Nova Patents
EP0804899A1

Blood pressure monitor apparatus

Abstract

A blood pressure monitor apparatus includes a cuff (10) for measuring a blood pressure value of a subject. A volume pulse wave detecting device (40) and a pulse-wave area calculating device (74) are used for determining a relationship between pulse-wave area and blood pressure. A monitor device (78) continuously displays a blood-pressure value of the subject, based on to the pulse wave area-blood pressure relationship. In case of any abnormality the monitor device (78) is updated by inflating the cuff (10) to perform another blood pressure measurement.

EP0804899A1, drawing sheet 1
Sheet 1 of 35

Term

Term ended

Projected expiry passed 30 April 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

11 claims: 6 independent, 5 dependent

  1. 1
    A blood pressure monitor apparatus comprising:a blood pressure measuring device (10, 14, 22, 24, 70, 72, SA5) which includes a cuff (10) adapted to be pressed on an artery of a living subject and measures a blood pressure value of the subject by changing a pressing pressure of the cuff;a volume pulse wave detecting (40) device which detects a volume pulse wave of the subject;normalized pulse-wave area calculating means (74, SA3, SA8) for successively calculating an area which is defined by a waveform of each of heartbeat-synchronous pulses of the volume pulse wave detected by said volume pulse wave detecting device and is normalized based on a period and an amplitude of said each pulse of the volume pulse wave;pulse wave area-blood pressure relationship determining means (76, SA6) for determining a relationship between pulse-wave area and blood pressure, based on a normalized pulse-wave area value calculated by said normalized pulse-wave area calculating means and a blood pressure value measured by said blood pressure measuring device, when said blood pressure value is measured;and monitor blood pressure determining means (78, SA9) for successively determining a monitor-blood-pressure value of the subject, based on each of normalized pulse-wave area values successively calculated by said normalized pulse-wave area calculating means, according to the pulse wave area-blood pressure relationship determined by said pulse wave area-blood pressure relationship determining means.
  2. 5
    A blood pressure monitor apparatus according to any one of claims 1-4, wherein said volume pulse wave detecting device comprises a photoelectric pulse-wave sensor (90) including a light-emitting and a light-receiving element, the light-emitting element emitting, toward a skin of the subject, a light having a wavelength which can be reflected by hemoglobin present in blood of the skin, the light-receiving element receiving the light scattered by the hemoglobin from the skin, said photoelectric pulse-wave sensor outputtlng a photoelectric pulse wave signal representing an instantaneous blood volume in capillaries of the skin.
  3. 6
    A blood pressure monitor apparatus according to any one of claims 1-4, wherein said volume pulse wave detecting device comprises an impedance pulse-wave sensor including at least two electrodes being set on different locations of the skin of the subject at a predetermined interval, said impedance pulse-wave sensor outputting an impedance pulse-wave signal representing an instantaneous blood volume in a tissue of the skin located between said two electrodes.
  4. 7
    A blood pressure monitor apparatus including a blood pressure measuring device (10, 14, 22, 24, 72, 82, SB8) which includes a cuff being set on a body portion of a living subject and periodically measures a blood pressure value of the subject, based on a variation of a pulse wave produced while a pressing pressure of the cuff is changed, the blood pressure monitor apparatus comprising:a volume pulse wave detecting device (40) which detects a volume pulse wave of the subject;normalized pulse-wave area calculating means (74, SB5) for successively calculating an area which is defined by a waveform of each of heartbeat-synchronous pulses of the volume pulse wave detected by said volume pulse wave detecting device and is normalized based on a period and an amplitude of said each pulse of the volume pulse wave;pulse-wave area change calculating means (84, SB6) for calculating a change of the normalized pulse-wave area values successively calculated by said normalized pulse-wave area calculating means;and blood-pressure change identifying means (86, SB7) for identifying an abnormal blood-pressure change of the subject when the change of the normalized pulse-wave area values is greater than a reference value.
  5. 10
    A blood pressure monitor apparatus according to any one of claims 7-9, wherein said volume pulse wave detecting device comprises a photoelectric pulse-wave sensor (90) including a light-emitting and a light-receiving element, the light-emitting element emitting, toward a skin of the subject, a light having a wavelength which can be reflected by hemoglobin present in blood of the skin, the light-receiving element receiving the light scattered by the hemoglobin from the skin, said photoelectric pulse-wave sensor outputting a photoelectric pulse wave signal representing an instantaneous blood volume in capillaries of the skin.
  6. 11
    A blood pressure monitor apparatus according to any one of claims 7-10, wherein said volume pulse wave detecting device comprises an impedance pulse-wave sensor including at least two electrodes being set on different locations of the skin of the subject at a predetermined interval, said impedance pulse-wave sensor outputting an impedance pulse-wave signal representing an instantaneous blood volume in a tissue of the skin located between said two electrodes.