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骨科钻削的综合分析:最新综述。

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

机构信息

Department of Mechanical Manufacture and Automation, College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, China.

Department of Industrial Engineering, University of Engineering and Technology Taxila, Taxila, Pakistan.

出版信息

Proc Inst Mech Eng H. 2020 Jun;234(6):537-561. doi: 10.1177/0954411920911283. Epub 2020 Mar 18.

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.

摘要

骨钻是一种众所周知的内固定程序,用于钻孔,固定骨碎片,降低永久性瘫痪的易感性。骨钻的成功基于热生成、组织损伤、孔的质量和钻削力等方面的骨坏死程度来评估。通过常规和非常规钻孔技术,适当控制切削条件、钻头几何参数和骨骼特定参数为骨钻提供了可行的解决方案。大多数已发表的研究工作仅考虑了有限的参数,并尝试优化钻孔参数和性能指标。然而,骨钻涉及许多常规和非常规的钻孔参数和技术。为了更好地理解所有研究的参数和性能指标,迫切需要开发一个框架。本综述研究的主要目标是通过收集迄今为止研究的几乎所有参数来建立一个框架的层次结构,并解决参数与性能指标之间的关系,以减少已发表文献中的争议。因此,这个框架具有创新性,它组织了所有的参数、性能指标、逻辑比较和研究的局限性。这种全面的综述可以帮助外科医生和设计工程师理解与这项先进技术相关的参数和性能指标之间的复杂关系。此外,还包括建模、模拟和优化技术,以探索这些技术在矫形钻孔领域最新进展中的应用。

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