Medical device for evaluating a pulsatile signal
A medical device ( 100 ) determines a resistance parameter ( 107 ), of a patient to be treated, indicating a peripheral vascular resistance. A reception module ( 110 ) is configured to receive a pulsatile signal ( 112 ). The pulsatile signal indicates a blood pressure curve ( 114 ), especially an arterial blood pressure curve, or a blood volume curve. A reading module ( 120 ) is connected to the reception module and is configured to read a number of predefined curve parameters ( 124 ) from the received pulsatile signal and to provide corresponding, read measured values ( 134 ) for the number of predefined curve parameters. A calculation module ( 130 ) is connected to the reading module and is configured to calculate the resistance parameter of the patient with the use of a predefined estimation function ( 136 ) based on the read measured values and on a predefined parameter ( 135 ) indicating the cardiac output of the patient and to output same.
1 . A medical device for determining a resistance parameter of a patient to be treated, which resistance parameter indicates a peripheral vascular resistance, the medical device comprising:
a reception module configured to receive a pulsatile signal, wherein the pulsatile signal indicates a blood pressure curve or a blood volume curve of the patient;
a reading module connected to the reception module, the reading module being configured to read a number of predefined curve parameters from the received pulsatile signal and to provide corresponding read measured values for the number of predefined curve parameters;
a calculation module connected to the reading module, the calculation module being configured to instantaneously calculate, in real time, the resistance parameter of the patient with the use of a predefined estimation function based on the read measured values and based on a predefined parameter indicating the cardiac output of the patient and being configured to output the resistance parameter, wherein the number of predefined curve parameters is based on an end-diastolic value of a particular pulse of the pulsatile signal and on an end-systolic value of the particular pulse of the pulsatile signal, wherein the predefined estimation function is a function of a difference between the end-systolic value and the end-diastolic value, wherein the number of predefined curve parameters comprises a time constant of the pulsatile signal, which is determined via a curve of the pulsatile signal in the area of at least one diastole, wherein the calculation module is further configured to calculate an arterial compliance of the patient based on the resistance parameter of the patient and based on the time constant and to output the calculated arterial compliance of the patient; and
an output module or an interface module configured to provide the calculated arterial compliance.
2 . A medical device in accordance with claim 1 , wherein the number of predefined curve parameters comprises at least one of the following curve parameters of the particular pulse: a maximal value during a systole; a duration of a systole; and a duration of a diastole.
3 . A medical device in accordance with claim 2 , wherein the predefined estimation function depends on a difference between the end-systolic value and the end-diastolic value.
4 . A medical device in accordance with at least claim 1 , wherein the calculation module is further configured to calculate an estimated signal curve pertaining to the pulsatile signal based on the resistance parameter and to output the calculated estimated signal curve.
5 . A medical device in accordance with at least claim 1 , wherein the predefined parameter indicating the cardiac output of the patient is predefined and repeatedly updated and the calculation module is configured to use a correspondingly updated value for the predefined parameter indicating the cardiac output of the patient for the calculation of the resistance parameter.
6 . A medical device in accordance with claim 5 , wherein the calculation module is further configured to calculate the updated value for the parameter indicating the cardiac output based on the received pulsatile signal and on a predefined model rule.
7 . A medical device in accordance with claim 1 , wherein a constant estimated value is used for the predefined parameter indicating the cardiac output of the patient.
8 . A medical device in accordance with claim 1 , wherein the output module comprises a display, the output module receiving the resistance parameter as input, the display being configured to display the resistance parameter.
9 . A medical system for determining a resistance parameter of a patient to be treated, which resistance parameter indicates a peripheral vascular resistance, the medical system comprising:
a measuring device configured to measure a measured value curve of the patient, which measured value curve indicates a blood pressure curve or the blood volume curve, and to provide the measured value curve as a pulsatile output signal; and
a medical device for determining the resistance parameter of a patient to be treated, which resistance parameter indicates the peripheral vascular resistance, the medical device comprising:
a reception module configured to receive the pulsatile output signal;
a reading module connected to the reception module, the reading module being configured to read a number of predefined curve parameters from the received pulsatile output signal and to provide corresponding read measured values for a number of predefined curve parameters;
a calculation module connected to the reading module, the calculation module being configured to instantaneously calculate the resistance parameter of the patient, in real time, with the use of a predefined estimation function based on the read measured values and based on a predefined parameter indicating the cardiac output of the patient and being configured to output the resistance parameter, wherein the number of predefined curve parameters is based on an end-diastolic value of a particular pulse of the pulsatile signal and on an end-systolic value of the particular pulse of the pulsatile signal, wherein the predefined estimation function is a function of a difference between the end-systolic value and the end-diastolic value, wherein the number of predefined curve parameters comprises a time constant of the pulsatile signal, which is determined via a curve of the pulsatile signal in the area of at least one diastole, wherein the calculation module is further configured to calculate an arterial compliance of the patient based on the resistance parameter of the patient and based on the time constant and to output the calculated arterial compliance of the patient; and
an output module or an interface module configured to provide the calculated arterial compliance.
10 . A medical system in accordance with claim 9 , wherein the measuring device is configured to measure the blood pressure curve of the patient, and wherein the pulsatile signal provided is a blood pressure signal.
11 . A medical system in accordance with claim 10 , wherein the measuring device is configured for the non-invasive measurement of the blood pressure curve of the patient.
12 . A medical system in accordance with claim 9 , wherein the number of predefined curve parameters is based on an end-diastolic state of the particular pulse of the pulsatile signal and/or on an end-systolic state of the particular pulse of the pulsatile signal.
13 . A medical system in accordance with claim 12 , wherein the number of predefined curve parameters comprises at least one of the following curve parameters of the particular pulse: a maximal value during a systole; a duration of a systole; and a duration of a diastole.
14 . A medical system in accordance with claim 13 , wherein the predefined estimation function depends on a difference between the end-systolic value and the end-diastolic value.
15 . A process for determining a resistance parameter of a patient to be treated, which resistance parameter indicates a peripheral vascular resistance, the process comprising the steps of:
receiving a pulsatile signal, wherein the pulsatile signal indicates a blood pressure curve or a blood volume curve of the patient;
reading of a number of predefined curve parameters from the pulsatile signal received;
providing read measured values for a number of predefined curve parameters;
instantaneously calculating the resistance parameter of the patient, in real time, using a predefined estimation function, based on the read measured values and on a predefined parameter indicating a cardiac volume of the patient, wherein the number of predefined curve parameters is based on an end-diastolic value of a particular pulse of the pulsatile signal and on an end-systolic value of the particular pulse of the pulsatile signal, wherein the predefined estimation function is a function of a difference between the end-systolic value and the end-diastolic value, wherein the number of predefined curve parameters comprises a time constant of the pulsatile signal, which is determined via a curve of the pulsatile signal in the area of at least one diastole, wherein the calculation module is further configured to calculate an arterial compliance of the patient based on the resistance parameter of the patient and based on the time constant and to output the calculated arterial compliance of the patient;
outputting the resistance parameter; and
providing the calculated arterial compliance via an output module or an interface module.
16 . A process according to claim 15 , wherein a computer program is provided with a program code for carrying out at least some of the process steps upon the program code being executed one a computer, on a processor or on a programmable hardware component, wherein the resistance parameter of the patient is continuously determined and the calculated arterial compliance is continuously updated via the output module or the interface module.