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Organization of the tectofugal visual pathway in the pigeon: a retrograde transport study.

In birds, superficial laminae of the optic tectum receive a massive retinal input; the tectum in turn projects upon the nucleus rotundus thalami, which then sends its efferents to the ectostriatal core of the telencephalon. To examine the detailed organization of this principal ascending visual pathway, small injections of the marker horseradish peroxidase (HRP) were placed in various sites throughout the ectostriatum (E) or nucleus rotundus (Rt) in pigeons. Analysis of the resulting patterns of retrograde labeling indicates the tectofugal pathway to be comprised of at least five different channels. Cells which lie at various depths in the stratum griseum centrale (SGC) of the tectum project upon distinct subdivisions of nucleus rotundus. Anterior portions of Rt receive input from superficial-most cells in the SGC, while medial and more caudal portions of Rt are projected upon by deeper SGC neurons. A ventral subdivision of Rt was found to receive its primary input from two pretectal nuclei. Additional inputs to all portions of Rt arise from nucleus reticularis superior thalami. The various subdivisions of rotundus in turn project upon distinct portions of the ectostriatum. Thus, the segregation between the different input classes into Rt is largely retained at the telencephalic level. In contrast, the nucleus triangularis, a dorso-medial extension of Rt which receives its input from the deepest of all SGC neurons, sends its efferents to all parts of the ectostriatum.

Animals

The scale of the visual pathways of mouse and rat.

Photoreceptors and neurons at various levels to cortex have been counted in mouse and rat. The ratios of neuron numbers (rat/mouse) are similar to the ratio of retinal areas or the squared ratio of eye sizes; so to a first approximation the two species have linearly scaled eyes, equal photoreceptor spacings (in micron), and visual pathways scaled numerically by the number of photoreceptors. With supplementary data from the literature, some of the functional implications of the design can be evaluated level by level. Overall, there is structural and computational economy, or even parsimony.

Animals

Involvement of posterior visual pathways by optic nerve gliomas.

We describe the computed tomographic (CT) findings in seven children with optic nerve gliomas extending posterior to the chiasm. These tumors spread along the optic tracts and in five of seven cases, involved the lateral geniculate bodies and adjacent optic radiations. The propensity for these tumors to extend along both the anterior and posterior visual pathways aids in their diagnosis. An MR scan was obtained in one patient and identified an unexpected site of tumor extension as well as the mass seen by CT.

Child

Discrimination performance and resolution capacity of uncrossed visual pathways in one-eyed albino rats.

Our recent study has demonstrated that adult rats with one eye removed at birth (OEB) relearn a discrimination between alternating black and white stripes, 30 mm wide each, oriented horizontally and vertically faster than control rats monocularly enucleated in adulthood (OET), when relearning is carried out after lesions of the visual cortex and transections of the optic tract contralateral to the remaining eye. Yet, we could not obtain the corresponding results in the acquisition of the discrimination following the same surgical treatments: OEBs did master the discrimination, whereas OETs did not. We hypothesized that a large discrepancy in OETs' performance between the acquisition and relearning occurred because the stripes were close to the limit of the resolution capacity of the uncrossed visual pathways (UXVPs), and hence that a better performance of OEBs was to indicate an increase in the resolution capacity, which resulted from reorganization of the UXVPs brought about by monocular enucleation at birth. To test the hypothesis we tried to approximate the limit of the resolution capacity of the UXVPs in OEBs and OETs using seven different sized test stripes ranging from 20 to 5 mm in width after both OEBs and OETs had relearned the discrimination of the 30 mm training stripes following the same surgical treatments mentioned above. It was found that the median width of the smallest stripes for OETs to discriminate was 10 mm, and that of OEBs 7.5 mm. Although OETs could not discriminate the smallest stripes which OEBs could, they were able to discriminate stripes one third smaller than those hypothesized. Based on these findings the possibility was discussed that the acquisition as well as the relearning of the discrimination of the 30 mm stripes mediated by the UXVPs in OEBs and OETs might not be influenced by the resolution capacity, but mostly, if not entirely, by the size of the visual field.

Animals

The hemispheric dominance of cortical cells in the absence of direct visual pathways.

Unit recording was carried out in the visual cortex of split chiasm and optic tract-sectioned adult cats. From the proportions of the visually responsive and unresponsive cells found in each hemisphere of the operated cats it was concluded that the indirect pathway via the corpus callosum becomes visually inactive under these conditions. However, the direct geniculocortical pathway remains visually active. Thus, it was assumed that unilateral or bilateral elimination of the decussating pathway has a crucial effect on the amount of interhemispheric callosal transfer of basic visual functions.

Animals

High-pass resolution perimetry and age-related loss of visual pathway neurons.

