Patents by Inventor Naomi Matsumura

Naomi Matsumura has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11963778
    Abstract: A belt and electrocardiographic measurement device, the belt including a belt body windable around an upper arm in a circumferential direction of the upper arm, and an electrode array including a plurality of electrodes fixed to an inner surface of the belt body and arranged side by side in a direction, which is a longitudinal direction of the belt body, the plurality of electrodes being more than N+2 in number, where N is a number of electrodes required for obtaining electrocardiographic information, the electrodes, counted from a first electrode located at a first end in the direction (X) by counting including the first electrode, to the (N+1)th electrode in the direction (X) being arranged at equal intervals that are predetermined intervals, and intervals between each of the (N+1)th and subsequent electrodes being greater than the predetermined interval.
    Type: Grant
    Filed: December 31, 2020
    Date of Patent: April 23, 2024
    Assignees: OMRON HEALTHCARE CO., LTD., OMRON CORPORATION
    Inventors: Reiji Fujita, Yasuhiro Kawabata, Kenji Fujii, Naomi Matsumura, Akito Ito
  • Publication number: 20240122517
    Abstract: A biological information measurement device adapted to be attached on an upper arm of a human body and used thereon includes a belt portion adapted to be wound around the upper arm, electrocardiographic measurement means including a plurality of electrodes for detecting an electrocardiographic signal of the human body, pulse wave measurement means including a pulse wave sensor for detecting a pulse wave of the human body, heartbeat vibration measurement means including a vibration sensor for detecting vibration caused by beating of a heart of the human body, and an analysis processing unit configured to calculate a pre-ejection time and a pulse transit time of the heart based on time series data of the electrocardiographic signal, time series data of the pulse wave, and time series data of the vibration caused by the beating of the heart.
    Type: Application
    Filed: December 12, 2023
    Publication date: April 18, 2024
    Inventors: Yasuhiro KAWABATA, Kenji FUJII, Naomi MATSUMURA, Akito ITO, Yuki SAKAGUCHI, Reiji FUJITA, Daizo OKA
  • Publication number: 20240081718
    Abstract: A biological information measurement device includes a sensor unit that detects predetermined biological information related to an organ of a living body, an A/D conversion unit that converts a measurement signal output from the sensor unit into a digital signal, a storage unit that stores information including a digital signal related to the measurement signal output from the A/D conversion unit, an analysis processing unit that determines presence or absence of a suspicion of an abnormality in the organ by analyzing the digital signal, and a measurement control unit that changes a sampling frequency related to A/D conversion of the measurement signal under a predetermined condition when the analysis processing unit has determined that a suspicion of an abnormality is present in the organ.
    Type: Application
    Filed: November 16, 2023
    Publication date: March 14, 2024
    Inventors: Kenji FUJII, Yasuhiro KAWABATA, Naomi MATSUMURA, Akito ITO, Yuki SAKAGUCHI, Daizo OKA, Takuya YOSHIDA, Seiji FUKUNAGA, Tatsuaki OKA
  • Publication number: 20240081667
    Abstract: The present invention includes a pressing cuff for compressing a measurement target site. A sensing cuff containing a pressure transmission fluid is provided on an inner circumferential side of the pressing cuff. A pressure at a rising start point and a pressure at a peak point indicated by a pressure pulse wave for each beat are obtained by subtracting a direct current component of data representing a pressure of the pressing cuff from data representing a pressure of the sensing cuff in the process of depressurization. A first time point at which the pressure at the peak point for each beat transitions between a zero level and a positive value is obtained. A second time point at which the pressure at the rising start point for each beat transitions between the zero level and the positive value is obtained.
    Type: Application
    Filed: November 16, 2023
    Publication date: March 14, 2024
    Applicant: OMRON HEALTHCARE CO., LTD.
    Inventors: Naomi MATSUMURA, Yukiya SAWANOI
  • Patent number: 11793414
    Abstract: A pulse wave measurement device includes an electrode unit and a pulse wave measurement unit including pairs of current applying electrodes and voltage measuring electrodes. The electrode unit includes a substrate with insulating properties, measurement electrodes, connection electrodes electrically connected to the measurement electrodes in a 1-to-1 manner, and an adhesive layer. The pulse wave measurement unit includes a belt member configured to wrap around a living body and cover the electrode unit attached to a body surface. The pair of current applying electrodes and the pair of voltage measuring electrodes are disposed on an inner circumferential surface of the belt member so that, when the belt member is in a wrapped state around a living body, each one of the pair of current applying electrodes and each one of the pair of voltage measuring electrodes come into contact with any one of the connection electrode.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: October 24, 2023
    Assignees: OMRON CORPORATION, OMRON HEALTHCARE CO., LTD.
