Orthopedic hand linear and rotation
10525303 ยท 2020-01-07
Inventors
Cpc classification
A63B71/0619
HUMAN NECESSITIES
A61H99/00
HUMAN NECESSITIES
International classification
A63B21/00
HUMAN NECESSITIES
A61H99/00
HUMAN NECESSITIES
Abstract
A pair of therapeutic devices intended for use by persons in rehabilitative, physical or occupational therapy following hand and wrist surgeries or injuries with both of these devices being customized to better fit the needs of the recovering individual, and both provide superior control, monitoring, and feedback than do conventional therapy exercises.
Claims
1. An orthopedic hand rotational device comprising: a base member; wherein said base member is formed as a rectangular flat plate adapted to be clamped to a top surface of a table; a first fixed block member comprising; a center hole having a cylindrical threaded nut member attached therein; and wherein said first fixed block member is attached to a proximal end section of said base member; a second fixed block member comprising; a center hole having a cylindrical threaded nut member attached therein; and wherein said second fixed block member is attached to a distal end section of said base member; a slide block comprising; a center hole having a cylindrical threaded nut member attached therein; and wherein said slide block is adapted to be placed in between said first and second fixed block members and slide upon said base member; an elongated screw member comprising; a tool attachment section on a proximal end thereof; wherein said elongated screw member is threadingly and rotationally placed within said threaded nut members of said first and second fixed block members and said slide block, and adapted to extend beyond an end surface of said first fixed block member such that a tool is configured to be attached to said tool attachment section and be used to rotate said elongated screw member; a first spring member; wherein said first spring member is connected between distal ends of said first fixed block member and said slide block; a second spring member; wherein said second spring member is connected between proximal ends of said first fixed block member and said slide block; and a set of tools; wherein each tool of said set of tools is adapted to fit upon said tool attachment section of said elongated screw member and be used to rotate said elongated screw member; and wherein a user can choose one of said tools from said set of tools, connect it to said tool attachment section of said elongated screw member, rotate said elongated screw member to thereby stretch out said first and second spring members, such that the user can exercise their hand in rotational directions.
2. The orthopedic hand rotational device of claim 1, further comprising a third spring member connected between distal ends of said first fixed block member and said slide block; and a fourth spring member connected between proximal ends of said first fixed block member and said slide block, such that the tension between said first fixed block member and said slide block is increased further.
3. The orthopedic hand rotational device of claim 2, further comprising a fifth spring member connected between distal ends of said first fixed block member and said slide block; and a sixth spring member connected between proximal ends of said first fixed block member and said slide block, such that the tension between said first fixed block member and said slide block is increased further.
4. The orthopedic hand rotational device of claim 1, wherein said set of tools comprises a disc rotating tool, a screw driver tool, and a wrench tool.
5. The orthopedic hand rotational device of claim 4, wherein said disc rotating tool includes a series of holes therethrough sized, shaped, and adapted to allow the user to place their fingers of one hand in chosen holes in different configurations for differing hand rotational exercises, such that the user can either grab the outer circumference of said disc rotating tool and rotate the tool or choose to place their fingers in chosen holes forming a series of finger patterns to thereby exercise specific muscles in differing ways.
6. The orthopedic hand rotational device of claim 1, further comprising at least one clamp member adapted to securely clamp said base member to the top surface of the table.
7. The orthopedic hand rotational device of claim 1, further comprising a first lock nut placed upon a section of said elongated screw member in between said first fixed block member and said tool attachment section, a second lock nut placed upon a distal end section of said elongated screw member and adjacent an outer surface of said second fixed block member; and a third lock nut placed upon a center section of said elongated screw member and adjacent an outer surface of said slide block, such that said elongated screw member is adapted to limit the distance said slide block is configured to travel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The figures which accompany the written portion of this specification illustrate embodiments and method(s) of use for the present invention, Orthopedic Hand Linear and Rotation, constructed and operative according to the teachings of the present invention.
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(9) The various embodiments of the present invention will hereinafter be described in conjunction with the appended drawings.
DETAILED DESCRIPTION
(10) As discussed above, embodiments of the present invention relate to a hand and arm muscle rehabilitation or exercise devices and more particularly to an Orthopedic Hand Linear and Rotation, a pair of therapeutic devices intended for use by persons in rehabilitative, physical or occupational therapy following hand and wrist surgeries or injuries with both of these devices being customized to better fit the needs of the recovering individual, and both provide superior control, monitoring, and feedback than do conventional therapy exercises.