The normal, age-related decline of results of high-pass resolution perimetry (HRP) predicts a loss of approximately 9,000 retino-cortical neural channels per year of age, or about 1 channel each hour. Previously published counts of numbers of neurons in the optic nerve indicate a loss of approximately 5,000 neurons per year. The HRP results can be accounted for by postulating that neurons are lost at the same rate also in the geniculo-striate visual pathway.

Adolescent

Two distinct visual pathways through the superficial pretectum in a percomorph teleost.

The connections of the superficial pretectum and of nucleus isthmi were examined in a percomorph teleost, Lepomis cyanellus. Horseradish peroxidase was injected either with a pin into the parvicellular nucleus of the superficial pretectum or pressure injected into nucleus isthmi; the isthmal injections retrogradely labelled the neurons of the magnocellular nucleus of the superficial pretectum. Two main visual pathways can be recognized: The first projects from the retina to the parvicellular nucleus, and then to the intermediate nucleus of the superficial pretectum, the inferior raphe nucleus, and the trochlear nucleus. The second projects from the retina via the optic tectum to the magnocellular nucleus of the superficial pretectum, and from there to nucleus isthmi and the lateral thalamic nucleus; nucleus isthmi and the lateral thalamic nucleus project back to the optic tectum, and nucleus isthmi also projects back to the magnocellular nucleus. The two pathways are interconnected to some extent because both nucleus isthmi and the optic tectum project to the parvicellular nucleus; nevertheless, we suggest that they may be functionally and evolutionarily distinct. Compared to percomorphs, the first pathway appears reduced in cyprinid teleosts such as goldfish. Furthermore, the magnocellular nucleus of the second pathway is completely different in cyprinids, both in cellular architecture and in efferent connections. A phylogenetic analysis suggests that cyprinid ancestors went through a period of reduced vision and that the magnocellular nucleus of the superficial pretectum in modern cyprinids has been either extensively modified from the primitive condition or lost entirely and replaced by a superficially similar structure.

Animals

[Binocular photometer for measuring light perception in diseases of the visual pathway].

In patients with a reduction in visual function because of optic nerve neuritis, light sensitivity is tested to detect differences between the right and left eye in combination with the swinging flashlight test and visual evoked potential (VEP). A binocular Zeiss microscope was modified to use integrated photometer-controlled binocular stimulus fields and a central light system for fixation and variation of the contrast (background illumination). For exact binocular measurements of light sensitivity on both eyes, electronically controlled test fields (visual angle 5 degrees-20 degrees) guarantees only macular or overfoveolar stimulation. In addition, splitting the light for each stimulus field from only one halogen lamp guarantees wave-length-independent testing. Patients with various retinal diseases and neuritis nervi optici pathology were examined using pattern VEP, testing of the absolute lower threshold of light sensitivity, and binocular comparison over the range of luminous density. This binocular optical photometer system allowed minimal differences to be identified in the present visual function and after the eye had recovered from optic nerve neuritis.

Evoked Potentials, Visual

Electrophysiological assessment of compressive lesions of anterior visual pathways.

The findings in the pattern reversal V.E.C.P.'s have been examined in thirteen (13) patients, with proven or suspected pituitary tumours. Three (3) of these cases have been examined in detail, to highlight the unique capabilities of the pattern reversal V.E.C.P. in the assessment of conduction abnormalities of optic nerve and chiasma, due to compression by pituitary tumours. The V.E.C.P. is shown to be a uniquely sensitive procedure, which yields objective and quantitative data about the functional status of the anterior visual pathways, in cases of suspected compression by pituitary tumours. It is suggested that subclinical optic nerve compression is best detected by serially monitoring optic nerve conduction with the pattern reversal V.E.C.P.

Aged

Cupping of the optic disc with compressive lesions of the anterior visual pathway.

Cupping of the optic nerve, classically a sign of glaucoma, was demonstrated in 16 patients with lesions compressing the anterior visual pathway. Color contrast determinations of the cup/disc ratio demonstrated a ratio greater than 0.49 in 31 eyes. Further evaluation by stereobiomicroscopy showed cavernous degeneration by contour changes in 25 of the optic nerves. None of the patients had intraocular pressures greater than 22, and seven had normal tonography. Visual fields demonstrated bitemporal field defects in most patients and none were typical of glaucoma. Snellen acuity loss, out of proportion to the extent of optic disc cupping was found in 12 patients. This study indicates that diseases other than glaucoma can cause significant cupping of the optic nerves. Detailed evaluation of the disc changes and the visual fields will prevent confusion between compressive lesions of the optic nerves or chiasm and glaucoma.

Adolescent

Statokinetic dissociation in lesions of the anterior visual pathways. A reappraisal of the Riddoch phenomenon.