    Inventors: Naoki Matsumoto, Naomi Matsumura
  • Patent number: 11712166
    Abstract: A sphygmomanometer includes: a first fluid bag that is to be worn around a measurement site; first and second pulse wave sensors that are mounted on first fluid bag, and detect pulse waves of respective opposing areas of an artery running along measurement site; pressing parts that locally presses areas corresponding to first and second pulse wave sensors from an outer circumference side, opposite of an inner circumference side of first fluid bag where first and second pulse wave sensors are mounted. Blood pressure is calculated based on pulse transit time obtained from outputs from first and second pulse wave sensors, with first fluid bag in an unpressurized state and first and second pulse wave sensors being pressed by a pressing force of the pressing part. Blood pressure is calculated, for oscillometric blood pressure measurement, based on pressure within first fluid bag with first fluid bag in a pressurized state.
    Type: Grant
    Filed: June 14, 2019
    Date of Patent: August 1, 2023
    Assignees: OMRON CORPORATION, OMRON HEALTHCARE CO., LTD.
    Inventors: Yasuhiro Kawabata, Kentaro Mori, Naomi Matsumura
  • Patent number: 11622694
    Abstract: A pulse wave measurement device including: a belt to be worn around a measurement target site; first and second pulse wave sensors that are mounted on the belt spaced from each other with respect to a width direction of the belt, and that detect pulse waves of opposing portions of an artery passing through the measurement target site; a pressing unit that is mounted on the belt is capable of changing pressing forces of the pulse wave sensors against the measurement target site; a waveform comparing unit that acquires pulse wave signals which are time-sequentially output by the pulse wave sensors respectively, and compares waveforms of the pulse wave signals; and a pulse wave sensor pressing force setting unit that variably sets the pressing forces by the pressing unit such that the waveforms of the pulse wave signals compared by the waveform comparing unit become identical to each other.
    Type: Grant
    Filed: June 27, 2019
    Date of Patent: April 11, 2023
    Assignees: OMRON CORPORATION, OMRON HEALTHCARE CO., LTD.
    Inventors: Naomi Matsumura, Kentaro Mori, Naoki Matsumoto, Yasuhiro Kawabata, Kenji Fujii
  • Patent number: 11589757
    Abstract: A blood pressure estimation device includes a display unit (10), a belt portion (20), a first contact electrode (61) and a second contact electrode (62) for detecting an electrocardiographic waveform, and a pulse wave sensor. The display unit (10) displays a blood pressure estimation result. The belt portion (20) is connected to the display unit (10) and surrounds a target measurement site. The pulse wave sensor includes a pulse wave detection unit (40E) that detects a pulse wave of an artery (91) passing through the target measurement site. The first contact electrode (61) and the pulse wave detection unit (40E) are provided on an inner circumferential portion (20a) of the belt portion (20). The second contact electrode (62) is provided on an outer circumferential portion (20b) of the belt portion (20).
    Type: Grant
    Filed: March 10, 2020
    Date of Patent: February 28, 2023
    Assignees: OMRON CORPORATION, OMRON HEALTHCARE CO., LTD.
    Inventors: Yasuhiro Kawabata, Naomi Matsumura, Naoki Matsumoto
  • Publication number: 20230021062
    Abstract: A belt used in an electrocardiographic measurement apparatus includes a belt body to be wrapped around a living body, three or more base electrodes disposed in a longitudinal direction of the belt body, and two or more cap electrodes detachable and attachable to the base electrodes and smaller in number than the number of base electrodes.
    Type: Application
    Filed: September 23, 2022
    Publication date: January 19, 2023
    Inventors: Yuki SAKAGUCHI, Yasuhiro KAWABATA, Kenji FUJII, Naomi MATSUMURA, Reiji FUJITA, Akito ITO, Nozomi KAWAI
  • Publication number: 20220409135
    Abstract: An electrode-equipped band includes a first band section and a second band section extending along a longitudinal direction. The second band section includes a first stretchable section, an electrode, a second stretchable section, a ring member, a fold-back section, and a joining section. The first stretchable section has first stretchability along the longitudinal direction. The electrode is provided on a first surface of the first stretchable section. The second stretchable section overlaps with the first stretchable section on a side of a second surface of the first stretchable section, and has second stretchability that allows greater stretch along the longitudinal direction than the first stretchable section. The ring member is provided at a position corresponding to a band end along the longitudinal direction of the second band section, and may be connected to the first band section.
