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Joseph J. Crisco

Joseph J. Crisco

D-Index & Metrics

Engineering and Technology

D-Index
69
Citations
17303
World Ranking
1137
National Ranking
377

Overview

Joseph J. Crisco is affiliated with Brown University in the United States and has a significant body of research primarily in the field of Medicine. Within this broad domain, their work focuses extensively on subfields such as Surgery, Epidemiology, Orthopedics and Sports Medicine, Rehabilitation, and Pharmacology.

The scientist's research topics include:

  • Orthopedic Surgery and Rehabilitation
  • Shoulder Injury and Treatment
  • Elbow and Forearm Trauma Treatment
  • Orthopaedic implants and arthroplasty
  • Foot and Ankle Surgery
  • Traumatic Brain Injury Research
  • Musculoskeletal pain and rehabilitation

Joseph J. Crisco has contributed to frequent publications in these venues:

  • Journal of Biomechanics
  • SSRN Electronic Journal
  • Journal of Orthopaedic Research®
  • Annals of Biomedical Engineering
  • Clinical Biomechanics

Some of their recent papers include:

  • Proximal-distal shift of the center of rotation in a total wrist arthroplasty is more than twice of the healthy wrist, 2020, Journal of Orthopaedic Research®
  • The role of scapholunate interosseous, dorsal intercarpal, and radiolunate ligaments in wrist biomechanics, 2021, Journal of Biomechanics
  • Head Impact Exposure in Youth and Collegiate American Football, 2022, Annals of Biomedical Engineering
  • Accuracy of an electrogoniometer relative to optical motion tracking for quantifying wrist range of motion, 2020, Journal of Medical Engineering & Technology
  • Biomechanics of the Distal Radioulnar Joint During In Vivo Forearm Pronosupination, 2021, Journal of Wrist Surgery

The scientist often collaborates with several recurring coauthors, including:

  • Douglas C. Moore
  • Amy M. Morton
  • Janine Molino
  • Arnold-Peter C. Weiss
  • Amy L. Ladd

Best Publications

  • Mechanical behavior of the human lumbar and lumbosacral spine as shown by three-dimensional load-displacement curves

    M M Panjabi;T R Oxland;I Yamamoto;J J Crisco

  • Mechanical properties of the human cervical spine as shown by three-dimensional load-displacement curves.

    Manohar M. Panjabi;Joseph J. Crisco;Anita Vasavada;Takenori Oda

  • Biomechanical evaluation of lumbar spinal stability after graded facetectomies.

    Kuniyoshi Abumi;Manohar M. Panjabi;Kenneth M. Kramer;Joanne Duranceau

  • X-ray reconstruction of moving morphology (XROMM): precision, accuracy and applications in comparative biomechanics research.

    Elizabeth L. Brainerd;David B. Baier;David B. Baier;Stephen M. Gatesy;Tyson L. Hedrick

  • Biomechanical evaluation of four different posterior atlantoaxial fixation techniques.

    Dieter Grob;Joseph J. Crisco;Manohar M. Panjabi;Ping Wang

  • Rotational Head Kinematics in Football Impacts: An Injury Risk Function for Concussion

    Steven Rowson;Stefan M. Duma;Jonathan G. Beckwith;Jeffrey J. Chu

  • Disc degeneration affects the multidirectional flexibility of the lumbar spine.

    M Mimura;M M Panjabi;T R Oxland;J J Crisco

  • Analysis of Real-time Head Accelerations in Collegiate Football Players

    Stefan M. Duma;Sarah J. Manoogian;William R. Bussone;P. Gunnar Brolinson

  • Frequency and Location of Head Impact Exposures in Individual Collegiate Football Players

    Joseph J. Crisco;Russell Fiore;Jonathan G. Beckwith;Jeffrey J. Chu

  • The intersegmental and multisegmental muscles of the lumbar spine. A biomechanical model comparing lateral stabilizing potential.

    J J Crisco;Manohar M. Panjabi

  • Euler stability of the human ligamentous lumbar spine. Part II: Experiment

    J.J. Crisco;M.M. Panjabi;I. Yamamoto;T.R. Oxland

  • Head impact exposure in collegiate football players

    Joseph J. Crisco;Bethany J. Wilcox;Jonathan G. Beckwith;Jeffrey J. Chu

  • A Muscle Contusion Injury Model Biomechanics, Physiology, and Histology

    Joseph J. Crisco;Peter Jokl;Gregory T. Heinen;Marc D. Connell

  • Biomechanical Evaluation of Spinal Fixation Devices: II. Stability Provided by Eight Internal Fixation Devices

    Manohar M. Panjabi;Kuniyoshi Abumi;Joanne Duranceau;J. J. Crisco

  • Effects of alar ligament transection on upper cervical spine rotation.

    Manohar Panjabi;Jiri Dvorak;Joseph John Crisco;Takenori Oda

  • Flexion, extension, and lateral bending of the upper cervical spine in response to alar ligament transections.

    Manohar Panjabi;Jiri Dvorak;Joseph Crisco;Takenori Oda

  • An Algorithm for Estimating Acceleration Magnitude and Impact Location Using Multiple Nonorthogonal Single-Axis Accelerometers

    Joseph J. Crisco;Jeffrey J. Chu;Richard M. Greenwald

  • How does posture affect coupling in the lumbar spine

    Manohar Panjabi;Isao Yamamoto;Thomas Oxland;J Crisco

  • Impact monitoring system for players engaged in a sporting activity

    Joseph J. Crisco;Richard M. Greenwald;Jeffrey J. Chu

  • On the understanding of clinical instability.

    Manohar M. Panjabi;Chris Lydon;Anita Vasavada;Dieter Grob

  • Complexity of the thoracic spine pedicle anatomy

    M. M. Panjabi;J. D. O'Holleran;J. J. Crisco;R. Kothe

Frequent Co-Authors

Manohar M. Panjabi
Manohar M. Panjabi Yale University
Braden C. Fleming
Braden C. Fleming Brown University
David H. Laidlaw
David H. Laidlaw Brown University
Thomas W. McAllister
Thomas W. McAllister Indiana University
Jiri Dvorak
Jiri Dvorak Schulthess Clinic
Thor F. Besier
Thor F. Besier University of Auckland
Laura A. Flashman
Laura A. Flashman Dartmouth College
Benjamin B. Kimia
Benjamin B. Kimia Brown University
Poul M. F. Nielsen
Poul M. F. Nielsen University of Auckland
Joel D. Stitzel
Joel D. Stitzel Wake Forest University

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