Pages that link to "Q33214063"
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The following pages link to A light and electron microscopic study of intracellularly HRP-labeled lumbar motoneurons after intramedullary axotomy in the adult cat (Q33214063):
Displaying 30 items.
- Activating transcription factor 3, a useful marker for regenerative response after nerve root injury (Q21129437) (← links)
- Synaptic Defects in the Spinal and Neuromuscular Circuitry in a Mouse Model of Spinal Muscular Atrophy (Q27312456) (← links)
- Axon injury and stress trigger a microtubule-based neuroprotective pathway. (Q30523283) (← links)
- A role for MHC class I molecules in synaptic plasticity and regeneration of neurons after axotomy (Q33580775) (← links)
- Spinal cord motoneuron maintenance, injury and repair (Q34120815) (← links)
- Selectivity in the reinnervation of the lateral gastrocnemius muscle after nerve repair with ethyl cyanoacrylate in the rat (Q34920042) (← links)
- Enhancing recovery from peripheral nerve injury using treadmill training (Q35109133) (← links)
- Permanent central synaptic disconnection of proprioceptors after nerve injury and regeneration. I. Loss of VGLUT1/IA synapses on motoneurons (Q35543939) (← links)
- Novel repair strategies to restore bladder function following cauda equina/conus medullaris injuries (Q36274138) (← links)
- Characterization of glial trkB receptors: differential response to injury in the central and peripheral nervous systems (Q36329542) (← links)
- Reimplantation of avulsed lumbosacral ventral roots in the rat ameliorates injury-induced degeneration of primary afferent axon collaterals in the spinal dorsal columns (Q37373773) (← links)
- Permanent reorganization of Ia afferent synapses on motoneurons after peripheral nerve injuries. (Q37764074) (← links)
- NO orchestrates the loss of synaptic boutons from adult "sick" motoneurons: modeling a molecular mechanism (Q37824455) (← links)
- On acute gene expression changes after ventral root replantation (Q38503710) (← links)
- Experimental Models for Neurotrauma Research (Q39413058) (← links)
- Two Drosophila model neurons can regenerate axons from the stump or from a converted dendrite, with feedback between the two sites. (Q41451520) (← links)
- Axonal regeneration and development of de novo axons from distal dendrites of adult feline commissural interneurons after a proximal axotomy (Q42434806) (← links)
- Growth of ascending spinal axons in CNS scar tissue (Q48245350) (← links)
- Microglial activation, emergence of ED1-expressing cells and clusterin upregulation in the aging rat CNS, with special reference to the spinal cord (Q48908873) (← links)
- Emergence of axons from distal dendrites of adult mammalian neurons following a permanent axotomy. (Q52542700) (← links)
- Properties of motoneurons underlying their regenerative capacity after axon lesions in the ventral funiculus or at the surface of the spinal cord (Q73009744) (← links)
- Reinnervation of a denervated skeletal muscle by spinal axons regenerating through a collagen channel directly implanted into the rat spinal cord (Q74214664) (← links)
- The temporal sequence of morphological and molecular changes in axotomized feline motoneurons leading to the formation of axons from the ends of dendrites (Q79334890) (← links)
- Plasticity of lumbosacral monosynaptic reflexes after a ventral root transection injury in the adult cat (Q79873339) (← links)
- Dendrite-derived supernumerary axons on adult axotomized motor neurons possess proteins that are essential for the initiation and propagation of action potentials and synaptic vesicle release (Q84037942) (← links)
- Axons with highly branched terminal regions successfully regenerate across spinal midline transections in the adult cat (Q84365036) (← links)
- Removal of the Potassium Chloride Co-Transporter from the Somatodendritic Membrane of Axotomized Motoneurons Is Independent of BDNF/TrkB Signaling But Is Controlled by Neuromuscular Innervation (Q90196700) (← links)
- Exercise promotes recovery after motoneuron injury via hormonal mechanisms (Q93047716) (← links)
- Synaptic Plasticity on Motoneurons After Axotomy: A Necessary Change in Paradigm (Q95270109) (← links)
- Neurons survive simultaneous injury to axons and dendrites and regrow both types of processes in vivo (Q97597493) (← links)