, relatively delicate coaxial lines.
When the ultrasound scanner is not in use (e.g., during transport and/or storage), the connector is unplugged from the processing station. According to conventional techniques, the cable is typically wrapped around the connector for transport and/or storage. However, wrapping the cable around the connector can damage the small coaxial lines in the cable. Conventional connectors, for example, have a rectangular plate-like shape with sharp edges, and bending the cable around such sharp edges can break and/or otherwise damage the small coaxial lines in the cable. This can result in failure of the ultrasound scanner and/or the ultrasound imaging system. Accordingly, there is a need for support devices that can carry ultrasound scanners for transport and/or storage without damaging the communication lines.
The present technology is directed to support devices that can store and transport ultrasound scanners. It will be appreciated that several of the details set forth below are provided to describe the following embodiments in a manner sufficient to enable a person skilled in the relevant art to make and use the disclosed embodiments. Several of the details described below, however, may not be necessary to practice certain embodiments of the technology. Additionally, the technology can include other embodiments that are within the scope of the claims but are not described in detail with reference to
The body 102 can include a first surface 104a opposite a second surface 104b. The body 102 can also include a first end 103a and a second end 103b between the first and second surfaces 104a-b. In the illustrated embodiment, the first and second surfaces 104a-b are generally parallel to each other. In other embodiments, the first and second surfaces 104a-b may be canted relative to each other and/or may have other geometric configurations.
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The recess 106 can be sized and shaped to receive an ultrasound scanner connector (“connector”) of an ultrasound scanner assembly for transport and/or storage. Several examples of the connector are shown in
As further shown in
In the illustrated embodiment, the peripheral channel 110 extends generally completely around a perimeter or circumference of the body 102 between the first and second surfaces 104a-b. In other embodiments, the peripheral channel 110 can extend around a portion of the perimeter of the body 102 and/or may have other configurations. As shown in
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In the embodiment shown in
In further embodiments, the support device 100 can include a plurality of shoulders 116 (not shown) positioned at different elevations within the recess 106. The individual shoulders 116 can mate with a particularly shaped scanner connector and/or accommodate a particularly sized scanner connector. For example, each shoulder 116 can carry a scanner connector having a differently sized surface area such that the shoulder 116 nearest the first surface 104a can carry the scanner connector having a larger surface area, and the shoulder 116 nearest the interior surface 108 can carry the scanner connector having a smaller surface area. In yet further embodiments, the shoulder 116 may be omitted.
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The support device 100 can be made from a lightweight, durable material that can retain an ultrasound scanner assembly during transport and/or storage. Suitable materials include, for example, plastic, wood, and/or other suitable lightweight and durable materials. In some embodiments, the sidewall 114 and/or shoulder 116 can include a deformable material (e.g., foam) that can conform to the shape of the connector and secure it within the recess 106. Additionally, the interior surface 108 can include a soft material (e.g., felt) to cushion connectors. The body 102, sidewall 114, shoulder 116, flanges 120, and/or the peripheral and internal channels 110 and 113 can be formed integrally using a molding process. In other embodiments, the features of the support device 100 can be separate components that are adhered or otherwise and fastened together.
The support device 100 allows users to safely store and/or transport ultrasound scanner assemblies when they are not in use. For example,
When the connector 234 is disengaged from the processing station, the connector 234 can be secured at least partially within the recess 106 as shown in
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In operation, the support device 100 can transport scanner assemblies 230 having different sizes such as for use with portable ultrasound scanning devices. For example, the shoulder 116 and the notches 112 allow the support device 100 to accommodate differently sized scanner connectors and cables, respectively. Additionally, the support device 100 can be integrated into shipping methods to encourage end users to store and transport scanner assemblies in the support device 100. The support device 100 can also be compact, lightweight, and durable to further ease transport and storage. For example, in some embodiments, the support device 100 can be made from plastic and can be 9.5 inches long, 4.5 inches wide, and 1 inch thick.
