Evaluation of Personalized Biomechanical Models of the Musculoskeletal System Before and After Orthopedic Surgeries (OrthosimPro)
Primary Purpose
Orthopedic Disorder
Status
Unknown status
Phase
Not Applicable
Locations
Study Type
Interventional
Intervention
imaging and motion analysis
Sponsored by
About this trial
This is an interventional other trial for Orthopedic Disorder focused on measuring computer simulation, orthopedic surgical procedures, Multimodal Imaging, gait analysis
Eligibility Criteria
Inclusion Criteria:
- If women, menopausal or on contraception if of childbearing age
- Patients who will benefit from one of the orthopedic surgical procedures corresponding to the surgeries studied
- Patient who is a member of a social security organization
- Patient who has signed a written informed consent form
Exclusion Criteria:
- Patient refusal to participate in the study
- Minor,
- Patient under guardianship and / or curators,
- Patient unable to receive information and express consent
- Pregnant and/or breastfeeding women
- Contraindication to MRI (presence of ferromagnetic materials, neurosurgical clips, vascular, pacemaker).
- Non-affiliation to a social security scheme (beneficiary or entitled person)
Sites / Locations
Arms of the Study
Arm 1
Arm Type
Other
Arm Label
patients
Arm Description
Patients for whom orthopedic surgery is indicated and planned among : Tibial valgus osteotomy Supra-malleolar osteotomy Hallux osteotomy for hallux valgus Total knee arthroplasty Total ankle arthroplasty Ankle arthrodesis Hallux arthrodesis Rear foot torque arthrodesis Inverted shoulder prosthesis Anterior lumbar interbody arthrodesis
Outcomes
Primary Outcome Measures
Evaluation of simulated models regarding relative position of bones in static condition
comparison between real data (from imaging) vs simulated data regarding relative position of bones defining a joint:
angles between mechanical bone axis in degree
in two situations:
angles measured on pre operative imaging versus angles obtained on model 1
angles measured on post operative imaging versus angles obtained on model 3
Evaluation of simulated models regarding relative position of bones in dynamic condition: range of motion (ROM)
comparison between real data (from motion analysis) vs simulated data regarding relative position of bones defining a joint:
total joint range of motion (ROM) projected in anatomical planes : degree of freedom of the joint (flexion, extension, abduction, adduction, medial and lateral rotation) (Kinematic parameters)
in two situations:
ROM measured on pre operative motion analysis versus ROM obtained on model 1
ROM measured on post operative motion analysis versus ROM obtained on model 3
Evaluation of simulated models regarding forces
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as forces (ground reaction forces)
in Newton (N)
in two situations:
forces measured on pre operative motion analysis versus forces obtained on model 1
forces measured on post operative motion analysis versus forces obtained on model 3
Evaluation of simulated models regarding moment
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as joint moment
in Newton-metre (N.m)
in two situations:
moment calculated on pre operative motion analysis versus moment obtained on model 1
moment calculated on post operative motion analysis versus moment obtained on model 3
Evaluation of simulated models regarding pressure
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as pressure (baropodometric analysis)
in Newton per square centimeter (N/cm2)
in two situations:
pressure measured on pre operative motion analysis versus pressure obtained on model 1
pressure measured on post operative motion analysis versus pressure obtained on model 3
comparison of post surgery changes in real and simulated results regarding bone dimension
comparison between real bone dimension's changes (from imaging) vs bone dimension's changes on simulated data
difference calculated in mm
in one situation:
- bone dimension's difference calculated on CT scan (difference between pre and post operative bone dimensions) versus bone dimension's difference calculated on models (difference between bone dimensions obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding bone torsion
comparison between real bone torsion's changes (from imaging) vs bone torsion's changes on simulated data,
difference calculated in degree
in one situation:
- bone torsion's difference calculated on CT scan (difference between pre and post operative bone torsions) versus bone torsion's difference calculated on models (difference between bone torsions obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding bone axis
comparison between real bone axis changes (from imaging) vs bone axis changes on simulated data : anatomical bone axis (corresponding mainly to the diaphyseal axis))
difference calculated in degree
in one situation:
- bone axis difference calculated on imaging (difference between pre and post operative bone torsion) versus bone torsion's difference calculated on models (difference between bone torsions obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding bone volume
comparison between real bone volume changes (from imaging) vs bone volume changes on simulated data
difference calculated in mm3
in one situation:
- bone volume difference calculated on CT scan (difference between pre and post operative bone volumes) versus bone volume difference calculated on models (difference between bone volumes obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding relative position of bones in static condition
comparison between real mechanical angle changes (from imaging) vs mechanical angle changes on simulated data
difference between angles (obtained from mechanical bone axis) calculated in degree
in one situation:
