Much of the present understanding of the oculomotor system has evolved rom morphological, physiological, and clinicopathological studies of the neurones and pathways that are related to various types of eye movement. The overall objective of this research is to elucidate the structural organization of the oculomotor system in relation to the neurotransmitters that are utilized by premotor neurones and the changes that accompany lesions of premotor pathways and the motor nerves. The major emphasis of the proposed studies will be to characterize the putative excitatory and inhibitory neurotransmitters of premotor neurones to the oculomotor, trochlear, and abducens nuclei by light and electron microscopy using autoradiographic and immunohistochemical techniques. These findings will for a basis for the examination of structural changes in trochlear motoneurones and their synaptic inputs following IVth nerve axotomy. Utilizing light and electron microscopic histochemical and immunohistochemical techniques, these studies will assess the role of intrinsic versus extrinsic factors that are correlated with the phenomenon of motoneurone survival and death following axotomy. The effects of lesions of the medial longitudinal fasciculus will be examined by light and electron microscopy in relation to not only the target motoneurones in the oculomotor and trochlear nuclei, but also the morphology of muscle fibers in the extraocular muscles. These studies will assess the trophic role of the presynaptic inputs in maintaining the structural integrity of the motoneurones and their relation to the different muscle fiber types that are innervated by the motoneurones.
The specific aims of this research are consistent with the long-term goal of understanding the neuronal and synaptic organization of the oculomotor system underlying the control of gaze and the sequellae, both central and peripheral, of neurological disorders that are characterized by deficits in ocular motility.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Method to Extend Research in Time (MERIT) Award (R37)
Project #
5R37EY002191-15
Application #
3483937
Study Section
Visual Sciences B Study Section (VISB)
Project Start
1978-01-01
Project End
1993-12-31
Budget Start
1992-01-03
Budget End
1992-12-31
Support Year
15
Fiscal Year
1992
Total Cost
Indirect Cost
Name
Virginia Commonwealth University
Department
Type
Schools of Medicine
DUNS #
City
Richmond
State
VA
Country
United States
Zip Code
23298
McClung, J R; Cullen, K E; Shall, M S et al. (2004) Effects of electrode penetrations into the abducens nucleus of the monkey: eye movement recordings and histopathological evaluation of the nuclei and lateral rectus muscles. Exp Brain Res 158:180-8
Dimitrova, Diana M; Shall, Mary S; Goldberg, Stephen J (2003) Stimulation-evoked eye movements with and without the lateral rectus muscle pulley. J Neurophysiol 90:3809-15
Shall, Mary S; Dimitrova, Diana M; Goldberg, Stephen J (2003) Extraocular motor unit and whole-muscle contractile properties in the squirrel monkey. Summation of forces and fiber morphology. Exp Brain Res 151:338-45
Nguyen, L T; Baker, R; Spencer, R F (1999) Abducens internuclear and ascending tract of deiters inputs to medial rectus motoneurons in the cat oculomotor nucleus: synaptic organization. J Comp Neurol 405:141-59
Nguyen, L T; Spencer, R F (1999) Abducens internuclear and ascending tract of Deiters inputs to medial rectus motoneurons in the cat oculomotor nucleus: neurotransmitters. J Comp Neurol 411:73-86
Spencer, R F; Tucker, M G; Choi, R Y et al. (1997) Botulinum toxin management of childhood intermittent exotropia. Ophthalmology 104:1762-7
McNeer, K W; Tucker, M G; Spencer, R F (1997) Botulinum toxin management of essential infantile esotropia in children. Arch Ophthalmol 115:1411-8
Spencer, R F; Wang, S F (1996) Immunohistochemical localization of neurotransmitters utilized by neurons in the rostral interstitial nucleus of the medial longitudinal fasciculus (riMLF) that project to the oculomotor and trochlear nuclei in the cat. J Comp Neurol 366:134-48
Wang, S F; Spencer, R F (1996) Morphology and soma-dendritic distribution of synaptic endings from the rostral interstitial nucleus of the medial longitudinal fasciculus (riMLF) on motoneurons in the oculomotor and trochlear nuclei in the cat. J Comp Neurol 366:149-62
Wang, S F; Spencer, R F (1996) Spatial organization of premotor neurons related to vertical upward and downward saccadic eye movements in the rostral interstitial nucleus of the medial longitudinal fasciculus (riMLF) in the cat. J Comp Neurol 366:163-80

Showing the most recent 10 out of 27 publications