Conductive Gel Phantoms for Training in Electrosurgery

Author:

Migliorini Lorenzo1ORCID,Valaperta Giacomo1,Acocella Fabio2,Santaniello Tommaso1,Castelli Nicolò3,Perin Alessandro3,Cavaliere Francesco1,Vertemati Maurizio4,Zuccotti Gian Vincenzo4,Milani Paolo1

Affiliation:

1. Interdisciplinary Centre for Nanostructured Materials and Interfaces (CIMaINa) Physics Department University of Milan Milan 20133 Italy

2. Department of Veterinary Medicine and Animal Sciences (DIVAS) University of Milan Lodi 26900 Italy

3. NeuroSim Center and First Division of Neurosurgery IRCCS Foundation Carlo Besta Neurological Institute Milan 20133 Italy

4. Department of Biomedical and Clinical Sciences “L. Sacco” University of Milan Milan 20157 Italy

Abstract

AbstractConsidering the increasing demand for personalized surgical care, as well as current healthcare resources limitations, the use of anatomical accurate 3D physical phantoms is becoming increasingly important for the training of surgeons and the test of surgical instruments. A lack of physical models is nowadays denoted regarding the training in electrosurgery, despite its wide diffusion in medical practice. This work reports an extensive characterization of electrosurgical physical phantoms fabricated with tissue‐mimicking ionogels and hydrogels. A careful design of the conductive gels allow the fine tuning of their mechanical and electrical properties, in order to match those of biological tissues. The manufacturing of a novel multi‐material skin stratification bench‐top pad is reported together with its use for training in both cold and electrical surgery. Furthermore, a feasibility study is reported, showing the use of conductive ionogels for simulating the coagulation of cortical vessels during brain surgery.

Funder

Ministero dell'Università e della Ricerca

Publisher

Wiley

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