- mechanical angle difference calculated on imaging (difference between pre and post operative mechanical angles) versus mechanical angle difference calculated on models (difference between mechanical angles obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding ROM's changes
comparison between real ROM'S changes (from motion analysis) vs ROM's changes on simulated data
joint range of motion's difference calculated in degree
in one situation:
- ROM's difference calculated on motion analysis (difference between pre and post operative ROM) versus ROM's difference calculated on models (difference between ROM obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding moment changes
comparison between real moment changes (from motion analysis) vs moment changes on simulated data
moment difference calculated in N.m
in one situation:
- moment difference calculated on motion analysis (difference between pre and post operative moments) versus moment difference calculated on models (difference between moments obtained on model 1 and model 3)
comparison of post surgery changes in real and simulated results regarding pressure changes
comparison between real pressure changes (from motion analysis) vs pressure changes on simulated data
pressure difference calculated in N/cm2
in one situation:
- pressure difference calculated on motion analysis (difference between pre and post operative pressures) versus pressure difference calculated on models (difference between pressures obtained on model 1 and model 3)
Secondary Outcome Measures
correlation of clinical scores and changes in function
changes in clinical scores (percentage) compared to the variation in the range of motion of joints studied
Comparison of post surgery models between real and simulated surgery regarding bone dimension
comparison between bone dimension in simulated surgery (model 2) and bone dimension in real surgery model (model 3)
difference calculated in mm
Comparison of post surgery models between real and simulated surgery regarding bone torsion
comparison between bone torsion in simulated surgery (model 2) and bone torsion in real surgery model (model 3)
difference calculated in degree
Comparison of post surgery models between real and simulated surgery regarding bone axis
comparison between bone axis in simulated surgery (model 2) and bone axis in real surgery model (model 3) : anatomical bone axis (corresponding mainly to the diaphyseal axis))
difference calculated in degree
Comparison of post surgery models between real and simulated surgery regarding bone volume
comparison between bone volume in simulated surgery (model 2) and bone volume in real surgery model (model 3)
difference calculated in mm3
Comparison of post surgery models between real and simulated surgery regarding point-to-surface distance of bone
comparison of point-to-surface distance between two pairs of bones model 1/ model 2 and model 1/model 3
difference calculated in mm
Comparison of post surgery models between real and simulated surgery regarding relative position of bones in static condition
comparison between mechanical angle in simulated surgery (model 2) and mechanical angle in real surgery model (model 3)
difference between angles (obtained from mechanical bone axis) calculated in degree
Comparison of post surgery models between real and simulated surgery regarding ROM's changes
comparison between ROM in simulated surgery (model 2) and ROM in real surgery model (model 3)
joint range of motion's difference calculated in degree
Comparison of post surgery models between real and simulated surgery regarding ground reaction forces changes
comparison between forces in simulated surgery (model 2) and forces in real surgery model (model 3)
ground reaction forces difference calculated in Newton
Comparison of post surgery models between real and simulated surgery regarding moment changes
comparison between moment in simulated surgery (model 2) and moment in real surgery model (model 3)
moment difference calculated in N.m
Comparison of post surgery models between real and simulated surgery regarding pressure changes
comparison between pressure in simulated surgery (model 2) and pressure in real surgery model (model 3)
pressure difference calculated in N/cm2
comparison of simulated joint force changes between Pre and post surgery models
comparison between simulated joint forces (from model 1) vs simulated joint forces (from model 2 and 3)
joint normal contact forces difference calculated in Newton
Full Information
NCT ID
NCT04668430
First Posted
November 12, 2020
Last Updated
December 8, 2020
Sponsor
Centre d'Investigation Clinique et Technologique 805
Collaborators
Fondation Garches
1. Study Identification
Unique Protocol Identification Number
NCT04668430
Brief Title
Evaluation of Personalized Biomechanical Models of the Musculoskeletal System Before and After Orthopedic Surgeries
Acronym
OrthosimPro
Official Title
Imaging for the Generation of Personalized Biomechanical Models of the Musculoskeletal System Before and After Surgery
Study Type
Interventional
2. Study Status
Record Verification Date
April 2020
Overall Recruitment Status
Unknown status
Study Start Date
December 15, 2020 (Anticipated)
Primary Completion Date
October 15, 2022 (Anticipated)
Study Completion Date
October 15, 2023 (Anticipated)
3. Sponsor/Collaborators
Responsible Party, by Official Title
Sponsor
Name of the Sponsor
Centre d'Investigation Clinique et Technologique 805
Collaborators
Fondation Garches
4. Oversight
Studies a U.S. FDA-regulated Drug Product
No
Studies a U.S. FDA-regulated Device Product
No
Data Monitoring Committee
No
5. Study Description
Brief Summary
Advances in biomechanical modeling of musculoskeletal systems make it possible to consider the use of a digital clone of a patient to test surgical procedure before carrying it out on the patient himself.
