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Muscles, Ligaments and Tendons Journal
|
May 4, 2018
Finite element comparison between the human and the ovine lumbar intervertebral disc
Gloria Casaroli, Tomaso Villa, Fabio Galbusera
JOR Spine
|
August 30, 2019
Artificial intelligence and machine learning in spine research
Fabio Galbusera, Gloria Casaroli, Tito Bassani
Plos One
|
March 19, 2019
Dependence of lumbar loads on spinopelvic sagittal alignment: An evaluation based on musculoskeletal modeling
Tito Bassani, Gloria Casaroli, Fabio Galbusera
Medical Engineering & Physics
|
December 24, 2019
What do we know about the biomechanics of the sacroiliac joint and of sacropelvic fixation? A literature review
Gloria Casaroli, Tito Bassani, Marco Brayda-Bruno, et al.
Plos One
|
May 5, 2017
A novel finite element model of the ovine lumbar intervertebral disc with anisotropic hyperelastic material properties
Gloria Casaroli, Fabio Galbusera, René Jonas, et al.
BMC Musculoskeletal Disorders
|
November 28, 2017
Contact stresses, pressure and area in a fixed-bearing total ankle replacement: a finite element analysis
Nicolo Martinelli, Silvia Baretta, Jenny Pagano, et al.
Materials (Basel, Switzerland)
|
August 5, 2017
Numerical Prediction of the Mechanical Failure of the Intervertebral Disc under Complex Loading Conditions
Gloria Casaroli, Tomaso Villa, Tito Bassani, et al.
Foot and Ankle Surgery : Official Journal of the European Society of Foot and Ankle Surgeons
|
May 9, 2019
In vivo kinematics of fixed-bearing total ankle arthroplasty
Gloria Casaroli, Tomaso Villa, Alberto Bianchi, et al.
Spine
|
May 18, 2016
Influence of Complex Loading Conditions on Intervertebral Disc Failure
Nikolaus Berger-Roscher, Gloria Casaroli, Volker Rasche, et al.
Translational Oncology
|
April 1, 2018
The Role of the Size and Location of the Tumors and of the Vertebral Anatomy in Determining the Structural Stability of the Metastatically Involved Spine: a Finite Element Study
Fabio Galbusera, Zhihui Qian, Gloria Casaroli, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 15) with videos related to
Sort By:
Page
of 2
Muscles, Ligaments and Tendons Journal
|
May 4, 2018
Finite element comparison between the human and the ovine lumbar intervertebral disc
Gloria Casaroli, Tomaso Villa, Fabio Galbusera
JOR Spine
|
August 30, 2019
Artificial intelligence and machine learning in spine research
Fabio Galbusera, Gloria Casaroli, Tito Bassani
Plos One
|
March 19, 2019
Dependence of lumbar loads on spinopelvic sagittal alignment: An evaluation based on musculoskeletal modeling
Tito Bassani, Gloria Casaroli, Fabio Galbusera
Medical Engineering & Physics
|
December 24, 2019
What do we know about the biomechanics of the sacroiliac joint and of sacropelvic fixation? A literature review
Gloria Casaroli, Tito Bassani, Marco Brayda-Bruno, et al.
Plos One
|
May 5, 2017
A novel finite element model of the ovine lumbar intervertebral disc with anisotropic hyperelastic material properties
Gloria Casaroli, Fabio Galbusera, René Jonas, et al.
BMC Musculoskeletal Disorders
|
November 28, 2017
Contact stresses, pressure and area in a fixed-bearing total ankle replacement: a finite element analysis
Nicolo Martinelli, Silvia Baretta, Jenny Pagano, et al.
Materials (Basel, Switzerland)
|
August 5, 2017
Numerical Prediction of the Mechanical Failure of the Intervertebral Disc under Complex Loading Conditions
Gloria Casaroli, Tomaso Villa, Tito Bassani, et al.
Foot and Ankle Surgery : Official Journal of the European Society of Foot and Ankle Surgeons
|
May 9, 2019
In vivo kinematics of fixed-bearing total ankle arthroplasty
Gloria Casaroli, Tomaso Villa, Alberto Bianchi, et al.
Spine
|
May 18, 2016
Influence of Complex Loading Conditions on Intervertebral Disc Failure
Nikolaus Berger-Roscher, Gloria Casaroli, Volker Rasche, et al.
Translational Oncology
|
April 1, 2018
The Role of the Size and Location of the Tumors and of the Vertebral Anatomy in Determining the Structural Stability of the Metastatically Involved Spine: a Finite Element Study
Fabio Galbusera, Zhihui Qian, Gloria Casaroli, et al.
Page
of 2