US 12,393,263 B2
Systems and methods related to monitoring, communicating, and/or analyzing bodily movements
Riley J. Brooksher, Alpharetta, GA (US)
Filed by Riley J. Brooksher, Alpharetta, GA (US)
Filed on Dec. 8, 2022, as Appl. No. 18/063,667.
Claims priority of provisional application 63/287,171, filed on Dec. 8, 2021.
Prior Publication US 2023/0176646 A1, Jun. 8, 2023
Int. Cl. G06F 3/0483 (2013.01); A41D 1/00 (2018.01); G06F 3/01 (2006.01); G06F 3/0482 (2013.01); G06F 3/0486 (2013.01); H04M 1/72412 (2021.01); H04M 1/72454 (2021.01)
CPC G06F 3/011 (2013.01) [A41D 1/002 (2013.01); G06F 3/0482 (2013.01); G06F 3/0486 (2013.01); H04M 1/72412 (2021.01); H04M 1/72454 (2021.01)] 20 Claims
OG exemplary drawing
 
1. A system for monitoring, communicating, and analyzing bodily movements comprising:
a garment configured to be worn on a human body;
a circuit board;
a plurality of sensors supported by the garment and in electronic communication with the circuit board, wherein each sensor is coupled to the garment at a sensor position and the sensors are configured to collect data representative of movements of the human body throughout an activity; and
a mobile phone application comprising:
a home page configured to open when the user engages the application; and
an activity page comprising a wireless connection/disconnection button and a calibration scan button,
wherein the user may navigate between the home page and activity page using a navigation bar,
wherein the activity page is configured to display the movement data gathered by the sensors as a real-time movement model,
wherein the circuit board communicates the collected data from the sensors to the mobile phone application and the mobile phone application is configured to display the movements of the human body,
wherein the circuit board supports a power system, a microcontroller powered by the power system, and a peripheral communication bus controller that enables communication between the microcontroller and the sensors, and
wherein the mobile phone application is calibrated to the user's body segment lengths.