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Effect of Cerebral Flow Autoregulation Function on Cerebral Flow Rate Under Continuous Flow Left Ventricular Assist Device Support

机译:脑流动自动调节功能对连续流动左心室辅助装置支架下脑流量的影响

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Abstract Neurological complications in continuous flow left ventricular assist device (CF‐LVAD) patients are the second‐leading risk of death after multi‐organ failure. They are associated with altered blood flow in the cardiovascular system because of CF‐LVAD support. Moreover, an impaired cerebral autoregulation function may also contribute to complications such as hyperperfusion in the cerebral circulation under mechanical circulatory support. The aim of this study is to evaluate the effect of cerebral autoregulatory function on cerebral blood flow rate under CF‐LVAD support. A lumped parameter model was used to simulate the cardiovascular system including the heart chambers, heart valves, systemic and pulmonary circulations and cerebral circulation which includes entire Circle of Willis. A baroreflex model was used to regulate the systemic arteriolar and cerebral vascular resistances and a model of the Micromed CF‐LVAD was used to simulate the pump dynamics at different operating speeds. Additionally, preserved and impaired cerebral autoregulatory functions were simulated in heart failure and under CF‐LVAD support. Cerebral blood flow rate was restored under CF‐LVAD support at 10?500 rpm pump operating speed which generated a similar arterial blood pressure and blood flow as in a healthy condition for the impaired cerebral autoregulatory function while the preserved cerebral autoregulatory function regulated the cerebral flow rate within a relatively low range for the applied pump operating speeds. Relatively low or high pump operating speeds may cause underpefusion or hyperperfusion for a failing cardiovascular system with impaired cerebral autoregulatory function under CF‐LVAD support which?will contribute to the worsening of cerebral complications.
机译:摘要连续流动左心室辅助装置(CF-LVAD)患者的神经系统并发症是多器官衰竭后的二级死亡风险。由于CF-LVAD支持,它们与心血管系统中的血流改变有关。此外,脑自动调节功能受损也可能有助于在机械循环载体下的脑循环中的并发症如过脾脏。本研究的目的是评估脑自身导致功能对CF-LVAD支持下的脑血流量的影响。集总参数模型用于模拟心血管系统,包括心脏室,心脏瓣膜,全身和肺循环和脑循环,包括整个威利斯圈。使用Baroreflex模型来调节系统性的动脉杆菌和脑血管电阻,并且使用微型CF-LVAD模型以不同的操作速度模拟泵动力学。另外,在心力衰竭和CF-LVAD载体下模拟了脑自身调节功能的保存和受损。在CF-LVAD支撑件下恢复脑血流量,在10℃的泵运行速度下,产生类似的动脉血压和血流,因为在保存的脑自身导致功能受损的脑自身化功能中,在健康状态下造成健康状况,而保存的脑自身导致函数调节脑流量用于应用泵的操作速度相对较低范围内的速率。相对较低或高的泵操作速度可能导致缺陷或过度灌注,在CF-LVAD载体下具有受损的脑自身调节功能受损的失败的心血管系统?有助于脑并发症的恶化。

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