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Cardiovascular Diseases --- Integrative Medicine --- Patient-Specific Modeling --- Precision Medicine --- methods --- methods
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Personalized medicine. --- Biopharmaceutics. --- Precision Medicine --- Biopharmaceutics --- Pharmaceutics --- Pharmaceutic --- Chemistry, Pharmaceutical --- P Health --- P-Health --- Personalized Medicine --- Individualized Medicine --- Medicine, Individualized --- Medicine, Personalized --- Medicine, Precision --- P-Healths --- Pharmacogenomic Variants --- Pharmacogenetics --- Patient-Specific Modeling --- Pharmacology --- Pharmacy --- Individualized medicine --- Medical care --- Theranostics --- Predictive Medicine --- Medicine, Predictive --- Theranostic --- Precision medicine. --- Personalized medicine
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Hygiene. Public health. Protection --- Semiology. Diagnosis. Symptomatology --- Information systems --- Artificial intelligence. Robotics. Simulation. Graphics --- Artificial intelligence --- Precision Medicine --- Artificial Intelligence --- Medical applications. --- Computational Intelligence --- AI (Artificial Intelligence) --- Computer Reasoning --- Computer Vision Systems --- Knowledge Acquisition (Computer) --- Knowledge Representation (Computer) --- Machine Intelligence --- Acquisition, Knowledge (Computer) --- Computer Vision System --- Intelligence, Artificial --- Intelligence, Computational --- Intelligence, Machine --- Knowledge Representations (Computer) --- Reasoning, Computer --- Representation, Knowledge (Computer) --- System, Computer Vision --- Systems, Computer Vision --- Vision System, Computer --- Vision Systems, Computer --- Heuristics --- P Health --- P-Health --- Personalized Medicine --- Theranostics --- Individualized Medicine --- Predictive Medicine --- Medicine, Individualized --- Medicine, Personalized --- Medicine, Precision --- Medicine, Predictive --- Theranostic --- Pharmacogenomic Variants --- Pharmacogenetics --- Patient-Specific Modeling --- Medicine --- Data processing
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"Medical Empathy, Pharmacological Systems, and Treatment Strategies in Integrative Cardiovascular Chinese Medicine, volume two in the Integrative Cardiovascular Chinese Medicine series, presents sections on holism and humanity in medicine, considering the patient, medical empathy in prescribing, modifying and weaning, an overview of pharmacologic systems, an overview of pharmacology sciences and the cardiovascular drug classes and types as revealed from perspectives of Chinese and Western medicine, including descriptions of pharmaceutical drugs from China and the United States, with current pictures and inpatient directions. Finally, principles and treatments according to disease stages for each cardiovascular disease within the scope of integrative medicine is outlined. This important reference will aid cardiovascular researchers in the study of integrative Chinese and Western medicine and provide a clear, structured base to guide clinical practice and encourage collaboration between Chinese and Western medicine practitioners"--Publisher's description.
Cardiovascular system --- Diseases --- Alternative treatment. --- Cardiovascular pharmacology. --- Medicine, Chinese. --- Cardiovascular Diseases --- Medicine, Chinese Traditional. --- Pharmaceutical Preparations. --- Integrative Medicine --- Precision Medicine. --- drug therapy. --- methods. --- P Health --- P-Health --- Personalized Medicine --- Individualized Medicine --- Medicine, Individualized --- Medicine, Personalized --- Medicine, Precision --- P-Healths --- Pharmacogenomic Variants --- Pharmacogenetics --- Patient-Specific Modeling --- Pharmaceutic Preparations --- Pharmaceutical Products --- Pharmaceuticals --- Preparations, Pharmaceutical --- Drugs --- Preparations, Pharmaceutic --- Products, Pharmaceutical --- Pharmacology --- Drug Dosage Calculations --- Chinese Traditional Medicine --- Traditional Chinese Medicine --- Traditional Tongue Assessment --- Traditional Tongue Diagnosis --- Chinese Medicine, Traditional --- Chung I Hsueh --- Traditional Medicine, Chinese --- Zhong Yi Xue --- Hsueh, Chung I --- Tongue Assessment, Traditional --- Tongue Diagnoses, Traditional --- Tongue Diagnosis, Traditional --- Traditional Tongue Assessments --- Traditional Tongue Diagnoses --- Acupuncture Therapy --- Medicine, Kampo --- Chinese medicine --- TCM (Medicine) --- Traditional Chinese medicine --- Traditional medicine --- Drug effects --- Effect of drugs on --- Theranostics --- Predictive Medicine --- Medicine, Predictive --- Theranostic --- Drug --- Pharmaceutical --- Pharmaceutical Preparation --- Pharmaceutical Product --- Preparation, Pharmaceutical --- Product, Pharmaceutical
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Advanced experimental and computational biomechanics have become essential components to better understand the physiological and pathological conditions of biological tissues in the human body. Recent advances in medical imaging modalities, image segmentation, tissue characterization experiments, and predictive computer simulations have made major contributions to transforming current therapeutic paradigms, towards the facilitation of patient-specific diagnostics and individualized surgery planning. This Special Issue of Bioengineering on Advances in Biological Tissue Biomechanics, therefore, focuses on research dealing with cutting-edge experimental and computational methodologies for biomechanical investigations of tissues in the human body system across multiple spatial and temporal scales.
