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US20040167413A1 - Method and apparatus for calibrating and measuring arterial compliance and stroke volume - Google Patents

Method and apparatus for calibrating and measuring arterial compliance and stroke volume
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Publication number
US20040167413A1
US20040167413A1US10/780,960US78096004AUS2004167413A1US 20040167413 A1US20040167413 A1US 20040167413A1US 78096004 AUS78096004 AUS 78096004AUS 2004167413 A1US2004167413 A1US 2004167413A1
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Prior art keywords
oscillometric
tonometric
signal
pressure
blood pressure
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Abandoned
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US10/780,960
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Christopher Bratteli
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Hypertension Diagnostics Inc
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Hypertension Diagnostics Inc
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Priority to US10/780,960priorityCriticalpatent/US20040167413A1/en
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Abstract

Methods and apparatus for measuring arterial compliance using combined noninvasive arterial tonometry and cuff oscillometry. Some embodiments include a calibration method using an oscillometric signal to calibrate the pressures of tonometric signals in a contralateral arterial site. The times at which two of the three oscillometric blood pressures (systolic pressure, mean pressure, diastolic pressure) are acquired are identified with times of uncalibrated tonometric pressure waveform. These blood pressures are then used to calibrate the tonometric pressure waveform along (optionally) with adjustments for head pressure. For example, a left brachial arterial cuff oscillometric signal is acquired coincidentally with an uncalibrated right radial arterial pressure tonometric signal. The time points of mean arterial pressure and diastolic pressure are determined from the oscillometric signal and identified with coinciding time points on the tonometric signal to produce a calibration. All pressures are then adjusted by the head pressure between the brachial and radial sites.

Description

Claims (43)