The study aims at evaluating the design and simulation procedure of anatomical and functional pre and post surgical patient-specific numerical models.
Detailed Description
The general research framework is focused on predicting the functional outcome of orthopaedic surgery for a given patient.
Since surgery is an invasive and irreversible procedure, it may be useful to carry out surgical simulations on a digital clone before performing them on the real patient.
This simulation would therefore be a tool for optimized surgical planning, based on a realistic functional objective.
The investigators' work in the design and evaluation of biomechanical models is now applicable to orthopedic surgery.
So, it is necessary to verify that the digital procedures allowing the realization of virtual surgical gestures are comparable to the procedures actually applied to the patient.
Thus, a first retrospective study (Imaging for the generation of personalized biomechanical models of the musculoskeletal system before and after surgery - ORTHOSIM Retrospective) Clinical Trial N° NCT03835000, is in progress in order to validate the possibility of creating pre- and post-operative anatomical digital clones. The aim of this prospective study is to integrate the functional characteristics of the patient before and after surgery with the objective of dynamic validation of the biomechanical models created.
OrthosimPro is a bi-centric, longitudinal and prospective study.
10 patients needing orthopedic surgery will be enrolled after being informed about the study and potential risks. They will give written informed consent.
This study will not modify :
the operative indication
the surgical procedure
the management before and after the surgery
Patients will have a pre and post operative assessment
Anatomical by sectional imaging
Functional by motion analysis
Thus, it allows creating 3 digital models for the same patient:
Creation of Model 1: preoperative dynamic model obtained from the anatomical and functional preoperative assessment.
Creation of Model 2: Model 1 to which the surgery is applied according to the criteria indicated by the surgeon.
Creation of Model 3: a dynamic postoperative model independent of Models 1 and 2 obtained from the anatomical and functional postoperative assessment.
Validation of each model:
Each model will be compared with the patient data used to build the model, there is no comparison of patients regarding each other or models belonging to different patients. This study therefore aims to validate an individual's model on his or her own data.
Comparison of model 1 (angle, forces, geometry) versus morphological and functional assessment before surgery
Comparison of model 3 (angle, forces, geometry) versus morphological and functional assessment after surgery
Evaluation the surgery simulation procedure:
Comparison of model 2 (angle, forces, geometry) versus model 3
6. Conditions and Keywords
Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Orthopedic Disorder
Keywords
computer simulation, orthopedic surgical procedures, Multimodal Imaging, gait analysis
7. Study Design
Primary Purpose
Other
Study Phase
Not Applicable
Interventional Study Model
Single Group Assignment
Masking
None (Open Label)
Allocation
N/A
Enrollment
10 (Anticipated)
8. Arms, Groups, and Interventions
Arm Title
patients
Arm Type
Other
Arm Description
Patients for whom orthopedic surgery is indicated and planned among :
Tibial valgus osteotomy
Supra-malleolar osteotomy
Hallux osteotomy for hallux valgus
Total knee arthroplasty
Total ankle arthroplasty
Ankle arthrodesis
Hallux arthrodesis
Rear foot torque arthrodesis
Inverted shoulder prosthesis
Anterior lumbar interbody arthrodesis
Intervention Type
Other
Intervention Name(s)
imaging and motion analysis
Intervention Description
performing a set of imaging and motion analysis tests before and after orthopedic surgery without modifying the operative indication or the pre- and post-operative management.
