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Keyword [Motion sickness]
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1. Contribution Of Glutamatergic Vestibulo-visceral Pathways To Response Of Autonomic Nervous System During Motion Sickness In Rats
2. The Role Of Monoamine And Relative Receptors In Motion Sickness And The Effect Of Branched-chain Amino Acids And Tyrosine
3. The Morphological Study On Connection Between Raphe Nuclei Of Medulla Oblongata And Vestibular Nuclei Complex And Its Function In Motion Sickness
4. Effects Of Estrogen Receptor Antagonist Tamoxifen On Susceptibility To Various Models Of Motion Sickness In Mice And Rats
5. Metabonomics Study And Applications On Diseases And Drug Intervention
6. Dexamethasone Association With Ginsenoside Improve Tolerance Of Rats Under Analogue Motion Sickness Stimulus And Discussion Of Molecular Mechanisms
7. Contribution Of NMDA Receptor Signaling During Motion Sickness Habituation And Dehabituation
8. The Effect Of Nutrients-herbs Mixture On Fatigue Induced By Experimental Seasickness And Its Probable Mechanism
9. The Change And The Intervention Study Of Iron In The Simulated Sea Sickness Rat
10. The Primary Research On The Role Of Calcitonin Gene-related Peptide On Pathogenesis Of Motion Sickness In Rats
11. To Study The Efficacy Of PCH Optical Isomers And Pharmacological Profiles Of PH Optical Isomers, Construction And Expression Of Recombinant Vector PGEX-6p-2-Notch3~(41-656) And PGEX-6p-2-Notch3~(228-656), And Preparation Of Anti-Notch3 Protein Monoclo
12. Studies On New Anti-MS Drug: From New Animal Model To New Model Animal
13. The Indirect Projection From The Vestibular Nucleus To The Area Of Nausea And Vomiting In The Rat Brainstem
14. The Effect Of The Damage Stimulation Of The Vestibular Organ On Sympathetic Nerve And Vagal Verve In The Neck
15. Study On Scopolamine Hydrobromide Microemulsion Transdermal Delivery System
16. Study On The Formulation, Process Optimization And Percutaneous Permeability Of Xiang-Jiang Transdermal Drug Delivery System
17. Study On The Role Of Histamine And H1 Receptor In Motion Sickness
18. Effects Of Levels Of Estrogen In Plasma On Susceptibility Of Motion Sickness In Mice And Rats
19. Research On The Pathogenesis Of Motion Sickness Using The Metabolomics Technology
20. Sensibility Of Estrogen Receptors On Susceptibility Of Motion Sickness
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