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dc.contributor.editorRudert, Maximilian
dc.date.accessioned2022-06-21T08:38:56Z
dc.date.available2022-06-21T08:38:56Z
dc.date.issued2022
dc.identifierONIX_20220621_9783036542485_80
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/84502
dc.description.abstractMost 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.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::M Medicine and Nursingen_US
dc.subject.otherpatient specific implant
dc.subject.othercustom made implant
dc.subject.otherrevision hip
dc.subject.otherPaprosky
dc.subject.otherpelvic discontinuity
dc.subject.otherhighly cancellous
dc.subject.otherimplant surface
dc.subject.othertibia
dc.subject.othertitanium alloy
dc.subject.other3D printing
dc.subject.othermegaendoprosthesis
dc.subject.otherorthopedic oncology
dc.subject.otherlimb salvage
dc.subject.otherpatient safety management
dc.subject.othervascular bypass
dc.subject.othersoft tissue sarcoma
dc.subject.othervascular reconstruction
dc.subject.othershoulder arthroplasty
dc.subject.otherX-ray images
dc.subject.otherimplant classification
dc.subject.otherdeep learning
dc.subject.otherdense residual ensemble-network
dc.subject.otherrotational invariant augmentation
dc.subject.otherThree-Dimensional Printing (3DP)
dc.subject.othercustom implant
dc.subject.otherpatient-specific implants (PSI)
dc.subject.otherspinal surgery
dc.subject.othertotal knee replacement
dc.subject.othertotal knee arthroplasty
dc.subject.otherkinematic alignment
dc.subject.otherslope
dc.subject.otherrotation
dc.subject.othernavigation-assisted surgery
dc.subject.othertumor orthopedics
dc.subject.otheroncologic orthopedics
dc.subject.otherpatient specific
dc.subject.othertumor surgery
dc.subject.otherbone defects
dc.subject.otherhip detection
dc.subject.otherdeep convolutional neural network
dc.subject.otherradiography
dc.subject.otherleg alignment
dc.subject.otherpatient-specific instruments
dc.subject.othercustom-made implant
dc.subject.otherrotational correction
dc.subject.othercustom-made
dc.subject.otherrTKA
dc.subject.other3D-printed
dc.subject.otherindividual
dc.subject.otherlimb-salvage
dc.subject.othercone
dc.subject.othercustomised
dc.subject.otherpersonalised
dc.subject.otherknee replacement
dc.subject.othernative knee morphology
dc.subject.otherfemoral J-Curve
dc.subject.otherprincipal component analysis
dc.subject.othergeometric parameter analysis
dc.subject.otherindividualized alignment
dc.subject.otherrestricted kinematic alignment
dc.subject.otherrobotic-assisted TKA
dc.subject.otherMAKO
dc.subject.othersafe zone
dc.subject.otherpelvic tumors
dc.subject.other3D printed prostheses
dc.subject.othercomputer aided design pelvic reconstruction
dc.subject.otherarthroplasty
dc.subject.othercomplications
dc.subject.otherbone tumor
dc.subject.otherpelvis
dc.subject.otherpatient-specific
dc.subject.otherindividualized
dc.subject.other3D-printing
dc.subject.otherunicondylar knee arthroplasty
dc.subject.otherunicompartmental knee replacement
dc.subject.otherunicondylar knee replacement
dc.subject.otherpartial knee arthroplasty
dc.subject.otherpartial knee replacement
dc.subject.otherUKA
dc.subject.otherUKR
dc.subject.otheraugmented reality
dc.subject.otherimage-guided surgery
dc.subject.otherintraoperative imaging
dc.subject.othersimulation
dc.subject.othermixed reality
dc.subject.otherreversed shoulder arthroplasty
dc.subject.other3D planning
dc.subject.othertotal hip arthroplasty
dc.subject.otherfinite element method
dc.subject.othercemented and uncemented acetabular fixation
dc.subject.otherpolyethylene wear patterns
dc.subject.othercervical–diaphyseal angle
dc.subject.othercenter of rotation
dc.subject.othermaterial head
dc.subject.othersize head
dc.subject.otherliner thickness
dc.subject.otherpreoperative planning
dc.subject.otherpatient-specific THA
dc.subject.othertarget zone
dc.subject.otherleg length discrepancy
dc.subject.otherrange of motion
dc.subject.otheredge loading
dc.subject.otherTKA
dc.subject.othertricompartmental knee osteoarthritis
dc.subject.otheriTotal
dc.subject.othern/a
dc.titlePatient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-4247-8
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036542485
oapen.relation.isbn9783036542478
oapen.pages264
oapen.place.publicationBasel


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