A63B2230/062

All-in-one smart console for exercise machine
10821323 · 2020-11-03 ·

A smart console includes a Fitness Machine Smart Console Emulator to form a smart device which includes a control module for controlling an operation of an exercise machine, a command system operatively linked to the control module for receiving exercise related information from the exercise machine and data, and a fitness analysis module operatively linked to the control module for collecting exercise related information of the exercise machine and generating an exercise result based on the exercise related information. Therefore, the smart device simplifies the configuration of the exercise machine to remotely located device to communicate with the exercise machine.

SYSTEMS AND METHODS FOR COORDINATING MUSCULOSKELETAL AND CARDIOVASCULAR OR CEREBROVASCULAR HEMODYNAMICS
20200330849 · 2020-10-22 ·

Described herein are methods for determining a target musculoskeletal activity cycle (MSKC) to cardiac cycle (CC) timing relationship. The method may include detecting a signal responsive to a cyclically-varying arterial blood flow at a location on a head of a user; providing a recurrent prompt at a frequency of the heart pump cycle using the signal, such that the signal correlates with a magnitude of blood flow adjacent to the location, and the recurrent prompt is provided to guide the user to time performance of a component of a rhythmic musculoskeletal activity with the recurrent prompt; and guiding the user to adjust a timing of the component of the rhythmic musculoskeletal activity to substantially maximize a magnitude of the signal. In some embodiments, the method further includes generating the recurrent prompt by amplifying the sound generated by the blood flow in or in proximity to an ear of the user.

Multi-track playback of media content during repetitive motion activities
20200326772 · 2020-10-15 · ·

A system for multi-track playback of media content includes: a media device; a user interface, provided at the media device, which displays a visual array of media options, a playback logic, provided within the media device, which is configured so that, while a selected point or region is determined by the user interface as being moved in response to user input, within the visual array of media options, the system determines media options that are proximate to the selected point or region, and adjusts playback parameters for corresponding media content items, by crossfading or otherwise combining playback to reflect the media options relative distances from the selected point or region; and a tempo logic, provided within the media device, which is configured to provide or receive a selected tempo and provide the one or more media content items associated with the selected tempo.

Media Content Selection Based On Physiological Attributes
20200319847 · 2020-10-08 · ·

A media-playback device includes: a media-output device that plays media content items; a physiological measurement device programmed to measure at least one physiological measurement of a user of the media-output device; and a physiological control engine configured to: identify a current physiological measurement for the user; and cause the media-output device to modify playback of the media content items based upon the current physiological measurement.

GARMENT SYSTEM INCLUDING AT LEAST ONE SENSOR AND AT LEAST ONE ACTUATOR RESPONSIVE TO THE SENSOR AND RELATED METHODS

Embodiments disclosed herein relate to a garment system including at least one sensor and at least one actuator that operates responsive to sensing feedback from the at least one sensor to cause a flexible compression garment to selectively constrict or selectively dilate, thereby compressing or relieving compression against at least one body part of a subject. Such selective constriction or dilation can improve muscle functioning or joint functioning during use of motion-conducive equipment, such as an exercise bike or rowing machine.

Cadence and media content phase alignment
10782929 · 2020-09-22 · ·

Systems, devices, apparatuses, components, methods, and techniques for cadence and media content phase alignment are provided. An example media-playback device includes a content output device that operates to output media content, a cadence-acquiring device, a phase-delay calibration engine, a cadence-based media content selection engine, and a phase-aligned media playback engine. The cadence-acquiring device includes a movement-determining device and a cadence-determination engine configured to determine a cadence based on movement data captured by the movement-determining device. The phase-delay calibration engine configured to determine phase delay values for at least one cadence value. The cadence-based media content selection engine configured to identify a media content item based on the cadence determined by the cadence-acquiring device. The phase-aligned media playback engine configured to align the identified media content item to the repetitive-motion activity and cause the media-output device to output the aligned media content item.

SYSTEMS AND METHODS FOR COORDINATING MUSCULOSKELETAL AND CARDIOVASCULAR HEMODYNAMICS
20200289051 · 2020-09-17 ·

Described herein are systems and methods for favorably coordinating a timing relationship between a musculoskeletal activity cycle and a cardiac cycle of a user. A method may include repetitively detecting a signal that correlates to a blood volume in the user; determining an actual value of the signal that varies with the timing relationship; computing a trend of the actual value of the signal; and adjusting the movement guidance based on the trend of the actual value. A system may include a prompt device configured to provide recurrently a movement guidance to the user for guiding performance of the rhythmic musculoskeletal activity; a sensor configured to provide a signal that correlates to a blood volume in the user; and a processor configured to determine an actual value of the signal that varies with the timing relationship and to adjust the movement guidance based on the trend of the actual value.

77035
20200261762 · 2020-08-20 ·

An exercise apparatus has a repositionable crank with a crank drive. The crank drive is housed in a base unit mounted on a platform. Various exercise machines such as a stationary bike, rowing machine, and elliptical machine are selectively mounted to the base unit and engage the crank drive to provide a variety of exercises.

System, apparatus and method for an intelligent goal

A non-transitory storage medium having stored thereon logic is disclosed. The logic is executable by one or more processors to perform operations including receiving information associated with a selection of a first training drill, responsive to receiving the information associated with the selection of the first training drill and based on the first training drill, causing a first light to be placed in an activated state, wherein the first light is coupled to a first goal apparatus, and responsive to a triggering event, causing the first light to be placed in a deactivated state and causing a second light to be placed in an activated state. The goal apparatus includes posts that form a goal plane, wherein a first sensor pair is coupled to the goal, and wherein the triggering event is a detection of an object passing through the posts and across the goal plane.

CONTROLLING AN EXERCISE MACHINE USING A VIDEO WORKOUT PROGRAM

Controlling an exercise machine using a video workout program. In one aspect of the disclosure, a method may include capturing a video, encoding exercise machine control commands into a subtitle stream of the video to create the video workout program, decoding the subtitle stream of the video to access the exercise machine control commands, periodically determining at least that an actual heart rate zone of a user is not equal to a current programmed heart rate zone and that the actual heart rate of the user is not trending toward the current programmed heart rate zone by at least a threshold heart rate trend rate, and in response adaptively scaling the video workout program by adjusting a current difficulty level upward or downward depending on if the actual heart rate zone is lower or higher than the current programmed heart rate zone, respectively.