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4dct Analysis Of In-Vivo Carpal Kinematics During Fem, Manisha R. Mistry Sep 2021

4dct Analysis Of In-Vivo Carpal Kinematics During Fem, Manisha R. Mistry

Electronic Thesis and Dissertation Repository

A consensus, detailed understanding of carpal kinematics remains elusive. 4-dimensional CT (4DCT) is a validated modality capable of accurately studying in-vivokinematic motion. The objective of this work is to quantify normal, in-vivo kinematic motion of the carpus through a flexion-extension arc of motion using 4DCT. Ten healthy, un-injured volunteers underwent a 4DCT scanning protocol through a complete arc of flexion-extension motion. Kinematic changes in motion were quantified using helical axis motion data for each carpal bone. Helical axes were compared between bones and statistical analysis performed using repeated-measures ANOVA to identify difference in kinematic motion between bones (p<0.05). The carpus can be divided into four main kinematic blocks: the distal carpal block, the proximal carpal block and individual scaphoid and trapezial blocks. This work supports an additional segmentation of the trapezium from the distal carpal row, which suggests some modulation between the scaphoid and distal carpal row.


Kinematics In Total Knee Arthroplasty, Allan Roy Sekeitto Jul 2021

Kinematics In Total Knee Arthroplasty, Allan Roy Sekeitto

Electronic Thesis and Dissertation Repository

Total knee arthroplasty (TKA) continues to be a successful procedure for the past 50 years. We investigated the kinematics after under- and overstuffing the joint space with the polyethylene (PE) insert in both cruciate-retaining (CR) TKA and posterior-stabilized (PS) TKA. We compared CR and PS designs to evaluate their respective kinematic differences. This study employed a hybrid computational-experimental joint motion simulation on a 6 degrees of freedom joint motion simulator. Physical prototypes of a virtually performed TKA based on cadaveric CT scans and a virtual ligament model were utilized. We demonstrated understuffing decreases stability and the joint compressive forces, with …


Lateral Subvastus Lateralis Versus Medial Parapatellar Approach For Total Knee Arthroplasty, Sahil Prabhnoor S. Sidhu Nov 2020

Lateral Subvastus Lateralis Versus Medial Parapatellar Approach For Total Knee Arthroplasty, Sahil Prabhnoor S. Sidhu

Electronic Thesis and Dissertation Repository

The current gold standard surgical approach for Total Knee Arthroplasty (TKA) is a medial parapatellar approach (MPA). We aimed to study a novel lateral subvastus lateralis approach (SLA) for TKA and compare patient outcomes and joint kinematics to the MPA.

Patients with neutral or varus alignment undergoing primary TKA were recruited to undergo the SLA. At one year postoperative, patient outcomes (WOMAC, SF-12, KSS) and joint kinematics (using radio stereometric analysis (RSA)) were analyzed. 7 LPA and 7 MPA patients were compared.

The SLA resulted in improved medial femoral rollback early in flexion, but less “regular” (external) rotation of the …


Biomechanical Analysis Of Total Knee Arthroplasty Performed On A 6 Degree Of Freedom Joint Motion Simulator Linked To A Virtual Ligament Model In Mechanical And Kinematic Alignments, Jance Mcgale Oct 2020

Biomechanical Analysis Of Total Knee Arthroplasty Performed On A 6 Degree Of Freedom Joint Motion Simulator Linked To A Virtual Ligament Model In Mechanical And Kinematic Alignments, Jance Mcgale

Electronic Thesis and Dissertation Repository

Total knee arthroplasty (TKA) is a very successful surgery providing many patients with increased quality of life. Despite this, some patients are dissatisfied. There are also complications with total knee arthroplasty that lead to the need for revision surgery. Improvements in stability, soft tissue balance, joint kinematics and overall patient satisfaction may lead to a decrease in TKA revisions. It is still unclear what the optimal soft tissue tension, balance or alignment is to provide superior patient outcomes. Computational models provide a means to effectively parameterize ligaments and simulate multiple scenarios of TKA. This work implemented a sophisticated 6-degree of …


The Effect Of Fixation Plate Length On Spinal Instability Following Anterior Cervical Plate Fixation For The Repair Of In Vitro Flexion-Distraction Injuries, Abdulaziz J. Al-Kuwari Sep 2014

The Effect Of Fixation Plate Length On Spinal Instability Following Anterior Cervical Plate Fixation For The Repair Of In Vitro Flexion-Distraction Injuries, Abdulaziz J. Al-Kuwari

Electronic Thesis and Dissertation Repository

Abstract:

The Effect of Fixation Plate Length on Spinal Instability Following Anterior Cervical Plate Fixation for the Repair of in Vitro Flexion-Distraction Injuries

Introduction: Anterior cervical decompression and fusion with a plate (ACDFP) is a commonly performed treatment following a traumatic injury to the subaxial cervical spine. The purpose of the presented work was to determine the biomechanical effect of plate length on cervical spine kinematic stability following ACDFP stabilization for a simulated traumatic injury.

Methods: Eleven fresh-frozen cadaveric C5-C6 and C6-C7 motion segments were examined in this study. To assess kinematics, flexibility testing was performed on each specimen …


The Use Of Motion Analysis Technology As An Alternative Means Of Assessing Spinal Deformity In Patients With Adolescent Idiopathic Scoliosis, Matthew J. Solomito May 2011

The Use Of Motion Analysis Technology As An Alternative Means Of Assessing Spinal Deformity In Patients With Adolescent Idiopathic Scoliosis, Matthew J. Solomito

Master's Theses

Adolescent Idiopathic Scoliosis (AIS) is a three dimensional deformity of the spine that causes abnormal curvatures in the coronal and sagittal planes and abnormal vertebral rotations. The gold standard for diagnosing and tracking the progression of the deformity is through the use of repeated radiography and a patient can receive upwards of fifteen radiographic series over the course of treatment, which exposes this population to an increased risk of radiation-dependent complications.

This thesis presents the necessary calculations and the marker set required to make the motion capture technology a viable alternative to radiographs, in an effort to reduce the patient’s …