3D patient specific instrumentation for high tibial osteotomy

High tibial osteotomy (HTO) is a surgical intervention for knee osteoarthritis (OA) by correcting the alignment of the knees. This is carried out by cutting the upper tibia at an angle to help redirect the load from the damaged cartilage, preventing further deterioration. This treatment helps...

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Main Author: Wong, Gina Khay Fong
Other Authors: Chou Siaw Meng
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
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Online Access:https://hdl.handle.net/10356/177493
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1774932024-06-01T16:52:33Z 3D patient specific instrumentation for high tibial osteotomy Wong, Gina Khay Fong Chou Siaw Meng School of Mechanical and Aerospace Engineering MSMCHOU@ntu.edu.sg Medicine, Health and Life Sciences Tibia High tibial osteotomy (HTO) is a surgical intervention for knee osteoarthritis (OA) by correcting the alignment of the knees. This is carried out by cutting the upper tibia at an angle to help redirect the load from the damaged cartilage, preventing further deterioration. This treatment helps to delay the patients from going through a total knee arthroplasty (TKA) or a knee replacement which may pose a higher risk of complications. As the medical industry gets more advanced with the use of patient specific instruments, patient can have tailor-made instruments which is precise and accurate while greatly improving the surgical outcome of each operation. The aim of this project is to experiment the methods to create the femur, patella, fibula, tibia cortical and tibia cancellous as accurate as possible through the 3D Slicer. The features of the bones, such as the tibial plateau datum, femur head center and the ankle joints, have to be preserved as best as possible as it is crucial for the measurements for HTO cuts. The bone models will be created using three-dimensional (3D) Slicer, meshing will be completed in MeshLab and the HTO measurements and cuts will be completed using SolidWorks. Bone models are created from computed tomography (CT) scans which are specimens provided by the Singapore General Hospital (SGH). The model is then meshed in MeshLab to reduce the number of faces and HTO cuts are then simulated in SolidWorks. The most time-intensive part of this project is creating the bone models as there are many alternatives to build it, with many unknown variables, like how the detection algorithm for the Hounsfield Units (HU) works, which helps to build the bone model. After a vast number of experiments with 3D Slicer, “Grow from Seeds” is proven to be more time efficient and accurate along with the “Logical Operators”, especially for a thin and uneven layer like the cortical region. With SolidWorks used preoperatively to simulate the HTO cuts and alignment, there are still limitations present. The creation of the locking plates and the wedges were unsuccessful due to the complexity of having it contoured to the anatomy of the patient. In conclusion, the 3D bone models produced are accurate for measurements with simulated OA conditions to be carried out in SolidWorks. The wedges and locking plates need further improvement to be used in simulation. Bachelor's degree 2024-05-29T02:09:16Z 2024-05-29T02:09:16Z 2024 Final Year Project (FYP) Wong, G. K. F. (2024). 3D patient specific instrumentation for high tibial osteotomy. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/177493 https://hdl.handle.net/10356/177493 en A012 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Medicine, Health and Life Sciences
Tibia
spellingShingle Medicine, Health and Life Sciences
Tibia
Wong, Gina Khay Fong
3D patient specific instrumentation for high tibial osteotomy
description High tibial osteotomy (HTO) is a surgical intervention for knee osteoarthritis (OA) by correcting the alignment of the knees. This is carried out by cutting the upper tibia at an angle to help redirect the load from the damaged cartilage, preventing further deterioration. This treatment helps to delay the patients from going through a total knee arthroplasty (TKA) or a knee replacement which may pose a higher risk of complications. As the medical industry gets more advanced with the use of patient specific instruments, patient can have tailor-made instruments which is precise and accurate while greatly improving the surgical outcome of each operation. The aim of this project is to experiment the methods to create the femur, patella, fibula, tibia cortical and tibia cancellous as accurate as possible through the 3D Slicer. The features of the bones, such as the tibial plateau datum, femur head center and the ankle joints, have to be preserved as best as possible as it is crucial for the measurements for HTO cuts. The bone models will be created using three-dimensional (3D) Slicer, meshing will be completed in MeshLab and the HTO measurements and cuts will be completed using SolidWorks. Bone models are created from computed tomography (CT) scans which are specimens provided by the Singapore General Hospital (SGH). The model is then meshed in MeshLab to reduce the number of faces and HTO cuts are then simulated in SolidWorks. The most time-intensive part of this project is creating the bone models as there are many alternatives to build it, with many unknown variables, like how the detection algorithm for the Hounsfield Units (HU) works, which helps to build the bone model. After a vast number of experiments with 3D Slicer, “Grow from Seeds” is proven to be more time efficient and accurate along with the “Logical Operators”, especially for a thin and uneven layer like the cortical region. With SolidWorks used preoperatively to simulate the HTO cuts and alignment, there are still limitations present. The creation of the locking plates and the wedges were unsuccessful due to the complexity of having it contoured to the anatomy of the patient. In conclusion, the 3D bone models produced are accurate for measurements with simulated OA conditions to be carried out in SolidWorks. The wedges and locking plates need further improvement to be used in simulation.
author2 Chou Siaw Meng
author_facet Chou Siaw Meng
Wong, Gina Khay Fong
format Final Year Project
author Wong, Gina Khay Fong
author_sort Wong, Gina Khay Fong
title 3D patient specific instrumentation for high tibial osteotomy
title_short 3D patient specific instrumentation for high tibial osteotomy
title_full 3D patient specific instrumentation for high tibial osteotomy
title_fullStr 3D patient specific instrumentation for high tibial osteotomy
title_full_unstemmed 3D patient specific instrumentation for high tibial osteotomy
title_sort 3d patient specific instrumentation for high tibial osteotomy
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/177493
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