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Moreno-Lopez, Y.

Publications and source records attributed to Moreno-Lopez, Y..

2 recordsLinked to original sources

Refinement of corticospinal neuron activity during skilled motor learning

The learning of motor skills relies on plasticity of the primary motor cortex as task acquisition drives the remodeling of cortical motor networks1,2. Large scale cortical remodeling of evoked motor outputs occurs in response to the learning of skilled, corticospinal-dependent behavior, but not simple, unskilled tasks1. Here we determine the response of corticospinal neurons to both skilled and unskilled motor training and assess the role of corticospinal neuron activity in the execution of the trained behaviors. Using in vivo calcium imaging, we found temporal coding of corticospinal activity coincided with the development of skilled, but not unskilled, motor expertise. Animals that failed to learn our skilled, precision isometric pull task exhibited a limited repertoire of dynamic movements and reduced network modulation. Transection of the corticospinal tract and optogenetic regulation of corticospinal activity show the necessity for patterned corticospinal network activity in the execution of skilled, but not unskilled, movement. We reveal a critical role for corticospinal network modulation in the learning and execution of skilled motor movements. The integrity of the corticospinal tract is essential to the recovery of dexterous movement after central nervous system injuries and these findings should help to shape translational approaches to motor recovery.

neuroscience

Enhanced analgesic cholinergic tone after neuropathy

At the spinal cord level, a tone of endogenous acetylcholine (ACh) modulates nociceptive sensory processing. Increasing the level of spinal ACh induces analgesia in naive animals or in situation of acute pain in the clinics, but whether this is still the case in situations or models of chronic pain is controversial. Here, we demonstrate the persistence, and even increased impact of the analgesic cholinergic tone acting through nicotinic receptors in neuropathic mice. The neuropathy does not affect the number and properties of dorsal horn cholinergic neurons, proposed to be the source of spinal ACh. Subthreshold doses of acetylcholinesterase (AChE) inhibitors in sham animals become anti-allodynic in cuff mice suggesting that the alterations occur in the cholino-receptive neurons. Thus endogenous cholinergic signaling can be manipulated with low doses of drugs to relieve mechanical allodynia in animal neuropathy models. This opens new avenues with potentially fewer side effects for neuropathic pain treatment.

neuroscience