Method and apparatus for measurement of heart-related parameters
First Claim
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1. Apparatus for determining the magnitude of heart-related parameters in a patient;
- comprising;
means for detecting blood volume, and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation;
said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation;
said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period;
means for measuring said time interval, said means for measuring being connected to said means for detecting; and
means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring;
wherein said selected parameter is pulse pressure and wherein the means for calculating calculates the pulse pressure in accordance with the expression;
##EQU9## where Ppi =pulse pressure as calculated with data obtained in said selected cycle of variationK=calibration constantQi =Y'"'"'iV /Δ
Yi whereY'"'"'iV =YiV -YiMINYiV =the amplitude of said signal at the maximum value of said slope in said selected cycle of variationYiMIN =said minimum amplitude in said selected cycle of variation;
Δ
Yi =YiMAX -YiMIN whereYiMAX =said maximum amplitude in said selected cycle of variation.
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Abstract
The invention relates to a method and apparatus for determining the magnitude of heart-related parameters in a patient. In accordance with the invention, blood volume variation of a peripheral part of the body of a patient, which variation is cyclic in nature, is detected to provide a signal representative of the blood volume. The maximum amplitude, minimum amplitude of the signal at maximum slope, the time interval between the maximum and minimum amplitudes and the instantaneous cyclic repetition rate (period) of the signal are measured, and the parameters are calculated in accordance with appropriate formulae.
39 Citations
26 Claims
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1. Apparatus for determining the magnitude of heart-related parameters in a patient;
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comprising; means for detecting blood volume, and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation; said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period; means for measuring said time interval, said means for measuring being connected to said means for detecting; and means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring; wherein said selected parameter is pulse pressure and wherein the means for calculating calculates the pulse pressure in accordance with the expression;
##EQU9## where Ppi =pulse pressure as calculated with data obtained in said selected cycle of variationK=calibration constant Qi =Y'"'"'iV /Δ
Yiwhere Y'"'"'iV =YiV -YiMIN YiV =the amplitude of said signal at the maximum value of said slope in said selected cycle of variation YiMIN =said minimum amplitude in said selected cycle of variation; Δ
Yi =YiMAX -YiMINwhere YiMAX =said maximum amplitude in said selected cycle of variation. - View Dependent Claims (2, 3, 4)
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5. Apparatus for determining the magnitude of heart-related parameters in a patient;
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comprising; means for detecting blood volume, and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation; said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period; means for measuring said time interval, said means for measuring being connected to said means for detecting; and means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring; wherein said selected parameter in arterial systolic pressure and wherein the means for calculating calculates the systolic pressure in accordance with the expression;
##EQU10## where Psi =arterial systolic pressure as calculated with data obtained in said selected cycle of variation;Ppi =pulse pressure as calculated with data obtained in said selected cycle of variation; Po =constant pressure Δ
Ti =said time interval of said cycle; andτ
i is given by the implicit equation;
##EQU11## where a and b are constantsτ
i =average arterial time constant during the ith cycle. - View Dependent Claims (6, 7, 8, 9)
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10. Apparatus for determining the magnitude of heart-related parameters in a patient;
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comprising; means for detecting blood volume, and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation; said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period; means for measuring said time interval, said means for measuring being connected to said means for detecting; and means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring; wherein said selected parameter is average peripheral resistance and wherein the means for calculating calculates the resistance in accordance with the expression;
##EQU12## where Ri =average peripheral resistance during the ith cycle as calculated with data obtained in said selected cycle of variation;K2 =constant τ
i is given by the implicit formula ##EQU13## a and b are constants ##EQU14## where Δ
yi is an incremental change in Y associated with an incremental change in T=Δ
t, andSiMAX =maximum slope in the ith cycle=Δ
yi /Δ
ti. - View Dependent Claims (11, 12, 13)
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14. Apparatus for determining the magnitude of heart-related parameters in a patient;
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comprising; means for detecting blood volume, and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation; said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period; means for measuring said time interval, said means for measuring being connected to said means for detecting; and means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring; wherein said selected parameter is arterial compliance and wherein the means for calculating calculates the arterial compliance in accordance with the expression;
space="preserve" listing-type="equation">C.sub.i =τ