Research & information: general --- Biology, life sciences --- computational fluid dynamics --- bileaflet mechanical heart valve --- adverse hemodynamics --- transvalvular pressure gradients --- turbulent shear stresses --- blood damage --- platelet activation --- aortic valve --- calcification --- elastin degradation --- leaflet --- curvature --- biomarker --- early detection --- porcine brain --- mechanical behavior --- hydration effects --- Split-Hopkinson pressure bar --- micromechanics --- finite element analysis --- collagen crimp --- elastin --- microstructures --- force-controlled mechanical testing --- the tricuspid valve --- functional tricuspid regurgitation --- cardiovascular imaging --- mechanical characterization --- in-vitro experiments --- constitutive modeling --- geometrical modeling --- finite element modeling --- isogeometric analysis (IGA) --- biaxial mechanical characterization --- fluid-structure interactions --- material anisotropy --- sub-valvular components --- soft tissue --- liver --- high-rate compression --- polymeric split-Hopkinson pressure bar --- pentagalloyl glucose --- aneurysm --- enzyme --- biomechanics --- aorta --- biaxial mechanical testing --- cardiac valves --- osmotic swelling --- parameter estimation --- nonlinear preconditioning --- gradient-based minimization --- cirrus --- myocardium --- stiffness --- viscoelastic property --- anisotropy --- fibrosis --- the mitral valve --- collagen fiber architecture --- glycosaminoglycan --- uniaxial mechanical testing --- in-vitro flow loops --- polarized spatial frequency domain imaging --- tricuspid regurgitation --- spatial alignment --- collagen fiber reorientation --- in vivo stress/strain quantification --- constitutive models --- soft tissues --- growth and remodeling (G & R) --- multiscale biomechanics --- patient-specific modeling --- computational fluid dynamics --- bileaflet mechanical heart valve --- adverse hemodynamics --- transvalvular pressure gradients --- turbulent shear stresses --- blood damage --- platelet activation --- aortic valve --- calcification --- elastin degradation --- leaflet --- curvature --- biomarker --- early detection --- porcine brain --- mechanical behavior --- hydration effects --- Split-Hopkinson pressure bar --- micromechanics --- finite element analysis --- collagen crimp --- elastin --- microstructures --- force-controlled mechanical testing --- the tricuspid valve --- functional tricuspid regurgitation --- cardiovascular imaging --- mechanical characterization --- in-vitro experiments --- constitutive modeling --- geometrical modeling --- finite element modeling --- isogeometric analysis (IGA) --- biaxial mechanical characterization --- fluid-structure interactions --- material anisotropy --- sub-valvular components --- soft tissue --- liver --- high-rate compression --- polymeric split-Hopkinson pressure bar --- pentagalloyl glucose --- aneurysm --- enzyme --- biomechanics --- aorta --- biaxial mechanical testing --- cardiac valves --- osmotic swelling --- parameter estimation --- nonlinear preconditioning --- gradient-based minimization --- cirrus --- myocardium --- stiffness --- viscoelastic property --- anisotropy --- fibrosis --- the mitral valve --- collagen fiber architecture --- glycosaminoglycan --- uniaxial mechanical testing --- in-vitro flow loops --- polarized spatial frequency domain imaging --- tricuspid regurgitation --- spatial alignment --- collagen fiber reorientation --- in vivo stress/strain quantification --- constitutive models --- soft tissues --- growth and remodeling (G & R) --- multiscale biomechanics --- patient-specific modeling
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This book highlights the latest advances in the application of artificial intelligence to healthcare and medicine. It gathers selected papers presented at the 2019 Health Intelligence workshop, which was jointly held with the Association for the Advancement of Artificial Intelligence (AAAI) annual conference, and presents an overview of the central issues, challenges, and potential opportunities in the field, along with new research results. By addressing a wide range of practical applications, the book makes the emerging topics of digital health and precision medicine accessible to a broad readership. Further, it offers an essential source of information for scientists, researchers, students, industry professionals, national and international public health agencies, and NGOs interested in the theory and practice of digital and precision medicine and health, with an emphasis on risk factors in connection with disease prevention, diagnosis, and intervention.
