Method and system to record, store and transmit waveform signals to regulate body organ function
A method to record, store and transmit waveform signals to regulate body organ function generally comprising capturing waveform signals that are generated in a subject's body and are operative in the regulation of body organ function and transmitting at least a first waveform signal to the body that is recognizable by at least one body organ as a modulation signal.
1 . A method for regulating body organ function, comprising the steps of:
capturing a plurality of waveform signals generated in a subject's body, said waveform signals being operative in the regulation of body organ function; and
transmitting at least a first waveform signal to said body, said first waveform signal being recognizable by at least one body organ as a modulation signal.
2 . The method of claim 1 , wherein said first waveform signal is transmitted to said subject's nervous system.
3 . The method of claim 1 , wherein said subject comprises a human.
4 . The method of claim 1 , wherein said subject comprises an animal.
5 . A method for regulating body organ function, comprising the steps of:
capturing a plurality of waveform signals generated in a subject's body, said waveform signals being operative in the regulation of body organ function; and
transmitting at least a first waveform signal proximate a first body organ to regulate organ function, said first waveform signal including at least a second waveform signal that substantially corresponds to at least one of said captured waveform signals and is operative in the regulation of said first body organ.
6 . The method of claim 5 , wherein said first waveform signal is transmitted to said subject's nervous system.
7 . The method of claim 5 , wherein said subject comprises a human.
8 . The method of claim 5 , wherein said subject comprises an animal.
9 . A method for regulating body organ function, comprising the steps of:
capturing a plurality of waveform signals generated in a subject's body, said waveform signals being operative in the regulation of body organ function;
storing said captured waveform signals in a storage medium, said storage medium being adapted to store said captured waveform signals according to the organ regulated by said captured waveform signals; and
transmitting at least a first waveform signal proximate a first body organ to regulate organ function, said first waveform signal including at least a second waveform signal that substantially corresponds to at least one of said captured waveform signals and is operative in the regulation of said first body organ.
10 . The method of claim 9 , wherein said first waveform signal is transmitted to said subject's nervous system.
11 . The method of claim 9 , wherein said storage medium is further adapted to store said captured waveform signals according to the function performed by said captured waveform signals.
12 . A method for regulating body organ function, comprising the steps of:
capturing a plurality of waveform signals generated in a subject's body, said waveform signals including at least a first waveform signal that is operative in the control of at least one body organ;
storing said captured waveform signals in a storage medium, said storage medium being adapted to store said captured waveform signals according to the organ regulated by said captured waveform signals;
generating at least a second waveform signal, said second waveform signal substantially corresponding to at least said first waveform signal and is operative in the regulation of said body organ;
transmitting said second waveform signal proximate said body organ to regulate organ function.
13 . The method of claim 12 , wherein said second waveform signal is transmitted to said subject's nervous system.
14 . The method of claim 12 , wherein said storage medium is further adapted to store said captured waveform signals according to the function performed by said waveform signals.
15 . A method for regulating body organ function, comprising the steps of:
capturing a first plurality of waveform signals generated in a first subject's body, said first plurality of waveform signals including first waveform signals that are operative in the control of a first body organ;
generating a base-line waveform signal from said first waveform signals;
capturing a second plurality of waveform signals generated in said first subject's body, said second plurality of waveform signals including at least a second waveform signal that is operative in the control of said first body organ;
comparing said base-line waveform signal to said second waveform signal;
generating a third waveform signal based on said comparison of said base-line and second waveform signals;
transmitting said third waveform signal proximate said first body organ, said third waveform signal being operative in the regulation of said first organ function.
16 . The method of claim 15 , wherein said step of capturing said waveform signals comprises capturing said first plurality of waveform signals from a plurality of subjects.
17 . The method of claim 15 , wherein said third waveform substantially corresponds to said second waveform signal.
18 . The method of claim 15 , wherein said third waveform substantially corresponds to said base-line waveform signal.
19 . The method of claim 15 , wherein said third waveform signal is transmitted to said subject's nervous system.
20 . The method of claim 15 , wherein said subject comprises a human.
21 . The method of claim 15 , wherein said subject comprises an animal.
22 . A method for regulating body organ function, comprising the steps of:
capturing a first plurality of waveform signals generated in a first subject's body, said first plurality of waveform signals including first waveform signals that are operative in the control of a first body organ;
storing said first waveform signals in a first location in a storage medium;
generating a base-line waveform signal from said first waveform signals;
capturing a second plurality of waveform signals generated in said first subject's body, said second plurality of waveform signals including at least a second waveform signal that is operative in the control of said first body organ;
storing said second waveform signal in a second location in said storage medium;
comparing said base-line waveform signal to said second waveform signal;
generating a third waveform signal based on said comparison of said base-line and second waveform signals;
transmitting said third waveform signal proximate said first body organ, said third waveform signal being operative in the regulation of said first organ function.
23 . The method of claim 22 , wherein said step of capturing said waveform signals comprises capturing said first plurality of waveform signals from a plurality of subjects.
24 . The method of claim 22 , wherein said third waveform signal is transmitted to said subject's nervous system.
25 . The method of claim 22 , wherein said subject comprises a human.
26 . The method of claim 22 , wherein said subject comprises an animal.
27 . A system for regulating body organ function, comprising:
at least a first signal probe adapted to capture waveform signals from a subject's body, said waveform signals being representative of waveform signals naturally generated in said body and indicative of body organ function;
a processor in communication with said signal probe and adapted to receive said waveform signals, said processor being further adapted to generate at least a first waveform signal based on said captured waveform signals, said first waveform signal being recognizable by at least one body organ as a modulation signal; and
at least a second signal probe adapted to be in communication with said subject's body for transmitting said first waveform signal proximate to said body organ to regulate organ function.
28 . The system of claim 27 , wherein said processor includes a pulse rate detector for sampling said captured waveform signals.
29 . The system of claim 28 , wherein said processor includes a pulse rate generator for generating said first waveform signal.
30 The system of claim 27 , wherein said processor includes a storage medium adapted to store said captured waveform signals.
31 . The system of claim 30 , wherein said storage medium is adapted to store said captured waveform signals according to the organ regulated by said captured waveform signals.
32 . The system of claim 31 , wherein said storage medium is further adapted to store said captured waveform signals according to the function performed by said captured waveform signals.
33 . The system of claim 27 , wherein said second signal probe is adapted to transmit said first waveform signal directly to said subject by direct conduction to the subject's nervous system.