What is claimed is:
1. A method for computerized calculation of one or more arterial-compliance parameters of a patient, the method comprising:
measuring an oscillometric signal and a tonometric arterial signal of the patient;
obtaining one or more oscillometric parameters derived from the oscillometric signal;
obtaining a sequence of tonometric values that are based on the tonometric signal;
receiving the one or more oscillometric parameters and the sequence of tonometric values as inputs into a computer system;
calibrating the sequence of tonometric values based on the one or more oscillometric parameters to generate a calibrated tonometric pressure waveform; and
processing the calibrated tonometric pressure waveform within the computer system to generate one or more values each corresponding to one of the one or more arterial-compliance parameters.
2. The method ofclaim 1, wherein the calibrating of the sequence of tonometric values includes calibrating each tonometric value Srt) as follows:
Pr(t)=((Sr(t)+additive correctionr)*multiplicative correctionr)
wherein the additive correctionr and the multiplicative correctionrare calibration constants based at least in part on blood pressure parameters derived from the oscillometric parameters, and each Sr(t) is the tonometric signal value at a time t.
3. The method ofclaim 1, wherein the calibrating of the sequence of tonometric values includes calibrating each tonometric value Set) as follows:
Pr(t)=((Sr(t)+additive correctionr)*multiplicative correctionr)
wherein the additive correctionrand the multiplicative correctionrare calculated as follows:
the multiplicative correctionr=(DBP−MBP)/(Sr(tD)−Sr(tM)) the additive correctionr=MBP/(multiplicative correctionr)−Sr(tM)
wherein
each Sr(t) is the tonometric signal value at a time t,
MBP is a mean arterial-blood-pressure oscillometric parameter measured near time tM, and
DBP is a diastolic-blood-pressure oscillometric parameter measured near time tD.
4. The method ofclaim 1, wherein the calibrating of the sequence of tonometric values includes calibrating each tonometric value Sr(t) as follows:
Pr(t)=((Sr(t)+additive correctionr)*multiplicative correctionr)
wherein the additive correctionrand the multiplicative correctionrare calculated as follows:
the multiplicative correctionr=(SBP−MBP)/(Sr(tS)−Sr(tM)) the additive correctionr=MBP/(multiplicative correctionr)−Sr(tM)
wherein
each Sr(t) is the tonometric signal value at a time t,
MBP is oscillometric mean arterial blood pressure measured near time tM, and
SBP is oscillometric systolic blood pressure measured near time tS.
5. The method ofclaim 1, wherein the calibrating of the sequence of tonometric values includes calibrating each tonometric value Sr(t) as follows:
Pr(t)=((Sr(t)+additive correctionr)*multiplicative correctionr)
wherein the additive correctionrand the multiplicative correctionrare calculated as follows:
the multiplicative correctionr=(SBP−DBP)/(Sr(tS)−Sr(tD)), and the additive correctionr=DBP/(multiplicative correctionr)−Sr(tD)
wherein
each Sr(t) is the tonometric signal value at a time t,
SBP is oscillometric systolic blood pressure measured near time tS, and
DBP is oscillometric diastolic blood pressure measured near time tD.
6. The method ofclaim 1, wherein the calibrating of the sequence of tonometric values Sr(t) includes generating the calibrated tonometric pressure waveform Pr(t) as follows:
Pr(t)=((Sr(t)−br)(1/ar))+p
where arand brare calibration constants based at least in part on blood pressure parameters derived from the oscillometric signal, and p is a hydrostatic pressure head parameter constant.
7. The method ofclaim 6, wherein the calibrating of the sequence of tonometric values Sr(t) includes calculating:
ar=(Sr(tD)−Sr(tM))/(DBP−MBP), andbr=Sr(tM)−arMBP, wherein
MBP is oscillometric mean arterial blood pressure measured near time tM, and
DBP is oscillometric diastolic blood pressure measured near time tD.
8. The method ofclaim 6, wherein the calibrating of the sequence of tonometric values Sr(t) includes calculating:
ar=(Sr(tS)−Sr(tM))/(SBP−MBP), andbr=Sr(tM)−arMBP), wherein
MBP is oscillometric mean arterial blood pressure measured near time tM, and
SBP is oscillometric systolic blood pressure measured near time tS.
9. The method ofclaim 6, wherein the calibrating of the sequence of tonometric values Sr(t) includes calculating:
ar=(Sr(tS)−Sr(tD))/(SBP−DBP), andbr=Sr(tD)−arDBP, wherein
SBP is oscillometric systolic blood pressure measured near time tS, and
DBP is oscillometric diastolic blood pressure measured near time tD.
10. The method ofclaim 1, wherein the calibrating of the sequence of values includes using a mean blood pressure value and a diastolic blood pressure value from the oscillometric signal to calibrate the sequence of tonometric pressure values.
11. The method ofclaim 1, wherein the calibrating of the sequence of values includes using a mean blood pressure value and a systolic blood pressure value from the oscillometric signal to calibrate the sequence of tonometric pressure values.
12. The method ofclaim 1, wherein the calibrating of the sequence of values includes using a systolic blood pressure value and a diastolic blood pressure value from the oscillometric signal to calibrate the sequence of tonometric pressure values.
13. The method ofclaim 1, further comprising:
calculating a first compliance value based on the calibrated radial pressure waveform;
estimating end-effects of the oscillometric signal; and
correcting the first compliance value using the estimated end effects.
14. The method ofclaim 1, wherein the processing of the calibrated tonometric pressure waveform includes estimating a first compliance value using a compliance pressure curve.
21. A system for computerized calculation of one or more vascular-compliance parameters of a patient, the system comprising:
a first sensor that measures an oscillometric arterial signal;
a second sensor that measures a tonometric arterial signal;
a first analog-to-digital converter, operatively coupled to the first sensor, that generates a sequence of oscillometric values that are based on the oscillometric signal;
a second analog-to-digital converter, operatively coupled to the second sensor, that generates a sequence of tonometric values that are based on the tonometric signal;
a computer system, operatively coupled to the first and second analog-to-digital converters, wherein the computer system processes the first and second sequences of values and calibrates the sequence of tonometric values based on the one or more oscillometric parameters to generate one or more values each corresponding to one of the one or more vascular-compliance parameters.
US10/780,9602002-08-012004-02-17Method and apparatus for calibrating and measuring arterial compliance and stroke volumeAbandonedUS20040167413A1 (en)

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US10/211,857US6733461B2 (en)2002-08-012002-08-01Methods and apparatus for measuring arterial compliance, improving pressure calibration, and computing flow from pressure data
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US20040024324A1 (en)2004-02-05
AU2003257083A8 (en)2004-02-23
US6733461B2 (en)2004-05-11

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