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A mechanical device for aortic compliance modulation: In vitro simulation of aortic dissection treatment.

机译:用于主动脉顺应性调节的机械设备:主动脉夹层治疗的体外模拟。

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Stanford type A aortic dissection often rapidly leads to death from aortic rupture. We considered the possibility of introducing a passive counterpulsating damper into the dissected aorta in order to limit the physical stress associated with ventricular ejection and increase the diastolic aorto-ventricular pressure gradient. We conceived a damping device comprising an intravascular balloon connected to an adjustable external reservoir to regulate the air pressure inside the balloon, and performed a simulation study using a mechanical model of the cardiovascular system, mimicking aortic dissection. When the balloon was completely deflated, the behavior of the aortic pressure signal was typical of low-compliance aortic dissection, as characterized by an augmented maximum systolic value, accentuated diastolic decay, and a very low end-diastolic value. Balloon inflation (at incremental steps to 90mmHg) progressively restored the aorto-ventricular pressure gradient and reduced peak systolic pressure values,leading to progressive improvements in the characteristics of the aortic pressure curve in terms of reduction in the maximum systolic value and slower diastolic decay. The proposed mechanism might exert beneficial effects at two levels: (1) directly, by reducing mechanical stress on the arterial wall; (2) indirectly, by allowing safer use of pharmaceutical agents (beta-blockers etc.). In vivo animal simulation studies are warranted to verify the effects of the device and optimize balloon shape and volume in a realistic pathophysiological setting.
机译:斯坦福大学的A型主动脉夹层常常会迅速导致主动脉破裂而导致死亡。我们考虑了将被动反搏阻尼器引入解剖的主动脉中的可能性,以限制与心室射血相关的物理应力并增加舒张期主动脉-心室压力梯度。我们设计了一种阻尼装置,该装置包括一个连接至可调外部储液器的血管内球囊,以调节球囊内的气压,并使用心血管系统的机械模型模拟主动脉解剖,进行了模拟研究。当球囊完全放气时,主动脉压力信号的表现是低顺应性主动脉夹层的典型表现,其特征是最大收缩压增高,舒张期衰减增高和舒张末期值非常低。球囊膨胀(逐步增加到90mmHg)逐渐恢复主动脉室压力梯度并降低峰值收缩压值,从而导致最大收缩压降低和舒张压衰减减慢方面的主动脉压曲线特征逐渐改善。所提出的机制可能在两个层面上发挥有益作用:(1)通过减少动脉壁上的机械应力直接发挥作用; (2)通过允许更安全地使用药剂(β受体阻滞剂等)间接进行。有必要进行体内动物模拟研究,以验证装置的效果并在现实的病理生理环境中优化气球的形状和体积。

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