Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery

Most of the treatments in medicine are patient specific, aren’t they? So why should we bother with individualizing implants if we adapt our therapy to patients anyway? Looking at the neighboring field of oncologic treatment, you would not question the fact that individualization of tumor therapy wit...

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Publicat: MDPI - Multidisciplinary Digital Publishing Institute 2022
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collection Directory of Open Access Books
description Most of the treatments in medicine are patient specific, aren’t they? So why should we bother with individualizing implants if we adapt our therapy to patients anyway? Looking at the neighboring field of oncologic treatment, you would not question the fact that individualization of tumor therapy with personalized antibodies has led to the thriving of this field in terms of success in patient survival and positive responses to alternatives for conventional treatments. Regarding the latest cutting-edge developments in orthopedic surgery and biotechnology, including new imaging techniques and 3D-printing of bone substitutes as well as implants, we do have an armamentarium available to stimulate the race for innovation in medicine. This Special Issue of Journal of Personalized Medicine will gather all relevant new and developed techniques already in clinical practice. Examples include the developments in revision arthroplasty and tumor (pelvic replacement) surgery to recreate individual defects, individualized implants for primary arthroplasty to establish physiological joint kinematics, and personalized implants in fracture treatment, to name but a few.
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spelling doab-20.500.12854ir-845022024-03-31T13:09:50Z Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery Rudert, Maximilian patient specific implant custom made implant revision hip Paprosky pelvic discontinuity highly cancellous implant surface tibia titanium alloy 3D printing megaendoprosthesis orthopedic oncology limb salvage patient safety management vascular bypass soft tissue sarcoma vascular reconstruction shoulder arthroplasty X-ray images implant classification deep learning dense residual ensemble-network rotational invariant augmentation Three-Dimensional Printing (3DP) custom implant patient-specific implants (PSI) spinal surgery total knee replacement total knee arthroplasty kinematic alignment slope rotation navigation-assisted surgery tumor orthopedics oncologic orthopedics patient specific tumor surgery bone defects hip detection deep convolutional neural network radiography leg alignment patient-specific instruments custom-made implant rotational correction custom-made rTKA 3D-printed individual limb-salvage cone customised personalised knee replacement native knee morphology femoral J-Curve principal component analysis geometric parameter analysis individualized alignment restricted kinematic alignment robotic-assisted TKA MAKO safe zone pelvic tumors 3D printed prostheses computer aided design pelvic reconstruction arthroplasty complications bone tumor pelvis patient-specific individualized 3D-printing unicondylar knee arthroplasty unicompartmental knee replacement unicondylar knee replacement partial knee arthroplasty partial knee replacement UKA UKR augmented reality image-guided surgery intraoperative imaging simulation mixed reality reversed shoulder arthroplasty 3D planning total hip arthroplasty finite element method cemented and uncemented acetabular fixation polyethylene wear patterns cervical–diaphyseal angle center of rotation material head size head liner thickness preoperative planning patient-specific THA target zone leg length discrepancy range of motion edge loading TKA tricompartmental knee osteoarthritis iTotal n/a thema EDItEUR::M Medicine and Nursing Most of the treatments in medicine are patient specific, aren’t they? So why should we bother with individualizing implants if we adapt our therapy to patients anyway? Looking at the neighboring field of oncologic treatment, you would not question the fact that individualization of tumor therapy with personalized antibodies has led to the thriving of this field in terms of success in patient survival and positive responses to alternatives for conventional treatments. Regarding the latest cutting-edge developments in orthopedic surgery and biotechnology, including new imaging techniques and 3D-printing of bone substitutes as well as implants, we do have an armamentarium available to stimulate the race for innovation in medicine. This Special Issue of Journal of Personalized Medicine will gather all relevant new and developed techniques already in clinical practice. Examples include the developments in revision arthroplasty and tumor (pelvic replacement) surgery to recreate individual defects, individualized implants for primary arthroplasty to establish physiological joint kinematics, and personalized implants in fracture treatment, to name but a few. 2022-06-21T08:38:56Z 2022-06-21T08:38:56Z 2022 book ONIX_20220621_9783036542485_80 9783036542485 9783036542478 https://directory.doabooks.org/handle/20.500.12854/84502 eng application/octet-stream Attribution 4.0 International https://mdpi.com/books/pdfview/book/5485 https://mdpi.com/books/pdfview/book/5485 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-0365-4247-8 10.3390/books978-3-0365-4247-8 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783036542485 9783036542478 264 Basel open access
spellingShingle patient specific implant
custom made implant
revision hip
Paprosky
pelvic discontinuity
highly cancellous
implant surface
tibia
titanium alloy
3D printing
megaendoprosthesis
orthopedic oncology
limb salvage
patient safety management
vascular bypass
soft tissue sarcoma
vascular reconstruction
shoulder arthroplasty
X-ray images
implant classification
deep learning
dense residual ensemble-network
