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Tele-robotics and artificial-intelligence in stroke care.

Emily P Rabinovich1, Stepan Capek2, Jeyan S Kumar3

  • 1University of Virginia School of Medicine, 1215 Lee Street, Charlottesville, VA 22908, USA.

Journal of Clinical Neuroscience : Official Journal of the Neurosurgical Society of Australasia
|October 19, 2020
PubMed
Summary

Robotic surgery systems offer advanced capabilities for cerebrovascular procedures, enhancing quality and accessibility. Integration with artificial intelligence promises further innovation in neurovascular interventions.

Keywords:
Artificial intelligenceCerebrovascularEndovascularRobotic surgeryTele-surgeryTelerobotics

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Area of Science:

  • Medical Technology
  • Neurosurgery
  • Robotics

Background:

  • Medicine has seen significant technological advancements in surgery over 40 years, evolving from early neurosurgical biopsies to current magnetic-guided catheters.
  • Robotic systems like Niobe Magnetic Navigation and CorPath GRX enable integrated perioperative and tele-controlled manipulation for endovascular procedures.

Purpose of the Study:

  • To explore the potential of surgical robotics and artificial intelligence in cerebrovascular procedures.
  • To identify challenges and opportunities for the adoption of these technologies in neurovascular surgery.

Main Methods:

  • Review of technological evolution in surgical procedures.
  • Analysis of current robotic systems and their applications.
  • Discussion of challenges and future potential in cerebrovascular surgery.

Main Results:

  • Robotic systems are increasingly used in endovascular procedures and hold promise for cerebrovascular applications.
  • Barriers to adoption in neurovascular surgery include limited clinical experience and unresolved ethical/legal issues.
  • AI integration (machine learning, deep-learning) can enhance cerebrovascular surgery outcomes.

Conclusions:

  • Surgical robotics, enhanced by AI, has the potential to revolutionize cerebrovascular procedures, improving quality and access.
  • Addressing clinical, ethical, and legal challenges is crucial for widespread implementation in neurovascular surgery.
  • Continued research and development are vital to unlock the full capabilities of these technologies.