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心室辅助装置内部的热膜壁面剪应力探头测量

Hot-film wall shear probe measurements inside a ventricular assist device.

作者信息

Baldwin J T, Tarbell J M, Deutsch S, Geselowitz D B, Rosenberg G

机构信息

Bioengineering Program, Pennsylvania State University, University Park 16802.

出版信息

J Biomech Eng. 1988 Nov;110(4):326-33. doi: 10.1115/1.3108449.

Abstract

Wall shear rates at eleven sites within the Penn State Electric Ventricular Assist Device (EVAD) were determined with the pump operating under conditions of 30 and 50 percent systolic duration and a mean flow rate of 5.8 L/min using a flush-mounted hot-film probe. Probe calibrations were performed with the hot-film in two orientations relative to the flow direction: a standard orientation and an orientation in which the hot-film was rotated by 90 deg from the standard orientation. The magnitude and direction of the wall shear stress at each site within the EVAD were estimated from ensemble averaged voltage data recorded for similar standard and rotated film orientations. The results indicate that, during diastole the wall shear stress direction around the pump's periphery for both operating conditions is predominantly perpendicular to the inflow-outflow plane (in the direction of the pusher plate motion) and reaches a peak value of approximately 350 dynes/cm2. The highest wall shear stresses were found near the prosthetic aortic valve (inside the EVAD) under the 30 percent systolic duration condition and are estimated to be as high as 2700 dynes/cm2. Peak shear stress values of 1400 dynes/cm2 were observed in the vicinity of the prosthetic mitral valve under both operating conditions. The results suggested that the valve regions are substantially more hemolytic than other wall regions of the EVAD; the magnitudes of the wall shear stresses are sensitive to operating conditions; and that wall shear in the direction of pusher plate motion can be significant.

摘要

使用嵌入式热膜探头,在宾夕法尼亚州立大学电动心室辅助装置(EVAD)内的11个部位测定了壁面剪切率,泵在收缩期持续时间为30%和50%以及平均流速为5.8 L/min的条件下运行。热膜探头在相对于流动方向的两个方向上进行校准:标准方向和热膜相对于标准方向旋转90度的方向。根据为类似的标准和旋转膜方向记录的总体平均电压数据,估计了EVAD内每个部位的壁面剪应力的大小和方向。结果表明,在舒张期,两种运行条件下泵周边的壁面剪应力方向主要垂直于流入流出平面(沿推板运动方向),并达到约350达因/平方厘米的峰值。在收缩期持续时间为30%的条件下,在人工主动脉瓣附近(EVAD内部)发现了最高的壁面剪应力,估计高达2700达因/平方厘米。在两种运行条件下,在人工二尖瓣附近观察到峰值剪应力值为1400达因/平方厘米。结果表明,瓣膜区域比EVAD的其他壁面区域溶血程度高得多;壁面剪应力的大小对运行条件敏感;并且推板运动方向上的壁面剪切可能很大。

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