SPINE BOARD WITH INTERIOR CHANNELS
A mechanism for securing a cervical collar to a spine board includes a collar stabilization key having a leading end and a trailing end. The collar stabilization key is inserted into a longitudinal channel located within a main body of the spine board and has a first end that intersects with a first end of the main body and a second end. The leading end of the collar stabilization key mates with a post coupled to a cervical collar so as to secure the cervical collar to the main body of the spine board and the trailing end of the collar stabilization key locks the collar stabilization key in the longitudinal channel and to the main body.
The present application is a continuation-in-part of and claims priority to U.S. patent application Se. No. 14/792,981, filed Jul. 7, 2015, which is based on and claims the benefit of U.S. provisional patent application Ser. No. 62/022,308, filed Jul. 9, 2014, the content of which is hereby incorporated by reference in their entireties.
BACKGROUNDSpine boards are patient handling devices that provide rigid support to prevent further injury of a patient while the patient is being transported to a medical center for treatment. They are commonly used by medical personnel during emergency and rescue situations so as to provide increased efficiency and effectiveness in performing the vital tasks required.
The discussion above is merely provided for general background information and is not intended to be used as an aid in determining the scope of the claimed subject matter.
SUMMARYA mechanism for securing a cervical collar to a spine board is described. A collar stabilization key has a leading end and a trailing end. The collar stabilization key is inserted into a longitudinal channel located within a main body of the spine board and has a first end that intersects with a first end of the main body and a second end. The leading end of the collar stabilization key mates with a post coupled to a cervical collar so as to secure the cervical collar to the main body of the spine board and the trailing end of the collar stabilization key locks the collar stabilization key in the longitudinal channel and to the main body.
A spine board includes a main body having a top surface and an opposing bottom surface, a first end and an opposing second end that define a length of the main body and a first longitudinal side and an opposing second longitudinal side that define a width of the main body. The first and second longitudinal sides connect the first end to the second end. A longitudinal channel extends longitudinally within the main body having a first end that intersects with the first end of the main body and a second end. An opening extends at least from the top surface of the main body and intersects with the longitudinal channel. A cervical collar has a post that extends outwardly from a bottom of the cervical collar. The post of the cervical collar is removably positioned in the opening. A longitudinal cartridge is removably secured in the channel and is configured to capture and secure the post of the cervical collar to the main body of the spine board.
A method of securing a cervical collar to a spine board includes inserting a collar stabilization key having a leading end and a trailing end into a longitudinal channel located within a main body of the spine board. The longitudinal channel has a first end that intersects with a first end of the main body and a second end. The leading end of the collar stabilization key mates with a post coupled to a cervical collar. The collar stabilization key locks in the longitudinal channel and to the main body to secure the cervical collar to the main body of the spine board.
This Summary is provided to introduce a selection of concepts in a simplified form that are further described below in the Detailed Description. This Summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used as an aid in determining the scope of the claimed subject matter. The claimed subject matter is not limited to implementations that solve any or all disadvantages noted in the background.
The following embodiments describe a support article or spine board that provides increased efficiency and effectiveness in performing the vital tasks required by medical personnel in treating patients who have sustained physical injury. The support article or spine board includes an adjustable brace or cervical collar that can be fitted around the patient's neck before being positioned and locked into the board and preloaded straps in cartridges located in channels within the main body of the board. Together these components provide medical personnel with the ability to secure and constrain patients during transport so as to prevent further injury as well as provide medical personnel with the ability to apply preventative treatments immediately so as to limit the severity of injury.