    Type: Application
    Filed: September 2, 2022
    Publication date: December 29, 2022
    Inventors: Reiji FUJITA, Yasuhiro KAWABATA, Kenji FUJII, Naomi MATSUMURA, Akito ITO, Yuki SAKAGUCHI
  • Publication number: 20220386881
    Abstract: A device can be used for a long period of time without increasing the size and weight, and a biological signal is surely measured. An aspect of the present invention includes acquiring, from a first sensor, a first biological signal related to a heartbeat of a subject, acquiring, from a second sensor, a second biological signal related to the heartbeat of the subject, detecting a first feature from the first biological signal acquired, setting a light emission control pattern based on a detection timing of the first feature and information indicating time correlation between the first biological signal and the second biological signal, and driving a light emitting element of the second sensor to perform intermittent light emission based on the light emission control pattern set.
    Type: Application
    Filed: August 15, 2022
    Publication date: December 8, 2022
    Inventors: Naomi MATSUMURA, Yasuhiro KAWABATA, Kenji FUJII, Reiji FUJITA, Akito ITO, Yuki SAKAGUCHI
  • Publication number: 20220386882
    Abstract: While power consumption is suppressed, biological information is measured without fail when a condition of a subject changes. An aspect of the present invention is configured to acquire a biological signal related to a beat of a heart of the subject from a biometric sensor, detect a feature of the biological signal from the biological signal acquired, determine an abnormal change in the feature based on the feature detected and first threshold information set in advance, set an operation mode of the biometric sensor to a continuous operation mode when the abnormal change in the feature is determined, and set the operation mode of the biometric sensor to an intermittent operation mode in a period without the abnormal change.
    Type: Application
    Filed: August 15, 2022
    Publication date: December 8, 2022
    Inventors: Naomi MATSUMURA, Yasuhiro KAWABATA, Kenji FUJII, Reiji FUJITA, Akito ITO, Yuki SAKAGUCHI
  • Patent number: 11457828
    Abstract: A pulse wave measurement electrode unit (200) includes electrodes (41 to 46) including a pair of current applying electrodes and a first pair of voltage measuring electrodes; a support member (210) that supports the electrodes on a first main surface (211) that faces a body surface of a measurement subject in a case that the pulse wave measurement electrode unit is attached on the measurement subject; and a fluid bag (24) configured to expand and contract and configured to expand upon measurement to press the electrodes (41 to 46) against the body surface of the measurement subject. The support member (210) includes a length direction (L) corresponding to a circumferential direction of the device in an attached state to the measurement subject and a width direction (W) orthogonal to the length direction (L) and a thickness direction. The electrodes (41 to 46) are arranged side by side in the width direction (W).
    Type: Grant
    Filed: March 10, 2020
    Date of Patent: October 4, 2022
    Assignees: OMRON CORPORATION, OMRON HEALTHCARE CO., LTD.
    Inventors: Reiji Fujita, Naomi Matsumura
  • Patent number: 11432729
    Abstract: A method for manufacturing a blood pressure information measurement apparatus includes the following steps: forming a hole in a flexible resin sheet; inserting a connecting pipe into the hole; overlaying a first end portion and a second end portion of the flexible resin sheet such that an inner side of the first end portion contacts an outer side of the second portion; welding a location at which the first end portion and the second end portion overlap to form a first welded portion, such that the flexible resin sheet forms a tube-shaped body having a first end and a second end; flattening the tube-shaped body; welding the first end and the second to form two second welded portions, such that the tube-shaped body forms a bladder having two long sides and two short sides; and welding portions of the resin sheet which overlap along a first long side to form one or more partial welded portions.
    Type: Grant
    Filed: February 12, 2019
    Date of Patent: September 6, 2022
    Assignee: OMRON HEALTHCARE Co., Ltd.
    Inventors: Hiroko Yoshino, Naomi Matsumura, Masahiro Kobayashi, Wataru Tsunoda
  • Patent number: 11369276
    Abstract: A blood pressure measurement device according to one aspect includes: a blood pressure measurement unit configured to measure blood pressure at a measurement target site of a measurement target subject; a pulse transit time measurement unit configured to measure a pulse transit time at the measurement target site of the measurement target subject; a blood pressure value calculation unit configured to calculate a blood pressure value, on the basis of measurement results of the pulse transit time and a relational expression representing a correlation between the pulse transit time and the blood pressure; a posture instruction unit configured to instruct the measurement target subject to assume a plurality of postures in which height positions of the measurement target site with respect to a heart of the measurement target subject are different from each other; and a calibration unit configured to calibrate the relational expression, on the basis of the blood pressure measured by the blood pressure measurement u
    Type: Grant
    Filed: September 23, 2020
    Date of Patent: June 28, 2022
    Assignees: OMRON HEALTHCARE CO., LTD., OMRON CORPORATION
    Inventors: Kenji Fujii, Yasuhiro Kawabata, Naomi Matsumura, Reiji Fujita, Akito Ito
  • Patent number: 11278210
    Abstract: The pulse wave detecting device includes a sensor section in which two element rows consisting of a plurality of pressure detecting elements arranged in a direction B are arranged in a direction A perpendicular to the direction B, and an air bag pressing the sensor section to a body surface in a state that the direction B intersects a direction in which an artery below the body surface of a living body. An arrangement interval between the two element rows in the direction A is 5 mm or more and 15 mm or less.
