Abstract:
A robot-assisted hand-eye coordination training system based on a smooth pursuit eye movement and a guidance force field includes a virtual interactive scene module, a smooth pursuit eye movement detection module, a robot-assisted interception module and an impact force rendering module. The virtual interactive scene module can generate a virtual interactive scene having a virtual moving object and a virtual handle agent. The smooth pursuit eye movement detection module collects an eye movement signal of a user when the user performs pursuit eye movements on the virtual moving object to detect a smooth pursuit eye movement event. The robot-assisted interception module estimates a movement direction of the virtual moving object, generates an interception and guidance force field, and therefore generates assisting force to assist the user in interception. The impact force rendering module generates impact force according to an impact force computation model after collision is detected.
Abstract:
A mobile-exercise trailer includes a platform having at least one exercise equipment arranged thereon. Two sidewalls each have a first end joined to the platform, and at least one of the two sidewalls has a window. A first door is arranged to cover the window in at least one sidewall. A roof is attached to a second end of each of the two sidewalls, and a first power rack is retractably extendable from one of the two side walls. Attachment strips may be arranged on one of the two sidewalls. At least one of dip bars, wall ball targets, a punching bag, and a virtual weight pulley machine can be connected to the attachment strips. Video monitors are arranged on at least one of the two sidewalls. Two wheels are axially arranged below a portion of the two sidewalls, and a manual and/or remote controlled trailer dolly extends from a front of the mobile-exercise trailer.
Abstract:
A device for controlling physical training, which comprises: a dynamometric element for the evaluation, diagnosis and development or stimulation of different manifestations of force; a workstation that can be connected to the dynamometric element, which is configured as a multifunctional modular structure suitable for location on floors and walls; and a plurality of sensors; in which all these elements are connected to a processor element.
Abstract:
A treadmill may include a deck, a first pulley incorporated into the deck, a second pulley incorporated into the deck, a tread belt surrounding the first pulley and the second pulley, a motor in mechanical communication with at least one of the first pulley and the second pulley to move the tread belt in a first direction, and a runaway mitigation mechanism in at least indirect mechanical communication with the motor. The runaway mitigation mechanism at least mitigates a motor runaway condition.
Abstract:
An exercise machine may include a deck, a lift motor connected to the deck, and a cooling mechanism that cools the lift motor when the cooling mechanism is activated.
Abstract:
Stationary exercise equipment for physical training, more particularly an exercise bike, comprising a frame with a movement unit which either is to be moved by the exerciser or is itself driven and interacts with the exerciser, one or more sensors, assigned to the movement unit and/or the exerciser, for capturing measured values, and a computer apparatus for establishing one or more items of measurement-value-related information, which are output on a frame-side display apparatus, letterized in that provision is made for a first display apparatus, which is directed at the exerciser for displaying one or more items of information, and in that provision is made for a second display apparatus, which is directed at the opposite side for outputting at least one item of information.
Abstract:
A method for controlling an exercise apparatus via a control interface of an exercise apparatus, including steps of controlling a touch screen to display an information field, and then monitoring the touch screen to detect whether a touch has occurred on the surface of the touch screen and whether the touch is located in an input zone which has a plurality of sensing areas in the information field. A user can use specific actions to operate the exercise apparatus from one condition of using a first speed value to another condition of using a second speed value.
Abstract:
A resistance system, which can be suitable for incorporation in exercise equipment, is a “hybrid” resistance assembly having at least a first and a second resistance unit. The first resistance unit can be of a first type and the second resistance unit can be of a second type. The first resistance unit can be an inertial resistance unit, which incorporates an inertial load that creates resistance influenced by the inertia of a movable mass, such as a rotatable flywheel. The second resistance unit can be a static or non-inertial resistance unit, such as a displacement resistance unit, which incorporates a load that creates resistance influenced by displacement (e.g., linear or rotational displacement) of an input to the displacement resistance unit.
Abstract:
A stationary exercise device having variable footpaths is disclosed. The exercise device includes a frame, a pair of supporting members that have a first end to rotate about an axis and a second end to move along a reciprocating path, a pair of pedals joined to the supporting members, and a guider assembly for adjusting an incline angle of the reciprocating path.
Abstract:
Systems and methods for target training including synchronized music for providing training of a user, and the system includes an arena. The arena includes a plurality of towers, the towers located within the arena, the plurality of towers each having a plurality of lighted targets. The system includes a computing system, interconnected with the plurality of towers, the computing system configured to turn on and off the lighted targets, wherein the lighted targets are configured to be actuated by the touch of a user as well as the computing system.