Spine board 100 includes a main body 101 having a top surface 102, an opposing bottom surface 104, a first end 106, an opposing second end 108, a first longitudinal side 110 and an opposing second longitudinal side 112. The distance between top surface 102 and bottom surface 104 defines a thickness 127 (
Spine board 100 includes an adjustable brace or cervical collar 114 mounted to main body 101 that protrudes from top surface 102, a plurality of grasping handles 116a-n and an ice tray 118. Cervical collar 114 is fitted around a patient's neck and then fixed to board 100 prior to patient transport to prevent as much movement of the spine as possible. A collar stabilization key 136 (
Handles 116a-n are spaced apart from each other and are placed in locations adjacent to and along first longitudinal side 110 and second longitudinal side 112 to allow medical personnel to carry spine board 100. Along the mid-section of main body 101 of board 100 is ice tray 118 that is recessed from top surface 102 of main body 101 and, in one embodiment, is configured to receive ready-to-use chemically activated cold packs 120, which can be activated if the patient requires such treatment along the back. These can be utilized at the discretion of the emergency responder if the patient requires such treatment for their injuries. Recessed ice tray 118 holds the cold packs 120 in place. In one embodiment, the top surfaces of cold packs 120 may protrude from top surface 102 of main body 101 and, in another embodiment, can be held in place with hook and loop material.
Also incorporated into the board are a plurality of channels and a plurality of cartridges that are inserted in the channels and contain straps. The channels exist within main body 101 and are located interior to the outer surfaces of board 100 including between top surface 102 and bottom surface 104 and between first end 106 and second end 108 and between first longitudinal side 110 and second longitudinal side 112. The channels provide openings to receive the cartridges, which contain the straps that secure the patient to the board. The cartridges are single use units that are loaded and stored within the board and provide easy access to the straps when needed for treatment of the patient.
In one embodiment, there are two different types of channels that exist within main body 101 of board 100. First, a pair of longitudinal channels 122a-b (
Lateral channels 124a, 124b, 124c and 124d are oriented substantially perpendicular to longitudinal channels 122a-b, but do not intersect longitudinal channels 122a-b since they are spaced away from longitudinal channels 122a-b. Lateral channels 124a-d are also located inside main body 101 between and spaced apart from top surface 102 and bottom surface 104, have a length that is a width of main body 101, are spaced apart from each other along length 123 of main body 101 and have open first ends 126a, 126b, 126c and 126d that intersect with first longitudinal side 110 and open second ends 128a, 128b, 128c and 128d that intersect with second longitudinal side 112. Both open first ends 126a-d and open second ends 128a-d serve as exit ends for straps stored in cartridges 134a-d.
As illustrated and as previously discussed, longitudinal channels 122a-b and lateral channels 124a-d that exist within main body 101 of spine board 100 house and store removable cartridges that contain straps. Longitudinal channels 122a-b receive and house first and second longitudinal cartridges 129a and 129b having leading ends 137a and 137b and trailing ends 141a and 141b, respectively. Lateral channels 124a-d receive and house lateral cartridges 134a, 134b, 134c and 134d having leading ends 171a-d and trailing ends 173a-d, respectively. Each cartridge 129a-b and 134a-d contain and store a strap used to secure the patient to main body 101 of board 100. The straps are made with hook and loop material for securing via attachment onto themselves.
As previously discussed, longitudinal cartridge 129b includes a leading end 137b and a trailing end 141b. When placed in longitudinal channel 122b, leading end 137b is located at open second end 144b and trailing end 141b is located at open second end 146b. Trailing end 141b includes flanges 180b, 181b and 182b (substantially identical to flange 181b) and a pair of substantially identical spring or barbed clips 183b and 184b. Flanges 180b, 181b and 182b and spring clips 183b and 184b engage with recesses in main body 101 for locking longitudinal cartridge 129b into channel 122b of main body 101. Longitudinal cartridge 129b further includes a top wall 170b, a bottom wall 172b, a first side wall 174b and a second side wall 175b. Together, top wall 170b, bottom wall 172b, first side wall 174b and second side wall 175b define a compartment 176b for containing and storing strap 130b. Compartment 176b is also defined between a trailing end wall 177b located proximal to trailing end 141b of longitudinal cartridge 129b and an opening 178b in leading end 137b of longitudinal cartridge 129b. Opening 178b provides access to strap 130b and aligns with second end 144b of channel 122b in main body 101 of board 100.