The support device 300 further includes a holder 322 fixed to or otherwise extending from the second surface 104b of the body 102 that can releasably retain the scanner 232. The holder 322 can be a substantially rigid support that includes a top surface 324 and a recess 326 extending from the top surface 324 to the second surface 104b of the body 102. In other embodiments, the recess 354 can extend to an intermediate depth between the top surface 324 and the second surface 104b or beyond the second surface 104b to at most the interior surface 108. As shown in
In some embodiments, the holder 322 includes shoulders (not shown) generally similar to the shoulders 116 described above with reference to
In other embodiments, the holder 322 can further include a fastener to secure the scanner 232 to the support device 300. For example, the holder 322 can include an elastic material extending over the recess 326, a strap at the second surface 104b that can encircle a portion of the scanner 232, and/or other fasteners that can releasably secure the scanner 232 at least substantially within the holder 322.
The holder 322 can be fixed to the second surface 104b of the body 102 using an adhesive, a mechanical interface, and/or another suitable fastener that can join the holder 322 to the body 102. In other embodiments, the body 102 and the holder 322 can be formed integrally. Similar to the body 102, the holder 322 can be made from a generally rigid, lightweight, and durable material. For example, in some embodiments, the holder 322 is made from plastic. In other embodiments, the holder 322 and/or portions of the holder 322 (e.g., the sidewall 328) can be made from a deformable material, such as foam, that can conform to and releasably receive the scanner 232.
From the foregoing, it will be appreciated that specific embodiments of the technology have been described herein for purposes of illustration, but that various modifications may be made without deviating from the technology. For example, the embodiments illustrated above include a holder at the second surface of the body. However, other embodiments of the technology can include a holder connected to anther surface (e.g., the first surface) of a support device. Certain aspects of the technology described in the context of particular embodiments may be combined or eliminated in other embodiments. For example, the holder 322 illustrated in
Claims
1. An ultrasound scanner support device, comprising:
- a body having a first surface and a second surface opposite the first surface;
- a recess having an interior surface between the first and second surfaces and a sidewall extending from the first surface to the interior surface; and
- a peripheral channel extending around a perimeter of the body and having a curve at each directional change, wherein each curve has a radius of at least approximately 0.25 inch.
2. The ultrasound scanner support device of claim 1 wherein the ultrasound scanner support device further comprises:
- a first flange extending beyond the perimeter of the body, the first flange being proximate to the first surface;
- a second flange extending beyond the perimeter of the body, the second flange being proximate to the second surface, wherein the peripheral channel is between the first and second flanges;
- a shoulder protruding from the sidewall and partially into the opening;
- a holder connected to the second surface of the body;
- a plurality of discrete notches between the peripheral channel and the second surface, wherein each notch includes a curved surface; and
- an internal channel extending between the recess and a portion of the peripheral channel.
3. The ultrasound scanner support device of claim 1, further comprising:
- a holder coupled to the body, the holder being configured to releasably retain an ultrasound scanner.
4. The ultrasound scanner support device of claim 3 wherein the holder is an expandable band connected to the second surface of the body.
5. The ultrasound scanner support device of claim 1, further comprising:
- a shoulder protruding from the sidewall partially into the opening.
6. The ultrasound scanner support device of claim 5 wherein the shoulder is one of a plurality of shoulders spaced at different elevations within the opening, and the plurality of shoulders protrude further into the recess as the shoulders are spaced closer to the interior surface.
7. The ultrasound scanner support device of claim 1, further comprising:
- a notch spaced between the peripheral channel and at least one of the first and second surfaces, the notch having a curved surface.
8. The ultrasound scanner support device of claim 7 wherein the notch is one of a plurality of discrete notches, and wherein the ultrasound scanner support device further comprises:
- a flange projecting beyond the perimeter of the body proximate to the second surface of the body, wherein the plurality of notches are on the second flange.
9. The ultrasound scanner support device of claim 1, further comprising:
- a flange extending beyond the perimeter of the body, the flange being configured to retain a cable within the peripheral channel.
10. The ultrasound scanner support device of claim 1 wherein the interior surface is substantially solid and at least substantially parallel to the first surface of the body.
11. The ultrasound scanner support device of claim 1, further comprising:
- an aperture extending from the interior surface to the second surface.
