Orthosis or exoskeleton system with modular elements
Abstract
There is provided an orthosis or exoskeleton system (200) comprising: one or more body mounting modules (102), the or each body mounting module being structured and arranged to, in use, be mounted to one or more parts of a body of a patient, the body mounting modules having different sizes or configurations with respect to each other; and one or more function modules (104), the or each function module being structured and arranged to provide a different sensing, charging or control function; the body mounting modules and the function modules each having an interfacing structure such that any said body mounting module is interchangeably couplable to any said function module.
Claims
exact text as granted — not AI-modified1 . An orthosis or exoskeleton system comprising:
a plurality of body mounting modules and one or more function modules or a plurality of function modules and one or more body mounting modules; the or each body mounting module being structured and arranged to, in use, be mounted to one or more parts of a body of a patient, the body mounting modules having different sizes and/or configurations with respect to each other; and the or each function module being structured and arranged to provide a sensing, energy or control function; the body mounting modules and the function modules each having an interfacing structure such that any said body mounting module is interchangeably couplable to any said function module.
2 . A system according to claim 1 , interfacing structures are configured to provide a quick release or tool-less coupling between a respective body mounting module and function module.
3 . A system according to claim 1 , wherein a said body mounting module is structured and arranged to be mounted to a first and a second body part of a patient, the first and second body part being on either side of a joint.
4 . A system according to claim 3 , wherein the sensing or control function is dependent on an angle between the first and second body part.
5 . A system according to claim 1 , wherein a said body mounting module is further structured and arranged to provide a sensing or control function, and a said function module is structured and arranged to provide a charging function.
6 . A system according to claim 1 , wherein the body mounting modules and the function modules each have a transfer interface such that information or action may be transferred between a said body mounting module and a said function module when coupled.
7 . A system according to claim 6 , wherein the information is selected from one of the following: an angle between different parts of the body mounting module; an orientation of the body mounting module or function module; movement of the body mounting module or function module; muscle activity of a body part of the patient; patient proximity; body temperature; heart rate; respiration rate; blood pressure; blood oxygen level; joint/body forces and/or load; other physiological parameters, and/or
wherein the action is selection from one of the following: resistance or dampening of movement between different parts of the body mounting module; electrical power flow for charging; electrical stimulation of muscles of a body part of the patient; actuation of movement between different parts of the body; heating or cooling of a body part; massage the body of a patient; mechanical perturbation to check joint laxity, muscle or joint stiffness and tone.
8 . (canceled)
9 . A system according to claim 6 , wherein the information or action is transferred over the transfer interface using a mechanism selected from one of the following: mechanical; electrical; optical; magnetic; electromagnetic.
10 . A system according to claim 1 , wherein the body mounting module comprises first and second brace assemblies, the second brace assembly moveably coupled to the first brace assembly.
11 . A system according to claim 10 , wherein the first brace assembly is pivotably coupled to the second brace assembly using a unicentric hinge.
12 . A system according to claim 10 , wherein the first and second brace assemblies each comprise first and second brace interfacing structures respectively forming the interfacing structure of the body mounting module, the function module comprising a complimentary interfacing structure which is arranged to engage with the first and second brace interfacing structures when the function module is coupled to the body mounting module.
13 . A system according to claim 10 , wherein the first and second brace assemblies each comprise first and second pivot portions respectively, the first and second pivot portions being pivotably coupled at a pivot assembly, the pivot assembly being configured to couple to the function module, or
wherein the first and second brace assemblies each comprise first and second pivot portions respectively, the first and second pivot portions being pivotably coupled at a pivot assembly, the pivot assembly being configured to couple to the function module and wherein the pivot assembly is configured to couple to the function modules by rotating the function modules relative to the pivot assembly.
14 . (canceled)
15 . A system according to claim 13 , wherein the module interfacing structure and the first brace interfacing structure comprise a first locking mechanism to lock the orientation of the function modules relative to the first brace assembly.
16 . A system according to claim 11 , wherein the function module comprises a rotation limitation mechanism configured to limit rotation of the first brace assembly relative to the second brace assembly.
17 . A system according to claim 11 , wherein the function module comprises a resistance mechanism configured to provide a predetermined level of resistance to rotation of the first brace assembly relative to the second brace assembly.
18 . A system according to claim 10 , wherein the first brace assembly is pivotably coupled to the second brace assembly using a polycentric hinge.
19 . A system according to claim 10 , wherein the first and second brace assemblies each comprise a pivot point at a distal end and gear teeth at said distal end, the gear teeth of the first and second brace assemblies arranged to engage such that the first and second brace assemblies rotate about their respective pivot points by the same angle but in opposite directions.
20 . A system according to claim 19 , wherein the body mounting module comprises a magnet which is arranged to rotate with the first brace assembly, and the function module comprises a sensor arranged to detect the rotation of the magnet.
21 . A system according to claim 18 , wherein the interfacing structure of the body mounting module comprises a slide-able lock mechanism and the interface of the function module comprises a locking recess which is arranged to engage with the slide-able lock mechanism to couple the body mounting module to the function module.
22 . A system according to claim 20 , wherein the interfacing structure of the body mounting modules comprises a number of locating recesses and the interfacing structure of the function module comprises a number of locating projections which are arranged to engage with the locating recesses to couple the body mounting module to the function moduleJoin the waitlist — get patent alerts
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