Comprehensive analysis on orthopedic drilling: A state-of-the-art review.

Proc Inst Mech Eng H

Key Laboratory of High Efficiency and Clean Mechanical Manufacture, Ministry of Education, School of Mechanical Engineering, Shandong University, Jinan, China.

Published: June 2020

AI Article Synopsis

  • Bone drilling is a critical internal fixation procedure that helps reduce the risk of permanent paralysis by stabilizing bone fragments and the success relies heavily on minimizing tissue damage and controlling heat generation.
  • The existing research primarily focuses on optimizing limited drilling parameters, while many relevant aspects and technologies remain overlooked, indicating a need for a more comprehensive approach.
  • This review aims to create a hierarchical framework that organizes all studied parameters and their performance measures, providing valuable insights for medical surgeons and design engineers and integrating modern modeling and optimization techniques to enhance orthopedic drilling practices.

Article Abstract

Bone drilling is a well-known internal fixation procedure to drill a hole, fixing the bone fragments to reduce the susceptibility of permanent paralysis. The success of bone drilling is evaluated based on the extent of osteonecrosis in terms of heat generation, tissue damage, quality of hole, and drilling forces. The appropriate control of cutting conditions, drill geometric parameters, and bone-specific parameters offer bone drilling a viable solution through conventional and non-conventional drilling techniques. The majority of the published research work considers only limited parameters and tries to optimize the drilling parameters and performance measures. However, bone drilling involves numerous conventional and non-conventional drilling parameters and technologies. In order to develop a better understanding of all the studied parameters and performance measures, there is a dire need to develop a framework. The key objective of this review study is to establish a hierarchy of the framework by collecting almost all the parameters studied until now and addressed the relationship between parameters and performance measures to diminish the controversies in the published literature. Therefore, this framework is novel in nature, organizing all the parameters, performance measures, logical comparisons, and limitations of studies. This holistic review can help medical surgeons and design engineers to understand the complicated relationship among parameters and performance measures associated with this state-of-art technologies. Also, modeling, simulations, and optimization techniques are included to explore the application of such techniques in recent advancements in orthopedic drilling.

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Source
http://dx.doi.org/10.1177/0954411920911283DOI Listing

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