Primary Outcome Measure Information:
Title
Evaluation of simulated models regarding relative position of bones in static condition
Description
comparison between real data (from imaging) vs simulated data regarding relative position of bones defining a joint:
angles between mechanical bone axis in degree
in two situations:
angles measured on pre operative imaging versus angles obtained on model 1
angles measured on post operative imaging versus angles obtained on model 3
Time Frame
18 months
Title
Evaluation of simulated models regarding relative position of bones in dynamic condition: range of motion (ROM)
Description
comparison between real data (from motion analysis) vs simulated data regarding relative position of bones defining a joint:
total joint range of motion (ROM) projected in anatomical planes : degree of freedom of the joint (flexion, extension, abduction, adduction, medial and lateral rotation) (Kinematic parameters)
in two situations:
ROM measured on pre operative motion analysis versus ROM obtained on model 1
ROM measured on post operative motion analysis versus ROM obtained on model 3
Time Frame
18 months
Title
Evaluation of simulated models regarding forces
Description
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as forces (ground reaction forces)
in Newton (N)
in two situations:
forces measured on pre operative motion analysis versus forces obtained on model 1
forces measured on post operative motion analysis versus forces obtained on model 3
Time Frame
18 months
Title
Evaluation of simulated models regarding moment
Description
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as joint moment
in Newton-metre (N.m)
in two situations:
moment calculated on pre operative motion analysis versus moment obtained on model 1
moment calculated on post operative motion analysis versus moment obtained on model 3
Time Frame
18 months
Title
Evaluation of simulated models regarding pressure
Description
comparison between real data (from motion analysis) vs simulated data regarding kinetic parameters as pressure (baropodometric analysis)
in Newton per square centimeter (N/cm2)
in two situations:
pressure measured on pre operative motion analysis versus pressure obtained on model 1
pressure measured on post operative motion analysis versus pressure obtained on model 3
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding bone dimension
Description
comparison between real bone dimension's changes (from imaging) vs bone dimension's changes on simulated data
difference calculated in mm
in one situation:
- bone dimension's difference calculated on CT scan (difference between pre and post operative bone dimensions) versus bone dimension's difference calculated on models (difference between bone dimensions obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding bone torsion
Description
comparison between real bone torsion's changes (from imaging) vs bone torsion's changes on simulated data,
difference calculated in degree
in one situation:
- bone torsion's difference calculated on CT scan (difference between pre and post operative bone torsions) versus bone torsion's difference calculated on models (difference between bone torsions obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding bone axis
Description
comparison between real bone axis changes (from imaging) vs bone axis changes on simulated data : anatomical bone axis (corresponding mainly to the diaphyseal axis))
difference calculated in degree
in one situation:
- bone axis difference calculated on imaging (difference between pre and post operative bone torsion) versus bone torsion's difference calculated on models (difference between bone torsions obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding bone volume
Description
comparison between real bone volume changes (from imaging) vs bone volume changes on simulated data
difference calculated in mm3
in one situation:
- bone volume difference calculated on CT scan (difference between pre and post operative bone volumes) versus bone volume difference calculated on models (difference between bone volumes obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding relative position of bones in static condition
Description
comparison between real mechanical angle changes (from imaging) vs mechanical angle changes on simulated data
difference between angles (obtained from mechanical bone axis) calculated in degree
in one situation:
- mechanical angle difference calculated on imaging (difference between pre and post operative mechanical angles) versus mechanical angle difference calculated on models (difference between mechanical angles obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding ROM's changes
Description
comparison between real ROM'S changes (from motion analysis) vs ROM's changes on simulated data
joint range of motion's difference calculated in degree
in one situation:
- ROM's difference calculated on motion analysis (difference between pre and post operative ROM) versus ROM's difference calculated on models (difference between ROM obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding moment changes
Description
comparison between real moment changes (from motion analysis) vs moment changes on simulated data
moment difference calculated in N.m
in one situation:
