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Biomechanics and Biomaterials in Orthopedics

por Poitout, Dominique G; Poitout, Dominique G.
Editor: Londres : Springer 2018Edición: 2a ed.Descripción: 562 páginas : ilustraciones.ISBN: 9781447174097; 9781848826649.Tema(s): Ortodoncia -- Biomateriales | Materiales biomédicos -- Ortopedia | Biomecánica dental | Programa de Odontología | Especialización en Ortodoncia y Ortopedia Maxilar
Contenidos:
Biocompatible Materials Tissue Biomechanics and Histomorphology Biomechanics of Bone Growth Applications of Biomechanical Principles to Orthopedics and Traumatology Applications of Biomechanics Principles to Oncology Articular Biomechanics
Resumen: With the constant evolution of implant technology, and improvement in the production of allograft and bone substitutes, the armamentarium of the orthopaedic surgeon has significantly expanded. In particular, the recent involvement of nanotechnologies opens up the possibilities of new approaches in the interactive interfaces of implants. With many important developments occurring since the first edition of this well-received book, this updated resource informs orthopaedic practitioners on a wide range of biomechanical advances in one complete reference guide. Biomechanics and Biomaterials in Orthopedics, 2nd edition compiles the most prominent work in the discipline to offer newly-qualified orthopedic surgeons a summary of the fundamental skills that they will need to apply in their day-to-day work, while also updating the knowledge of experienced surgeons. This book covers both basic concepts concerning biomaterials and biomechanics as well as their clinical application and the experience from everyday practical use. This book will be of great value to specialists in orthopedics and traumatology, while also providing an important basis for graduate and postgraduate learning.
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Bogotá (Dr. David Ordóñez Rueda) - Campus Norte

