Title
SY-MIS Project: Biomedical Design of Endo-Robotic and Laparoscopic Training System for Surgery on the Earth and Space
Date Issued
01 April 2024
Access level
open access
Resource Type
research article
Author(s)
Cornejo J.
Carvajal M.
Perales P.
Rodríguez G.
Macias C.
Macias C.
Canizares S.
Silva P.
Cubas R.F.
Jimenez M.C.
Lincango E.P.
Serrano L.
Palomares R.
Aspilcueta S.
Castillo-Larios R.
Evans L.A.
De La Cruz-Vargas J.A.
Risk M.
Grossmann R.J.
Elli E.F.
Universidad Ricardo Palma
Center for Space Systems (C-SET)
Space Generation Advisory Council
Mayo Clinic
Universidad Ricardo Palma
Johns Hopkins University School of Medicine
Miami Cancer Research Center
Universidad Catolica de Santiago de Guayaquil
Universidad Catolica de Santiago de Guayaquil
Hillsborough Community College
Universidad San Francisco de Quito
Universidad UTE
University of Miami Leonard M. Miller School of Medicine
University of Miami Leonard M. Miller School of Medicine
CaTaLiNA-Cancer de Tiroides en Latino America
University of Central Florida
Universidad Ricardo Palma
Universidad Ricardo Palma
Mayo Clinic
Mayo Clinic
Universidad Ricardo Palma
Hospital Italiano de Buenos Aires
Portsmouth Regional Hospital
Mayo Clinic
Abstract
Despite the location (Earth or Space), surgical simulation is a vital part of improving technical skills and ensuring patients' safety in the real procedure. The purpose of this study is to describe the Space System for Minimally Invasive Surgery (SY-MIS©) project, which started in 2016 under the supervision of the Center for Space Systems (C-SET). The process connects the best features of the following machines: Biomedik Surgeon, Space Biosurgeon, SP-LAP 1, and SP-LAP 2, which were defined using the VDI 2221 guidelines. This research uses methods based on 3 standards: i) Biomedical design: ISO 9001-13485 / FDA 21 CFR 820.30 / ASTM F1744-96(2016); ii) Aerospace human factors: HF-STD-001; iii) Mechatronics design: VDI 2206. The results depict the conceptual biomedical design of a novel training system named Surgical Engineering and Mechatronic System (SETY©), which integrates the use of 2 laparoscopic tools and 2 anthropomorphic mini-robotic arms (6 DOF). It has been validated by the Evaluation of Technical Criteria, getting a total score of 90% related to clinical assessment, machine adaptability, and robustness. The novelty of the research lies in the introduction of a new procedure that covers the simultaneous use of laparoscopic and robotic systems, named Hybrid Cyber-Physical Surgery (HYS©). In conclusion, the development of SY-MIS© promotes the use of advanced technologies to improve surgical procedures and human-machine medical cooperation for the next frontier of habitability on other planets.
Start page
372
End page
393
Volume
8
Issue
2
Subjects
Scopus EID
2-s2.0-85192474124
Source
Emerging Science Journal
ISSN of the container
26109182
Sources of information:
Scopus 4.03.2025
Scopus 4.03.2025