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forest pests --- genetic control --- Insect pests --- Lymantria dispar --- Sterile insect technique
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Pathologie végétale --- plant pathology --- History --- Épiphyte --- Epiphytes --- Lutte biologique --- Biological control --- Pesticide --- pesticides --- Amélioration des plantes --- Plant breeding --- Lutte génétique --- Genetic control --- methods --- Lutte antiravageur --- pest control --- Quarantaine --- Quarantine --- Réglementation --- Regulations --- Géographie économique --- Economic geography
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Plant diseases --- Plants --- Genetic aspects --- Disease and pest resistance --- Lutte génétique --- Genetic control --- Résistance aux maladies --- Disease resistance --- Résistance aux organismes nuisibles --- Pest resistance --- Pouvoir pathogène --- Pathogenicity --- Protéine --- proteins --- Lignification --- Genetic aspects. --- Eliciteur --- Gene de resistance --- Interaction plante-pathogene --- Interaction gene pour gene --- Gene de virulence --- Gene specifique --- Callose --- Glucanohydrolase
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En médecine, la puissance des outils d'analyse génétique permet de mieux connaître les bases moléculaires de nombreuses maladies et d'accomplir des progrès majeurs dans leur diagnostic à un stade présymptomatique. Cependant, si le dépistage génétique peut révolutionner la pratique médicale, son avenir dépendra moins des avancées techniques que de nos choix de société. Contrairement à l'eugénisme d'Etat qui vise à l'amélioration de l'espèce sans respecter les libertés individuelles, la médecine contemporaine utilise le progrès technique pour éviter la fatalité génétique en préservant l'autonomie et le libre choix, en se mettant au service des valeurs de solidarité et de bien-être.
Human genetics --- Clinical genetics --- Diseases--Genetic aspects --- Genetica [Medische ] --- Genetics [Medical ] --- Heredity of disease --- Medische genetica --- Eugénisme --- genomes --- Genre humain --- mankind --- health --- Lutte génétique --- Genetic control --- #SBIB:316.334.3M51 --- 57 : 17 --- genetics (XII.) MEDICINE (XIX.) GENETIC ENGINEERING --- biotechnology (XI) --- Comité éditorial : Marc J.Abamowics --- Arsène Burny --- Herman J. Daled --- François Englert --- Yvon Englert --- Hubert Galle --- Francine Gillot-de Vries --- Guy Haarscher, Jean-Jacques Heirwegh --- Jerzy Hildebrand --- Gilbert Hottois, --- Claude Javeau --- Paul Kestens --- Jean-Noël Missa --- Madeleine Moulin --- Esther Vamos --- Jean-Pierre Vanden Branden --- Gilbert Vassart --- D/1998/0171/6 --- medicine (XIX.) --- Organisatie van de gezondheidszorg: modellen van therapeutisch handelen --- Eugenics --- Medical genetics --- Eugénisme --- Génétique médicale --- Moral and ethical aspects --- Social aspects --- Aspect moral --- Aspect social --- 174.2 --- #SBIB:004.GIFTSOC --- Genetica --- genetica (genen) --- sociologie (sociologische aspecten) --- 174.2 Beroepsmoraal van de artsen. Medische beroepsethiek --- Beroepsmoraal van de artsen. Medische beroepsethiek --- bio-ethiek --- Sect --- Note --- Prim --- Génétique --- génétique (gènes) --- sociologie (aspects sociologiques) --- Genetics, Medical --- Ethics --- Hulpwetenschappen --- medische wetenschappen. --- genetic engineering --- genetic maps --- Eugenics. --- Erfelijkheidsleer
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The book is a collection of original research and review articles addressing the intriguing field of the cellular and molecular players involved in muscle homeostasis and regeneration. One of the most ambitious aspirations of modern medical science is the possibility of regenerating any damaged part of the body, including skeletal muscle. This desire has prompted clinicians and researchers to search for innovative technologies aimed at replacing organs and tissues that are compromised. In this context, the papers, collected in this book, addressing a specific aspects of muscle homeostasis and regeneration under physiopathologic conditions, will help us to better understand the underlying mechanisms of muscle healing and will help to design more appropriate therapeutic approaches to improve muscle regeneration and to counteract muscle diseases.
Research & information: general --- Biology, life sciences --- lysine --- mTORC1 --- satellite cells --- proliferation --- skeletal muscle growth --- muscle satellite cell --- transthyretin --- thyroid hormone --- myogenesis --- exosomes --- skeletal muscle --- genotype --- genetic variation --- muscle phenotypes --- sarcopenia --- aging --- calcium homeostasis --- hibernation --- mitochondria --- sarcoplasmic reticulum --- Acvr1b --- Tgfbr1 --- myostatin --- Col1a1 --- fibrosis --- atrophy --- IGF2R --- muscle homeostasis --- inflammation --- muscular dystrophy --- pericytes --- macrophages --- Nfix --- phagocytosis --- RhoA-ROCK1 --- splicing isoforms --- CRISPR-Cas9 --- exon deletion --- NF-Y --- muscle differentiation --- C2C12 cells --- denervation --- neuromuscular junction --- heavy resistance exercise --- acetylcholine receptor --- cell culture --- neonatal myosin --- neural cell adhesion molecule --- biomarkers --- mitophagy --- mitochondrial dynamics --- mitochondrial quality control --- mitochondrial-derived vesicles (MDVs) --- mitochondrial-lysosomal axis --- Hibernation --- electron microscopy --- immunocytochemistry --- α-smooth muscle actin --- confocal microscopy --- connexin 43 --- connexin 26 --- gap junctions --- myofibroblasts --- Platelet-Rich Plasma --- transforming growth factor (TGF)-β1 --- muscle regeneration --- inflammatory response --- cell precursors --- experimental methods --- stem cell markers --- muscles --- heterotopic ossification --- skeletal muscle stem and progenitor cells --- HO precursors --- muscle atrophy --- septicemia --- mitochondrial fusion --- mitochondrial fission --- iPSC --- extracellular vesicles --- Drosophila --- muscle --- genetic control --- muscle diversification --- fascicle --- myofiber --- myofibril --- sarcomere --- hypertrophy --- hyperplasia --- splitting --- radial growth --- longitudinal growth --- exercise --- muscle stem cells --- stem cells niche --- neuromuscular disorders --- Duchenne muscular dystrophy --- pharmacological approach --- single-cell --- mass cytometry --- skeletal muscle regeneration --- skeletal muscle homeostasis --- fibro/adipogenic progenitors --- myogenic progenitors --- muscle populations --- evolution --- metazoans --- differentiation --- transdifferentiation --- muscle precursors --- regenerative medicine --- stem cells --- FAPs --- tissue niche --- growth factors --- muscle pathology
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