Literature DB >> 28343411

Three-Dimensional Liver Surgery Simulation: Computer-Assisted Surgical Planning with Three-Dimensional Simulation Software and Three-Dimensional Printing<sup/>.

Yukio Oshiro1, Nobuhiro Ohkohchi1.   

Abstract

To perform accurate hepatectomy without injury, it is necessary to understand the anatomical relationship among the branches of Glisson's sheath, hepatic veins, and tumor. In Japan, three-dimensional (3D) preoperative simulation for liver surgery is becoming increasingly common, and liver 3D modeling and 3D hepatectomy simulation by 3D analysis software for liver surgery have been covered by universal healthcare insurance since 2012. Herein, we review the history of virtual hepatectomy using computer-assisted surgery (CAS) and our research to date, and we discuss the future prospects of CAS. We have used the SYNAPSE VINCENT medical imaging system (Fujifilm Medical, Tokyo, Japan) for 3D visualization and virtual resection of the liver since 2010. We developed a novel fusion imaging technique combining 3D computed tomography (CT) with magnetic resonance imaging (MRI). The fusion image enables us to easily visualize anatomic relationships among the hepatic arteries, portal veins, bile duct, and tumor in the hepatic hilum. In 2013, we developed an original software, called Liversim, which enables real-time deformation of the liver using physical simulation, and a randomized control trial has recently been conducted to evaluate the use of Liversim and SYNAPSE VINCENT for preoperative simulation and planning. Furthermore, we developed a novel hollow 3D-printed liver model whose surface is covered with frames. This model is useful for safe liver resection, has better visibility, and the production cost is reduced to one-third of a previous model. Preoperative simulation and navigation with CAS in liver resection are expected to help planning and conducting a surgery and surgical education. Thus, a novel CAS system will contribute to not only the performance of reliable hepatectomy but also to surgical education.

Entities:  

Keywords:  3D; 3D printing; computer-assisted surgery; simulation

Mesh:

Year:  2017        PMID: 28343411     DOI: 10.1089/ten.TEA.2016.0528

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  16 in total

Review 1.  Simulation and navigation liver surgery: an update after 2,000 virtual hepatectomies.

Authors:  Akinori Miyata; Junichi Arita; Yoshikuni Kawaguchi; Kiyoshi Hasegawa; Norihiro Kokudo
Journal:  Glob Health Med       Date:  2020-10-31

Review 2.  Image once, print thrice? Three-dimensional printing of replacement parts.

Authors:  Timothy M Rankin; Blair A Wormer; John D Miller; Nicholas A Giovinco; Salam Al Kassis; David G Armstrong
Journal:  Br J Radiol       Date:  2018-01-31       Impact factor: 3.039

3.  Influence of Three-Dimensional Visual Reconstruction Technology Combined with Virtual Surgical Planning of CTA Images on Precise Resection of Liver Cancer in Hepatobiliary Surgery.

Authors:  Yuanyu Zhao; Ting Chen; Hui Wang; Qiang Xue; Wenyuan Guo; Guoshan Ding; Junfeng Dong; Junsong Ji
Journal:  Comput Math Methods Med       Date:  2022-07-07       Impact factor: 2.809

4.  A Systematic Review of Three-Dimensional Printing in Liver Disease.

Authors:  Elizabeth Rose Perica; Zhonghua Sun
Journal:  J Digit Imaging       Date:  2018-10       Impact factor: 4.056

5.  Consensus recommendations of three-dimensional visualization for diagnosis and management of liver diseases.

Authors:  Chihua Fang; Jihyun An; Antonio Bruno; Xiujun Cai; Jia Fan; Jiro Fujimoto; Rita Golfieri; Xishan Hao; Hongchi Jiang; Long R Jiao; Anand V Kulkarni; Hauke Lang; Cosmas Rinaldi A Lesmana; Qiang Li; Lianxin Liu; Yingbin Liu; Wanyee Lau; Qiping Lu; Kwan Man; Hitoshi Maruyama; Cristina Mosconi; Necati Örmeci; Michael Pavlides; Guilherme Rezende; Joo Hyun Sohn; Sombat Treeprasertsuk; Valérie Vilgrain; Hao Wen; Sai Wen; Xianyao Quan; Rafael Ximenes; Yinmo Yang; Bixiang Zhang; Weiqi Zhang; Peng Zhang; Shaoxiang Zhang; Xiaolong Qi
Journal:  Hepatol Int       Date:  2020-07-07       Impact factor: 6.047

6.  Robot-assisted partial nephrectomy of initial cases using a 3D square-block type kidney model.

Authors:  Masahiro Yamazaki; Tatsuya Takayama; Akira Fujisaki; Tomoki Kamimura; Toshihiro Mashiko; Tetsuya Fujimura
Journal:  Transl Androl Urol       Date:  2020-04

7.  Extended left hepatectomy for intrahepatic cholangiocarcinoma: hepatic vein reconstruction with in-situ hypothermic perfusion and extracorporeal membrane oxygenation.

Authors:  Deniz Balci; Menekse Ozcelik; Elvan Onur Kirimker; Arda Cetinkaya; Evren Ustuner; Mehmet Cakici; Bahadir Inan; Zekeriyya Alanoglu; Sadik Bilgic; Ahmet Ruchan Akar
Journal:  BMC Surg       Date:  2018-01-31       Impact factor: 2.102

Review 8.  Computational Modeling in Liver Surgery.

Authors:  Bruno Christ; Uta Dahmen; Karl-Heinz Herrmann; Matthias König; Jürgen R Reichenbach; Tim Ricken; Jana Schleicher; Lars Ole Schwen; Sebastian Vlaic; Navina Waschinsky
Journal:  Front Physiol       Date:  2017-11-14       Impact factor: 4.566

9.  Application of 3D visualization and 3D printing technology on ERCP for patients with hilar cholangiocarcinoma.

Authors:  Yan Yang; Zhongyin Zhou; Rong Liu; Lu Chen; Hongyu Xiang; Na Chen
Journal:  Exp Ther Med       Date:  2018-02-02       Impact factor: 2.447

Review 10.  Role of innovative 3D printing models in the management of hepatobiliary malignancies.

Authors:  Peter Bangeas; Vassilios Tsioukas; Vasileios N Papadopoulos; Georgios Tsoulfas
Journal:  World J Hepatol       Date:  2019-07-27
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