Circuit for measuring a bioelectric signal

US2016228063A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016228063-A1
Application numberUS-201415023698-A
CountryUS
Kind codeA1
Filing dateSep 3, 2014
Priority dateSep 25, 2013
Publication dateAug 11, 2016
Grant date

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Abstract

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A reference signal is mixed with a bioelectric signal, the capacitance between a biological composition and an input device is detected from the intensity of the reference signal, and the gain of the bioelectric signal is corrected on the basis of the detected capacitance.

First claim

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1 . A bioelectric signal measuring circuit, comprising: an impedance converting device configured to convert the impedance of an inputted signal; an input device configured to input a bioelectric signal and output the inputted bioelectric signal to the impedance converting device; a reference signal mixing device configured to mix an output signal of the impedance converting device and a reference signal having a signal intensity change by flowing on a biological composition side for calculating the capacitance between a biological composition and the input device; a signal feedback device configured to feed back an output signal of the reference signal mixing device to the impedance converting device; a signal separating device configured to separate the bioelectric signal and the reference signal from the output signal of the impedance converting device; a capacitance measuring device configured to calculate the capacitance based on the intensity of the reference signal inputted from the signal separating device; a gain correction value calculating device configured to calculate a gain correction value of the bioelectric signal based on the capacitance; and a bioelectric signal gain correction device configured to carry out a gain correction of the bioelectric signal based on the gain correction value. 2 . The bioelectric signal measuring circuit according to claim 1 , further comprising a reference signal intensity setting value calculation device configured to set the intensity of the reference signal inputted to the reference signal mixing device based on the intensity of the reference signal inputted from the signal separating device; and a reference signal intensity changing device configured to change the intensity of the reference signal inputted to the reference signal mixing device in accordance with the intensity of the reference signal set by the reference signal intensity setting value calculation device, the capacitance measuring device being configured to calculate the capacitance from the intensity of the reference signal inputted from the signal separating device and the intensity of the reference signal set by the reference signal intensity setting value calculation device. 3 . The bioelectric signal measuring circuit according to claim 2 , wherein the reference signal intensity changing device is configured to carry out the changing of the intensity of the reference signal inputted to the reference signal mixing device by changing the constant of an electrical circuit in the reference signal mixing device. 4 . The bioelectric signal measuring circuit according to claim 1 , wherein the reference signal mixing device comprises a flattening function unit set configured to flatten a gain characteristic of the reference signal outputted from the impedance converting device in relation to a frequency change of the reference signal. 5 . The bioelectric signal measuring circuit according to claim 1 , wherein the signal feedback device comprises first and second resistors connected in series in a circuit connecting an input terminal of the impedance converting device and a ground, and a first capacitor and a third resistor are connected in series in a circuit connecting between the first and second resistors and an output terminal of the reference signal mixing device; and a second capacitor is disposed in series between the input device and the input terminal of the impedance converting device, when the capacitance calculated by the capacitance measuring device is greater than a predetermined value. 6 . The bioelectric signal measuring circuit according to claim 1 , further comprising an artifact calculating device configured to calculate an artifact superimposed to the bioelectric signal in the input device based on the changes of the capacitance calculated by the capacitance measuring device; and an artifact removing device configured to subtract the calculated artifact from the bioelectric signal outputted from the signal separating device. 7 . The bioelectric signal measuring circuit according to claim 6 , further comprising a signal selection device configured to compare a variation of a bioelectric signal voltage after the artifact is subtracted by the artifact removing device, and the variation of the bioelectric signal voltage before the artifact is subtracted, and select the bioelectric signal having the smaller variation. 8 . The bioelectric signal measuring circuit according to claim 7 , further comprising a reliability information collecting device configured to collect information of the variation of the bioelectric signal voltage, after the artifact is subtracted by the artifact removing device, of each electrode. 9 . The bioelectric signal measuring circuit according to claim 6 , further comprising a correlation evaluating device configured to calculate the correlation of the artifact calculated in the artifact calculating device, provided to correspond with a plurality of input devices. 10 . The bioelectric signal measuring circuit according to claim 1 , wherein the input device is one of a plurality of the input devices, and a bioelectric signal measuring device is configured to measure the bioelectric signal while a gain is higher than a predetermined value, by calculating the gain of the bioelectric signal outputted from the impedance converting device in relation to the bioelectric signal emitted by the biological composition, based on the capacitance calculated by the capacitance measuring device. 11 . The bioelectric signal measuring circuit according to claim 10 , wherein the bioelectric signal measuring device is configured to measure the bioelectric signal when the gain is the highest gain and the bioelectric signal when the gain is the second highest gain from among bioelectric signals having gains higher than the predetermined value. 12 . The bioelectric signal measuring circuit according to claim 10 , wherein the bioelectric signal is one of a plurality of bioelectric signals, and the bioelectricity measuring device is configured to measure two bioelectric signals of the plurality of bioelectric signals having a smallest gain difference from among the bioelectric signals having gains higher than the predetermined value. 13 . The bioelectric signal measuring circuit according to claim 10 , wherein the bioelectric signal is one of a plurality of bioelectric signals, and the bioelectricity measuring device, from among the plurality of bioelectric signals having gains higher than the predetermined value is configured to measure, of the biological composition, a bioelectric signal inputted from an input device closest to a left foot and a bioelectric signal inputted from the input device closest to a second lead on a right hand, a bioelectric signal inputted from an input device closest to a left hand and a bioelectric signal inputted from an input device closest to a first lead on the right hand, when measuring of the bioelectric signal according to the second lead cannot be carried out, and a bioelectric signal inputted from the input device closest to the left foot and a bioelectric signal inputted from the input device closest to a third lead on the left hand, when the measuring of the bioelectric signal according to the first lead cannot be carried out. 14 . The bioelectric signal measuring circuit according to claim 10 , wherein the bioelectric signal is one of a plurality of bioelectric signals, and the bioelectric signal measuring device, from among the plurality of bioelectric signals having gains higher than the predetermined value, i

Assignees

Inventors

Classifications

  • Details of analogue processing, e.g. isolation amplifier, gain or sensitivity adjustment, filtering, baseline or drift compensation (input circuits for detecting, measuring, or recording bioelectric or biomagnetic signals A61B5/30; specific diagnostic methods using bioelectric or biomagnetic signals A61B5/316) · CPC title

  • Human Necessities · mapped topic

  • using a separate sensor to detect motion or using motion information derived from signals other than the physiological signal to be measured · CPC title

  • ECG or EEG signals · CPC title

  • A61B5/6893Primary

    Cars · CPC title

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What does patent US2016228063A1 cover?
A reference signal is mixed with a bioelectric signal, the capacitance between a biological composition and an input device is detected from the intensity of the reference signal, and the gain of the bioelectric signal is corrected on the basis of the detected capacitance.
Who is the assignee on this patent?
Nissan Motor, Univ Tokyo Denki
What technology area does this patent fall under?
Primary CPC classification A61B5/6893. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Aug 11 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).