DNA, blood, heart, glucose, body temperature, skin and other medical diagnostic communications
First Claim
1. A diagnostic and communication method comprising steps of:
- receiving in a mobile device a received DNA, or blood, or heart, or glucose, or body temperature or skin, or urine, or stool, or a medical device originated or provided signal for connecting said received signal to a Code Division Multiple Access (CDMA) processor and to a Orthogonal Frequency Orthogonal Frequency Division Multiplex (OFDM) processor for processing said received signal into a processed CDMA signal and into a processed OFDM signal, said CDMA signal comprises in-phase and quadrature-phase cross-correlated baseband signals and said baseband signals are processed and filtered into Time Constrained (TCS) waveforms and cascaded Long Response (LR) filter filtered signals;
modulating said processed CDMA signal into a modulated CDMA signal or modulating said processed OFDM signal into a modulated OFDM signal;
connecting said, modulated CDMA signal or said modulated OFDM signal to one or more transmitters and transmitting said modulated CDMA signal or said modulated OFDM signal in said one or more transmitters; and
processing a touch screen generated signal in said mobile device into a touch screen processed signal, said touch screen processed signal is used for control of said transmitting, said modulated CDMA signal or said modulated OFDM signal.
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Abstract
Medical diagnostic and digital communication methods for processing in a mobile device a DNA, or blood, or heart or glucose, or body temperature or skin, or urine, or another medical device provided signal into a processed signal. Providing processed medical signals to a Code Division Multiple Access (CDMA) processor or to a Orthogonal Frequency Orthogonal Frequency Division Multiplex (OFDM) processor for processing, modulation and transmission of mobile device modulated signals in a wireless system. Processing a touch screen generated signal in mobile device into a touch screen processed signal for control of mobile device. Digital communications to and from a heart pacemaker for wireless mobile diagnostics and control of heart pacemaker.
417 Citations
18 Claims
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1. A diagnostic and communication method comprising steps of:
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receiving in a mobile device a received DNA, or blood, or heart, or glucose, or body temperature or skin, or urine, or stool, or a medical device originated or provided signal for connecting said received signal to a Code Division Multiple Access (CDMA) processor and to a Orthogonal Frequency Orthogonal Frequency Division Multiplex (OFDM) processor for processing said received signal into a processed CDMA signal and into a processed OFDM signal, said CDMA signal comprises in-phase and quadrature-phase cross-correlated baseband signals and said baseband signals are processed and filtered into Time Constrained (TCS) waveforms and cascaded Long Response (LR) filter filtered signals; modulating said processed CDMA signal into a modulated CDMA signal or modulating said processed OFDM signal into a modulated OFDM signal; connecting said, modulated CDMA signal or said modulated OFDM signal to one or more transmitters and transmitting said modulated CDMA signal or said modulated OFDM signal in said one or more transmitters; and processing a touch screen generated signal in said mobile device into a touch screen processed signal, said touch screen processed signal is used for control of said transmitting, said modulated CDMA signal or said modulated OFDM signal. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A medical digital communication method comprising steps of:
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processing, in a mobile device, signals received from one or more medical diagnostic devices into processed signals; processing said processed signals into a digital first bit, rate signal; processing said processed signals into a digital second bit rate signal; processing and modulating said second bit rate signal into a OFDM processed and modulated signal in a processor and a modulator; processing, filtering and modulating said first bit rate signal in a cross-correlator, transmit baseband filter and a modulator into cross-correlated in-phase and quadrature-phase processed filtered baseband signal; processing in a processor a touch screen generated signal into a touch screen generated control signal, said touch screen generated control signal is used for control of said, mobile device; and said mobile device comprises a method for fingerprint authentication of said mobile device. - View Dependent Claims (9, 11)
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10. A medical digital communication method comprising steps of:
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processing, in a mobile device, signals received from one or more medical diagnostic devices into processed signals; processing said processed signals into a digital first bit rate signal, said first bit rate signal is a Code Division Multiple Access (CDMA) signal and comprises in-phase and quadrature-phase cross-correlated baseband signals and said baseband signals are processed and filtered into Time Constrained (TCS) waveforms and cascaded Long Response (LR) filter filtered signals; or processing said processed signals into a digital second bit rate signal for processing and modulating said second bit rate signal into a OFDM processed and modulated signal; or processing, filtering and modulating said first bit rate signal in a cross-correlator and a transmit baseband filter into cross-correlated in-phase and quadrature-phase processed filtered baseband signal; and processing in a processor a touch screen generated signal into a touch screen generated control signal, said touch screen generated control signal is used for control of said mobile device.
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12. A medical digital communication method comprising steps of:
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processing, in a mobile device, signals received from one or more medical diagnostic devices into processed signals; processing said processed signals into a digital first bit rate signal, said first bit rate signal is a Time Division Multiple Access (TDMA) signal and comprises in-phase and quadrature-phase baseband signals and said baseband signals are processed into cross-correlated and filtered Time Constrained (TCS) waveforms and cascaded Long Response (LR) filter filtered signals; or processing said processed signals into a digital second bit rate signal for processing and modulating said first bit rate signal into a OFDM processed and modulated signal; or processing, filtering and modulating said first bit rate signal in a cross-correlator and a transmit baseband filter into cross-correlated in-phase and quadrature-phase processed filtered baseband signal; processing in a processor a touch screen generated signal into a touch screen generated control signal, said touch screen generated control signal is used for control of said mobile device; and processing in said mobile device a fingerprint generated signal for fingerprint authentication of said mobile device.
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13. A diagnostic and communication method comprising steps of:
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receiving in a mobile device a received DNA, or blood, or heart or glucose, or body temperature or skin, or urine, or stool, or a medical device originated signal and providing said received signal to a spread spectrum processor for processing said signal into a processed spread spectrum signal; providing said received signal to a Gaussian Minimum Shift Keying (GMSK) baseband processor for processing said received signal into a processed GMSK baseband said processed GMSK signal comprises cross-correlated and filtered Time Constrained (TCS) waveforms and cascaded Long Response (LR) filter filtered signals; modulating said processed spread spectrum signal into a modulated spread spectrum signal; modulating said processed GMSK signal into a modulated GMSK signal; connecting said modulated spread spectrum signal or said modulated GMSK signal to a transmitter for transmitting said modulated spread spectrum signal; and processing a touch screen generated signal in said mobile device into a touch screen processed signal, said touch screen processed signal is used for control of said transmitting, said modulated spread spectrum signal and of said modulated GMSK signal. - View Dependent Claims (14, 15, 16, 17, 18)
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Specification