Utvidet returrett til 31. januar 2025

Sequence-specific Markers for Valproate Effectiveness in Epillepsy

Om Sequence-specific Markers for Valproate Effectiveness in Epillepsy

In "Genomic Signatures for Valproate Efficacy in Epilepsy," author Chitra Rawat delves into the fascinating world of genomics and the key pathways that determine the efficacy of valproate in patients with epilepsy. The book provides a comprehensive overview of the field, covering the basic principles of genomics and how it relates to epilepsy, the molecular mechanisms of valproate, and the genomic signatures that determine its efficacy in patients. Rawat delves into the unique features of valproate, including its ability to modulate multiple molecular targets and its complex interactions with the brain, and how these features contribute to its efficacy in treating epilepsy. Throughout the book, Rawat presents a detailed analysis of the latest research and development in the field of valproate efficacy, including advances in genomic analysis and personalized medicine. The book also explores the potential applications of genomics in epilepsy treatment, including the development of new drugs and therapies that target specific genomic pathways. With its clear and accessible writing style, "Genomic Signatures for Valproate Efficacy in Epilepsy" is an essential resource for researchers, clinicians, and students interested in the cutting-edge field of genomics and its potential applications in the treatment of epilepsy.

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  • Språk:
  • Engelsk
  • ISBN:
  • 9798889955139
  • Bindende:
  • Paperback
  • Sider:
  • 110
  • Utgitt:
  • 21. oktober 2023
  • Dimensjoner:
  • 152x7x229 mm.
  • Vekt:
  • 173 g.
  • BLACK NOVEMBER
Leveringstid: 2-4 uker
Forventet levering: 11. desember 2024

Beskrivelse av Sequence-specific Markers for Valproate Effectiveness in Epillepsy

In "Genomic Signatures for Valproate Efficacy in Epilepsy," author Chitra Rawat delves into the fascinating world of genomics and the key pathways that determine the efficacy of valproate in patients with epilepsy.

The book provides a comprehensive overview of the field, covering the basic principles of genomics and how it relates to epilepsy, the molecular mechanisms of valproate, and the genomic signatures that determine its efficacy in patients. Rawat delves into the unique features of valproate, including its ability to modulate multiple molecular targets and its complex interactions with the brain, and how these features contribute to its efficacy in treating epilepsy.

Throughout the book, Rawat presents a detailed analysis of the latest research and development in the field of valproate efficacy, including advances in genomic analysis and personalized medicine. The book also explores the potential applications of genomics in epilepsy treatment, including the development of new drugs and therapies that target specific genomic pathways.

With its clear and accessible writing style, "Genomic Signatures for Valproate Efficacy in Epilepsy" is an essential resource for researchers, clinicians, and students interested in the cutting-edge field of genomics and its potential applications in the treatment of epilepsy.

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