(11) Referring now to the drawings
(12) One of the devices, as illustrated in
(13) Two removable vertical members may be inserted, one into each side rail. One member features a mechanical counter, and the other features a timer. A horizontal bar fixed to the side rails acts as a backstop. The system also permits a fine gradation of resistance according to the strength and position of the springs. (The Push/Pull device will offer seven combinations of the springs, so that as the hand grows stronger, the resistance of the device may be increased.) As opposed to the pushing of a dowel into a mass of clay, the Push/Pull device is controlled.
(14) When activated, each handle must move horizontally and parallel to the side rails of the device, so that the motion required is uniform and more easily monitored for progress over time. Second, the variable-resistance spring system means that a patient's strength may be increased over time against a gradually increasing resistanceagain, giving both patient and therapist clear and measurable, progressive feedback. Also, endurance of effort, as counted by a timer, and increasing over the course of treatmentis added to the therapy.
(15) In particular, the Orthopedic Hand Linear device 110, as illustrated in
(16) The orthopedic hand linear device 110 could further comprise a third spring member 190 connected between distal ends of the main cross bar member and the slide block cross bar member; and a fourth spring member 190 connected between proximal ends of the main cross bar member and the slide block cross bar member, such that the tension between the main cross bar member and the slide block cross bar member is increased further. Furthermore, a fifth spring member 190 can be connected between distal ends of the main cross bar member and the slide block cross bar member; and a sixth spring member 190 can be connected between proximal ends of the main cross bar member and the slide block cross bar member, such that the tension between the main cross bar member and the slide block cross bar member can be increased even further.
(17) The orthopedic hand linear device 110 could further comprise a mechanical counter mechanism 197 connected between one of the two rail members and the slide block and adapted to count the repetitions of the slide block being slid back and forth.
(18) The orthopedic hand linear device 110 could further comprise a timing mechanism 198 connected to one of the two rail members and adapted to be used to measure the length of time a user is sliding the slide block back and forth.
(19) The orthopedic hand linear device 110 could further comprise at least one clamp member 200 adapted to securely clamp said base member to a top surface of a table.
(20) For measuring and exercise monitoring purposes, lines (and/or indicia) may be placed upon this device to measure the stroke length and resistance levels that the user experiences when first handle member 180 is moved forward and backwards while performing push and pull exercises.
(21) The second device, as illustrated in
(22) In particular, as illustrated in
(23) The orthopedic hand rotation device 210 could further comprise a third spring member 290 connected between distal ends of the first fixed block member and the slide block; and a fourth spring member 290 connected between proximal ends of the first fixed block member and the slide block, such that the tension between the first fixed block member and the slide block can be increased further.
(24) The orthopedic hand rotation device 210 could further comprise a fifth spring member 290 connected between distal ends of the first fixed block member and the slide block; and a sixth spring member 290 connected between proximal ends of the first fixed block member and the slide block, such that the tension between the first fixed block member and the slide block can be increased even further.
(25) The orthopedic hand rotation device 210 could further comprise at least one clamp member 200 adapted to securely clamp the base member 220 to a top surface of a table.
(26) The orthopedic hand rotation device 210 could further comprise a first lock nut 280 placed upon a section of the elongated screw member in between the first fixed block member 230 and the tool attachment section 275, a second lock nut 280 placed upon a distal end section 273 of the elongated screw member and adjacent an outer surface of the second fixed block member 232, and a third lock nut 280 placed upon a center section of the elongated screw member and adjacent an outer surface of the slide block 260, such that the elongated screw member 270 is adapted to limit the distance the slide block can travel.
(27) The set of tools could comprise a disc rotating tool 310, a screw driver tool 320, and a wrench tool 330.
(28) As illustrated in
(29) For measuring and exercise monitoring purposes, lines (and/or indicia) may be placed upon this device to measure the resistance levels that the user experiences when the rotating tools are rotated while performing the rotational exercises.
(30) Both the Hand Linear Device and the Hand Rotation Device present themselves as clearly superior to their equivalents now in use by physical and occupational therapists. Both instruments have been engineered to provide variable, progressive resistance. Both have been engineered to provide precise, measurable feedback for the patient and the therapist; and both have the distinct advantage of being usable, by many patients in succession, over the long term. The Orthopedic Hand Linear and Rotation is cost-effective to produce.
(31) The embodiments of the invention described herein are exemplary and numerous modifications, variations and rearrangements can be readily envisioned to achieve substantially equivalent results, all of which are intended to be embraced within the spirit and scope of the invention. Further, the purpose of the foregoing abstract is to enable the U.S. Patent and Trademark Office and the public generally, and especially the scientist, engineers and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection the nature and essence of the technical disclosure of the application.