Computational intelligence. --- Artificial intelligence. --- Health informatics. --- Biomedical engineering. --- Computational Intelligence. --- Artificial Intelligence. --- Health Informatics. --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Clinical informatics --- Health informatics --- Medical information science --- Information science --- AI (Artificial intelligence) --- Artificial thinking --- Electronic brains --- Intellectronics --- Intelligence, Artificial --- Intelligent machines --- Machine intelligence --- Thinking, Artificial --- Bionics --- Cognitive science --- Digital computer simulation --- Electronic data processing --- Logic machines --- Machine theory --- Self-organizing systems --- Simulation methods --- Fifth generation computers --- Neural computers --- Intelligence, Computational --- Artificial intelligence --- Soft computing --- Data processing --- Personalized medicine --- Individualized medicine --- Medical care --- Pharmacogenetics --- Medical applications --- Medical applications. --- Precision Medicine. --- Medical Informatics Applications. --- Application, Medical Informatics --- Applications, Medical Informatics --- Informatics Applications, Medical --- Informatics Application, Medical --- Medical Informatics Application --- Biomedical Engineering --- Computational Intelligence --- AI (Artificial Intelligence) --- Computer Reasoning --- Computer Vision Systems --- Knowledge Acquisition (Computer) --- Knowledge Representation (Computer) --- Machine Intelligence --- Acquisition, Knowledge (Computer) --- Computer Vision System --- Intelligence, Machine --- Knowledge Representations (Computer) --- Reasoning, Computer --- Representation, Knowledge (Computer) --- System, Computer Vision --- Systems, Computer Vision --- Vision System, Computer --- Vision Systems, Computer --- Heuristics --- P Health --- P-Health --- Personalized Medicine --- Theranostics --- Individualized Medicine --- Predictive Medicine --- Medicine, Individualized --- Medicine, Personalized --- Medicine, Precision --- Medicine, Predictive --- Theranostic --- Pharmacogenomic Variants --- Patient-Specific Modeling
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This book concisely describes the role of omics in precision medicine for cancer therapies. It outlines our current understanding of cancer genomics, shares insights into the process of oncogenesis, and discusses emerging technologies and clinical applications of cancer genomics in prognosis and precision-medicine treatment strategies. It then elaborates on recent advances concerning transcriptomics and translational genomics in cancer diagnosis, clinical applications, and personalized medicine in oncology. Importantly, it also explains the importance of high-performance analytics, predictive modeling, and system biology in cancer research. Lastly, the book discusses current and potential future applications of pharmacogenomics in clinical cancer therapy and cancer drug development.
Cancer research. --- Oncology . --- Human genetics. --- Bioinformatics. --- Nanotechnology. --- Cancer Research. --- Oncology. --- Human Genetics. --- Nanotechnology and Microengineering. --- Molecular technology --- Nanoscale technology --- High technology --- Bio-informatics --- Biological informatics --- Biology --- Information science --- Computational biology --- Systems biology --- Genetics --- Heredity, Human --- Human biology --- Physical anthropology --- Tumors --- Cancer research --- Data processing --- Cancer --- Genetic aspects. --- Precision Medicine. --- Neoplasms --- genetics. --- Cancer genetics --- Cancer genes --- P Health --- P-Health --- Personalized Medicine --- Individualized Medicine --- Medicine, Individualized --- Medicine, Personalized --- Medicine, Precision --- P-Healths --- Pharmacogenomic Variants --- Pharmacogenetics --- Patient-Specific Modeling --- Theranostics --- Predictive Medicine --- Medicine, Predictive --- Theranostic --- Genètica humana --- Càncer --- Oncologia --- Bioinformàtica --- Nanotecnologia --- Informàtica biològica --- Ciències de la informació --- Biologia computacional --- Medicina --- Oncologia geriàtrica --- Oncologia pediàtrica --- Oncologia veterinària --- Infermeria oncològica --- Carcinoma --- Carcinosi --- Càncer d'ossos --- Càncer de cap --- Càncer de coll --- Càncer de bufeta --- Càncer de fetge --- Càncer de laringe --- Càncer de mama --- Càncer de pàncrees --- Càncer de pell --- Càncer de pròstata --- Càncer de pulmó --- Càncer de ronyó --- Càncer de tiroide --- Càncer d'ovari --- Càncer gastrointestinal --- Càncer ginecològic --- Càncer en els adolescents --- Càncer en els infants --- Medicaments antineoplàstics --- Melanoma --- Leucèmia --- Sarcoma --- Carcinògens --- Cèl·lules canceroses --- Cirurgia oncològica --- Malalts de càncer --- Metàstasi --- Enginyeria molecular --- Tecnologia molecular --- Alta tecnologia --- Electrònica molecular --- Espintrònica --- Materials nanoestructurats --- Nanoelectrònica --- Nanolitografia --- Nanomedicina --- Nanoquímica --- Antropologia física --- Biologia humana --- Genètica --- Herència humana --- Citogenètica humana --- Cromosomes humans --- Genètica de poblacions humanes --- Genètica mèdica --- Genètica molecular humana --- Psicologia genètica --- Genoma humà
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Advanced experimental and computational biomechanics have become essential components to better understand the physiological and pathological conditions of biological tissues in the human body. Recent advances in medical imaging modalities, image segmentation, tissue characterization experiments, and predictive computer simulations have made major contributions to transforming current therapeutic paradigms, towards the facilitation of patient-specific diagnostics and individualized surgery planning. This Special Issue of Bioengineering on Advances in Biological Tissue Biomechanics, therefore, focuses on research dealing with cutting-edge experimental and computational methodologies for biomechanical investigations of tissues in the human body system across multiple spatial and temporal scales.
