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Your search keyword '"Somatosensory Disorders metabolism"' showing total 20 results

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20 results on '"Somatosensory Disorders metabolism"'

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1. Eliapixant is a selective P2X3 receptor antagonist for the treatment of disorders associated with hypersensitive nerve fibers.

2. A Structured Approach to the Diagnosis of Peripheral Nervous System Disorders.

3. Impaired Nociception in the Diabetic Ins2 +/Akita Mouse.

4. Microneedles: A versatile strategy for transdermal delivery of biological molecules.

5. Impaired sensitivity to pain stimuli in plasma membrane calcium ATPase 2 (PMCA2) heterozygous mice: a possible modality- and sex-specific role for PMCA2 in nociception.

6. NT-3 promotes proprioceptive axon regeneration when combined with activation of the mTor intrinsic growth pathway but not with reduction of myelin extrinsic inhibitors.

7. Biphasic modulation by mGlu5 receptors of TRPV1-mediated intracellular calcium elevation in sensory neurons contributes to heat sensitivity.

8. Acute heat-evoked temperature sensation is impaired but not abolished in mice lacking TRPV1 and TRPV3 channels.

9. Lack of adrenomedullin in the central nervous system results in apparently paradoxical alterations on pain sensitivity.

10. Effects of opioid blockade on nociceptive flexion reflex thresholds and nociceptive responding in hypertensive and normotensive individuals.

11. Characterization of sensory deficits in TrkB knockout mice.

12. Gastroesophageal reflux disease: beyond mucosal injury.

13. Pain sensitivity is altered in animals after subchronic ketamine treatment.

14. Progressive neurodegeneration in C. elegans model of tauopathy.

15. New targets for neuropathic pain therapeutics.

16. Isolated vitamin E deficiency with demyelinating neuropathy.

17. The ERK/MAPK pathway, as a target for the treatment of neuropathic pain.

18. Altered primary afferent anatomy and reduced thermal sensitivity in mice lacking galectin-1.

19. Increased vanilloid receptor VR1 innervation in vulvodynia.

20. Impaired sensory function in heterozygous P0 knockout mice is associated with nodal changes in sensory nerves.

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