Device for detecting heartbeats of a person using cycles and training implements
First Claim
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1. A heartbeat detecting device to be applied to a cycle or a movable physical training implement with a handlebar, wherein the handlebar has a hollow handlebar tube and said hollow handlebar tube has opposite end portions with one handle provided at each of said opposite end portions, said heartbeat detecting device comprising:
- a reference electrode and an active electrode applicable to each of said handles; and
a microprocessor,wherein the reference electrodes of both handles are electrically connected to each other with insulated electric wires, and said reference electrodes of both handles and each of said active electrodes provide an input signal to an amplifying section,wherein said insulated electric wires are located inside the hollow handlebar tube and are electrically isolated from the handlebar tube to transmit accurate and stable user'"'"'s heart signals to the microprocessor through said amplifying section,wherein said amplifying section comprises,a pre-amplifier receiving said input signal and a pre-processing unit operatively coupled to the pre-amplifier and preconditioning the signal, said pre-amplifier and said pre-processing unit removing a low frequency biasing component from said input signal,an amplifier operatively connected to said pre-processing unit and configured to bring said input signal to a signal level compatible with downstream processing,a filtering unit operatively connected to said amplifier and configured to eliminate harmonic components disposed outside of a desired signal band,a digital converter, andsaid microprocessor receiving a converted signal from said digital converter and detecting an electric equivalent of a heartbeat,wherein said microprocessor comprises a program memory and a work memory, said program memory storing a set of instructions configured to provide a cardiac frequency measurement which comprises detecting a signal peak in a first measurement window, causing a silence period of duration shorter than a time between two earlier peaks, configured to prevent noise or artifacts from negatively affecting said cardiac frequency measurement, opening a second measurement window, measuring a subsequent heartbeat, and closing said second measurement window after measuring said subsequent heartbeat.
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Abstract
A device for detecting pulsations or heartbeats of a person using cycles in general and movable and training implements, includes a plurality of detecting electrodes operating to contact the hands of the person and operatively coupled to at least a cardiac frequency meter, the electrodes being arranged on a cycle or training implement steering control element.
8 Citations
12 Claims
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1. A heartbeat detecting device to be applied to a cycle or a movable physical training implement with a handlebar, wherein the handlebar has a hollow handlebar tube and said hollow handlebar tube has opposite end portions with one handle provided at each of said opposite end portions, said heartbeat detecting device comprising:
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a reference electrode and an active electrode applicable to each of said handles; and a microprocessor, wherein the reference electrodes of both handles are electrically connected to each other with insulated electric wires, and said reference electrodes of both handles and each of said active electrodes provide an input signal to an amplifying section, wherein said insulated electric wires are located inside the hollow handlebar tube and are electrically isolated from the handlebar tube to transmit accurate and stable user'"'"'s heart signals to the microprocessor through said amplifying section, wherein said amplifying section comprises, a pre-amplifier receiving said input signal and a pre-processing unit operatively coupled to the pre-amplifier and preconditioning the signal, said pre-amplifier and said pre-processing unit removing a low frequency biasing component from said input signal, an amplifier operatively connected to said pre-processing unit and configured to bring said input signal to a signal level compatible with downstream processing, a filtering unit operatively connected to said amplifier and configured to eliminate harmonic components disposed outside of a desired signal band, a digital converter, and said microprocessor receiving a converted signal from said digital converter and detecting an electric equivalent of a heartbeat, wherein said microprocessor comprises a program memory and a work memory, said program memory storing a set of instructions configured to provide a cardiac frequency measurement which comprises detecting a signal peak in a first measurement window, causing a silence period of duration shorter than a time between two earlier peaks, configured to prevent noise or artifacts from negatively affecting said cardiac frequency measurement, opening a second measurement window, measuring a subsequent heartbeat, and closing said second measurement window after measuring said subsequent heartbeat.
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2. The device as claimed in 1, further comprising an electrostatic charge protection device receiving said input signal and feeding said input signal to said amplifying section.
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3. The device as claimed in 1, wherein hand abutment elements are mounted to said handles for abutting the hand of a user there against.
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4. The device as claimed in 1, wherein said device comprises a hand contact detecting circuit operatively coupled to a controlled switching off circuit.
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5. The device as claimed in 4, wherein said controlled switching off circuit is connected to a power supply battery.
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6. The device as claimed in 5, wherein that said power supply battery is arranged within a control element in said handlebar.
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7. The device as claimed in 1, wherein said microprocessor is connected to a display.
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8. The device as claimed in 7, wherein said display is arranged on the handlebar, one handle, a back mirror or a device worn by the user.
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9. The device as claimed in 7, wherein coupling and driving means are provided for coupling and driving said display.
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10. The device as claimed in 7, wherein a plurality of sensor means are coupled to said microprocessor.
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11. The device as claimed in 7, wherein a plurality of push-buttons are operatively coupled to said microprocessor for controlling said display and device operation.
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12. The device as claimed in 1, wherein coupling means are provided for coupling to a steering wheel, a control lever mounted on cars, motorcycles, boats, or airplanes.
Specification