Kuo Johnny, von Ramm Olaf T
Department of Radiology, University of Pennsylvania, Philadelphia, PA 19104, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Apr;55(4):800-10. doi: 10.1109/TUFFC.2008.714.
Feature tracking was developed to efficiently compute motion measurements from volumetric ultrasound images. Prior studies have demonstrated the motion magnitude accuracy and computation speed of feature tracking. However, the previous feature tracking implementations were limited by performance of their calculations in rectilinear coordinates. Also, the previous feature tracking approaches did not fully explore the three dimensional (3- D) nature of volumetric image analysis or utilize the 3-D directional information from the tracking calculations. This study presents an improved feature tracking method which achieves further computation speed gains by performing all calculations in the native spherical coordinates of the 3-D ultrasound image. The novel method utilizes a statistical analysis of tracked directions of motion to achieve better rejection of false tracking matches. Results from in vitro tracking of a speckle target show that the new feature tracking method is significantly faster than correlation search and can accurately determine target motion magnitude and 3-D direction.
特征跟踪技术旨在从容积超声图像中高效地计算运动测量值。先前的研究已经证明了特征跟踪技术在运动幅度准确性和计算速度方面的优势。然而,以前的特征跟踪实现受到其在直角坐标系中计算性能的限制。此外,以前的特征跟踪方法没有充分探索容积图像分析的三维(3-D)特性,也没有利用跟踪计算中的3-D方向信息。本研究提出了一种改进的特征跟踪方法,该方法通过在3-D超声图像的原生球坐标系中执行所有计算,进一步提高了计算速度。该新方法利用对跟踪运动方向的统计分析,更好地排除错误的跟踪匹配。体外散斑目标跟踪结果表明,新的特征跟踪方法比相关搜索快得多,并且能够准确地确定目标运动幅度和3-D方向。