Czegledy F, Aebischer N, Smith D, Katz J
Dept. of Medicine, Columbia University, New York, NY 10032.
J Biomed Eng. 1993 Mar;15(2):127-31. doi: 10.1016/0141-5425(93)90041-v.
An understanding of the geometry of the right ventricular (RV) free wall is imperative for both modelling its mechanics and assessing its mass by imaging techniques such as echocardiography. In this paper, a new model of the RV free wall geometry is discussed in which the wall is assumed to have a parabolic long-axis and a circular short-axis curvature respectively. By use of analytic geometry, mathematical expressions for RV surface area, volume and mass were derived. In vitro model validation was carried out in the following manner: (1) echocardiographic images of 16 isolated calf hearts were obtained; (2) measurements were made from the images to determine the parameters required by the model; (3) wall mass was determined by use of these parameters; and (4) the calculated wall mass was then compared with actual RV wall mass (determined by weighting). The model was found to be very accurate for determination of RV free wall mass (R = 0.92); it should prove useful in the study of the stress-strain relationships for the RV and for precise quantitative assessment of RV free wall mass.
了解右心室(RV)游离壁的几何形状对于模拟其力学特性以及通过超声心动图等成像技术评估其质量都至关重要。本文讨论了一种新的右心室游离壁几何模型,其中假定该壁分别具有抛物线形的长轴曲率和圆形的短轴曲率。通过解析几何,推导了右心室表面积、体积和质量的数学表达式。体外模型验证按以下方式进行:(1)获取16个离体小牛心脏的超声心动图图像;(2)从图像中进行测量以确定模型所需的参数;(3)利用这些参数确定壁质量;(4)然后将计算出的壁质量与实际右心室壁质量(通过称重确定)进行比较。发现该模型在确定右心室游离壁质量方面非常准确(R = 0.92);它在研究右心室的应力 - 应变关系以及精确量化评估右心室游离壁质量方面应会被证明是有用的。