As illustrated in
The straps contained and stored in longitudinal cartridges 129a and 129b, such as a first longitudinal strap stored in first longitudinal cartridge 129a and a second longitudinal strap stored in second longitudinal cartridge 129b, are pulled from leading ends 137a and 137b and through strap access cavities 144a and 144b using the fingers hooks on the second ends of the straps, such as finger hook 188b of strap 130b. After the first longitudinal strap in longitudinal cartridge 129a is pulled out of cartridge 129a it is brought over a left shoulder of a patient and secured as described in detail below. After second longitudinal strap 130b in longitudinal cartridge 129b is pulled out of cartridge 129b it is brought over a right shoulder of the patient and secured as described in detail below. Therefore, the longitudinal straps stored in longitudinal cartridges 129a and 129b are used to secure the chest area of a patient by forming a cross shape across their chest after each strap is pulled out of each longitudinal cartridge 129a-b at exit ends 144a and 144b or strap access cavities 144a and 144b. In the alternative, the longitudinal straps do not necessarily have to cross the chest of the patient and can separately secure the right and left side of a patient's torso to the spine board. As illustrated and previously discussed, exit ends or strap access cavities 144a and 144b of longitudinal channels 122a and 122b are located in an area proximal cervical collar 114. The securing of the patient using the longitudinal straps will be discussed in more detail below.
As previously discussed, each lateral cartridge 134a-d includes leading end 171a-d and trailing end 173a-d. When placed in lateral channels 124a-d, leading end 171a-d are located at open first ends 126a-d and trailing ends 173a-d are located open second ends 128a-d. Each trailing end 173a-d includes flanges and a pair of substantially identical spring clips that engage with recesses in main body 101. As illustrated by the exemplary lateral cartridge 134a in
In particular, each lateral strap is stored in each lateral cartridge 134a-d in a dual serpentine arrangement of hook and loop strap material (i.e., a dual arrangement of strap material folded over and onto itself) with the center of each lateral strap secured to the center of the top wall of each lateral cartridge 134a-d so as to prevent the entirety of each lateral strap from exiting from each lateral cartridge 134a-d. In this way, a first end of each lateral strap can exit out a leading end of each lateral cartridge and each second end of each lateral strap can exit out a trailing end of each lateral cartridge. For example, in
As illustrated in
Each strap contained and stored in each lateral cartridge 134a-d, such as strap 132a, includes a first end that is pulled from the leading end 171a-d and a second end that is pulled from the trailing end 173a-d using the finger hooks on the first and second ends of the straps, such as finger hook 289a located on second end 287a of strap 132a and finger hook 288a located on first end 286a of strap 132a. The straps, made of hook and loop material, are wrapped around the patient and placed on top of themselves or each other to secure the patient's torso, waist and legs to the board. Although unnecessary, it is possible to further thread the straps through the handles by twisting the strap at the handle to allow for hook and loop surfaces to contact each other. All four straps in all four lateral cartridges 134a-d should be utilized to securely fasten the patient to spine board 100. In regards to securing the longitudinal straps in longitudinal cartridges 129a and 129b, the longitudinal straps are brought over the shoulders of the patient, crossed and are attached via its hook and loop material to the lateral straps that were wrapped around the patient. In one embodiment, the load to the longitudinal straps will be divided across multiple lateral straps. If additional strength is required, then the longitudinal straps can be threaded through any of handles 116 to provide further strength.
For sanitation purposes, both longitudinal cartridges 129a-b and lateral cartridges 134a-dincluding the straps that they house are single use and are removed for replacement. Cartridges 129a-b and 134a-d are easily removed from main body 101 by grasping the spring or barbed clips, such as 183b and 184b and 283a and 284a, and squeezing them toward the center of the respective cartridge while pulling the respective cartridge from main body 101.
