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Drilling of bone: A comprehensive review.

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TLDR
This review suggests that the further improvement in the area of bone drilling is possible and several consequential factors affecting bone drilling on which there no general agreement among investigators or are not adequately evaluated are identified.
Abstract
Background Bone fracture treatment usually involves restoring of the fractured parts to their initial position and immobilizing them until the healing takes place. Drilling of bone is common to produce hole for screw insertion to fix the fractured parts for immobilization. Orthopaedic drilling during surgical process causes increase in the bone temperature and forces which can cause osteonecrosis reducing the stability and strength of the fixation. Methods A comprehensive review of all the relevant investigations carried on bone drilling is conducted. The experimental method used, results obtained and the conclusions made by the various researchers are described and compared. Result Review suggests that the further improvement in the area of bone drilling is possible. The systematic review identified several consequential factors (drilling parameters and drill specifications) affecting bone drilling on which there no general agreement among investigators or are not adequately evaluated. These factors are highlighted and use of more advanced methods of drilling is accentuated. The use of more precise experimental set up which resembles the actual situation and the development of automated bone drilling system to minimize human error is addressed. Conclusion In this review, an attempt has been made to systematically organize the research investigations conducted on bone drilling. Methods of treatment of bone fracture, studies on the determination of the threshold for thermal osteonecrosis, studies on the parameters influencing bone drilling and methods of the temperature measurement used are reviewed and the future work for the further improvement of bone drilling process is highlighted.

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Journal ArticleDOI

Evaluation of Threaded External Skeletal Fixation Pin Insertion with and without Predrilling in Avian Bone.

TL;DR: Pin insertion without predrilling in avian humeri and tibiotarsi does not cause significantly more structural damage or heat generation, or reduced pullout strength, compared withpredrilling, and overall, the results indicate that pred rilling prior to ESF pin placement provides no obvious advantage inAvian bone.
Journal ArticleDOI

The Influence of Bit Edge Shape Parameters on Bone Drilling Force Based on Finite Element Analysis

TL;DR: In this article , a combination of drilling speed and feed rates which can minimize the drilling force for drilling parameters is determined, and the effects of the drill bit shape parameters including helix angle, point angle and edge radius on the drilling forces are simulated by using the obtained drilling parameters, and after validation the FEM analysis results show that their variation trend is the same as the experimental one.

Temperature evaluation in ex-vivo bovine bones submitted to drilling processes

TL;DR: In this article, the authors present two different experimental methods to analyse the drilling conditions that generate the lower temperatures, avoiding the occurrence of thermal bone necrosis during bone perforation.
Journal ArticleDOI

A Review of Surgical Bone Drilling and Drill Bit Heat Generation for Implantation

TL;DR: In this paper , the authors summarize the current state of scientific knowledge on factors that contribute to heat generation during the bone drilling process and how these aspects can be better understood and avoided in the future through new research methodologies.
References
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Journal Article

Studies of Thermal Injury: II. The Relative Importance of Time and Surface Temperature in the Causation of Cutaneous Burns*

TL;DR: Although Leach, Peters, and Rossiter made a careful study of the pathological characteristics of different kinds of burns of guinea-pig skin, the extent to which these chges are representative of those that occur in cutaneous burning in man was not disclosed.
Journal ArticleDOI

Mechanics of the Metal Cutting Process. I. Orthogonal Cutting and a Type 2 Chip

TL;DR: An analysis of the chip geometry and the force system found in the case of orthogonal cutting accompanied by a type 2 chip has yielded a collection of useful equations which make possible the study of actual machining operations in terms of basic mechanical quantities as mentioned in this paper.
Book

Metal Cutting Theory and Practice

TL;DR: Turning Boring Drilling Reaming Milling Planing and Shaping Broaching Tapping and Threading Grinding and Related Abrasive Processes Roller Burnishing Deburring Examples Problems References MACHINE TOOLS Introduction Production Machine Tools CNC Machine Tools and Cellular Manufacturing Systems Machine Tool Structures Slides and Guideways Axis Drives Spindles Coolant Systems Tool Changing Systems.
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