Frontiers in Clinical Drug Research CNS and Neurological Disorders Atta-ur-Rahman and Zareen Amtul
Material type: TextSeries: ; Vol. 7Publication details: UAE:; Bentham Science Publisher,; 2020.Description: 215 pagesISBN:- 9789811447501
- 2214-7527
Item type | Current library | Call number | Status | Date due | Barcode |
---|---|---|---|---|---|
Book | Dr. Panjwani Center for Molecular Medicine and Drug Research (PCMD) Library | RM301.27.A88_2020 (Browse shelf(Opens below)) | Available | P 2976 |
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Frontiers in Clinical Drug Research - CNS and Neurological Disorders is a book series that brings updated reviews to readers interested in advances in the development of pharmaceutical agents for the treatment of central nervous system (CNS) and other nerve disorders. The scope of the book series covers a range of topics including the medicinal chemistry, pharmacology, molecular biology and biochemistry of contemporary molecular targets involved in neurological and CNS disorders. Reviews presented in the series are mainly focused on clinical and therapeutic aspects of novel drugs intended for these targets. Frontiers in Clinical Drug Research - CNS and Neurological Disorders is a valuable resource for pharmaceutical scientists and postgraduate students seeking updated and critical information for developing clinical trials and devising research plans in the field of neurology.
The seventh volume of this series features reviews that cover the following topics related to the treatment of neurodegenerative diseases, epilepsy and stroke:
-Fatty Acid Amides as a New Potential Therapeutic Agent in Multiple Sclerosis
-Epileptic Seizures Detection Based on Non-Linear Characteristics Coupled with Machine Learning Techniques
-Hampering Essential Tremor Neurodegeneration in Essential Tremor: Present and Future Directions
-The Potential Therapeutic Role of the Melatoninergic System in Treatment of Epilepsy and Comorbid Depression
-Modeling Neurodegenerative Diseases Using Transgenic Model of Drosophila
-Genetic Basis in Stroke Treatment: Targets of Potent Inhibitors