Split and join: An efficient approach for simulating stapled intestinal anastomosis in virtual reality

Author:

Qi Di1ORCID,De Suvranu2

Affiliation:

1. Dale E. and Sara Ann Fowler School of Engineering Chapman University Orange California USA

2. College of Engineering Florida A&M University – Florida State University Tallahassee Florida USA

Abstract

AbstractColorectal cancer is a life‐threatening disease. It is the second leading cause of cancer‐related deaths in the United States. Stapled anastomosis is a rapid treatment for colorectal cancer and other intestinal diseases and has become an integral part of routine surgical practice. However, to the best of our knowledge, there is no existing work simulating intestinal anastomosis that often involves sophisticated soft tissue manipulations such as cutting and stitching. In this paper, for the first time, we propose a novel split and join approach to simulate a side‐to‐side stapled intestinal anastomosis in virtual reality. We mimic the intestine model using a new hybrid representation—a grid‐linked particles model for physics simulation and a surface mesh for rendering. The proposed split and join operations handle the updates of both the grid‐linked particles model and the surface mesh during the anastomosis procedure. The simulation results demonstrate the feasibility of the proposed approach in simulating intestine models and the side‐to‐side anastomosis operation.

Funder

National Institutes of Health

Publisher

Wiley

Subject

Computer Graphics and Computer-Aided Design,Software

Reference21 articles.

1. U.S. Department of Health and Human Services Center for Disease Control and Prevention and National Cancer Institute.U.S. Cancer Statistics [Online]; 2022. Available from:www.cdc.gov/cancer/dataviz

2. Bowel anastomoses: The theory, the practice and the evidence base

3. Stapled side‐to‐side anastomosis might be benefit in intestinal resection for Crohn's disease: a systematic review and network meta‐analysis;Feng J‐S;Medicine,2018

4. LapSim.Surgical science [Online]; 2022. Available from:http://www.surgical‐science.com/portfolio/lapsim‐basic‐skills/

5. Lap Mentor.Simbionix [Online]; 2022. Available from:http://simbionix.com/simulators/lap‐mentor/

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