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Clinical Applications of 3D Printing in Foot and Ankle Surgery [Kietas viršelis]

(Reconstructive foot and ankle surgeon at The Reconstruction Institute in Bellevue, Ohio. USA)
  • Formatas: Hardback, 256 pages, aukštis x plotis: 235x191 mm, weight: 910 g
  • Išleidimo metai: 05-Apr-2023
  • Leidėjas: Elsevier - Health Sciences Division
  • ISBN-10: 0323825656
  • ISBN-13: 9780323825658
Kitos knygos pagal šią temą:
  • Formatas: Hardback, 256 pages, aukštis x plotis: 235x191 mm, weight: 910 g
  • Išleidimo metai: 05-Apr-2023
  • Leidėjas: Elsevier - Health Sciences Division
  • ISBN-10: 0323825656
  • ISBN-13: 9780323825658
Kitos knygos pagal šią temą:
As an emerging technology, 3D printing holds much promise for foot and ankle reconstruction and difficult-to-treat pathologies. The first text of its kind, Clinical Application of 3D Printing in Foot and Ankle Surgery provides comprehensive, in-depth operative coverage as well as opinions and case examples from surgeons who are currently using 3D printing in their practices. This ground-breaking volume sets the standard for this rapidly advancing field and provides practical, real-world guidance on incorporating 3D printing into your surgical practice.
  • Presents clinically focused content in a templated, easy-to-read format of bulleted summaries and practical advice based on the editor’s and authors’ experience.

  • Features a practical focus on procedures, techniques, and cases, with tips, tricks, and pearls throughout.

  • Includes decision-making criteria on when to consider 3D printing.

  • Provides preoperative, intraoperative, and postoperative protocols developed by the authors.

  • Contains high-quality photographs and 3D imaging.

  • An eBook version is included with purchase. The eBook allows you to access all of the text, figures and references, with the ability to search, customize your content, make notes and highlights, and have content read aloud.

Recenzijos

"This is the first book dedicated to 3D printing technology in foot and ankle surgery. The ebook is essentially an electronic representation of the traditional paper copy, but includes useful features, such as magnification of images." ©Doodys Review Service, 2023, Martin C. Yorath, DPM (Rosalind Franklin University of Medicine and Science)

Section 1 Engineering and Historical Perspectives
1(50)
1 Historical Perspectives on 3D Printing
3(14)
Bijan Masood Abar
Cambre Kelly
Nicholas B. Allen
Ken Gall
2 CT to Software and Other Considerations
17(8)
Benjamin Wesorick
Cambre Kelly
Ken Gall
3 Material Science for 3D Printing in Medicine
25(26)
Cambre Kelly
Alina Kirillova
Emilio Bachtiar
Ken Gall
Section 2 Surgical Techniques
51(192)
4 Isolated Total Talus Replacement
53(12)
Peter D. Highlander
Paul R. Leatham
Ryan J. Lerch
5 Total Talus Replacement With a Titanium Nitride-Coated 3D-Printed Titanium Implant
65(10)
Nap S. Madi
Selene G. Parekh
6 Primary Constrained Total Talus With Subtalar Joint Arthrodesis
75(18)
Patrick R. Burns
7 3D-Printed Custom Hemi-Talus Replacement
93(14)
James M. Cottom
Charles A. Sisovsky
8 Primary Total Ankle Total Talus Replacement
107(14)
Jeffrey E. McAlister
James M. Cottom
Joseph R. Wolf
Peter D. Highlander
9 Custom Constrained 3D Total Talus/Navicular Replacement
121(8)
Jason Nowak
Garret Strand
10 3D-Printed Solutions for Avascular Necrosis of the Talonavicular Joint
129(8)
Coleman Oliver Clougherty
Mark Razzante
Paul R. Leatham
Sarah Messina
11 Tibiotalocalcaneal Fusion With Talar Cage for Hindfoot Reconstruction
137(10)
Daniel J. Torino
Hui Zhang
Gerard J. Cush Jr.
12 Distraction Subtalar Joint Fusion Using a Custom 3D-Printed Implant
147(8)
David Vier
J. Kent Ellington
13 Subtalar Joint Distraction Arthrodesis Utilizing Titanium Truss Technology for Posttraumatic Calcaneal Fracture Arthritis
155(8)
Sham J. Persaud
Alan Catanzariti
14 Treatment of Navicular Avascular Necrosis in the Sensate Patient
163(18)
Peter D. Highlander
Amar R. Gulati
Lance Johnson
15 Midfoot Fusion With a Custom 3D-Printed Cage for Charcot Deformity
181(8)
Daniel J. Torino
Benjamin R. Wagner
Gerard J. Cush Jr.
16 A 3D-Printed Solution for Evans Calcaneal Osteotomy Nonunion
189(8)
Eric So
Lee M. Hlad
17 3D-Printed Total Cuboid Replacement for Lateral Column Pathology
197(10)
Paul R. Leatham
Peter D. Highlander
18 A 3D-Printed Solution for Revision Lapidus Bunionectomy
207(8)
Eric So
Lee M. Hlad
19 3D-Printed Solutions for First Metatarsophalangeal Joint Fusion With Osseous Deficit
215(10)
Lance Johnson
Peter D. Highlander
20 3D-Printed Hallux and Lesser Metatarsophalangeal Joint Replacement
225(8)
David Vier
J. Kent Ellington
21 Lesser Metatarsal Replacement
233(10)
Naji S. Madi
Aman Chopra
Selene G. Parekh
Index 243
Peter Highlander, DPM, MS is a reconstructive foot & ankle surgeon at The Reconstruction Institute in Bellevue, Ohio. Dr. Highlander has been heavily involved in 3D printing since 2017 and is a founding member of the AOS3DP for which he serves as secretary. In addition to multiple ongoing research projects and patent pending implant designs involving 3D printing, Dr. Highlander serves on the advisory board and Associate Professor for the Miller 3D Print Lab at the University of Toledo Medical Center. In 2018, Dr. Highlander was named, "Physician Innovator” by Crain's Cleveland Business newspaper for his role in 3D printing. In 2016, Dr. Highlander relocated to his hometown and joined The Bellevue Hospital staff where he formed the Reconstruction Institute as well as a hospital based wound center for which he serves as medical director. Dr. Highlander also functions as director for the Bellevue Hospital's foot & ankle reconstruction surgical fellowship, a program which emphasizes 3D printing technology & its role in foot & ankle surgical reconstruction & research. A graduate of Barry University School of Podiatric Medicine, Dr. Highlander completed his residency at the University of Pittsburgh Medical Center.