• LOGIN
    Login with username and password
Repository logo

BORIS Portal

Bern Open Repository and Information System

  • Publications
  • Theses
  • Research Data
  • Projects
  • Organizations
  • Researchers
  • More
  • Collections
  • Statistics
  • LOGIN
    Login with username and password
Repository logo
Unibern.ch
  1. Home
  2. Publications
  3. Tissue fusion, a new opportunity for sutureless bypass surgery
 

Tissue fusion, a new opportunity for sutureless bypass surgery

Options
  • Details
Publisher DOI
10.1007/978-3-7091-0661-7_9
PubMed ID
21691987
Description
Microsurgical suturing is the standard for cerebral bypass surgery, a technique where temporary occlusion is usually necessary. Non-occlusive techniques such as excimer laser-assisted non-occlusive anastomosis (ELANA) have certainly widened the spectrum of treatment of complex cerebrovascular situations, such as giant cerebral aneurysms, that were otherwise non-treatable. Nevertheless, the reduction of surgical risks while widening the spectrum of indications, such as a prophylactic cerebral bypass, is still a main aim, that we would like to pursue with our sutureless tissue fusion research. The primary concern in sutureless tissue fusion- and especially in tissue fusion of cerebral vessels- is the lack of reproducibility, often caused by variations in the thermal damage of the vessel. This has prevented this novel fusion technique from being applicable in daily surgical use. In this overview, we present three ways to further improve the laser tissue soldering technique.In the first section entitled "Laser Tissue Soldering Using a Biodegradable Polymer," a porous polymer scaffold doped with albumin (BSA) and indocyanine green (ICG) is presented, leading to strong and reproducible tensile strengths in tissue soldering. Histologies and future developments are discussed.In the section "Numerical Simulation for Improvement of Laser Tissue Soldering," a powerful theoretical simulation model is used to calculate temperature distribution during soldering. The goal of this research is to have a tool in hand that allows us to determine laser irradiation parameters that guarantee strong vessel fusion without thermally damaging the inner structures such as the intima and endothelium.In a third section, "Nanoparticles in Laser Tissue Soldering," we demonstrate that nanoparticles can be used to produce a stable and well-defined spatial absorption profile in the scaffold, which is an important step towards increasing the reproducibility. The risks of implanting nanoparticles into a biodegradable scaffold are discussed.Step by step, these developments in sutureless tissue fusion have improved the tensile strength and the reproducibility, and are constantly evolving towards a clinically applicable anastomosis technique.
Date of Publication
2011
Publication Type
Article
Subject(s)
600 Technology > 620 Engineering
Language(s)
en
Contributor(s)
Bogni, Serge
Institut für angewandte Physik (IAP)
Schöni, Daniel
Constantinescu, Mihai Adrian
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie
Wirth, Amina
Vajtai, Istvan
Institut für Pathologie
Bregy, Amadé
Raabe, Andreas
Universitätsklinik für Neurochirurgie
Pieles, Uwe
Frenz, Martinorcid-logo
Institut für angewandte Physik (IAP)
Reinert, Michael
Universitätsklinik für Neurochirurgie
Additional Credits
Universitätsklinik für Neurochirurgie
Institut für angewandte Physik (IAP)
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie
Institut für Pathologie
Series
Acta neurochirurgica - supplementa
Publisher
Springer
ISSN
0065-1419
Access(Rights)
metadata.only
Show full item
BORIS Portal
Bern Open Repository and Information System
Build: dd892c [ 9.04. 8:30]
Explore
  • Projects
  • Funding
  • Publications
  • Research Data
  • Organizations
  • Researchers
  • Audiovisual Material
  • Software & other digital items
  • Events
More
  • About BORIS Portal
  • Send Feedback
  • Cookie settings
  • Service Policy
Follow us on
  • Mastodon
  • YouTube
  • LinkedIn
UniBe logo