AUTOMATIC CHEST COMPRESSION DEVICE TORSO SUPPORT PLATFORM
20220296464 · 2022-09-22
Inventors
Cpc classification
A61H1/00
HUMAN NECESSITIES
A61H2011/005
HUMAN NECESSITIES
A61H31/00
HUMAN NECESSITIES
A61H31/008
HUMAN NECESSITIES
International classification
Abstract
A rigid back member of an automatic mechanical chest compression device is secured to a torso support platform. The torso support platform includes a main support strap immediately below where the rigid back member is secured to the torso support platform, and an upper support strap above where the rigid back member is secured to the torso support platform. The torso support platform tapers towards the top at approximately where a patient's shoulders are located when properly secured to the torso support platform. Additional straps may also be utilized, for example, shoulder straps extend over the shoulders of the patient and are secured to the torso support platform at a point below the patient's armpits, or straps that extend from the tapered section and secure to the automatic mechanical chest compression device.
Claims
1. A torso support platform for use with an automatic chest compression device comprising a main body and a head support section, where the main body comprises a lower strap and an upper strap, where the main body further comprises a band, where the band has a first end permanently attached to the main body, and where the band has a second end that is releasably attached to the main body.
2. The torso support platform of claim 1, wherein the main body further comprises a recessed section that accommodates a rigid back support of the automatic mechanical chest compression device.
3. The torso support platform of claim 1, further comprising a tapered section between the main body and the head support section.
4. The torso support platform of claim 1, wherein the second end of the band is releasably attached to the main body by a hook and loop fastener.
5. The torso support platform of claim 1, further comprising two handles, one each on two opposing sides of the main body.
6. The torso support platform of claim 1, further comprising three handles attached to the head support section, one each attached on two opposing sides of the head support section, and one attached to a top side of the head support section.
7. The torso support platform of claim 1, wherein the head support section further comprises two head flaps, one each on two opposing sides of the head support section.
8. The torso support platform of claim 7, wherein each head flap comprises a plurality of longitudinal sections.
9. The torso support platform of claim 1, wherein the lower strap is wider than the upper strap.
10. The torso support platform of claim 1, wherein the width of the lower strap is different than the width of the upper strap.
11. A method of securing an automatic chest compression device to a patient comprising the steps of: securing a rigid back support of the automatic chest compression device to a torso support platform, where the torso support platform comprises a main body and a head support section, where the main body comprises a lower strap and an upper strap, and where the main body further comprises a recessed section that accommodates the shape of the rigid back support of the automatic chest compression device; securing a patient to the torso support platform by securing the lower strap and upper strap of the main body around the patient; and attaching a frame of the automatic chest compression device to the rigid back support of the automatic chest compression device.
12. The method of claim 11, further comprising the step of operating the automatic chest compression device when the patient is at an angle of between 20 and 35 degrees from horizontal.
13. The method of claim 11, wherein the torso support platform further comprises two head flaps, where one of the two head flaps is secured to a first side of the head support section, and where the other of the two head flaps is secured to a second side of the head support section.
14. The method of claim 13, further comprising the step of conforming the two head flaps to the patient's head.
15. The method of claim 11, wherein the torso support platform comprises five handles, one extending from a left side of a lower portion of the main body, one extending from a right side of the lower portion of the main body, one extending from a left side of the head support section, one extending from a right side of the head support section, and one extending from a top side of the head support section.
16. The method of claim 15, further comprising the step of placing the torso support platform beneath the patient using one or more of the handles.
17. A torso support platform for use with an automatic chest compression device comprising a main body and a head support section, where the main body comprises a lower strap and an upper strap, where the width of the lower strap is different than the width of the upper strap, where the main body further comprises a band, where the band has a first end permanently secured to the main body, and where the band has a second end that is releasably secured to the main body.
18. The torso support platform of claim 17, wherein the main body further comprises a recessed section that conforms to the shape of a rigid back support of the automatic mechanical chest compression device.
19. The torso support platform of claim 17, wherein the torso support platform comprises five handles, one extending from a left side of a lower portion of the main body, one extending from a right side of the lower portion of the main body, one extending from a left side of the head support section, one extending from a right side of the head support section, and one extending from a top side of the head support section.
20. The torso support platform of claim 17, wherein the torso support platform further comprises two head flaps, where one of the two head flaps is secured to a first side of the head support section, and where the other of the two head flaps is secured to a second side of the head support section, where each head flap comprises a plurality of longitudinal sections.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0021] The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments of the invention and together with the description, serve to explain the principles of this invention.
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DETAILED DESCRIPTION OF THE INVENTION
[0030] Many aspects of the invention can be better understood with the references made to the drawings below. The components in the drawings are not necessarily drawn to scale. Instead, emphasis is placed upon clearly illustrating the components of the present invention. Moreover, like reference numerals designate corresponding parts through the several views in the drawings.
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[0039] In certain embodiments, head flaps are two sewn longitudinal pockets that each have a stiffening element inside to provide a stable securement area for the head strap. Two segment flap design allows for conformance to a patients head and allows the head flaps to be folded over onto the head section for flatter, more compact storage. Head stabilization is beneficial when the patient is intubated or has any type of adjunct airway in place. This minimizes head movement which decreases the potential for the endotracheal tube or alternative airway device to be dislodged or move during transfer of the patient to the medical facility.
[0040] In other embodiments, the head flaps on either side of the head support section are vacuum splints. In such embodiments, movement of the patient's head is restricted by forming the head flap vacuum splint sections around the sides of the patient's head, and then evacuating the air within the head flap vacuum splint sections, thus increasing their rigidity and conforming to the patient's head.