rotational invariant augmentation
Three-Dimensional Printing (3DP)
custom implant
patient-specific implants (PSI)
spinal surgery
total knee replacement
total knee arthroplasty
kinematic alignment
slope
rotation
navigation-assisted surgery
tumor orthopedics
oncologic orthopedics
patient specific
tumor surgery
bone defects
hip detection
deep convolutional neural network
radiography
leg alignment
patient-specific instruments
custom-made implant
rotational correction
custom-made
rTKA
3D-printed
individual
limb-salvage
cone
customised
personalised
knee replacement
native knee morphology
femoral J-Curve
principal component analysis
geometric parameter analysis
individualized alignment
restricted kinematic alignment
robotic-assisted TKA
MAKO
safe zone
pelvic tumors
3D printed prostheses
computer aided design pelvic reconstruction
arthroplasty
complications
bone tumor
pelvis
patient-specific
individualized
3D-printing
unicondylar knee arthroplasty
unicompartmental knee replacement
unicondylar knee replacement
partial knee arthroplasty
partial knee replacement
UKA
UKR
augmented reality
image-guided surgery
intraoperative imaging
simulation
mixed reality
reversed shoulder arthroplasty
3D planning
total hip arthroplasty
finite element method
cemented and uncemented acetabular fixation
polyethylene wear patterns
cervical–diaphyseal angle
center of rotation
material head
size head
liner thickness
preoperative planning
patient-specific THA
target zone
leg length discrepancy
range of motion
edge loading
TKA
tricompartmental knee osteoarthritis
iTotal
n/a
thema EDItEUR::M Medicine and Nursing
Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title_full Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title_fullStr Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title_full_unstemmed Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title_short Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
title_sort patient specific implants in musculoskeletal orthopedic surgery
topic patient specific implant
custom made implant
revision hip
Paprosky
pelvic discontinuity
highly cancellous
implant surface
tibia
titanium alloy
3D printing
megaendoprosthesis
orthopedic oncology
limb salvage
patient safety management
vascular bypass
soft tissue sarcoma
vascular reconstruction
shoulder arthroplasty
X-ray images
implant classification
deep learning
dense residual ensemble-network
rotational invariant augmentation
Three-Dimensional Printing (3DP)
custom implant
patient-specific implants (PSI)
spinal surgery
total knee replacement
total knee arthroplasty
kinematic alignment
slope
rotation
navigation-assisted surgery
tumor orthopedics
oncologic orthopedics
patient specific
tumor surgery
bone defects
hip detection
deep convolutional neural network
radiography
leg alignment
patient-specific instruments
custom-made implant
rotational correction
custom-made
rTKA
3D-printed
individual
limb-salvage
cone
customised
personalised
knee replacement
native knee morphology
femoral J-Curve
principal component analysis
geometric parameter analysis
individualized alignment
restricted kinematic alignment
robotic-assisted TKA
MAKO
safe zone
pelvic tumors
3D printed prostheses
computer aided design pelvic reconstruction
arthroplasty
complications
bone tumor
pelvis
patient-specific
individualized
3D-printing
unicondylar knee arthroplasty
unicompartmental knee replacement
unicondylar knee replacement
partial knee arthroplasty
partial knee replacement
UKA
UKR
augmented reality
image-guided surgery
intraoperative imaging
simulation
mixed reality
reversed shoulder arthroplasty
3D planning
total hip arthroplasty
finite element method
cemented and uncemented acetabular fixation
polyethylene wear patterns
cervical–diaphyseal angle
center of rotation
material head
size head
liner thickness
preoperative planning
patient-specific THA
target zone
leg length discrepancy
range of motion
edge loading
TKA
tricompartmental knee osteoarthritis
iTotal
n/a
thema EDItEUR::M Medicine and Nursing
topic_facet patient specific implant
custom made implant
revision hip
Paprosky
pelvic discontinuity
highly cancellous
implant surface
tibia
titanium alloy
3D printing
megaendoprosthesis
orthopedic oncology
limb salvage
patient safety management
vascular bypass
soft tissue sarcoma
vascular reconstruction
shoulder arthroplasty
X-ray images
implant classification
deep learning
dense residual ensemble-network
rotational invariant augmentation
Three-Dimensional Printing (3DP)
custom implant
patient-specific implants (PSI)
spinal surgery
total knee replacement
total knee arthroplasty
kinematic alignment
slope
rotation
navigation-assisted surgery
tumor orthopedics
oncologic orthopedics
patient specific
tumor surgery
bone defects
hip detection
deep convolutional neural network
radiography
leg alignment
patient-specific instruments
custom-made implant
rotational correction
custom-made
rTKA
3D-printed
individual
limb-salvage
cone
customised
personalised
knee replacement
native knee morphology
femoral J-Curve
principal component analysis
geometric parameter analysis
individualized alignment
restricted kinematic alignment
robotic-assisted TKA
MAKO
safe zone
pelvic tumors
3D printed prostheses
computer aided design pelvic reconstruction
arthroplasty
complications
bone tumor
pelvis
patient-specific
individualized
3D-printing
unicondylar knee arthroplasty
unicompartmental knee replacement
unicondylar knee replacement
partial knee arthroplasty
partial knee replacement
UKA
UKR
augmented reality
image-guided surgery
intraoperative imaging
simulation
mixed reality
reversed shoulder arthroplasty
3D planning
total hip arthroplasty
finite element method
cemented and uncemented acetabular fixation
polyethylene wear patterns
cervical–diaphyseal angle
center of rotation
material head
size head
liner thickness
preoperative planning
patient-specific THA
target zone
leg length discrepancy
range of motion
edge loading
TKA
tricompartmental knee osteoarthritis
iTotal
n/a
thema EDItEUR::M Medicine and Nursing
url ONIX_20220621_9783036542485_80