Patent classifications
A63B2071/0683
Exercise machine inclination device
An exercise machine inclination device for providing variable exercise intensity on an exercise machine by inclining the exercise machine. The exercise machine inclination device generally includes a base adapted for being positioned upon a floor, a support structure adapted for supporting the exercise machine, a hinge pivotally connecting the base and the support structure and an actuator connected between the base and the support structure, wherein the actuator adjusts an angle of the support structure.
PORTABLE SPORTS RACK AND DELIVERY SYSTEM
A portable sports rack and delivery system including an elongate rack enclosure, and a method of use thereof are provided. The elongate rack enclosure defines a storage space for accommodating balls stacked one above the other. A delivery opening, disposed at a first end of the elongate rack enclosure, receives, accommodates, and delivers an uppermost ball from the storage space. A base member, attached to a second end of the elongate rack enclosure, supports the stacked balls within the storage space. A release component including a compression spring, disposed on an upper surface of the base member, elastically compresses and expands to elevate and release the uppermost ball from the storage space for delivery through the delivery opening. A training component, operably and adjustably coupled to a rear section of the elongate rack enclosure, extends above the first end of the elongate rack enclosure to assist in training a sportsperson.
Method and system for using artificial intelligence to independently adjust resistance of pedals based on leg strength
A method is disclosed for using an artificial intelligence engine to modify resistance of pedals of an exercise device. The method includes generating, by the artificial intelligence engine, a machine learning model trained to receive measurements as input, and outputting, based on the measurements, a control instruction that causes the exercise device to modify, independently from each other, the resistance of the pedals. While a user performs an exercise using the exercise device, the method includes receiving the measurements from sensors associated with the pedals. The method includes determining, based on the measurements, a quantifiable or qualitative modification to the resistance provided by a pedal of the pedals. The resistance provided by another pedal of the pedals is not modified. The method includes transmitting the control instruction to the exercise device to cause the resistance provided by the pedal to be modified.
METHOD AND SYSTEM FOR ENABLING PATIENT PSEUDONYMIZATION OR ANONYMIZATION IN A TELEMEDICINE SESSION SUBJECT TO THE CONSENT OF A THIRD PARTY
A method for protecting healthcare information associated with an individual may include receiving at least a first electronic medical record associated with the individual and generating a patient identifier associated with the individual. The method may also include generating, using the patient identifier and at least a portion of the first electronic medical record, at least one protected electronic medical record corresponding to the first electronic medical record. The patient identifier may be associated with at least one characteristic of the individual. The method may also include providing, at least at a healthcare provider interface, at least one of the patient identifier and at least a portion of the at least one protected electronic medical record.
SYSTEM FOR CONVERTING PEDAL ASSIST BIKE INTO A SMART TRAINER AND A BATTERY CHARGER
This present invention relates to an E-bike built for daily commuting with a special software allowing the E-bike to be converted into a high-end smart trainer using the regenerative brake torque as a resistance in order to work out and recharge the battery. The software/application allows to control the resistance in real time and read all the data in order to create a custom workout routine while charging the battery. The E-bike can be connected to third party virtual cycling software through the ANT+ protocol to maximize the potential.
COMPUTERIZED SYSTEMS AND METHODS FOR MILITARY OPERATIONS WHERE SENSITIVE INFORMATION IS SECURELY TRANSMITTED TO ASSIGNED USERS BASED ON AI/ML DETERMINATIONS OF USER CAPABILITIES
Disclosed are systems and methods for a computerized framework that leverages artificial intelligence (AI)/machine learning (ML) mechanisms to assign selected individuals to military operations. The disclosed framework comparatively analyzes an ops sheet of a military operation and profile data related to a user(s), and automatically determines user(s) who are optimal for the operation. The determined user or users possess the physical and/or intellectual capabilities to accurately and efficiently, with respect to real-world and electronic resources, perform and complete the operation. The disclosed framework provides a computerized platform that selects users for highly specific tasks based on the users' analyzed skill sets, and based on computerized determinations of how such users are predicted to perform using those skill sets, securely and/or confidentially provides the users access to information related to the operation.
Systems and Methods for Using Artificial Intelligence to Implement a Cardio Protocol via a Relay-Based System
A computer-implemented method including receiving, at a computing device, a first treatment plan designed to treat a cardiovascular health issue of a user. The first treatment plan comprises at least two exercise sessions that, based on the cardiovascular health issue, enable the user to perform an exercise at different exertion levels. While the user uses a treatment apparatus to perform the first treatment plan for the user, the computing device receives cardiovascular data from one or more sensors configured to measure the cardiovascular data associated with the user, and transmits the cardiovascular data. Wherein a machine learning model is used to generate a second treatment plan. The second treatment plan modifies at least one exertion level, and the modification is based on a standardized measure comprising perceived exertion, the cardiovascular data, and the cardiovascular health issue of the user. The method includes receiving the second treatment plan.
Wireless power system for an exercise machine
A wireless power system for an exercise machine for providing electrical power wirelessly to an electrical energy storage device or electrical energy consuming device attached to a movable carriage of an exercise machine. The wireless power system for an exercise machine generally includes an exercise machine which includes a frame having one or more rails. A carriage is movably positioned upon the rails to allow an exerciser to move the carriage when performing an exercise. A wireless power receiver is attached to the carriage that wirelessly receives electrical energy transferred from a wireless power transmitter. An electrical energy storage device or an electrical energy consuming device attached to the movable carriage is electrically connected to the wireless power receiver to receive electrical power from the wireless power receiver.
Video streaming with multiplexed communications and display via smart mirrors
A processor-implemented method includes receiving a request that specifies a workout performed at a first time, a list of users, a second time after the first time, an overlay to be displayed during a rebroadcast associated with the request, and a skill level of the workout. The request is compared to calendar data, and a session acknowledgment message is sent to the compute device of the first user based on the comparison. An invitation message is sent to compute devices of a second user and a third user, identifying the second time, and invitation responses are received from the second user and the third user. In response to the invitation responses, a video of the workout is rebroadcast at the second time, to a smart mirror of the first user, a smart mirror of the second user and a smart mirror of the third user.
Treadmills with obstacles and methods of use
A treadmill may be configured for gait training and/or therapy with attachable/detachable barriers affixable to a belt and/or with a vertical obstacle module and/or with sensor systems, but without requiring hoists, harnesses, attachments to the treadmill or base, or frame, and/or excessively high treadmill frames, such as those that exceed the height of the person on the treadmill. The barriers on the belt are configured to modify movement of only one foot of a person on the treadmill. The treadmill may use a single, integral belt. Methods of gait training and/or therapy may involve such treadmills without excessive expense and without excessive modification of standard treadmill equipment.