    Type: Grant
    Filed: October 12, 2018
    Date of Patent: March 22, 2022
    Assignee: OMRON HEALTHCARE CO., LTD.
    Inventors: Tsuyoshi Kitagawa, Shingo Yamashita, Toshihiko Ogura, Masayuki Fukutsuka, Daizo Oka, Naomi Matsumura, Kentaro Mori, Hiroyuki Kinoshita, Masayuki Wakamiya
  • Patent number: 11266317
    Abstract: A blood pressure measurement device is equipped with a pressing surface which is formed with pressure sensors, an air bag for pressing the pressing surface toward a radius artery that runs under a skin of a living body; an air bag drive unit for controlling the pressing force of the air bag, and a control unit for calculating blood pressure values in the radius artery on the basis of pressure pulse waves that were detected by all of the pressure sensors in a process that the pressing force was increased or decreased.
    Type: Grant
    Filed: April 27, 2017
    Date of Patent: March 8, 2022
    Assignees: OMRON HEALTHCARE Co., Ltd., Omron Corporation
    Inventors: Tsuyoshi Kitagawa, Shingo Yamashita, Toshihiko Ogura, Masayuki Fukutsuka, Daizo Oka, Naomi Matsumura, Kentaro Mori, Hiroyuki Kinoshita, Masayuki Wakamiya
  • Publication number: 20210169347
    Abstract: A pulse transit time measurement device according to an aspect includes: a belt unit; a plurality of first electrodes and second electrodes provided on the belt unit; a third electrode provided on the belt unit; a first electrocardiographic signal acquisition unit that acquires a first electrocardiographic signal of a user using the plurality of first electrodes; a second electrocardiographic signal acquisition unit that acquires a second electrocardiographic signal of the user with the second electrode and the third electrode; a feature amount parameter calculation unit that calculates a feature amount parameter related to a waveform feature point of the first electrocardiographic signal on the basis of a waveform feature point of the second electrocardiographic signal; a pulse wave signal acquisition unit that acquires a pulse wave signal representing a pulse wave of the user; and a pulse transit time calculation unit that detects a waveform feature point.
    Type: Application
    Filed: February 18, 2021
    Publication date: June 10, 2021
    Inventors: Akito ITO, Yasuhiro KAWABATA, Kenji FUJII, Naomi MATSUMURA, Reiji FUJITA
  • Publication number: 20210127993
    Abstract: A pulse transit time measurement device includes a belt unit wound around a target measurement site of a user, an electrode group provided in the belt unit and including a four electrodes, a current source applying an alternating current between the first electrode and the second electrode, a potential difference signal detection unit detecting a potential difference signal between the third electrode and the fourth electrode, an electrocardiogram acquisition unit acquiring, based on the potential difference signal, an electrocardiogram corresponding to a waveform signal representative of an electrical activity of a heart of the user, a pulse wave signal acquisition unit acquiring, based on the potential difference signal, as a pulse wave signal, a waveform signal representative of an electrical impedance in the target measurement site of the user, and a pulse transit time calculation unit calculating a pulse transit time based on the electrocardiogram and the pulse wave signal.
    Type: Application
    Filed: January 7, 2021
    Publication date: May 6, 2021
    Inventors: Naomi MATSUMURA, Yasuhiro KAWABATA, Kenji FUJII, Reiji FUJITA, Akito ITO
  • Publication number: 20210127994
    Abstract: A biometric data measurement system and method, including a transmitting device including a measurement unit configured to measure a first biometric data, a setting unit configured to set a first reference time corresponding to an occurrence time of a first feature value of the first biometric data, and a transmission unit configured to transmit a signal at a time when a predetermined first time period has elapsed since the first reference time, and a receiving device including a measurement unit configured to measure a second biometric data, a setting unit configured to set a second reference time corresponding to an occurrence time of a second feature value of the second biometric data, and a reception unit configured to maintain an awaiting state for the signal during a third time period from a time when a second time period has elapsed since the second reference time.
    Type: Application
    Filed: January 12, 2021
    Publication date: May 6, 2021
    Inventors: Yasuhiro KAWABATA, Kenji FUJII, Naomi MATSUMURA, Reiji FUJITA, Akito ITO