With standard Goldmann perimetry, physiologic dissociation of kinetic and statis stimuli was first investigated in 15 normal subjects. Variable degrees of statokinetic dissociation (SKD) occurred for white and for red (achromatic perception) targets, but not for chromatic recognition of red. To analyze relative sensitivity of these stimuli in defining field defects, a set of "isopter equivalents," eg, white I2e, red II4c (achromatic perception), and red V4e (chromatic recognition) was empirically established in normal and in pathologic fields of 11 patients with compression of the anterior visual pathways. The "Riddoch phenomenon" (SKD) was documented in defective fields in all patients with tumors; SKD occurred for white or for red achromatic perception. The most sensitive technique for elaborating field defects proved to be static presentation of white or red stimuli (achromatic perception) and chromatic recognition of static or kinetic red. As a rapid, sensitive screening method, especially for subtle defects, we suggest the addition of chromatic recognition of kinetic red stimuli to the application of standard kinetic white stimuli. Our findings are discussed in light of current concepts of retinal ganglion cell physiology.

Brain Neoplasms

Effect upon eye movements of rabbits induced by severance of mossy fiber visual pathway to the cerebellar flocculus.

In albino rabbits the visual mossy fiber pathway to the cerebellar flocculus was interrupted by placing lesions in the nucleus reticularis tegmenti points (NRTP). After recovery of more than 3 days, eye movements were tested by means of a television eye tracking system. The optokinetic response (OKR) in one eye was induced by sinusoidally moving a vertical slit light on the horizontal plane(2.5 degrees peak-to-peak amplitude) at 0.17-0.033 Hz in front of that eye. In rabbits with unilateral NRTP lesions, the OKR gain was reduced significantly in the eye contralateral to lesions, whereas that in the ipsilateral eye did not differ from control rabbits. The horizontal vestibulo-ocular reflex (HVOR) exhibited no change attributable to NRTP lesions. The operated rabbits were rotated (5 degrees peak-to-peak amplitude) at 0.1 Hz continuously for 3h, while the slit light was presented to the eye contralateral to the NRTP lesions. During the rotation, the HVOR gain in the test eye increased adaptively as in control rabbits. It is concluded that the visual mossy fiber pathway to the flocculus contributes to the OKR, but not to visually-guided adaptive modification of the HVOR.

Animals

Connexin50, a gap junction protein of macrogliaP6n the mammalian retina and visual pathway.

Reverse transcriptase-polymerase chain reaction (RT-PCR), Western blotting and immunocytochemistry were used to study the expression of gap junction proteins (connexins; Cx) in the rat and rabbit retina. RT-PCR of rabbit total retinal RNA using primers selected for the human Cx50 (alpha 8 Cx) DNA template yielded cDNA fragments of the predicted base pair size. Western blots of rat and rabbit retinal membrane preparations probed with a monoclonal antibody which recognizes Cx50 in the lens of several mammalian species revealed a single band (MW 50 kD), identical to that recognized in lens membrane extracts. In frozen retinal sections of both species, the same monoclonal antibody as well as two polyclonal antisera raised against a synthetic peptide from the C-terminal region of the human Cx50 polypeptide labeled Müller cells and astrocytes. In Müller cells, labeling was strongest in the endfeet and in the filamentous processes ensheathing the photoreceptors. Extending from the neural retina, Cx50-like immuno-reactivity was detected in astrocytes of the optic nerve and along retinal projections within the CNS. Our data indicate that Müller cells and astrocytes of mammalian retinas and throughout the visual pathway are coupled through gap junctions composed of connexin50.

Animals

Unilateral atrophy of the optic nerve associated with retrograde and anterograde degenerations in the visual pathways in Slc: Wistar rats.

Unilateral degenerative atrophy of the optic nerve (ON) occurred in 6 of 80 male and 4 of 80 female Slc: Wistar rats. Two of these cases completely lost the intracranial portion of the unilateral ON and the remainder had the small ON. The optic disc and ON were located histologically in the posterior pole of the eyeball of 2 rats with no intracranial ON. ON lesions in all cases were characterized by a reduced number of axons with a small number of myelinated axons and marked astrogliosis. There were also swelling, fragmentation and spheroid formation of axons, as well as thickening of the connective tissue sheaths and vessel walls in the ON. One side of the optic chiasma and optic tract contralateral to the affected ON reduced in volume, became degenerated and were accompanied by gliosis. Focal or diffuse degeneration of the retina was observed in the eyeballs with affected ON. Retinal ganglion cells decreased in the number showing chromatolysis. These retinae became thin and developed degeneration of both inner and outer portions with sclerotic changes in the retinal vessels. The ophthalmic and ciliary arteries in the eyeballs with affected ON often developed proliferative or occlusive endoarteritis, suggesting that retinal lesions may have resulted not only from axonal degeneration in the ON but also from ischemia. Histologic lesions suggestive of transneuronal degeneration were found in the contralateral lateral geniculate body and rostral colliculus. Based on the data presented, it was presumed that a primary lesion may have been induced in the ON by a circulatory disturbance and followed by retrograde and anterograde degenerations in the visual pathways.

Animals