Taylor Lawrence S, Porter Brian C, Nadasdy Gyongyi, di Sant'Agnese P Anthony, Pasternack David, Wu Zhe, Baggs Raymond B, Rubens Deborah J, Parker Kevin J
Biomedical Engineering and University of Rochester, Rochester, NY 14627, USA.
Ultrasound Med Biol. 2004 Feb;30(2):161-8. doi: 10.1016/j.ultrasmedbio.2003.10.005.
A whole mount histology protocol for 3-D tissue reconstruction to compare the size and spatial location of tumors (and other components) identified in histology data with that from 3-D ultrasound (US) images is presented. Prostate specimens are imaged in 3-D using B-mode (US) and sonoelastography. The prostate surface is outlined in each B-mode image and a 3-D surface reconstruction is made. The specimen is then prepared for whole mount histology and the histology slides are digitally reconstructed to make a 3-D surface. These two surfaces are then aligned using a 3-D correlation algorithm, and the tumor boundary determined by the pathologist is compared with that using sonoelastography. 3-D images showing the overlapping histology and sonoelastography of prostate surface reconstructions for one prostate are presented to illustrate the technique; results for four prostates yielded an accuracy of 92% +/- 3%.
本文介绍了一种用于三维组织重建的全层组织学方案,以比较组织学数据中识别出的肿瘤(及其他成分)的大小和空间位置与三维超声(US)图像中的情况。使用B模式(US)和超声弹性成像对前列腺标本进行三维成像。在每个B模式图像中勾勒出前列腺表面,并进行三维表面重建。然后将标本制备用于全层组织学,对组织学切片进行数字重建以形成三维表面。接着使用三维相关算法对齐这两个表面,并将病理学家确定的肿瘤边界与超声弹性成像确定的边界进行比较。展示了一个前列腺的前列腺表面重建的组织学和超声弹性成像重叠的三维图像来说明该技术;四个前列腺的结果显示准确率为92%±3%。