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Evaluation of cardiac ejection fraction and ventricular diastolic volume

机译:心脏射血分数和心室舒张容积的评估

摘要

The invention estimates a cardiac performance value such as cardiac output (CO) and cardiac ejection fraction (EF) by sensing a downstream indicator concentration signal y(t) that corresponds to an indicator (preferably heat) signal x(t) injected upstream in a patient's blood channel. The signal x(t) is preferably generated as a series of alternating transitions between a high state and a low state, such as a PRBS signal. The signal y(t) is then divided into at least one sub-signal that is synchronous with x(t). A decay parameter that minimizes a cost function that includes a time-domain channel relaxation model is then calculated. The cardiac performance value is then calculated based on this value for . For each transition of the injected indicator signal, a corresponding segment of the indicator concentration signal is preferably isolated, and a segment relaxation parameter is then calculated. The decay parameter is then estimated as a predetermined function of the segment relaxation parameters. In embodiments of the invention in which x(t) is periodic, the invention also generates estimates of by finding the minimum of a cost function between a model of the channel and an average of several cycles of y(t), each corresponding to one period of x(t).
机译:本发明通过感测下游指示剂浓度信号y(t)来估计诸如心脏输出(CO)和心脏射血分数(EF)之类的心脏性能值,该下游指示剂浓度信号y(t)对应于注入到体内的上游指示剂(优选为热)信号x(t)。病人的血液通道。信号x(t)优选地被生成为高状态和低状态之间的一系列交替过渡,例如PRBS信号。信号y(t)然后被分成至少一个与x(t)同步的子信号。然后计算最小化包括时域信道弛豫模型的成本函数的衰减参数。然后根据该值计算出心脏功能值。对于所注入的指示剂信号的每个转变,优选地隔离指示剂浓度信号的相应片段,然后计算片段弛豫参数。然后,将衰减参数估计为分段松弛参数的预定函数。在其中x(t)是周期性的本发明的实施例中,本发明还通过找到信道模型与y(t)的多个周期的平均值之间的成本函数的最小值来产生估计,每个周期对应于一个x(t)的周期

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