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Phonocardiographic Evaluation of Total Artificial Heart Valve Movement. Correlation with Pressure Waveforms

机译:全人工心脏瓣膜运动的心声图评估。与压力波形的相关性

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Abstract:Two categories of inflow and outflow valve closure sounds are present in the Jarvick‐7 model of the Utah total artificial heart. A presystolic inflow valve closure sound occurs at the end of ventricular filling, resulting from a transient rise in intraventricular pressure above that in the atrium. A second inflow valve closure sound follows, associated with the onset of mechanical systole with a rapid rise in intraventricular pressure. A mid‐ to late systolic outflow valve closure sound occurs at the end of ventricular ejection, resulting from a transient fall in intraventricular pressure below that in the aorta. A second outflow valve closure sound follows, associated with the onset of mechanical diastole with a rapid fall in intraventricular pressure. Under operating conditions where either ventricular filling or ejection is not complete, the presystolic and midsystolic sounds are absent. Thus, regulated heart driver parameters as well as preload and afterload to the extent that they influence ventricular filling and emptying will determine the presence and sequence of valve sou
机译:摘要:犹他州全人工心脏的Jarvick-7模型中存在两类流入和流出瓣膜关闭声音。心室充盈结束时会发出收缩前流入性瓣膜关闭音,这是由于心室内压短暂升高高于心房压力所致。随后出现第二次流入瓣膜关闭音,与机械收缩期发作伴心室内压快速升高有关。心室射血结束时会发出收缩期中晚期流出道瓣膜关闭音,这是由于脑室内压短暂下降低于主动脉压所致。随后出现第二次流出气门关闭音,与机械性舒张期发作伴心室内压快速下降有关。在心室充盈或射血不完全的操作条件下,没有收缩前和收缩中期音。因此,调节的心脏驱动参数以及影响心室充盈和排空的预负荷和后负荷将决定瓣膜的存在和顺序

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