Development of a MR Training System for Living Donor Liver Transplantation Using Simulated Liver Phantom and ICP Tracking Technology

Tsung Han Yang, Yi Chun Du, Cheng Bin Xu, Wei Siang Ciou

研究成果: Article同行評審

1 引文 斯高帕斯(Scopus)

摘要

Living donor liver transplantation (LT) is a curative treatment for decompensation liver cirrhosis, some metabolic diseases, and acute liver failure. For specific conditions of hepatocellular carcinoma, LT provides a better prognosis than other known treatments do. During living donor LT, recognition and preservation of the middle hepatic vein (MHV) and its main branch are extremely important and closely related to the outcomes for the donor and recipient. Currently, preoperative computed tomography (CT) scans and intraoperative ultrasound are used to evaluate the location of the MHV; however, the information from CT scans and ultrasound is two-dimensional and lacks specific perception data. To achieve better MHV tracking during surgery, this work presents a mixed-reality (MR) training system for open liver LT surgery, which uses a simulated elastic liver phantom and iterative closest point (ICP) tracking technology. We created a three-dimensional (3-D) liver reconstruction model based on CT images from 20 patients and produced a series of equal-sized elastic liver phantoms with soft vessels inside. The ICP algorithm was used to track the liver phantom with the MR system, and the 3-D reconstruction model was superimposed on the phantom. The experimental results revealed that the registration error was <4 mm. The feedback from ten novice surgeons who practiced with the proposed system was positive. It is expected that the proposed system for LT could enhance the overall effectiveness of surgeon training and serve as a reference for other applications in the future.

原文English
頁(從 - 到)678-687
頁數10
期刊IEEE Transactions on Human-Machine Systems
54
發行號6
DOIs
出版狀態Published - 2024

All Science Journal Classification (ASJC) codes

  • 人因工程和人體工學
  • 控制與系統工程
  • 訊號處理
  • 人機介面
  • 電腦科學應用
  • 電腦網路與通信
  • 人工智慧

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