Pablo Rudomin, PhD

Affiliations: 
Physiology, Biophysics and Neuroscience CINVESTAV, Ciudad de México, Ciudad de México, Mexico 
Area:
Pre-synaptic inhibition
Google:
"Pablo Rudomin"
Mean distance: 15.94 (cluster 6)
 
SNBCP
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Publications

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Contreras-Hernández E, Chávez D, Hernández E, et al. (2022) Discrete field potentials produced by coherent activation of spinal dorsal horn neurons. Experimental Brain Research
Martín M, Béjar J, Chávez D, et al. (2019) Supraspinal Shaping of Adaptive Transitions in the State of Functional Connectivity Between Segmentally Distributed Dorsal Horn Neuronal Populations in Response to Nociception and Antinociception. Frontiers in Systems Neuroscience. 13: 47
Ramírez-Morales A, Hernández E, Rudomin P. (2019) Descending inhibition selectively counteracts the capsaicin-induced facilitation of dorsal horn neurons activated by joint nociceptive afferents. Experimental Brain Research
Contreras-Hernández E, Chávez D, Hernández E, et al. (2018) Supraspinal modulation of neuronal synchronization by nociceptive stimulation induces an enduring reorganization of dorsal horn neuronal connectivity. The Journal of Physiology
Martin M, Béjar J, Esposito G, et al. (2017) Markovian Analysis of the Sequential Behavior of the Spontaneous Spinal Cord Dorsum Potentials Induced by Acute Nociceptive Stimulation in the Anesthetized Cat. Frontiers in Computational Neuroscience. 11: 32
Martin M, Contreras-Hernández E, Béjar J, et al. (2015) A machine learning methodology for the selection and classification of spontaneous spinal cord dorsum potentials allows disclosure of structured (non-random) changes in neuronal connectivity induced by nociceptive stimulation. Frontiers in Neuroinformatics. 9: 21
Contreras-Hernández E, Chávez D, Rudomin P. (2015) Dynamic synchronization of ongoing neuronal activity across spinal segments regulates sensory information flow. The Journal of Physiology. 593: 2343-63
Martin M, Contreras-Hernández E, Béjar J, et al. (2015) A machine learning methodology for the selection and classification of spontaneous spinal cord dorsum potentials allows disclosure of structured (non-random) changes in neuronal connectivity induced by nociceptive stimulation Frontiers in Neuroinformatics. 9
Kato H, Cuellar CA, Delgado-Lezama R, et al. (2013) Modeling zero-lag synchronization of dorsal horn neurons during the traveling of electrical waves in the cat spinal cord. Physiological Reports. 1: e00021
Kato H, Cuellar CA, Delgado-Lezama R, et al. (2013) Modeling of spontaneous zero-lag synchronization and wave propagation in cat spinal cord Aip Conference Proceedings. 1510: 124-129
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