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A comparison of quantitative measures of arterial tortuosity using sine wave simulations and 3D wire models.

机译:使用正弦波模拟和3D导线模型对动脉曲折进行定量测量的比较。

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This paper discusses the quantitative measurement of arterial tortuosity. The measures described are a tortuosity coefficient, TC, based on the second derivative of the vessel midline and the distance factor, DF, defined as L/D - 1, where L is the vessel length and D is the straight line distance between the vessel end points. A tortuosity scale derived from sine wave simulations was used to determine the ability of these two measures to quantify tortuosity. The tortuosity coefficient was demonstrated to be an appropriate measure whilst the distance factor was found to be a measure of vessel elongation rather than tortuosity. A tomographic method of deriving three-dimensional measures of TC and DF is described using a wire model. The x, y coordinates along the length of the wire were obtained from CT slices and the three-dimensional values calculated as the geometric mean of the TC and DF values measured in the x and y directions. Rotation of the wire through 90 degrees demonstrated that the three-dimensional derivations of TC and DF were independent of the orientation of the wire.
机译:本文讨论了动脉曲折的定量测量。所描述的度量是基于容器中线的二阶导数的曲折系数TC和定义为L / D-1的距离因子DF,其中L是容器长度,D是容器之间的直线距离终点。从正弦波模拟得出的曲折度标度用于确定这两种量度曲折度的能力。弯曲度系数被证明是一种适当的量度,而距离因子被认为是血管伸长而不是弯曲度的量度。使用线模型描述了一种用于获取TC和DF三维测量值的层析成像方法。沿导线长度的x,y坐标是从CT切片获得的,三维值被计算为在x和y方向上测得的TC和DF值的几何平均值。导线旋转90度证明TC和DF的三维导数与导线的方向无关。

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