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2022 (3)

2021 (3)

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Book
Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Cardiovascular disease (CVD) currently represents one of the leading causes of death worldwide. Each year, more than 17.9 million people die due to CVD manifestations. To reverse these manifestations, the transplantation of secondary vessels or the use of synthetic vascular grafts represents the gold standard procedure. However, significant adverse reactions have been described in the literature regarding the use of these type of grafts. In this regard, modern therapeutic strategies focused on CVD therapeutics must be proposed and evaluated. As alternative therapies, advanced tissue engineering approaches, including decellularization procedures and the 3D additive bio-printing methods, are currently being investigated. In this Special Issue of Bioengineering, we aimed to highlight modern approaches regarding CVD. This Special Issue, entitled “Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering”, includes 5 articles. These articles are related to the efficient production of small-diameter vascular grafts, vascular graft development with 3D printing approaches, and in vitro models for the improved assessment of atherosclerosis mechanisms. The Guest Editors of this Special Issue wish to express their gratitude to all contributors for their unique and outstanding articles. Additionally, special credit is given to all reviewers for their comprehensive analysis and overall effort in improving the quality of the published articles.


Book
Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Cardiovascular disease (CVD) currently represents one of the leading causes of death worldwide. Each year, more than 17.9 million people die due to CVD manifestations. To reverse these manifestations, the transplantation of secondary vessels or the use of synthetic vascular grafts represents the gold standard procedure. However, significant adverse reactions have been described in the literature regarding the use of these type of grafts. In this regard, modern therapeutic strategies focused on CVD therapeutics must be proposed and evaluated. As alternative therapies, advanced tissue engineering approaches, including decellularization procedures and the 3D additive bio-printing methods, are currently being investigated. In this Special Issue of Bioengineering, we aimed to highlight modern approaches regarding CVD. This Special Issue, entitled “Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering”, includes 5 articles. These articles are related to the efficient production of small-diameter vascular grafts, vascular graft development with 3D printing approaches, and in vitro models for the improved assessment of atherosclerosis mechanisms. The Guest Editors of this Special Issue wish to express their gratitude to all contributors for their unique and outstanding articles. Additionally, special credit is given to all reviewers for their comprehensive analysis and overall effort in improving the quality of the published articles.


Book
Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

Loading...
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Bookmark

Abstract

Cardiovascular disease (CVD) currently represents one of the leading causes of death worldwide. Each year, more than 17.9 million people die due to CVD manifestations. To reverse these manifestations, the transplantation of secondary vessels or the use of synthetic vascular grafts represents the gold standard procedure. However, significant adverse reactions have been described in the literature regarding the use of these type of grafts. In this regard, modern therapeutic strategies focused on CVD therapeutics must be proposed and evaluated. As alternative therapies, advanced tissue engineering approaches, including decellularization procedures and the 3D additive bio-printing methods, are currently being investigated. In this Special Issue of Bioengineering, we aimed to highlight modern approaches regarding CVD. This Special Issue, entitled “Modern Approaches in Cardiovascular Disease Therapeutics: From Molecular Genetics to Tissue Engineering”, includes 5 articles. These articles are related to the efficient production of small-diameter vascular grafts, vascular graft development with 3D printing approaches, and in vitro models for the improved assessment of atherosclerosis mechanisms. The Guest Editors of this Special Issue wish to express their gratitude to all contributors for their unique and outstanding articles. Additionally, special credit is given to all reviewers for their comprehensive analysis and overall effort in improving the quality of the published articles.


Book
Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
Author:
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

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.

Keywords

Medicine --- 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 --- cervical-diaphyseal angle


Book
Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
Author:
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Bookmark

Abstract

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.

Keywords

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 --- cervical-diaphyseal angle


Book
Patient-Specific Implants in Musculoskeletal (Orthopedic) Surgery
Author:
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

Loading...
Export citation

Choose an application

Bookmark

Abstract

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.

Keywords

Medicine --- 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 --- 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

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