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The Resource Mechanical testing of bone and the bone-implant interface, edited by Yuehuei H. An, Robert A. Draughn

Mechanical testing of bone and the bone-implant interface, edited by Yuehuei H. An, Robert A. Draughn

Label
Mechanical testing of bone and the bone-implant interface
Title
Mechanical testing of bone and the bone-implant interface
Statement of responsibility
edited by Yuehuei H. An, Robert A. Draughn
Contributor
Subject
Language
eng
Cataloging source
DNLM/DLC
Illustrations
illustrations
Index
index present
LC call number
QP88.2
LC item number
.M424 2000
Literary form
non fiction
Nature of contents
bibliography
http://library.link/vocab/relatedWorkOrContributorName
  • An, Yuehuei H
  • Draughn, Robert A
http://library.link/vocab/subjectName
  • Bones
  • Orthopedic implants
  • Bones
  • Biomechanics
  • Bone and Bones
  • Biocompatible Materials
  • Materials Testing
  • Prostheses and Implants
  • Stress, Mechanical
  • Surface Properties
  • Tensile Strength
Label
Mechanical testing of bone and the bone-implant interface, edited by Yuehuei H. An, Robert A. Draughn
Instantiates
Publication
Bibliography note
Includes bibliographical references and index
Carrier category
volume
Carrier category code
  • nc
Carrier MARC source
rdacarrier
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
  • Sect. I.
  • General Considerations
  • Ch. 1.
  • Basic Composition and Structure of Bone/
  • Ermanno Bonucci
  • p. 3
  • p. 23
  • Ch. 2.
  • Basic Concepts of Mechanical Property Measurement and Bone Biomechanics/
  • Yuehuei H. An
  • William R. Barfield
  • Robert A. Draughn
  • Ch. 3.
  • Mechanical Properties of Bone/
  • Yuehuei H. An
  • p. 41
  • p. 65
  • Ch. 4.
  • Factors Affecting Mechanical Properties of Bone/
  • Peter Zioupos
  • Chris W. Smith
  • Yuehuei H. An
  • Ch. 5.
  • Basic Facilities and Instruments for Mechanical Testing of Bone/
  • Christopher V. Bensen
  • Yuehuei H. An
  • p. 87
  • p. 103
  • Ch. 6.
  • Methods of Evaluation for Bone Dimensions, Densities, Contents, Morphology, and Structures/
  • Yuehuei H. An
  • William R. Barfield
  • Ivars Knets
  • Ch. 7.
  • General Considerations of Mechanical Testing/
  • Yuehuei H. An
  • Christopher V. Bensen
  • p. 119
  • p. 133
  • Ch. 8.
  • Hierarchical Approach to Exploring Bone Mechanical Properties/
  • C. Edward Hoffler
  • Barbara R. McCreadie
  • Erica A. Smith
  • Ch. 9.
  • Nondestructive Mechanical Testing of Cancellous Bone/
  • Frank Linde
  • Ivan Hvid
  • p. 151
  • Ch. 10.
  • Synthetic Materials and Structures Used as Models for Bone/
  • John A. Szivek
  • p. 159
  • Sect. II.
  • Methods of Mechanical Testing of Bone
  • Ch. 11.
  • Tensile and Compression Testing of Bone/
  • Tony S. Keller
  • Michael A. K. Liebschner
  • p. 175
  • Ch. 12.
  • Bending Tests of Bone/
  • Mandi J. Lopez
  • Mark D. Markel
  • p. 207
  • Ch. 13.
  • Torsional Testing of Bone/
  • Benjamin R. Furman
  • Subrata Saha
  • p. 219
  • p. 233
  • Ch. 14.
  • Indentation Testing of Bone/
  • Brodie E. McKoy
  • Qian Kang
  • Yuehuei H. An
  • Ch. 15.
  • Penetration Testing of Bone Using an Osteopenetrometer/
  • Ivan Hvid
  • Frank Linde
  • p. 241
  • p. 247
  • Ch. 16.