As previously discussed, cervical collar 114 contains at least two features: a chemically activated cold pack embedded within the collar that can be activated by medical personnel if the situation calls for it, and supporting post 115 that can be inserted into an opening 117 in main body 101 of board 100 and locked into place with collar stabilization key 136.
Handles 216a-n are spaced apart from each other and are placed in locations adjacent to and along first end 206, second end 208, first longitudinal side 210 and second longitudinal side 212 to allow medical personnel to carry spine board 200. Along the mid-section of main body 201 of board 200, spine board 200 includes a recess 219 having undercut features on either longitudinal side of recess 219 for receiving a comfort pad 218 that protrudes slightly from top surface 202 of main body 201. Spine board 200 also includes an adjustable brace or cervical collar 214 mounted to main body 201 that also protrudes from top surface 202. Cervical collar 214 is fitted around a patient's neck and then fixed to board 200 prior to patient transport to prevent as much movement of the spine as possible. A collar stabilization key 236 (
To attach comfort pad 218 to spine board 200, one extending section of backer 291 that extends outwardly from one of longitudinal sides 297 or 299 of foam body 290 is inserted first into one of the longitudinal undercut features of recess 219. Then the other extending section of backer 291 that extends outwardly from the other of longitudinal sides 297 or 299 of foam body 290 is inserted into the other of the longitudinal undercut features of recess 219.
Also incorporated into the board are a plurality of channels and a plurality of cartridges that are inserted in the channels and contain straps. The channels exist within main body 201 and are located interior to the outer surfaces of board 200 including between top surface 202 and bottom surface 204 and between first end 206 and second end 208 and between first longitudinal side 210 and second longitudinal side 212. The channels provide openings to receive the cartridges, which contain the straps that secure the patient to the board. The cartridges are single use units that are loaded and stored within the board and provide easy access to the straps when needed for treatment of the patient.
In one embodiment, there are two different types of channels that exist within main body 201 of board 200—a single longitudinal channel and a plurality of lateral channels. A single longitudinal channel 222 (
Lateral channels 224a, 224b, 224c, 224d, 224e and 224f are oriented substantially perpendicular to longitudinal channel 222, but do not intersect longitudinal channel 222 since they are spaced away from longitudinal channel 222. Lateral channels 224a-f are also located inside main body 201 between and spaced apart from top surface 202 and bottom surface 204.
Each channel 224a-f has a length that is width 225 of main body 201, are spaced apart from each other along length 223 of main body 201 and have open first ends 226a, 226b, 226c, 226d, 226e and 226f (
As illustrated and as previously discussed, longitudinal channel 222 and lateral channels 224a-f that exist within main body 201 of spine board 200 house and store removable cartridges. The removable cartridges that are housed within lateral channels 224a-f have an oval clamshell shape and contain straps. Longitudinal channel 222 receives collar stabilization key 236, which may be thought of as a cartridge, but has a different shape that will be discussed below. Lateral channels 224a-f receive and house lateral cartridges 234a, 234b, 234c, 234d, 234e and 234f having leading ends 271a-f and trailing ends 273a-f, respectively. Each cartridge 234a-f contains and stores a strap used to secure the patient to main body 201 of board 200. The straps are made with hook and loop material for securing via attachment onto themselves. In particular, first ends of the straps stored in cartridges 234b-f exit through first ends 226b-f and second ends of the straps stored in cartridges 234b-f exit through second ends 228b-f. The straps are configured for wrapping around a patient and securing the patient's body to spine board 100 in a cross-body configuration. It should be pointed out that lateral cartridge 234a contained in lateral channel 224a is slightly different than other lateral cartridges 234b-f. Lateral cartridge 234a contains a shoulder strap and its ends exit from spine board 100 through holes 244a and 244b.
