Studies of innervation patterns in grafted chick wings. 1985

M Neset, and C Muniak, and C Edwards

The pattern of innervation of 12 day embryonic chick wings was studied by morphological and electrophysiological techniques. Several types of chick wing grafts were performed to investigate the rules governing nerve pattern formation: whether the motor neurons actively seek out and connect with specific muscles or are passively guided and whether cell death plays any role in pattern formation. In each type of graft the outgrowing neurons were confronted with extra targets distal to the elbow. Two grafts replicated lower arm parts in series (proximodistal graft) or in parallel (forearm and hand replicated in the same pattern of asymmetry in a split limb graft); a third produced a mirror image limb. The flexor carpi ulnaris muscle (F.C.U.) was studied in these limbs. The innervation of the most distal f.c.u. muscle in proximodistal grafted limbs varied with the extent of host f.c.u. muscle present. The f.c.u. muscles in the split limb graft were always innervated. In both limb grafts the f.c.u. muscles were innervated by the appropriate neurons, as determined by retrograde HRP technique and electrophysiological recordings. This strongly suggests that the motor neurons are able to seek out and connect with their appropriate muscle. Results of the mirror image limb graft suggest that other factors may be involved. In addition, motor neuron cell counts were performed. From this one can infer that the normally occurring pattern of cell death was not affected by the grafts. Cell death is therefore excluded as a major factor in nerve pattern formation.

UI MeSH Term Description Entries
D010525 Peripheral Nerves The nerves outside of the brain and spinal cord, including the autonomic, cranial, and spinal nerves. Peripheral nerves contain non-neuronal cells and connective tissue as well as axons. The connective tissue layers include, from the outside to the inside, the epineurium, the perineurium, and the endoneurium. Endoneurium,Epineurium,Perineurium,Endoneuriums,Epineuriums,Nerve, Peripheral,Nerves, Peripheral,Perineuriums,Peripheral Nerve
D002452 Cell Count The number of CELLS of a specific kind, usually measured per unit volume or area of sample. Cell Density,Cell Number,Cell Counts,Cell Densities,Cell Numbers,Count, Cell,Counts, Cell,Densities, Cell,Density, Cell,Number, Cell,Numbers, Cell
D002470 Cell Survival The span of viability of a cell characterized by the capacity to perform certain functions such as metabolism, growth, reproduction, some form of responsiveness, and adaptability. Cell Viability,Cell Viabilities,Survival, Cell,Viabilities, Cell,Viability, Cell
D002642 Chick Embryo The developmental entity of a fertilized chicken egg (ZYGOTE). The developmental process begins about 24 h before the egg is laid at the BLASTODISC, a small whitish spot on the surface of the EGG YOLK. After 21 days of incubation, the embryo is fully developed before hatching. Embryo, Chick,Chick Embryos,Embryos, Chick
D004594 Electrophysiology The study of the generation and behavior of electrical charges in living organisms particularly the nervous system and the effects of electricity on living organisms.
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014921 Wings, Animal Movable feathered or membranous paired appendages by means of which certain animals such as birds, bats, or insects are able to fly. Animal Wing,Animal Wings,Wing, Animal

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