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Sterile tissue ablation using laser light⇔system design, experimental validation, and outlook on clinical applicability

  • Cedric Duverney
  • , Hamed Abbasi
  • , Majoska Berkelaar
  • , Karoliina Pelttari
  • , Philippe C. Cattin
  • , Andrea Barbero
  • , Azhar Zam
  • , Georg Rauter
  • University of Basel
  • Universitätsspital Basel

Research output: Contribution to journalArticleAcademicpeer-review

1 Citation (Scopus)

Abstract

Preparation of biological samples for further processing or analysis is generally performed manually by means of standard mechanical tools such as scalpels or biopsy punches. While this approach is uncomplicated and swift, it entails constraints such as low, operator-dependent cutting accuracy and reproducibility. Tissue segments surrounding the cut may further suffer mechanical and thermal damage due to shear forces and friction between tool and sample. These hindrances affect procedures both in the laboratory environment as well as within clinical settings. A system has been developed leveraging robotic positioning and laser light for precise, controlled, and contactless tissue ablation, and providing a concise and intuitive graphical user interface. Additionally, sterility of the process is demonstrated, a paramount element for clinical application. The proposed process does not require sterilization of the robotic components or the lasers, easing a prospective integration into existing workflows. In the context of this work, mainly cartilage repair surgery is targeted. The proposed system allows for highly accurate and reproducible shaping of the cartilage lesion area as well as its corresponding engineered cartilage graft, possibly leading to better and faster integration at the defect site. Promising results could be obtained in a first test series with human cartilage samples, validating the functionality of the preparation system and the feasibility of the sterility concept.

Original languageEnglish
Article number011104
JournalJournal of Medical Devices, Transactions of the ASME
Volume15
Issue number1
DOIs
Publication statusPublished - Mar 2021
Externally publishedYes

Bibliographical note

Funding Information:
The authors gratefully acknowledge the funding of this work by the Werner Siemens Foundation through the MIRACLE grant and by the Swiss National Science Foundation through Grant No. 310030_175660/1. They would further like to thank Dr. Nicolas Gerig and Dr. Olivier Braissant for the fruitful discussions sparking the development of the presented sterility concept, Sascha Martin and his team for their excellent support in the mechanical design and manufacturing steps, PD Dr. Christian Egloff and Dr. Sebastian Muller for supplying the cartilage tissue, and the orthopedic surgeon PD Dr. Marcus Mumme for providing important insights into clinical aspects of cartilage repair. The authors’ thanks finally also go to Lina Beltrán, Yakub Bayhaqi, Dr. Ferda Canbaz, Dr. Adrien Lamibrac, Tino Stauber, and Professor Dr. Jess Snedeker for their contributions to the successful execution of both test series reported.

Publisher Copyright:
Copyright VC 2021 by ASME

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