Pages that link to "Q67488095"
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The following pages link to Clustering of muscle acetylcholine receptors requires motoneurons in live embryos, but not in cell culture (Q67488095):
Displaying 27 items.
- Zebrafish as a Model to Investigate Dynamin 2-Related Diseases (Q27350517) (← links)
- Induction, assembly, maturation and maintenance of a postsynaptic apparatus (Q28206352) (← links)
- Functional and comparative genomics analyses of pmp22 in medaka fish (Q30488983) (← links)
- An Altered Intron Inhibits Synthesis of the Acetylcholine Receptor α-Subunit in the Paralyzed Zebrafish Mutant nic1 (Q34602412) (← links)
- Development of the locomotor network in zebrafish (Q35008658) (← links)
- A novel approach to study motor neurons from zebrafish embryos and larvae in culture (Q36208836) (← links)
- Acetylcholine receptor-aggregating activity of agrin isoforms and mapping of the active site (Q36382434) (← links)
- Redistribution of cell membrane probes following contraction-induced injury of mouse soleus muscle. (Q36791397) (← links)
- Wnt signals organize synaptic prepattern and axon guidance through the zebrafish unplugged/MuSK receptor (Q37165068) (← links)
- Effects of nitric oxide on neuromuscular properties of developing zebrafish embryos (Q37525578) (← links)
- Visualization of Ca2 Signaling During Embryonic Skeletal Muscle Formation in Vertebrates (Q37855341) (← links)
- N‐cadherin regulates primary motor axon growth and branching during zebrafish embryonic development (Q40543786) (← links)
- Nicotinic receptors mediate changes in spinal motoneuron development and axonal pathfinding in embryonic zebrafish exposed to nicotine. (Q40682947) (← links)
- Zebrafish: genetic and embryological methods in a transparent vertebrate embryo. (Q41649891) (← links)
- The Met receptor tyrosine kinase prevents zebrafish primary motoneurons from expressing an incorrect neurotransmitter (Q42142440) (← links)
- Acetylcholinesterase is required for neuronal and muscular development in the zebrafish embryo (Q43830797) (← links)
- Targeted "knockdown" of channel expression in vivo with an antisense morpholino oligonucleotide. (Q44120275) (← links)
- Acetylcholinesterase function is dispensable for sensory neurite growth but is critical for neuromuscular synapse stability (Q44890875) (← links)
- In vivo imaging of preferential motor axon outgrowth to and synaptogenesis at prepatterned acetylcholine receptor clusters in embryonic zebrafish skeletal muscle. (Q46900142) (← links)
- Innervation directs receptor synthesis and localization in Drosophila embryo synaptogenesis (Q47071509) (← links)
- Nicotinic acetylcholine receptors (nAChRs) at zebrafish red and white muscle show different properties during development (Q50277467) (← links)
- Activity-dependent development of the neuromuscular synapse during drosophila embryogenesis (Q51655366) (← links)
- Recovery from open channel block by acetylcholine during neuromuscular transmission in zebrafish (Q73338101) (← links)
- Pathfinding by Identified Zebrafish Motoneurons in the Absence of Muscle Pioneers (Q73745150) (← links)
- Neuromuscular synaptogenesis in wild-type and mutant zebrafish (Q81065960) (← links)
- Zebrafish as an Emerging Model for Bioassay-Guided Natural Product Drug Discovery for Neurological Disorders (Q92445579) (← links)
- Paralytic zebrafish lacking acetylcholine receptors fail to localize rapsyn clusters to the synapse (Q95721598) (← links)