  • Microhardness Testing of Bone/
  • Sarandeep S. Huja
  • Thomas R. Katona
  • W. Eugene Roberts
  • Ch. 17.
  • Nanoindentation Testing of Bone/
  • Jae-Young Rho
  • George M. Pharr
  • p. 257
  • p. 271
  • Ch. 18.
  • Single Osteon Micromechanical Testing/
  • Maria-Grazia Ascenzi
  • Alessandro Benvenuti
  • Antonio Ascenzi
  • Ch. 19.
  • Micromechanical Testing of Single Trabeculae/
  • Peter L. Mente
  • p. 291
  • Ch. 20.
  • Strain Gauge Measurements from Bone Surfaces/
  • John A. Szivek
  • Vasanti M. Gharpuray
  • p. 305
  • p. 321
  • Ch. 21.
  • Screw Pullout Test for Evaluating Mechanical Properties of Bone/
  • Matthew S. Crum
  • Franklin A. Young, Jr.
  • Yuehuei H. An
  • Ch. 22.
  • Viscoelastic Properties of Bone and Testing Methods/
  • Naoki Sasaki
  • p. 329
  • Ch. 23.
  • Observation of Material Failure Mode Using a SEM with a Built-In Mechanical Testing Device/
  • Rong-Ming Wang
  • Yuehuei H. An
  • p. 349
  • Ch. 24.
  • Ultrasonic Methods for Evaluating Mechanical Properties of Bone/
  • Jae-Young Rho
  • p. 357
  • Ch. 25.
  • Evaluating Mechanical Properties of Bone Using Scanning Acoustic Microscopy/
  • Charles H. Turner
  • J. Lawrence Katz
  • p. 371
  • Ch. 26.
  • Peripheral Quantitative Computed Tomography for Evaluating Structural and Mechanical Properties of Small Bone/
  • Jose Luis Ferretti
  • p. 385
  • Ch. 27.
  • Computer Modeling for Evaluating Trabecular Bone Mechanics/
  • Rakesh Saxena
  • Tony S. Keller
  • p. 407
  • Sect. III.
  • Methods of Mechanical Testing of the Bone-Implant Interface
  • p. 439
  • Ch. 28.
  • Factors Affecting the Strength of the Bone - Implant Interface/
  • Brodie E. McKoy
  • Yuehuei H. An
  • Richard J. Friedman
  • Ch. 29.
  • Implant Pushout and Pullout Test/
  • Aivars Berzins
  • Dale R. Sumner
  • p. 463
  • Ch. 30.
  • Validity of a Single Pushout Test/
  • Wouter J. A. Dhert
  • John A. Jansen
  • p. 477
  • Ch. 31.
  • Tensile Testing of Bone-Implant Interface/
  • Takashi Nakamura
  • Shigeru Nishiguchi
  • p. 489
  • p. 499
  • Ch. 32.
  • Fracture Toughness Tests of the Bone-Implant Interface/
  • Xiaodu Wang
  • Kyriacos A. Athanasiou
  • C. Mauli Agrawal
  • Ch. 33.
  • In Vitro Measurements of Implant Stability/
  • Aivars Berzins
  • Dale R. Sumner
  • p. 515
  • p. 527
  • Ch. 34.
  • In Vitro Testing of the Stability of Acetabular Components/
  • James R. Davis
  • Robert A. Lofthouse
  • Riyaz H. Jinnah
  • p. 541
  • Ch. 35.
  • In Vitro Testing of the Stability of Femoral Components/
  • Sanjiv H. Naidu
  • Fadi M. Khoury
  • John M. Cuckler
  • Ch. 36.
  • Screw Pullout Test/
  • Lisa A. Ferrara
  • Timothy C. Ryken
  • p. 551
  • Ch. 37.
  • Finite Element Analysis for Evaluating Mechanical Properties of the Bone-Implant Interface/
  • Keith R. Williams
  • p. 567
  • p. 581
  • Ch. 38.
  • Fatigue Testing of Bioabsorbable Screws in a Synthetic Bone Substrate/
  • William S. Pietrzak
  • David R. Sarver
  • David H. Kohn
  • Ch. 39.
