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Notched K-wire for low thermal damage bone drilling.

Yao Liu1, Barry Belmont2, Yiwen Wang3

  • 1Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109, USA ; Department of Mechanical Engineering, Donghua University, Shanghai 201620, China.

Medical Engineering & Physics
|May 3, 2017
PubMed
Summary

Orthopedic surgery uses Kirschner wires (K-wires) for bone fixation. Notched K-wires significantly reduce drilling heat and bone damage, improving surgical outcomes.

Keywords:
Bone drillingK-wireMicro-sawNotchTemperature

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Area of Science:

  • Orthopedic Surgery
  • Biomedical Engineering
  • Materials Science

Background:

  • Kirschner wires (K-wires) are essential orthopedic tools for bone fracture fixation.
  • Drilling with K-wires generates significant heat, potentially causing osteonecrosis and secondary bone injury.
  • Existing K-wire designs lack mechanisms for efficient debris removal, exacerbating heat buildup.

Purpose of the Study:

  • To investigate a novel K-wire design featuring tip notches for enhanced bone debris evacuation.
  • To evaluate the impact of these notches on reducing heat generation, thrust force, and torque during bone drilling.
  • To determine the optimal notch depth for mitigating thermal complications in orthopedic procedures.

Main Methods:

  • A thin micro-saw tool was used to fabricate three-plane trocar tips with notches of varying depths (0.5mm, 0.75mm, 1mm) on K-wires.
  • Bone drilling experiments were conducted on bovine cortical bone using both standard and notched K-wires.
  • Temperature, thrust force, and torque were measured during the drilling process for each K-wire type.

Main Results:

  • Notched K-wires significantly reduced drilling-induced temperatures, thrust forces, and torques compared to standard K-wires.
  • K-wires with 1mm deep notches demonstrated the most substantial reductions, decreasing thrust force and torque by approximately 30%.
  • Peak temperatures were reduced by up to 43% with notched K-wires, and visible bone thermal damage (blackened burn marks) was eliminated.

Conclusions:

  • A simple modification to K-wire tip design, incorporating notches, can effectively mitigate heat generation during orthopedic bone drilling.
  • Notched K-wires offer a promising solution to reduce thermal injury and improve patient outcomes in fracture fixation surgeries.
  • This design enhancement has the potential to become a standard feature in K-wire manufacturing for orthopedic applications.