9780867156515-0867156511-The Biomechanical Foundation of Clinical Orthodontics

The Biomechanical Foundation of Clinical Orthodontics

ISBN-13: 9780867156515
ISBN-10: 0867156511
Edition: 1
Author: Charles J. Burstone, Kwangchul Choy
Publication date: 2015
Publisher: Quintessence Pub Co
Format: Hardcover 580 pages
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Book details

ISBN-13: 9780867156515
ISBN-10: 0867156511
Edition: 1
Author: Charles J. Burstone, Kwangchul Choy
Publication date: 2015
Publisher: Quintessence Pub Co
Format: Hardcover 580 pages

Summary

The Biomechanical Foundation of Clinical Orthodontics (ISBN-13: 9780867156515 and ISBN-10: 0867156511), written by authors Charles J. Burstone, Kwangchul Choy, was published by Quintessence Pub Co in 2015. With an overall rating of 3.9 stars, it's a notable title among other Bioengineering (Engineering, Orthodontics, Dentistry) books. You can easily purchase or rent The Biomechanical Foundation of Clinical Orthodontics (Hardcover, Used) from BooksRun, along with many other new and used Bioengineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $22.28.

Description

All orthodontic treatment modalities can be improved by the application of sound biomechanics, yet most orthodontic therapy today is delivered without consideration of forces or force systems. Orthodontic hardware itself is only a means to an end point, such as tooth alignment, home remodeling, or growth modifications; the orthodontist can achieve these goals only by manipulating forces, regardless of the techniques used. Written by a world-renowned authority on the subject, this book teaches biomechanics in an easy-to-understand and engaging way, using universal examples outside orthodontics to illustrate basic force systems and how they function and then applying these principles to the practice of clinical orthodontics. The authors cover all the force systems an orthodontist needs to understand to deliver effective treatment, explaining how each can be controlled and manipulated and demonstrating the forces at work through highly instructive 3D illustrations. Most chapters conclude with the presentation of several study problems, allowing the reader an opportunity to practice developing treatment plans using the biomechanics concepts discussed in each chapter. (Answers are provided at the end of the book.) This book is sure to be an instant classic.

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