  • Testing Intervertebral Stability after Spinal Fixation/
  • Kenneth S. James
  • A. U. Daniels
  • p. 593
  • App. 1.
  • p. 607
  • App. 2.
  • p. 609
  • Index.
  • p. 611
Control code
980099036531
Dimensions
26 cm.
Extent
624 p.
Isbn
9780849302664
Lccn
lc99036531
Media category
unmediated
Media MARC source
rdamedia
Media type code
  • n
Other physical details
ill.
Label
Mechanical testing of bone and the bone-implant interface, edited by Yuehuei H. An, Robert A. Draughn
Publication
Bibliography note
Includes bibliographical references and index
Carrier category
volume
Carrier category code
  • nc
Carrier MARC source
rdacarrier
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
  • Sect. I.
  • General Considerations
  • Ch. 1.
  • Basic Composition and Structure of Bone/
  • Ermanno Bonucci
  • p. 3
  • p. 23
  • Ch. 2.
  • Basic Concepts of Mechanical Property Measurement and Bone Biomechanics/
  • Yuehuei H. An
  • William R. Barfield
  • Robert A. Draughn
  • Ch. 3.
  • Mechanical Properties of Bone/
  • Yuehuei H. An
  • p. 41
  • p. 65
  • Ch. 4.
  • Factors Affecting Mechanical Properties of Bone/
  • Peter Zioupos
  • Chris W. Smith
  • Yuehuei H. An
  • Ch. 5.
  • Basic Facilities and Instruments for Mechanical Testing of Bone/
  • Christopher V. Bensen
  • Yuehuei H. An
  • p. 87
  • p. 103
  • Ch. 6.
  • Methods of Evaluation for Bone Dimensions, Densities, Contents, Morphology, and Structures/
  • Yuehuei H. An
  • William R. Barfield
  • Ivars Knets
  • Ch. 7.
  • General Considerations of Mechanical Testing/
  • Yuehuei H. An
  • Christopher V. Bensen
  • p. 119
  • p. 133
  • Ch. 8.
  • Hierarchical Approach to Exploring Bone Mechanical Properties/
  • C. Edward Hoffler
  • Barbara R. McCreadie
  • Erica A. Smith
  • Ch. 9.
  • Nondestructive Mechanical Testing of Cancellous Bone/
  • Frank Linde
  • Ivan Hvid
  • p. 151
  • Ch. 10.
  • Synthetic Materials and Structures Used as Models for Bone/
  • John A. Szivek
  • p. 159
  • Sect. II.
  • Methods of Mechanical Testing of Bone
  • Ch. 11.
  • Tensile and Compression Testing of Bone/
  • Tony S. Keller
  • Michael A. K. Liebschner
  • p. 175
  • Ch. 12.
  • Bending Tests of Bone/
  • Mandi J. Lopez
  • Mark D. Markel
  • p. 207
  • Ch. 13.
  • Torsional Testing of Bone/
  • Benjamin R. Furman
  • Subrata Saha
  • p. 219
  • p. 233
  • Ch. 14.
  • Indentation Testing of Bone/
  • Brodie E. McKoy
  • Qian Kang
  • Yuehuei H. An
  • Ch. 15.
  • Penetration Testing of Bone Using an Osteopenetrometer/
  • Ivan Hvid
  • Frank Linde
  • p. 241
  • p. 247
  • Ch. 16.
  • Microhardness Testing of Bone/
  • Sarandeep S. Huja
  • Thomas R. Katona
  • W. Eugene Roberts
  • Ch. 17.
  • Nanoindentation Testing of Bone/
  • Jae-Young Rho
  • George M. Pharr
  • p. 257
  • p. 271
  • Ch. 18.
  • Single Osteon Micromechanical Testing/
  • Maria-Grazia Ascenzi
  • Alessandro Benvenuti
  • Antonio Ascenzi
  • Ch. 19.
  • Micromechanical Testing of Single Trabeculae/
  • Peter L. Mente
  • p. 291
  • Ch. 20.