12. The ultrasound scanner support device of claim 1, further comprising:
- an internal channel extending from the recess to a portion of the peripheral channel.
13. The ultrasound scanner support device of claim 1, further comprising:
- a holder at the second surface of the body, the holder having a top surface spaced longitudinally apart from the second surface and a recess extending between the top surface and the second surface of the body, wherein the recess has a generally similar shape as a periphery of an ultrasound scanner.
14. An ultrasound scanner support device, comprising:
- a body having a first surface, a second surface opposite the first surface, and a recess at the first surface, wherein the recess includes a sidewall extending from the first surface to an interior surface between the first and second surfaces, and wherein the recess is configured to receive an ultrasound scanner connector:
- a peripheral channel extending around a perimeter of the body, the peripheral channel having a curve at each corner and being configured to receive a cable connecting the ultrasound scanner connector to an ultrasound scanner; and
- a notch between the peripheral channel and the second surface of the body, the notch having a curved surface and being configured to transition the cable from the peripheral channel to the second surface.
15. The ultrasound scanner support device of claim 14, further comprising:
- a shoulder protruding from the sidewall into the opening, the shoulder being shaped to carry a portion of the ultrasound scanner connector.
16. The ultrasound scanner support device of claim 14, further comprising:
- a holder having a top surface spaced longitudinally apart from the second surface of the body and a recess extending from the top surface to at most the interior surface, the recess being shaped receive the ultrasound scanner.
17. The ultrasound scanner support device of claim 14, further comprising:
- a first flange extending from the first surface beyond the perimeter of the body;
- a second flange extending from the second surface beyond the perimeter of the body, wherein the peripheral channel is between the first and second flanges.
18. The ultrasound scanner support device of claim 14, further comprising:
- an internal channel extending from the recess to a portion of the peripheral channel.
19. A method of manufacturing an ultrasound scanner support device, the method comprising:
- forming a body, the body having a first surface and a second surface opposite the first surface;
- forming a recess at the first surface of a body, wherein the recess extends from the first surface to an interior surface between the first and second surfaces; and
- forming a peripheral channel extending around a perimeter of the body, the peripheral channel having a curve at each corner.
20. The method of claim 19 wherein forming the recess further comprises:
- forming a sidewall extending from the first surface to the interior surface; and
- forming a shoulder protruding from the sidewall into the opening, the shoulder being shaped to carry a portion of a scanner connector.
21. The method of claim 19, further comprising:
- forming an aperture extending from the interior surface to the second surface, the aperture being configured to secure the ultrasound scanner connector to the ultrasound support device.
22. The method of claim 19, further comprising:
- connecting a holder to at least one of the first and second surfaces of the body, wherein the holder includes an elastic band configured to releasably retain an ultrasound scanner.
23. The method of claim 19, further comprising:
- connecting a holder to the second surface of the body, the holder being substantially rigid and including a top surface spaced longitudinally apart from the second surface; and
- forming a recess extending from the top surface of the support to at most the interior surface of the body, the recess having a sidewall shaped generally similar as a shape of an ultrasound scanner.
24. The method of claim 19, further comprising:
- forming an internal channel extending from the recess to the peripheral channel.
25. The method of claim 19, further comprising:
- forming a plurality of notches between the peripheral channel and at least one of the first and second surfaces of the body, wherein the notches have curved surfaces.
26. The method of claim 19 wherein forming the peripheral channel includes forming the curves to have a radius of at least approximately 0.25 inch.
27. The method of claim 19 wherein forming the peripheral channel comprises:
- forming a first flange extending beyond a perimeter of the body, the first flange being proximate to the first surface of the body; and
- forming a second flange extending beyond the perimeter of the body, the second flange being proximate to the second surface of the body, wherein the peripheral channel is between the first and second flanges.
Type: Application
Filed: Feb 1, 2012
Publication Date: Aug 9, 2012
Inventor: Bradley J. Sliger (Seattle, WA)
Application Number: 13/364,170
International Classification: F16M 13/00 (20060101); B23P 15/00 (20060101); B23P 17/00 (20060101);