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Correction of Parameter Error in Rotating Linear Probe Using Image Registration for Ultrasonic Diagnostic Imaging

机译:用图像配准,对超声诊断成像进行旋转线性探头的参数误差校正

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Spatial compounding has been used in ultrasonic imaging for suppressing speckle noise. The technique generally involves electronically steering the ultrasonic beams. In this paper, we present a spatial compounding approach where the component image is acquired by mechanically rotating the probe element. A linear transducer array is rotated about an axis in the plane of the image. The goal is to avoid the problems associated with the electronic beam steering at a large angle such as decrease in the effective aperture size, grating lobe effect, and decrease in transducer sensitivity caused by obliquity factor. In the computation of the ultrasound image, we need the values of the axis of rotation and angular position of the transducer array. However, the construction of the rotation mechanism and the control system accompanies the inevitable uncertainties in these values. These parameter errors result in the target position error, and the consequence is the blurry compounded image. We present the spatial compounding for rotating linear probe in the presence of parameter error using image registration. The effect of the uncertainty in the mechanical parameters was compensated by registering the wire target images before spatial compounding. An efficient registration algorithm was developed to compute the transformation matrix required for the registration. The component images were registered by the transformation matrix before spatial compounding and the effect of the parameter errors were removed.
机译:空间复合已用于超声成像以抑制散斑噪声。该技术通常涉及以电子方式转向超声波束。在本文中,我们介绍了一种空间复合方法,其中通过机械旋转探针元件来获取分量图像。线性换能器阵列围绕图像平面中的轴旋转。目标是避免与大角度的电子束转向相关的问题,例如减小有效孔径尺寸,光栅叶效应,并降低由倾斜因子引起的换能器灵敏度。在超声图像的计算中,我们需要换能器阵列的旋转轴和角度位置的值。然而,旋转机构和控制系统的构造伴随着这些值的不可避免的不确定性。这些参数误差导致目标位置误差,结果是模糊的复合图像。我们在使用图像配准存在参数误差的情况下呈现用于旋转线性探针的空间复合。通过在空间复合前注册线靶图像来补偿不确定性在机械参数中的影响。开发了一种有效的注册算法以计算注册所需的变换矩阵。在空间复合之前,通过转换矩阵登记分量图像并去除参数误差的效果。

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