Abstract:
A system for predicting athletic ability is disclosed. The system includes at least one device for measuring at least a first athletic parameter and a second athletic parameter, and a computer for calculating a performance score based upon the first athletic parameter and the second athletic parameter. The performance score is predictive of athletic ability. Methods of predicting athletic ability based upon a plurality of athletic parameters are also disclosed.
Abstract:
An orthotic is disclosed. The orthotic may include a cushioning layer configured to extend from at least the metatarsal region to the proximal heel region, the cushioning layer having a heel region with a protruding heel piece integrally molded as part of the cushioning layer. The orthotic may also include an outer shell layer fixedly coupled to the cushioning layer, the outer shell layer extending longitudinally from at least the medial cuneiform-first metatarsal joint region to the calcaneus bone region of the user, the outer shell layer configured to receive the protruding heel piece.
Abstract:
A system includes at least three sensors, an electrode array, a muscle stimulator, and a microprocessor. The sensors are configured to be arranged substantially in a common plane and associated with a foot of a body. Additionally, each of the sensors are configured to produce a signal associated with an orientation of the foot. The electrode array is coupled to a lower limb of the body and configured to stimulate at least one muscle of the lower limb. The muscle stimulator is coupled to the electrode array and configured to output a muscle stimulation signal to the electrode array. The microprocessor is coupled to the sensors and configured to calculate an orientation of the foot based on the signals produced by the sensors. Additionally, the microprocessor is configured to control the muscle stimulation output via the muscle stimulator based on the calculated orientation of the foot.
Abstract:
Disclosed are methods and systems for design of a foot orthotic, and a foot orthotic device designed in accord therewith. More specifically described is an individualized foot orthotic device to correct and/or restore the ideal alignment and/or positioning of foot structures. In the method, sequential pressure is applied to regions on a plantar foot surface, and positional information is obtained about each region. Based on the positional information, an orthotic profile is determined, for design of one or more custom, individualized foot orthotic devices for a subject.
Abstract:
The present invention is directed to a system for providing information to an athlete concerning the efficiency with which the athlete is using energy in moving relative to the ground or some other surface. In one embodiment, the system includes a plurality of pressure sensors that are associated with a shoe and generate pressure related data. The system further includes a processing system that processes the pressure data produced by the sensors to determine energy efficiency related information and make this information available to the wearer of the shoe so that the wearer can, if needed or desired, takes steps to improve their energy efficiency.
Abstract:
The visual and/or visualization skills of a subject may be tested and/or trained using systems and methods in accordance with the present invention. Visual stimuli may be presented to a test subject. Measurements relating to the performance of the subject, such as stability information, eye movement data, physiological information, or other information, may be made both with and without visual stimuli being provided to a subject. Similar measurements may be made while the subject visualizes the visual stimuli, and the collected data may be compared to evaluate the subject's ability to visualize visual stimuli. Secondary stimuli may also be provided to subject as part of this process, or mental activities may be required by subject as well.
Abstract:
A method includes, but is not limited to: obtaining subject advisory information regarding one or more subjects of two or more postural influencers based at least in part upon postural aspects associated with the one or more subjects and spatial aspects associated with the two or more postural influencers, and outputting output information based at least in part upon one or more elements of the subject advisory information. In addition to the foregoing, other related method/system aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A method includes, but is not limited to: one or more obtaining information modules configured for obtaining postural influencer status information including information regarding one or more spatial aspects of one or more first postural influencers of one or more subjects with respect to a second postural influencer of the one or more subjects, and one or more determining advisory modules configured for determining subject advisory information regarding the one or more subjects based at least in part upon the postural influencer status information. In addition to the foregoing, other related method/system aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A medical pressure measuring device placed upon a patient's foot for accurately measuring pounds pressure as the patient stands and ambulates includes a flexible wrap having hook and loop fastening connections, a flat load cell sensor on the wrap bottom interconnected to a readily and easily viewable digital display for showing a digital readout of pounds pressure and power for the digital display being provided by a flat lithium nickel size battery and the wrap adaptable for fitting onto adult-size or child-size feet.
Abstract:
The invention relates to a pressure sensor which can be incorporated into textile products. The pressure sensor includes a multilayer thread having a pressure sensitive layer exhibiting a pressure-dependent electrical resistance, and a conductive layer in contact with the pressure sensitive layer. Further, the sensor includes conductive threads in contact with the multilayer thread.