University of Cambridge, Department of Engineering, Cambridge, United Kingdom.
Ultrasound Med Biol. 2011 Mar;37(3):434-41. doi: 10.1016/j.ultrasmedbio.2010.12.009. Epub 2011 Jan 26.
This article presents a new method for acquiring three-dimensional (3-D) volumes of ultrasonic axial strain data. The method uses a mechanically-swept probe to sweep out a single volume while applying a continuously varying axial compression. Acquisition of a volume takes 15-20 s. A strain volume is then calculated by comparing frame pairs throughout the sequence. The method uses strain quality estimates to automatically pick out high quality frame pairs, and so does not require careful control of the axial compression. In a series of in vitro and in vivo experiments, we quantify the image quality of the new method and also assess its ease of use. Results are compared with those for the current best alternative, which calculates strain between two complete volumes. The volume pair approach can produce high quality data, but skillful scanning is required to acquire two volumes with appropriate relative strain. In the new method, the automatic quality-weighted selection of image pairs overcomes this difficulty and the method produces superior quality images with a relatively relaxed scanning technique.
本文提出了一种获取超声轴向应变数据三维(3-D)容积的新方法。该方法使用机械扫描探头在施加连续变化的轴向压缩的同时扫出单个容积。获取一个容积需要 15-20 秒。然后通过比较整个序列中的帧对来计算应变容积。该方法使用应变质量估计值自动选择高质量的帧对,因此不需要仔细控制轴向压缩。在一系列体外和体内实验中,我们量化了新方法的图像质量,并评估了其易用性。结果与当前最佳替代方法(计算两个完整容积之间的应变)进行了比较。容积对方法可以产生高质量的数据,但需要熟练的扫描才能获得具有适当相对应变的两个容积。在新方法中,通过自动质量加权选择图像对克服了这一困难,并且该方法在相对宽松的扫描技术下产生了质量更高的图像。