Research & information: general --- Biology, life sciences --- computational fluid dynamics --- bileaflet mechanical heart valve --- adverse hemodynamics --- transvalvular pressure gradients --- turbulent shear stresses --- blood damage --- platelet activation --- aortic valve --- calcification --- elastin degradation --- leaflet --- curvature --- biomarker --- early detection --- porcine brain --- mechanical behavior --- hydration effects --- Split-Hopkinson pressure bar --- micromechanics --- finite element analysis --- collagen crimp --- elastin --- microstructures --- force-controlled mechanical testing --- the tricuspid valve --- functional tricuspid regurgitation --- cardiovascular imaging --- mechanical characterization --- in-vitro experiments --- constitutive modeling --- geometrical modeling --- finite element modeling --- isogeometric analysis (IGA) --- biaxial mechanical characterization --- fluid-structure interactions --- material anisotropy --- sub-valvular components --- soft tissue --- liver --- high-rate compression --- polymeric split-Hopkinson pressure bar --- pentagalloyl glucose --- aneurysm --- enzyme --- biomechanics --- aorta --- biaxial mechanical testing --- cardiac valves --- osmotic swelling --- parameter estimation --- nonlinear preconditioning --- gradient-based minimization --- cirrus --- myocardium --- stiffness --- viscoelastic property --- anisotropy --- fibrosis --- the mitral valve --- collagen fiber architecture --- glycosaminoglycan --- uniaxial mechanical testing --- in-vitro flow loops --- polarized spatial frequency domain imaging --- tricuspid regurgitation --- spatial alignment --- collagen fiber reorientation --- in vivo stress/strain quantification --- constitutive models --- soft tissues --- growth and remodeling (G & R) --- multiscale biomechanics --- patient-specific modeling
Choose an application
Advanced experimental and computational biomechanics have become essential components to better understand the physiological and pathological conditions of biological tissues in the human body. Recent advances in medical imaging modalities, image segmentation, tissue characterization experiments, and predictive computer simulations have made major contributions to transforming current therapeutic paradigms, towards the facilitation of patient-specific diagnostics and individualized surgery planning. This Special Issue of Bioengineering on Advances in Biological Tissue Biomechanics, therefore, focuses on research dealing with cutting-edge experimental and computational methodologies for biomechanical investigations of tissues in the human body system across multiple spatial and temporal scales.
computational fluid dynamics --- bileaflet mechanical heart valve --- adverse hemodynamics --- transvalvular pressure gradients --- turbulent shear stresses --- blood damage --- platelet activation --- aortic valve --- calcification --- elastin degradation --- leaflet --- curvature --- biomarker --- early detection --- porcine brain --- mechanical behavior --- hydration effects --- Split-Hopkinson pressure bar --- micromechanics --- finite element analysis --- collagen crimp --- elastin --- microstructures --- force-controlled mechanical testing --- the tricuspid valve --- functional tricuspid regurgitation --- cardiovascular imaging --- mechanical characterization --- in-vitro experiments --- constitutive modeling --- geometrical modeling --- finite element modeling --- isogeometric analysis (IGA) --- biaxial mechanical characterization --- fluid-structure interactions --- material anisotropy --- sub-valvular components --- soft tissue --- liver --- high-rate compression --- polymeric split-Hopkinson pressure bar --- pentagalloyl glucose --- aneurysm --- enzyme --- biomechanics --- aorta --- biaxial mechanical testing --- cardiac valves --- osmotic swelling --- parameter estimation --- nonlinear preconditioning --- gradient-based minimization --- cirrus --- myocardium --- stiffness --- viscoelastic property --- anisotropy --- fibrosis --- the mitral valve --- collagen fiber architecture --- glycosaminoglycan --- uniaxial mechanical testing --- in-vitro flow loops --- polarized spatial frequency domain imaging --- tricuspid regurgitation --- spatial alignment --- collagen fiber reorientation --- in vivo stress/strain quantification --- constitutive models --- soft tissues --- growth and remodeling (G & R) --- multiscale biomechanics --- patient-specific modeling
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