| CPC A61B 5/0006 (2013.01) [A61B 5/0245 (2013.01); A61B 5/318 (2021.01); G06F 2218/04 (2023.01); G06F 2218/10 (2023.01); G06F 2218/12 (2023.01)] | 20 Claims |

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1. A biological function monitoring system, comprising:
a first monitoring device, including a first sensor, a first processor, and a first transmitter, and wherein:
the first sensor is configured to:
sense a first biological function measurement during monitoring a biological function; and
derive a first data symbol representing the first biological function measurement;
the first processor is configured to:
access the first data symbol from the first sensor; and
combine two or more chaotic waveforms from a first chaotic waveform ensemble generating a first composite chaotic waveform representative of the first data symbol; and
the first transmitter is configured to transmit the first composite chaotic waveform to a receiver over a communication channel;
a second monitoring device, including a second sensor, a second processor, and a second transmitter, and wherein:
the second sensor is configured to:
sense a second biological function measurement during the monitoring of the biological function; and
derive a second data symbol representing the second biological function measurement;
the second processor is configured to:
access the second data symbol from the second sensor; and
combine two or more chaotic waveforms from a second chaotic waveform ensemble, distinct from the first chaotic waveform ensemble, generating a second composite chaotic waveform representative of the second data symbol;
the second transmitter configured to transmit the second composite chaotic waveform to the receiver over the communication channel; and
clock distribution circuitry configured to route a common clock signal between the first monitoring device and the second monitoring device such that the first composite chaotic waveform and the second composite chaotic waveform are substantially synchronized at a digital sample level.
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