Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
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Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
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Aggiungi al carrelloPaperback. Condizione: new. Paperback. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
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Editore: Cambridge University Press, 2025
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Editore: Cambridge University Press, 2025
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Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
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Editore: Cambridge University Press, GB, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
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Aggiungi al carrelloPaperback. Condizione: New. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core.
Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: Books Puddle, New York, NY, U.S.A.
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Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
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ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
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ISBN 10: 1009530372 ISBN 13: 9781009530378
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Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
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Aggiungi al carrelloPaperback. Condizione: new. Paperback. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: CitiRetail, Stevenage, Regno Unito
EUR 27,98
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Aggiungi al carrelloPaperback. Condizione: new. Paperback. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Editore: Cambridge University Press, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: Best Price, Torrance, CA, U.S.A.
EUR 64,86
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Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
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EUR 84,58
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Aggiungi al carrelloHardcover. Condizione: new. Hardcover. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Editore: Cambridge University Press, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: Ria Christie Collections, Uxbridge, Regno Unito
EUR 70,44
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Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: AHA-BUCH GmbH, Einbeck, Germania
EUR 27,79
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Aggiungi al carrelloTaschenbuch. Condizione: Neu. Druck auf Anfrage Neuware - Printed after ordering - This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core.
Editore: Cambridge University Press, GB, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: Rarewaves.com UK, London, Regno Unito
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Aggiungi al carrelloPaperback. Condizione: New. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core.
Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: CitiRetail, Stevenage, Regno Unito
EUR 78,00
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Aggiungi al carrelloHardcover. Condizione: new. Hardcover. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Editore: Cambridge University Press, Cambridge, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: AussieBookSeller, Truganina, VIC, Australia
EUR 94,95
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Aggiungi al carrelloHardcover. Condizione: new. Hardcover. SCN2A encodes a voltage-gated sodium channel (designated NaV1.2) vital for generating neuronal action potentials. Pathogenic SCN2A variants are associated with a diverse array of neurodevelopmental disorders featuring neonatal or infantile onset epilepsy, developmental delay, autism, intellectual disability and movement disorders. SCN2A is a high confidence risk gene for autism spectrum disorder and a commonly discovered cause of neonatal onset epilepsy. This remarkable clinical heterogeneity is mirrored by extensive allelic heterogeneity and complex genotype-phenotype relationships partially explained by divergent functional consequences of pathogenic variants. Emerging therapeutic strategies targeted to specific patterns of NaV1.2 dysfunction offer hope to improving the lives of individuals affected by SCN2A-related disorders. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Editore: Cambridge University Press, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: AHA-BUCH GmbH, Einbeck, Germania
EUR 89,93
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Aggiungi al carrelloBuch. Condizione: Neu. Druck auf Anfrage Neuware - Printed after ordering - This Element provides a review of the clinical features, genetic basis, pathophysiology, pharmacology and treatment of these genetic conditions authored by leading experts in the field and accompanied by perspectives shared by affected families. This title is also available as Open Access on Cambridge Core.
Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: Majestic Books, Hounslow, Regno Unito
EUR 33,26
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Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: Biblios, Frankfurt am main, HESSE, Germania
EUR 35,20
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Editore: Cambridge University Press, 2025
ISBN 10: 1009530372 ISBN 13: 9781009530378
Lingua: Inglese
Da: Revaluation Books, Exeter, Regno Unito
EUR 20,89
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Aggiungi al carrelloPaperback. Condizione: Brand New. 75 pages. 6.00x0.20x9.00 inches. In Stock. This item is printed on demand.
Editore: Cambridge University Press, 2025
ISBN 10: 100953033X ISBN 13: 9781009530330
Lingua: Inglese
Da: Revaluation Books, Exeter, Regno Unito
EUR 71,60
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Aggiungi al carrelloHardcover. Condizione: Brand New. 75 pages. 6.00x0.25x9.00 inches. In Stock. This item is printed on demand.