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September 11, 2019Advanced Intelligent Systems178 citationsOpen Access

Magnetic Continuum Device with Variable Stiffness for Minimally Invasive Surgery

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CCChristophe ChautemsATAlice TonazziniQBQuentin Boehler

Key Points

  • This research aims to improve dexterity and control of small-diameter surgical instruments in minimally invasive procedures.
  • Developed a magnetic continuum device using a low melting point alloy for variable stiffness.
  • Controlled device shape and stiffness through magnetic torque and electrical current.
  • Applied in various therapeutic scenarios such as cardiac ablations and gastrointestinal endoscopy.
  • Achieved a minimum diameter of 2.33 mm for the device, enhancing its adaptability.
  • Demonstrated improved precision in instrument manipulation due to the variable stiffness design.

Abstract

One of the challenges of minimally invasive surgery is the dexterous manipulation and precise control of small‐diameter continuum surgical instruments. Herein, a magnetic continuum device with variable stiffness (VS) is presented, whose tip is precisely shaped and controlled using an external magnetic field. Based on a low melting point alloy (LMPA), the serial segments composing the continuum device are independently softened via electrical current and remotely deformed under a magnetic torque, whereas the rest of the device is locked in place. The resulting system has the advantage of combining the precision of magnetic navigation with additional degrees of freedom provided by changing the segments stiffness. With a minimum diameter as small as 2.33 mm and an inner working channel, the magnetic continuum device with VS is adapted to use in several therapeutic scenarios, including radio‐frequency cardiac ablations and interventional endoscopy in the gastrointestinal tract. The magnetic torque is used to remotely control the shape of the soft sections, whereas the stiff sections remain unchanged, thus adding degrees of freedom to the magnetic continuum device.

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Cite This Study

Chautems et al. (2019) studied this question.

synapsesocial.com/papers/69cfe8b67aa8b986e0683882https://doi.org/10.1002/aisy.201900086
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