.sub.i /R.sub.iwhere Ci =the average arterial compliance in the ith cycle ##EQU15## Ri =average peripheral resistance during the ith cycle as calculated with data obtained in said selected cycle of variation; K2 =constant τ
i is given by the implicit formula ##EQU16## a and b are constants Wi =2π
/Ti ##EQU17## where Δ
yi is an incremental change in Y associated with an incremental change in T=Δ
t, andSiMAX =maximum slope in the ith cycle=Δ
yi /Δ
ti. - View Dependent Claims (15, 16, 17)
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18. A method for determining the magnitude of heart-related parameters in a patient;
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comprising; detecting blood volume, and thereby blood volume variation, in said patient and providing a signal representative of said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between the maximum amplitude and the minimum amplitude, and a pulse repetition period; measuring said time interval; and calculating the magnitude of selected ones of said parameters; wherein said selected parameter is pulse pressure which is calculated in accordance with the expression;
##EQU18## where Ppi =pulse pressure as calculated with data obtained in said selected cycle of variation;K=calibration constant Qi =Y'"'"'iV /Δ
YiY'"'"'iV =YiV -YiMIN YiV =the amplitude of said signal at the maximum value of said slope in said selected cycle of variation; YiMIN =said minimum amplitude in said selected cycle of variation; Δ
Yi =YiMAX -YiMIN whereYiMAX =said maximum amplitude in said selected cycle of variation. - View Dependent Claims (19)
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20. A method for determining the magnitude of heart-related parameters in a patient;
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comprising; detecting blood volume, and thereby blood volume variation, in said patient and providing a signal representative of said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between the maximum amplitude and the minimum amplitude, and a pulse repetition period; measuring said time interval; and calculating the magnitude of selected ones of said parameters; wherein said selected parameter is arterial systolic pressure which is calculated in accordance with the expression;
##EQU19## where Psi =arterial systolic pressure as calculated with data obtained in said selected cycle of variation;Ppi =pulse pressure as calculated with data obtained in said selected cycle of variation; Po =constant pressure Δ
Ti =said time interval of said cycle; andτ
i is given by the implicit equation;
##EQU20## where a and b are constantsτ
i =average arterial time constant during the ith cycle. - View Dependent Claims (21, 22)
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23. A method for determining the magnitude of heart-related parameters in a patient;
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comprising; detecting blood volume, and thereby blood volume variation, in said patient and providing a signal representative of said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between the maximum amplitude and the minimum amplitude, and a pulse repetition period; measuring said time interval; and calculating the magnitude of selected ones of said parameters; wherein said selected parameter is total peripheral resistance which is calculated in accordance with the expression;
##EQU21## where Ri =average peripheral resistance during the ith cycle as calculated with data obtained in said selected cycle of variation;K2 =constant τ
i is given by the implicit formula ##EQU22## a and b are constants Wi =2π
/Ti ##EQU23## where Δ
yi is an incremental change in Y associated with an incremental change in T=Δ
t, andSiMAX =maximum slope in the ith cycle=Δ
yi /Δ
ti. - View Dependent Claims (24)
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25. Apparatus for determining the magnitude of heart-related parameters in a patient;
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comprising; means for detecting blood volume and thereby blood volume variation, in said patient, and for providing a signal representative of said blood volume, and thereby said blood volume variation; said means for detecting being attachable to said patient to thereby detect said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between said maximum amplitude and said minimum amplitude, and a pulse repetition period; means for measuring said time interval, said means for measuring being connected to said means for detecting; and means for calculating the magnitude of selected ones of said parameters, said means for calculating being connected to both said means for detecting and said means for measuring; wherein said selected parameter is arterial timing constant and wherein the means for calculating calculates the arterial timing constant in accordance with the expression;
##EQU24## where τ
i =the average arterial time constant during the ith cycle;a=constant; b=constant; and Δ
Ti =said time interval between said maximum amplitude and said minimum amplitude.
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26. A method for determining the magnitude of heart-related parameters in a patient;
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comprising; detecting blood volume, and thereby blood volume variation, in said patient and providing a signal representative of said blood volume, and thereby said blood volume variation; said blood volume variation being cyclic in nature whereby said signal comprises a cyclic curve having, in each cycle of variation, a variable slope, a maximum amplitude, a minimum amplitude, a time interval between the maximum amplitude and the minimum amplitude, and a pulse repetition period; measuring said time interval; and calculating the magnitude of selected ones of said parameters; wherein said selected parameter is arterial timing constant and wherein the means for calculating calculates the arterial timing constant in accordance with the expression;
##EQU25## where τ
i =the average arterial time constant during the ith cycle;a=constant; b=constant; and Δ
Ti =said time interval between said maximum amplitude and said minimum amplitude.
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Specification