Preprint has been published in a journal as an article
DOI of the published article https://doi.org/10.1126/sciadv.abl5408
Preprint / Version 1

Electronically integrated microcatheters based on self-assembling polymer films

##article.authors##

  • Boris Rivkin Leibniz IFW Dresden
  • Christian Becker
  • Balram Singh
  • Azaam Aziz
  • Farzin Akbar
  • Aleksandr Egunov
  • Dmitriy Karnaushenko
  • Ronald Naumann
  • Rudolf Schäfer
  • Mariana Medina-Sánchez
  • Daniil Karnaushenko
  • Oliver G. Schmidt

DOI:

https://doi.org/10.31224/2734

Keywords:

self-assembled structures, Physical Sensors, artificial muscle actuators

Abstract

Existing electronically integrated catheters rely on the manual assembly of separate components to integrate sensing and actuation capabilities. This strongly impedes their miniaturization and further integration. Here, we report an electronically integrated self-assembled microcatheter. Electronic components for sensing and actuation are embedded into the catheter wall through the self-assembly of photolithographically processed polymer thin films. With a diameter of only about 0.1 mm, the catheter integrates actuated digits for manipulation and a magnetic sensor for navigation and is capable of targeted delivery of liquids. Fundamental functionalities are demonstrated and evaluated with artificial model environments and ex vivo tissue. Using the integrated magnetic sensor, we develop a strategy for the magnetic tracking of medical tools that facilitates basic navigation with a high resolution below 0.1 mm. These highly flexible and microsized integrated catheters might expand the boundary of minimally invasive surgery and lead to new biomedical applications.

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Posted

2022-12-14