Ultra structural evidence of axonal regeneration following intracranial transection of optic nerve. 2010

Rasha Ahmad Elmansy, and Abdal Rahman El Shahat, and Masood Ahmed Shaikh
Department of Anatomy, Faculty of Medicine, Ainshamas University, Egypt.

OBJECTIVE The present work was aimed at studying the ultra structural changes of the proximal (retinal) stump of the intracranially transected optic nerve of the rat for any possible regenerative ability. METHODS Specimens were collected one (1 wpo) and four weeks(4 wpo) after the transection and the cross sections of the stumps were studied by electron microscopy by dividing them into three zones, (1) the central zone, (2) the intermediate zone, and (3) the peripheral zone. RESULTS The present results showed evident morphological changes in these zones both in the 1 wpo and 4 wpo groups. The signs of degeneration were more marked in the central zone than in the peripheral zone and they were more prominent in the 1 wpo group than in the 4 wpo group. The most prominent sign of the degeneration was loss or lack of the healthy myelinated axons. The main evidence of the regenerative ability was the reappearance of the apparently healthy myelinated axonal profiles, with a parallel decrease of the non myelinated ones. This regenerative feature was more prominent peripherally and might be an indication that ischemia was the cause of optic nerve degeneration. CONCLUSIONS The present work revealed a clear morphological evidence of the regenerative capability of the intracranially transected optic nerve though it is considered as a part of the CNS.

UI MeSH Term Description Entries
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D009416 Nerve Regeneration Renewal or physiological repair of damaged nerve tissue. Nerve Tissue Regeneration,Nervous Tissue Regeneration,Neural Tissue Regeneration,Nerve Tissue Regenerations,Nervous Tissue Regenerations,Neural Tissue Regenerations,Regeneration, Nerve,Regeneration, Nerve Tissue,Regeneration, Nervous Tissue,Regeneration, Neural Tissue,Tissue Regeneration, Nerve,Tissue Regeneration, Nervous,Tissue Regeneration, Neural
D009900 Optic Nerve The 2nd cranial nerve which conveys visual information from the RETINA to the brain. The nerve carries the axons of the RETINAL GANGLION CELLS which sort at the OPTIC CHIASM and continue via the OPTIC TRACTS to the brain. The largest projection is to the lateral geniculate nuclei; other targets include the SUPERIOR COLLICULI and the SUPRACHIASMATIC NUCLEI. Though known as the second cranial nerve, it is considered part of the CENTRAL NERVOUS SYSTEM. Cranial Nerve II,Second Cranial Nerve,Nervus Opticus,Cranial Nerve, Second,Cranial Nerves, Second,Nerve, Optic,Nerve, Second Cranial,Nerves, Optic,Nerves, Second Cranial,Optic Nerves,Second Cranial Nerves
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
D001369 Axons Nerve fibers that are capable of rapidly conducting impulses away from the neuron cell body. Axon
D051381 Rats The common name for the genus Rattus. Rattus,Rats, Laboratory,Rats, Norway,Rattus norvegicus,Laboratory Rat,Laboratory Rats,Norway Rat,Norway Rats,Rat,Rat, Laboratory,Rat, Norway,norvegicus, Rattus
D020221 Optic Nerve Injuries Injuries to the optic nerve induced by a trauma to the face or head. These may occur with closed or penetrating injuries. Relatively minor compression of the superior aspect of orbit may also result in trauma to the optic nerve. Clinical manifestations may include visual loss, PAPILLEDEMA, and an afferent pupillary defect. Optic Nerve Trauma,Optic Neuropathy, Traumatic,Second Cranial Nerve Trauma,Cranial Nerve II Injuries,Optic Nerve Avulsion,Optic Nerve Contusion,Optic Nerve Transection,Second Cranial Nerve Injuries,Trauma, Second Cranial Nerve,Avulsion, Optic Nerve,Avulsions, Optic Nerve,Contusion, Optic Nerve,Contusions, Optic Nerve,Injuries, Optic Nerve,Injury, Optic Nerve,Nerve Avulsion, Optic,Nerve Avulsions, Optic,Nerve Contusion, Optic,Nerve Contusions, Optic,Nerve Injuries, Optic,Nerve Injury, Optic,Nerve Transection, Optic,Nerve Transections, Optic,Nerve Trauma, Optic,Nerve Traumas, Optic,Neuropathies, Traumatic Optic,Neuropathy, Traumatic Optic,Optic Nerve Avulsions,Optic Nerve Contusions,Optic Nerve Injury,Optic Nerve Transections,Optic Nerve Traumas,Optic Neuropathies, Traumatic,Transection, Optic Nerve,Transections, Optic Nerve,Trauma, Optic Nerve,Traumas, Optic Nerve,Traumatic Optic Neuropathies,Traumatic Optic Neuropathy

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