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About me
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This project aimed to develop and validate experimental-computational frameworks for assessing cementless implant stability after TKA/UKA/THA.
This project aimed to understand the critical parameters influencing bone remodeling after cemented TKA.
This project aimed to understand the critical parameters influencing cementless implant micromotion after knee arthroplasty
This study aimed to develop an experimental-computational framework for evaluating the fixation stability of novel cementless hip revision implants during activities of daily living.
This project aimed to predict the polyethylene wear in TKA for novel implant designs by using a new computational wear model which considered the effect of lubrication, protein denaturation, time-dependent molecular direction, and energy dissipation.
Published in Journal of Thermal Stresses, 2016
In this paper, we performed a finite element analysis to investigate the stability boundaries of thermal buckling in automotive clutches
Published in Journal of the Mechanical Behavior of Biomedical Materials, 2020
In this paper, we presented an experimental-computational validation framework for investigating micromotions at the tray-bone interface under physiological conditions.
Published in Medical Engineering & Physics, 2021
This study investigated the impact of surgical alignment, tray material properties, posterior cruciate ligament (PCL) balance, tray posterior slope, and patient anatomy on SED distributions in the proximal tibia.
Published in Journal of Orthopaedic Research, 2022
In this study, we assessed the impacts of surgical (tray alignment, tibial coverage, and resection surface preparation), patient (bone properties and tibiofemoral kinematics), and implant design (tray feature and surface friction) factors on tray–bone interface micromotions during a series of activities of daily living.
Published in Journal of the Mechanical Behavior of Biomedical Materials, 2022
This study assessed the implant stability of two TKA designs during a series of simulated daily activities including experimental testing and corresponding computational models.
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Here we presented a validated experimental-computational framework for prediction of tibial micromotion and bone deformation during activities of daily living.
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Here we investigated the influence of several common TKA factors on the proximal tibial bone strain and SED.
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Here we presented a patellar micromotion in vitro experiment and the corresponding validation of computational models for the prediction of patellar micromotions.
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Here we investigated the influences of the tray-bone alignment parameters on interface micromotions during a series of activities of daily living.
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Here we assess the isolated impact of articular conformity and tray features on micromotion during a series of simulated activities.
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Here we investigated cementless patellar implant micromotion under implant-specific loading conditions and assess the fixation stability for different patellar implant designs.
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Here we investigated the influence of the implant-bone alignment parameters, contact friction, and bone properties on interface micromotions in UKA during a series of activities of daily living.
Undergraduate course, University 1, Department, 2014
This is a description of a teaching experience. You can use markdown like any other post.
Workshop, University 1, Department, 2015
This is a description of a teaching experience. You can use markdown like any other post.