Daniel Zytnicki

Affiliations: 
Université Paris Descartes - CNRS 
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"Daniel Zytnicki"
Mean distance: 15.88 (cluster 11)
 
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Publications

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Bączyk M, Manuel M, Roselli F, et al. (2022) From Physiological Properties to Selective Vulnerability of Motor Units in Amyotrophic Lateral Sclerosis. Advances in Neurobiology. 28: 375-394
Bączyk M, Manuel M, Roselli F, et al. (2022) Diversity of Mammalian Motoneurons and Motor Units. Advances in Neurobiology. 28: 131-150
Manuel M, Zytnicki D. (2021) Comments on the article by Jensen et al. (2020). The Journal of Physiology
Catanese A, Rajkumar S, Sommer D, et al. (2021) Synaptic disruption and CREB-regulated transcription are restored by K channel blockers in ALS. Embo Molecular Medicine. e13131
Bączyk M, Krutki P, Zytnicki D. (2021) Is there hope that transpinal direct current stimulation corrects motoneuron excitability and provides neuroprotection in amyotrophic lateral sclerosis? Physiological Reports. 9: e14706
Bączyk M, Alami NO, Delestrée N, et al. (2020) Synaptic restoration by cAMP/PKA drives activity-dependent neuroprotection to motoneurons in ALS. The Journal of Experimental Medicine. 217
Manuel M, Zytnicki D. (2019) Molecular and electrophysiological properties of mouse motoneuron and motor unit subtypes. Current Opinion in Physiology. 8: 23-29
Martinez-Silva ML, Imhoff-Manuel RD, Sharma A, et al. (2018) Hypoexcitability precedes denervation in the large fast-contracting motor units in two unrelated mouse models of ALS. Elife. 7
Bos R, Harris-Warrick RM, Brocard C, et al. (2018) Kv1.2 Channels Promote Nonlinear Spiking Motoneurons for Powering Up Locomotion. Cell Reports. 22: 3315-3327
Martínez-Silva MdL, Imhoff-Manuel RD, Sharma A, et al. (2018) Author response: Hypoexcitability precedes denervation in the large fast-contracting motor units in two unrelated mouse models of ALS Elife
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