[0041] In some embodiments, the torso support platform is made of plywood plates surrounded by canvas, vinyl, or other appropriate fabric or fabric-like material with webbing straps. Padding, such as foam, may be incorporated into the torso support platform for comfort and support. For example, the rigid back plate assembly may be comprised of ½ inch plywood with ½ inch rigid foam on top. The correct sized recess section in the ½ inch foam pad which is on top of the plywood back plate is an important feature along with the waist strap. Alternatively, the torso support platform may be made from molded plastic with webbing straps and with or without foam padding. Other embodiments of the current disclosure have a torso support platform made of composite materials.
[0042] Embodiments of the torso support platform and automatic chest compression device are described for use at an angle of 20-35 degrees; however, the same components may nonetheless work at any angle from negative 20 to positive 90 degrees, and potentially beyond this range.
[0043] Certain embodiments provide for a head support section that is narrower than what is shown in the figures discussed above.
[0044] Shoulder straps have been described herein that go from the back of the back support plate by the patient's shoulders to the sides or back of the torso support platform at a point below the patient's armpits. Alternatively, the torso support platform may not require such straps to hold the patient's shoulder girdle in place on the torso support platform.
[0045] Support straps have been described herein that go from the back of the back support plate by the patient's shoulders to the automatic chest compression device. Alternatively, the torso support platform may not require such straps to hold the automatic chest compression device in place patient's shoulder girdle in place on the back support plate.
[0046] The handles secured to the torso support platform are made sufficiently long to allow for a user wearing fire gloves to easily grasp the handles. There is a handle at the top edge of the head support section to allow for better control and easy placement of the torso support platform under the patient, particularly when an unconscious patient is lifted or pulled up by his or her arms to allow the torso support platform to be slid under the patient from the head end of the patient.
[0047] Other embodiments of the current disclosure include a torso support platform with four handles. One handle is located on each side of the lower portion of the main body, and one handle is located on each side of the head support section. For example, such a torso support platform is similar to that as shown in
[0048] The straps may include a dual adjusting buckle so that straps are adjustable from both sides of each respective buckle. Retainer straps may be utilized to hold the strap material (that is, the lower strap and second strap) in place when the torso support platform is stored. Strap webbing may be accordion folded with the retainer straps, which can be secured together by hook and loop fasteners, for fast deployment at the scene of the cardiac arrest patient. In certain embodiments, the lower strap (the strap that is closer to the patient's waist) is two (2) inches in width, while the second strap (the strap that is closer to the patient's shoulders) is one and one-half (1.5) inches in width. This design reduces, if not eliminates, the possibility that the straps get mixed up or attached to the wrong strap. Moreover, colored webbing with buckles of a different color may also be used for identification purposes and/or to reduce or eliminate incorrect fastening of one strap to another.
[0049] The lower and second (upper) straps may be removable with the use of a tri-glide on each side of the torso support platform. Alternatively, the straps may be permanently affixed (that is, not removable) so that there is no chance of the torso support platform being stored away with a strap missing or undone on one side. Use of webbing that is a distinctly different color from the buckle and a strap color that is highly visible against a human's skin color no matter what their skin color reduces the potential for hospital staff to inadvertently cut the straps off the device.
[0050] Embodiments of the current disclosure also provide for a torso support platform that includes a strut support. The strut support may include one or more fixed length or extendable members that are affixed to the main body of the torso support platform by a hinge. The rotatably secured strut members lift part of the torso support platform away from the underlying surface. This can be useful for positioning the patient at an incline, particularly for extended periods of time.
[0051] Further embodiments of the current disclosure also include a molded torso support platform, for example, a blow or rotational molded rigid plastic torso support platform. In such an embodiment, the handles described herein may be molded directly into the main body and/or head support section. For example, the torso support platform maybe substantially rectangular, with certain openings molded into the lower portion of the main body for the lower handles, and then openings to the left and right sides of the head support section, and above the head support section, to form the three upper handles. The main body of the torso support platform may also have a recessed portion that conforms to the size and shape of the rigid back member of the automatic chest compression device. The recessed portion can be molded to create a friction fit with the rigid back member to provide a quick and efficient means, and potentially an alternative means, for securing the rigid back member to the torso support platform. Likewise, the recessed portion may include projections on its upper surface to create a snap fit for the rigid back member.
[0052] While various embodiments of the present invention have been described above, it should be understood that they have been presented by way of example only, and not of limitation. Likewise, the various diagrams may depict an example architectural or other configuration for the invention, which is provided to aid in understanding the features and functionality that can be included in the invention. The invention is not restricted to the illustrated example architectures or configurations, but the desired features can be implemented using a variety of alternative architectures and configurations.
[0053] Indeed, it will be apparent to one of skill in the art how alternative functional configurations can be implemented to implement the desired features of the present invention. Additionally, with regard to flow diagrams, operational descriptions and method claims, the order in which the steps are presented herein shall not mandate that various embodiments be implemented to perform the recited functionality in the same order unless the context dictates otherwise.
[0054] Although the invention is described above in terms of various exemplary embodiments and implementations, it should be understood that the various features, aspects and functionality described in one or more of the individual embodiments are not limited in their applicability to the particular embodiment with which they are described, but instead can be applied, alone or in various combinations, to one or more of the other embodiments of the invention, whether or not such embodiments are described and whether or not such features are presented as being a part of a described embodiment. Thus, the breadth and scope of the present invention should not be limited by any of the above-described exemplary embodiments.