Christopher Ward
Affiliations: | Baylor College of Medicine, Houston, TX |
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"Christopher Ward"Mean distance: 16.33 (cluster 32) | S | N | B | C | P |
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Parents
Sign in to add mentorJeffrey Neul | grad student | Baylor College of Medicine | |
Huda Y. Zoghbi | grad student | Baylor College of Medicine |
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Publications
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Wotton JM, Peterson E, Flenniken AM, et al. (2021) Identifying genetic determinants of inflammatory pain in mice using a large-scale gene-targeted screen. Pain. 163: 1139-1157 |
Ward CS, Huang TW, Herrera JA, et al. (2020) Loss of MeCP2 Function Across Several Neuronal Populations Impairs Breathing Response to Acute Hypoxia. Frontiers in Neurology. 11: 593554 |
McGraw CM, Ward CS, Samaco RC. (2017) Genetic rodent models of brain disorders: Perspectives on experimental approaches and therapeutic strategies. American Journal of Medical Genetics. Part C, Seminars in Medical Genetics. 175: 368-379 |
Yeh SY, Huang WH, Wang W, et al. (2017) Respiratory Network Stability and Modulatory Response to Substance P Require Nalcn. Neuron |
Veeraragavan S, Soriano S, Ward C, et al. (2017) 155. Contactin-Associated Protein-Like 2 Deficiency in Juvenile Rats Recapitulates the Broad Phenotypic Spectrum in CNTNAP2-Related Disorders Biological Psychiatry. 81: S64-S65 |
Herrera JA, Ward CS, Wehrens XH, et al. (2016) Methyl-CpG binding-protein 2 function in cholinergic neurons mediates cardiac arrhythmogenesis. Human Molecular Genetics. 25: 4983-4995 |
Ward CS, Huang TW, Herrera JA, et al. (2016) Loss of MeCP2 Causes Urological Dysfunction and Contributes to Death by Kidney Failure in Mouse Models of Rett Syndrome. Plos One. 11: e0165550 |
Herrera JA, Ward CS, Wehrens XH, et al. (2016) Methyl-CpG binding-protein 2 function in cholinergic neurons mediates cardiac arrhythmogenesis. Human Molecular Genetics |
Veeraragavan S, Wan YW, Connolly DR, et al. (2016) Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome. Human Molecular Genetics |
Huang TW, Kochukov MY, Ward CS, et al. (2016) Progressive Changes in a Distributed Neural Circuit Underlie Breathing Abnormalities in Mice Lacking MeCP2. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 5572-86 |