The trailing end of each channel 222, 224a-f includes an aperture 235a-g. Each aperture 235a-g is located either adjacent to first end 206 of spine board 200 or adjacent to first longitudinal side 210 of spine board 200. Each aperture 235a-g extends from the top surface 201 of spine board 200 and intersects with each channel 222, 224a-f. In addition, a locking button 237 is located on the trailing end of each cartridge 234a-f and 236. Each channel 222, 224a-f includes a ramp feature 229 (
Straps stored in lateral cartridges 234a-f are allowed to freely slide within and are positioned in a dual serpentine arrangement of hook and loop strap material (i.e., a dual arrangement of strap material are folded over and onto itself) as are illustrated in the exemplary configurations in
As illustrated in
The straps, made of hook and loop material, are wrapped around the patient and placed on top of themselves or each other to secure the patient's torso, waist and legs to the board. Although unnecessary, it is possible to further thread the straps through the handles by twisting the strap at the handle to allow for hook and loop surfaces to contact each other. All six straps in all six lateral cartridges 234a-f should be utilized to securely fasten the patient to spine board 200. In regards to lateral cartridge 234a, the straps are brought over the shoulders of the patient, crossed and are attached via its hook and loop material to the lateral straps that were wrapped around the patient. For sanitation purposes, both longitudinal cartridges 224a-f and lateral cartridges 234a-f including the straps that they house are single use and are removed for replacement.
Post 215 and therefore flange 209 of cervical collar 214 can be inserted into an opening 217 (
Although elements have been shown or described as separate embodiments above, portions of each embodiment may be combined with all or part of other embodiments described above.
Although the subject matter has been described in language specific to structural features and/or methodological acts, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as example forms of implementing the claims.
Claims
1. A mechanism for securing a cervical collar to a spine board, the mechanism comprising:
- a collar stabilization key having a leading end and a trailing end, wherein the collar stabilization key is inserted into a longitudinal channel located within a main body of the spine board and having a first end that intersects with a first end of the main body and a second end, the leading end of the collar stabilization key mates with a post coupled to a cervical collar so as to secure the cervical collar to the main body of the spine board and the trailing end of the collar stabilization key locks the collar stabilization key in the longitudinal channel and to the main body.
2. The mechanism of claim 1, wherein the collar stabilization key comprises a pair of forks having interior facing surfaces that face each other, the pair of forks extend from the leading end to a point along a length of the collar stabilization key and being configured to capture the post between the pair of forks to secure the cervical collar to the main body of the spine board.
3. The mechanism of claim 1, wherein the post comprises a distal end having a flange that is greater in diameter than a diameter of the post, wherein the collar stabilization key mates with the post between the flange and the cervical collar.
4. The mechanism of claim 1, wherein the collar stabilization key further comprises a button that is located on a top of the collar stabilization key and near the trailing end of the collar stabilization key, the button depresses during insertion of the collar stabilization key into the longitudinal channel and the button releases into an opening in the main body of the spine board to lock the collar stabilization key to the main body and for securing the cervical collar.
5. The mechanism of claim 1, wherein the main body of the spine board comprises an opening that extends at least from a top surface of the spine board and intersects with the longitudinal channel, the post that is coupled to the cervical collar is placed through the opening so as to mate with the collar stabilization key.
6. A spine board comprising:
- a main body comprising: a top surface and an opposing bottom surface; a first end and an opposing second end that define a length of the main body; a first longitudinal side and an opposing second longitudinal side that define a width of the main body, wherein the first and second longitudinal sides connect the first end to the second end;
- a longitudinal channel extending longitudinally within the main body having a first end that intersects with the first end of the main body and a second end;
- an opening that extends at least from the top surface of the main body and intersects with the longitudinal channel;
- a cervical collar having a post that extends outwardly from a bottom of the cervical collar, the post of the cervical collar being removably positioned in the opening; and
- a longitudinal cartridge removably secured in the channel and configured to capture and secure the post of the cervical collar to the main body of the spine board.