  • Strain Gauge Measurements from Bone Surfaces/
  • John A. Szivek
  • Vasanti M. Gharpuray
  • p. 305
  • p. 321
  • Ch. 21.
  • Screw Pullout Test for Evaluating Mechanical Properties of Bone/
  • Matthew S. Crum
  • Franklin A. Young, Jr.
  • Yuehuei H. An
  • Ch. 22.
  • Viscoelastic Properties of Bone and Testing Methods/
  • Naoki Sasaki
  • p. 329
  • Ch. 23.
  • Observation of Material Failure Mode Using a SEM with a Built-In Mechanical Testing Device/
  • Rong-Ming Wang
  • Yuehuei H. An
  • p. 349
  • Ch. 24.
  • Ultrasonic Methods for Evaluating Mechanical Properties of Bone/
  • Jae-Young Rho
  • p. 357
  • Ch. 25.
  • Evaluating Mechanical Properties of Bone Using Scanning Acoustic Microscopy/
  • Charles H. Turner
  • J. Lawrence Katz
  • p. 371
  • Ch. 26.
  • Peripheral Quantitative Computed Tomography for Evaluating Structural and Mechanical Properties of Small Bone/
  • Jose Luis Ferretti
  • p. 385
  • Ch. 27.
  • Computer Modeling for Evaluating Trabecular Bone Mechanics/
  • Rakesh Saxena
  • Tony S. Keller
  • p. 407
  • Sect. III.
  • Methods of Mechanical Testing of the Bone-Implant Interface
  • p. 439
  • Ch. 28.
  • Factors Affecting the Strength of the Bone - Implant Interface/
  • Brodie E. McKoy
  • Yuehuei H. An
  • Richard J. Friedman
  • Ch. 29.
  • Implant Pushout and Pullout Test/
  • Aivars Berzins
  • Dale R. Sumner
  • p. 463
  • Ch. 30.
  • Validity of a Single Pushout Test/
  • Wouter J. A. Dhert
  • John A. Jansen
  • p. 477
  • Ch. 31.
  • Tensile Testing of Bone-Implant Interface/
  • Takashi Nakamura
  • Shigeru Nishiguchi
  • p. 489
  • p. 499
  • Ch. 32.
  • Fracture Toughness Tests of the Bone-Implant Interface/
  • Xiaodu Wang
  • Kyriacos A. Athanasiou
  • C. Mauli Agrawal
  • Ch. 33.
  • In Vitro Measurements of Implant Stability/
  • Aivars Berzins
  • Dale R. Sumner
  • p. 515
  • p. 527
  • Ch. 34.
  • In Vitro Testing of the Stability of Acetabular Components/
  • James R. Davis
  • Robert A. Lofthouse
  • Riyaz H. Jinnah
  • p. 541
  • Ch. 35.
  • In Vitro Testing of the Stability of Femoral Components/
  • Sanjiv H. Naidu
  • Fadi M. Khoury
  • John M. Cuckler
  • Ch. 36.
  • Screw Pullout Test/
  • Lisa A. Ferrara
  • Timothy C. Ryken
  • p. 551
  • Ch. 37.
  • Finite Element Analysis for Evaluating Mechanical Properties of the Bone-Implant Interface/
  • Keith R. Williams
  • p. 567
  • p. 581
  • Ch. 38.
  • Fatigue Testing of Bioabsorbable Screws in a Synthetic Bone Substrate/
  • William S. Pietrzak
  • David R. Sarver
  • David H. Kohn
  • Ch. 39.
  • Testing Intervertebral Stability after Spinal Fixation/
  • Kenneth S. James
  • A. U. Daniels
  • p. 593
  • App. 1.
  • p. 607
  • App. 2.
  • p. 609
  • Index.
  • p. 611
Control code
980099036531
Dimensions
26 cm.
Extent
624 p.
Isbn
9780849302664
Lccn
lc99036531
Media category
unmediated
Media MARC source
rdamedia
Media type code
  • n
Other physical details
ill.

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