- moment difference calculated on motion analysis (difference between pre and post operative moments) versus moment difference calculated on models (difference between moments obtained on model 1 and model 3)
Time Frame
18 months
Title
comparison of post surgery changes in real and simulated results regarding pressure changes
Description
comparison between real pressure changes (from motion analysis) vs pressure changes on simulated data
pressure difference calculated in N/cm2
in one situation:
- pressure difference calculated on motion analysis (difference between pre and post operative pressures) versus pressure difference calculated on models (difference between pressures obtained on model 1 and model 3)
Time Frame
18 months
Secondary Outcome Measure Information:
Title
correlation of clinical scores and changes in function
Description
changes in clinical scores (percentage) compared to the variation in the range of motion of joints studied
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding bone dimension
Description
comparison between bone dimension in simulated surgery (model 2) and bone dimension in real surgery model (model 3)
difference calculated in mm
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding bone torsion
Description
comparison between bone torsion in simulated surgery (model 2) and bone torsion in real surgery model (model 3)
difference calculated in degree
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding bone axis
Description
comparison between bone axis in simulated surgery (model 2) and bone axis in real surgery model (model 3) : anatomical bone axis (corresponding mainly to the diaphyseal axis))
difference calculated in degree
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding bone volume
Description
comparison between bone volume in simulated surgery (model 2) and bone volume in real surgery model (model 3)
difference calculated in mm3
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding point-to-surface distance of bone
Description
comparison of point-to-surface distance between two pairs of bones model 1/ model 2 and model 1/model 3
difference calculated in mm
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding relative position of bones in static condition
Description
comparison between mechanical angle in simulated surgery (model 2) and mechanical angle in real surgery model (model 3)
difference between angles (obtained from mechanical bone axis) calculated in degree
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding ROM's changes
Description
comparison between ROM in simulated surgery (model 2) and ROM in real surgery model (model 3)
joint range of motion's difference calculated in degree
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding ground reaction forces changes
Description
comparison between forces in simulated surgery (model 2) and forces in real surgery model (model 3)
ground reaction forces difference calculated in Newton
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding moment changes
Description
comparison between moment in simulated surgery (model 2) and moment in real surgery model (model 3)
moment difference calculated in N.m
Time Frame
18 months
Title
Comparison of post surgery models between real and simulated surgery regarding pressure changes
Description
comparison between pressure in simulated surgery (model 2) and pressure in real surgery model (model 3)
pressure difference calculated in N/cm2
Time Frame
18 months
Title
comparison of simulated joint force changes between Pre and post surgery models
Description
comparison between simulated joint forces (from model 1) vs simulated joint forces (from model 2 and 3)
joint normal contact forces difference calculated in Newton
Time Frame
18 months
10. Eligibility
Sex
All
Minimum Age & Unit of Time
20 Years
Maximum Age & Unit of Time
80 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
Inclusion Criteria:
If women, menopausal or on contraception if of childbearing age
Patients who will benefit from one of the orthopedic surgical procedures corresponding to the surgeries studied
Patient who is a member of a social security organization
Patient who has signed a written informed consent form
Exclusion Criteria:
Patient refusal to participate in the study
Minor,
Patient under guardianship and / or curators,
Patient unable to receive information and express consent
Pregnant and/or breastfeeding women
Contraindication to MRI (presence of ferromagnetic materials, neurosurgical clips, vascular, pacemaker).
Non-affiliation to a social security scheme (beneficiary or entitled person)
Central Contact Person:
First Name & Middle Initial & Last Name or Official Title & Degree
Antoine MR PERRIER, PHD
Phone
+33 (1) 44 74 10 19
Email
perrier.antoine@gmail.com
First Name & Middle Initial & Last Name or Official Title & Degree
Yohan MR PAYAN, PHD
Phone
+33 (4) 45 56 20 01
Email
Yohan.Payan@univ-grenoble-alpes.fr
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Antoine M PERRIER, PHD
Organizational Affiliation
laboratoire TIMC CNRS
Official's Role
Principal Investigator
12. IPD Sharing Statement
Learn more about this trial
Evaluation of Personalized Biomechanical Models of the Musculoskeletal System Before and After Orthopedic Surgeries
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