Abstract:
A receiver apparatus is configured to receive a first and second signal from one or more sensors, the first signal comprising a measure of one or more exercise parameters of the user at a first time period of an exercise session, and the second signal comprising a measure of the one or more exercise parameters at a second time period. A processor is configured to store the first and second signals in a memory, generate a fatigue signal based on a comparison of the measured one or more exercise parameters of the first signal to the respective measured one or more exercise parameters of the second signal, generate an exercise efficiency signal based on a comparison of the measured one or more exercise parameters of the second signal to an a priori exercise parameter threshold, and cause the exercise efficiency signal and the fatigue signal to be simultaneously displayed.
Abstract:
A receiver apparatus is configured to receive a first and second signal from one or more sensors, the first signal comprising a measure of one or more exercise parameters of the user at a first time period of an exercise session, and the second signal comprising a measure of the one or more exercise parameters at a second time period. A processor is configured to store the first and second signals in a memory, generate a fatigue signal based on a comparison of the measured one or more exercise parameters of the first signal to the respective measured one or more exercise parameters of the second signal, generate an exercise efficiency signal based on a comparison of the measured one or more exercise parameters of the second signal to an a priori exercise parameter threshold, and cause the exercise efficiency signal and the fatigue signal to be simultaneously displayed.
Abstract:
A wearable device includes: a wake up component that generates a first wake-up signal based on a first detected exercise activity location and generates a second wake-up signal based on a second detected exercise activity location; a receiver that receives a first exercise signal from a first transmitter based on receipt of the first wake-up signal and receives a second exercise signal from a second transmitter based on receipt of the second wake-up signal, the first exercise signal being associated with a first exercise session of the user, the second exercise signal being associated with a second exercise session of the user; a memory that stores first exercise data based on first exercise signal and stores second exercise data based on the second exercise signal; and a transmitter that transmits an exercise download signal based on the first exercise data and the second exercise data
Abstract:
A method of monitoring biometric data for an individual includes detecting that the individual has moved within a predetermined range of a fixed display device. The method further includes wirelessly receiving a sensed biometric parameter of the individual at a receiver associated with the fixed display device. After determining that the individual has moved within the predetermined range and that the sensed biometric parameter is an authorized parameter for display based on a user profile of the individual, the sensed biometric parameter is displayed on the fixed display device. The method further includes detecting that the individual has moved outside of the predetermined range, and removing the sensed biometric parameter from the fixed display device.
Abstract:
A shoe is provided for use by a user and for use with a communication device that transmits a physiological signal based on a detected physiological parameter of the user. The shoe includes a sole, a force actuating mechanism, a receiver and a controller. The sole has a top surface for supporting the foot of the user when being worn by the user. The force actuating mechanism provides a force to the top surface of the sole and is disposed at the sole so as to provide the force to a plantar venous plexus of the foot. The receiver receives the physiological parameter signal. The controller generates a control signal to control the force actuating mechanism. The controller further modifies the control signal based on the received physiological parameter signal.
Abstract:
A shoe pod includes a positioning component and an altimeter. The positioning component determines geodetic locations of the shoe, whereas the altimeter determines elevations of the shoe. A golf club pod is disposed at the golf club and includes a golf club parameter detector operable to be detachably fastened to the golf club, to detect a golf club head striking surface position and to transmit the detected club parameter signal based on the detected golf club parameter.
Abstract:
A garment comprising a sensor, a body portion, a receptacle provided on the body portion, and an electronics module positioned in the receptacle. The receptacle comprises a receptacle housing, a sensor lead, and a receptacle contact. The receptacle housing forms a socket including a back wall and at least one sidewall. The sensor lead abuts the receptacle contact and is retained within a channel extending through the at least one sidewall. The receptacle contact includes a contact surface exposed to the socket with the contact surface oriented substantially perpendicular to the back wall of the socket. The electronics module is releasably positioned within the socket and includes at least one module contact. The at least one module contact abuts the receptacle contact and is electrically connected to the sensor lead when the electronics module is positioned within the socket.
Abstract:
A method of monitoring biometric data for an individual includes detecting that the individual has moved within a predetermined range of a fixed display device. The method further includes wirelessly receiving a sensed biometric parameter of the individual at a receiver associated with the fixed display device. After determining that the individual has moved within the predetermined range and that the sensed biometric parameter is an authorized parameter for display based on a user profile of the individual, the sensed biometric parameter is displayed on the fixed display device. The method further includes detecting that the individual has moved outside of the predetermined range, and removing the sensed biometric parameter from the fixed display device.
Abstract:
A device for use with a wireless transceiver that is operable to transmit a data file. The device includes a communication component, a processing component, a parameter detecting component and a controlling component. The communication component wirelessly communicates with the transceiver. The processing component operates in a first manner. The parameter detecting component detects a first parameter and generates a parameter signal based on the detected first parameter. The controlling component generates a wake-up signal based on the parameter signal. The communication component can further receive the data file based on the wake-up signal. The processing component can further operate in a second manner based on the data file.
Abstract:
A device for use with a wireless transceiver that is operable to transmit a data file. The device includes a communication component, a processing component, a parameter detecting component and a controlling component. The communication component wirelessly communicates with the transceiver. The processing component operates in a first manner. The parameter detecting component detects a first parameter and generates a parameter signal based on the detected first parameter. The controlling component generates a wake-up signal based on the parameter signal. The communication component can further receive the data file based on the wake-up signal. The processing component can further operate in a second manner based on the data file.