Campus Norte

Biblioteca de la Institución Universitaria Colegios de Colombia

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Introduction
Front Matter
Pages 1-1
PDF
Bone as Biomaterial
Dominique G. Poitout
Pages 3-10
Biocompatible Materials
Front Matter
Pages 11-11
PDF
Biomaterials Used in Orthopedics
Dominique G. Poitout
Pages 13-19
Bioceramics
Takao Yamamuro
Pages 21-33
Biomaterials for Bone Tissue Engineering
Congqin Ning
Pages 35-57
Biomaterials for Total Joint Replacements
Elena M. Brach del Prever, Luigi Costa, Corrado Piconi, Marcello Baricco, Alessandro Massè
Pages 59-70
Bone Materials and Tissue Banks
Dominique G. Poitout
Pages 71-82
Bone Banks: Technical Aspects of the Preparation and Preservation of Articular Allografts
Dominique G. Poitout, Y. Nouaille de Gorce
Pages 83-94
Formulated Demineralized Bone Grafts for Skeletal Applications
Todd M. Boyce
Pages 95-113
Bioreactors for Bone Tissue Engineering
Youzhuan Xie, Jianxi Lu
Pages 115-122
Orthopedic Bone Cements
Jianxi Lu
Pages 123-138
Cement with Antimitotics
Philippe Hernigou
Pages 139-143
Striated Muscles, an Underestimated Natural Biomaterial: Their Essential Contribution to Healing and Reconstruction of Bone Defects
Haim Stein, Moshe Solomonow
Pages 145-151
Clinical Application of Glass Ceramics
Takao Yamamuro
Pages 153-157
Alumina Composite: The Present Generation of Load Bearing Ceramics in Orthopedics
Bernard Masson, Meinhard Kuntz
Pages 159-166
Validation of a High Performance Alumina Matrix Composite for Use in Total Joint Replacement
Bernard Masson, Meinhard Kuntz
Pages 167-172
New Composite Material: PLLA and Tricalcium Phosphate for Orthopaedic Applications-In Vitro and In Vivo Studies (Part 1)
Jean Charles Le Huec, Antonio Faundez, Stephane Aunoble, Rachid Sadikki, Julien Rigal
Pages 173-180
Clinical Results of a New Resorbable Composite Material for Cervical Cage: 6 Years’ Follow-up (Part 2)
Jean Charles Le Huec, Antonio Faundez, Stephane Aunoble, Rachid Sadikki, Julien Rigal
Pages 181-185
Biocompatible Materials
Shape Memory Alloys and Their Medical Applications
Kerong Dai, Congqin Ning
Pages 187-195
Tissue Biomechanics and Histomorphology
Front Matter
Pages 197-197
PDF
Biotribocorrosion of Implants
Magdalena Walczak, Mamie Sancy
Pages 199-226
Massive Allografts: Techniques and Results with 30 Years’ Follow-Up
Dominique G. Poitout
Pages 227-239
Express Diagnosis of Mechano-Biological Limb Skin Condition During Prolonged Dosed Stretching in Orthopedics
Lyudmila Grebenyuk, Evgeny Grebenyuk
Pages 241-251
Biomechanics of Bone Growth
Front Matter
Pages 253-253
PDF
Biomechanics of the Spine During Growth
J. Dubousset
Pages 255-281
Effect of Tension Stress by Surgical Lengthening of Limbs with Growth Retardation on Biomechanical and Functional Properties of Tissues
V. A. Schurov
Pages 283-298
Biomechanics of Pediatric Hip
Susumu Saito, Atsushi Kusaba
Pages 299-306
Biomechanics of Fracture in Growth Period
Atsushi Kusaba, Susumu Saito
Pages 307-310
Experimental In Vitro Methods for Research of Mechanotransduction in Human Osteoblasts
Nahum Rosenberg, Michael Soudry
Pages 311-316
Applications of Biomechanical Principles to Orthopedics and Traumatology
Front Matter
Pages 317-317
PDF
Computer-Assisted Designed Hip Arthroplasty
Xavier Flecher, Sebastien Parratte, Jean-Manuel Aubaniac, Jean-Noël Argenson
Pages 319-329
Hip Resurfacing Guided by Fluoroscopy and Minimal Invasive Anterolateral Approach: Technique and Results
Philippe Chiron
Pages 331-340
Biomechanics of Osteosynthesis by Screwed Plates
Emanuel Gautier
Pages 341-372
Applications of Biomechanics Principles to Oncology
Front Matter
Pages 373-373
PDF
Malignant Bone Tumors: From Ewing’s Sarcoma to Osteosarcoma
Dominique G. Poitout, J. Favre
Pages 375-383
Articular Biomechanics
Front Matter
Pages 385-385
PDF
The Biomechanics of the Glenohumeral Articulation and Implications for Prosthetic Design
P. Mansat, M. Mansat, J. Egan
Pages 387-397
Robotic Surgery of the Scapulo-Clavicular Girdle
Eric Nectoux, Sybille Facca, Gustavo Mantovani, Stacey Berner, Philippe A. Liverneaux
Pages 399-404
Articular Biomechanics
Pedicle Screw Fixation in Thoracic or Thoracolumbar Burst Fractures
S. I. Suk, W. J. Kim
Pages 405-427
Efficacy and Safety of an Absorbable Cervical Cage with and Without Plating: A Multicenter Case Study
Louis Boissiere, Benoît de Germay, Stephane Aunoble, Jean-Charles Le Huec
Pages 429-435
Biomechanics of Posterior Instrumentation for Spinal Arthrodesis
S. I. Suk, W. J. Kim
Pages 437-467
Biomechanics of Sacral Fixation
J. C. Y. Leong, G. X. Ni, B. Yu, W. W. Lu
Pages 469-479
Current State of Management for Osteoporosis and Orthopaedic Related Spinal Problems
Ping-chung Leung
Pages 481-491
Optimised Treatment of Hip Fractures
Karl-Göran Thorngren
Pages 493-507
Three-Dimensional Biomechanical Assessment of Knee Ligament Ruptures
D. R. Labbe, A. Fuentes, J. A. de Guise, R. Aissaoui, N. Hagemeister
Pages 509-527
Knee Ligamentoplasty: Prosthetic Ligament or Ligament Allograft?
Dominique G. Poitout, B. Ripoll
Pages 529-534
Back Matter
Pages 535-547

Biocompatible Materials Tissue Biomechanics and Histomorphology Biomechanics of Bone Growth Applications of Biomechanical Principles to Orthopedics and Traumatology Applications of Biomechanics Principles to Oncology Articular Biomechanics

With the constant evolution of implant technology, and improvement in the production of allograft and bone substitutes, the armamentarium of the orthopaedic surgeon has significantly expanded. In particular, the recent involvement of nanotechnologies opens up the possibilities of new approaches in the interactive interfaces of implants. With many important developments occurring since the first edition of this well-received book, this updated resource informs orthopaedic practitioners on a wide range of biomechanical advances in one complete reference guide. Biomechanics and Biomaterials in Orthopedics, 2nd edition compiles the most prominent work in the discipline to offer newly-qualified orthopedic surgeons a summary of the fundamental skills that they will need to apply in their day-to-day work, while also updating the knowledge of experienced surgeons. This book covers both basic concepts concerning biomaterials and biomechanics as well as their clinical application and the experience from everyday practical use. This book will be of great value to specialists in orthopedics and traumatology, while also providing an important basis for graduate and postgraduate learning.

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