7. The spine board of claim 6, wherein the longitudinal cartridge comprises a leading end and a trailing end, wherein when the longitudinal cartridge is loaded into the longitudinal channel and locked to the main body the leading end aligns with the opening in the main body and the trailing end aligns with the first end of the longitudinal channel.
8. The spine board of claim 7, wherein the cartridge comprises a button that is located on a top of the cartridge and near the trailing end of the cartridge, the button depresses during insertion of the cartridge into the longitudinal channel and the button releases into an aperture in the main body to lock the cartridge to the main body to secure the cervical collar when the cartridge captures the post of the cervical collar.
9. The spine board of claim 8, wherein the aperture is located adjacent the first end of the spine board, extends from the top surface of the main body and intersects with the longitudinal channel.
10. The spine board of claim 6, wherein the longitudinal cartridge comprises a pair of forks having interior facing surfaces that face each other, the pair of forks extend from the leading end of the longitudinal cartridge to a point along a length of the longitudinal cartridge and being configured to capture the post between the pair of forks to secure the cervical collar to the main body of the spine board.
11. The spine board of claim 6, wherein the post comprises a distal end having a flange that is greater in diameter than a diameter of the post, wherein the cartridge mates with the post between the flange and the cervical collar.
12. The spine board of claim 6, further comprising a plurality of lateral channels extending laterally within the main body, wherein each first end of each lateral channel intersects with the first longitudinal side of the main body and each second end of each lateral channel intersects with the second longitudinal side of the main body.
13. The spine board of claim 12, further comprising a plurality of lateral cartridges each containing a strap configured to secure a patient to the top surface of the spine board and each lateral cartridge being removably inserted and locked into one of the plurality of lateral channels, wherein the lateral cartridges each have a leading end that is located at the first end of the lateral channels and a trailing end that is located at the second ends of the lateral channels.
14. The spine board of claim 13, wherein each lateral cartridge comprises a button that is located on a top of the lateral cartridge and near the trailing end of the lateral cartridge, the button depresses during insertion of the lateral cartridge into the lateral channel and the button releases into an aperture in the main body to lock the lateral cartridge to the main body.
15. The spine board of claim 14, wherein the aperture is located adjacent the first longitudinal end of the spine board, extends from the top surface of the main body and intersects with the lateral channel.
16. The spine board of claim 13, further comprising a pair of through holes centrally located on the spine board, extending from the top surface of the main body and intersecting with the lateral channel that is located closest to the opening in the main body for the cervical collar.
17. The spine board of claim 16, wherein the lateral cartridge inserted into the lateral channel that intersects with the pair of through holes comprises a shoulder strap having ends that exit through the pair of through holes to secure shoulders of the patient.
18. A method of securing a cervical collar to a spine board, the method comprising:
- inserting a collar stabilization key having a leading end and a trailing end into a longitudinal channel located within a main body of the spine board, the longitudinal channel having a first end that intersects with a first end of the main body and a second end;
- mating the leading end of the collar stabilization key with a post coupled to a cervical collar; and
- locking the collar stabilization key in the longitudinal channel and to the main body to secure the cervical collar to the main body of the spine board.
19. The method of claim 18, wherein the locking the collar stabilization key further comprises depressing a button that is located on a top of the collar stabilization key and near the trailing end of the collar stabilization key during insertion of the collar stabilization key into the longitudinal channel and releasing the button into an opening in the main body.
20. The mechanism of claim 18, placing the post that is coupled to the cervical collar through an opening that extends at least from a top surface of the spine board and intersects with the longitudinal channel so as to allow the collar stabilization key to mate with the cervical collar.
Type: Application
Filed: Sep 18, 2017
Publication Date: Jan 4, 2018
Inventors: John Piccolo-Wignall (Fairfield, CA), Douglas C. Fritz (Napa, CA), James R. Osborn (Richmond, CA)
Application Number: 15/707,435