A61F2002/5079

Lower limb prosthesis

A prosthetic ankle has an ankle joint body (10A) constituting a shin component and a foot component (12). The ankle joint body (10A) is pivotally connected to the foot component (12) by a first pivotal connection (14) defining a medial-lateral ankle joint flexion axis. The ankle joint body (10A) also forms the cylinder of an ankle joint piston and cylinder assembly with a superior-inferior central axis, the cylinder housing a piston (16) with upper and lower piston rods (16A, 16B). The lower piston rod (16B) is pivotally connected to the foot component (12) at a second pivotal connection (18). As the ankle joint body (10A) pivots about the ankle joint flexion axis, the piston (16) moves substantially linearly in the cylinder formed by the ankle joint body. The cylinder is divided into upper and lower chambers (20A, 20B). These chambers are linked by an hydraulic circuit (22) incorporating passages (22A, 22B) in the ankle joint body (10A), and an energy conversion device in the form of a slave piston and cylinder assembly (24) having a piston (24P) and piston rods (24R) which project beyond the cylinder (24C) of the assembly (24).

Frictionless vertical suspension mechanism for prosthetic feet

A vertical suspension system for a prosthetic foot includes a first member operatively coupleable to an amputee's residual leg. The suspension system can also include a second member coupleable to a prosthetic foot. One or more upper leaf springs and one or more lower leaf springs extend between and are attached to the first and second members such that at least one of the ends of each leaf spring is rotationally fixed to the first or second members, where the upper an lower leaf springs are spaced apart from each other.

INJECTION MOLDED PROSTHETIC LIMB SYSTEM AND RELATED METHODS
20180098862 · 2018-04-12 ·

Injection molded prosthetic limb systems and related methods are disclosed. Example prosthetic hands include a plurality of segments, wherein each segment is comprised of an injection molded plastic.

BIOMIMETIC AND VARIABLE STIFFNESS ANKLE SYSTEM AND RELATED METHODS
20180092761 · 2018-04-05 · ·

A cam system for an assistive device and related methods are disclosed. The cam system may comprise a cam profile and a cam follower. The cam profile has a curved outer edge comprising a concave portion. The cam follower is positioned within the concave portion when the assistive device is in an equilibrium position. The assistive device may further comprise a spring that deflects in response to a force applied by the cam system. The assistive device may have a sliding element to adjust the stiffness of the spring in deflection. The assistive device may take the form of a prosthesis or an orthosis.

PROSTHETIC DEVICE
20180055658 · 2018-03-01 ·

A lower limb prosthetic device (10) adapted to be connected to an attachment section such as a sleeve, configured to attach to the limb, or a socket to receive the limb, of an amputee, wherein the prosthetic device (10) comprises (a) a leaf spring member (12), said upper leaf spring member (12) having a proximal, upper, end (14), which proximal end (14) can be fixedly and/or adjustably attached to the attachment section, the leaf spring (12) member further comprising a distal, lower, end (16), which distal end (16) can be fixedly and/or adjustably attached to a foot member (30).

Limb prosthesis system and method
09895239 · 2018-02-20 ·

A prosthesis system can have an advantageous use over conventional prostheses in certain activities, including, but not limited to certain sports activities: The system includes, elastic member(s) that can store and release energy. The storing and releasing of energy in the elastic members happens during the movements made by the user and with the application of the user's own body weight while performing an activity. Implementations can also include a variety of routing configurations for the elastic member(s), as well as a variety of mounting points to integrate the elastic member(s) into the system, and/or a variety of adjustable anti-hyperextension members, and/or a variety of interchangeable shoes used for applicable activities.

AUTOMATED HAND

The invention relates to an automated hand, such as a prosthetic hand. In one form, the automated hand may be fluid compatible. In one form, the automated hand may comprise features to reduce the risk of harm to motors and/or other sensitive components of the hand when subject to an impact. In one form, the hand may comprise a wrist joint configured to allow the hand to curl and flex and/or to rotate. In one form, one or more digits of the hand may be individually controlled. In one form the hand may include a thumb rotation locking mechanism. In one form the hand may be provided with removable grip plates. In one form, the hand may be configured for use as a training hand.

ACTUATOR AND PROSTHESIS
20240423815 · 2024-12-26 · ·

The present disclosure relates to an actuator and a prosthesis that can propose an actuator and a prosthesis that can downsize a device.

An actuator includes: a leaf spring that includes a bent portion bent in a U shape and a first extending portion extending from the bent portion, a first one end portion that is an end portion of the first extending portion on a side of the bent portion being cantilevered, the first extending portion being bendable and deformable in a plate thickness direction according to torque by transmitting the torque; and a first support member that supports a part of the first extending portion on a bending direction side in a case where torque transmitted in a first direction by the first extending portion is larger than a predetermined value. The present technology can be applied to, for example, a prosthesis.

AUTOMATED HAND

The invention relates to an automated hand, such as a prosthetic hand. In one form, the automated hand may be fluid compatible. In one form, the automated hand may comprise features to reduce the risk of harm to motors and/or other sensitive components of the hand when subject to an impact. In one form, the hand may comprise a wrist joint configured to allow the hand to curl and flex and/or to rotate. In one form, one or more digits of the hand may be individually controlled. In one form the hand may include a thumb rotation locking mechanism. In one form the hand may be provided with removable grip plates. In one form, the hand may be configured for use as a training hand.

Prosthetic foot/ankle system with automatic alignment

Technology is described to provide a foot and ankle prosthesis for individuals with lower limb loss. This technology is able to store and release energy and individuals or patients who are using the foot/ankle prosthesis may be able to expend less energy when walking. The system includes a hydraulic damper attached to dynamic energy storing spring elements. The axis of rotation of the system can be near to that of an intact human ankle, providing biomimetic function. The system can utilize spring elements based on the vertical displacement of the center of pressure of an intact normal foot. A hydraulic system can provide user adjustable heel height and adaptation to inclines. The dorsiflexion and plantar flexion resistances can be independently adjusted manually or electrically. In addition, the system can be automatically locked in dorsiflexion when loaded and unlock when unloaded.