EP0664102A2

Medication delivery control and pulse wave detection apparatus.

Abstract

A microcomputer (5) performs a frequency analysis of pulse waves which are taken at regular time intervals from a patient through a pulse wave detection section (200). Then, if the amplitudes and phases of the spectra of the pulse waves fulfill some set conditions, either α-blocker or β-blocker is given to the patient, and the patient's circulatory activity is maintained in a stable condition.

EP0664102A2, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 28 November 2014, 11.8 years ago.

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16 claims: 5 independent, 11 dependent

  1. 1
    A pulse wave detection apparatus characterized by comprising a pulse wave detection means (200) for detecting pulse waves (STRKM) from a patient, and a pulse wave analysis means (100) for determining the waveform parameters of said pulse waves.
  2. 6
    A pulse wave detection apparatus according to any one of the preceding claims, wherein said pulse wave analysis means (100) detects the high frequency and low frequency components of the pulse waves and uses the ratio between the respective components as the above-mentioned waveform parameters.
  3. 7
    A pulse wave detection apparatus according to any one of the preceding claims, wherein said waveform analysis means uses an electric circuit modeled after the human arterial system from its nucleus to its extremities, to which an electric signal corresponding to a pressure wave in the origin of the aorta is applied, allowing an output waveform corresponding to the pulse waves received from the above-mentioned pulse wave detection means (200) to be obtained from said electric circuit by calculating the values of respective elements in said electric circuit, and using the results of the calculation as the above-mentioned waveform parameters.
  4. 8
    A pulse wave detection apparatus according to any one of the preceding claims, wherein said waveform analysis means includes an electric circuit which is a Four Element Concentration Constant Model having a first resistance (Rc) corresponding to the blood vessel resistance due to the blood viscosity in the nucleus of the arterial system, an inductance (L) corresponding to the inertia of the blood in said nucleus of the arterial system, a capacitance (C) corresponding to the compliance of the blood vessels in said nucleus of the arterial system, and a second resistance (Rp) corresponding to the blood vessel resistance due to the blood viscosity in the extremities of the arterial system;with a circuit connecting said first resistance and said inductance in series and a circuit connecting said capacitance and said second resistance in parallel being connected in series between a pair of input electrodes.
  5. 9
    A medication delivery control apparatus comprising a pulse wave detection apparatus according to any one of the preceding claims, and a medication delivery control means (300,400) for ordering the delivery of medication if said waveform parameters fulfill some set conditions.
  6. 13
    A medication delivery control apparatus according to any one of claims 9 to 12, wherein said medication delivery control apparatus is portable, has a battery, and has a power control means (86) for delivering the output voltage of said battery to the respective relevant elements only while the collection of the pulse waves by the above-mentioned pulse wave detection means (200), the calculation of the above-mentioned waveform parameters by the above-mentioned pulse wave analysis means (100) and the above-mentioned medication delivery are being performed.
  7. 15
    A medication delivery control apparatus according to any one of claims 9 to 14, wherein a memory and a medication delivery recording means are provided for recording in said memory medication delivery data representing the time, type of medication, and/or amount of medication delivered for each time said medication delivery is performed.