Distribution of retinofugal and corticofugal axon terminals in the superior colliculus of squirrel monkey.
نویسندگان
چکیده
The distribution of terminal fields of retinocollicular fibers was studied in squirrel monkeys with the autoradiographic technique. The terminals were aggregated into patches which were separated by intervening gaps. The ipsilateral patches were particularly distinct. The patches as well as th gaps ranged in size from 50 to 200 microns. In the most posterior aspect of the contralateral superior colliculus, the gaps were absent, and the terminals formed an uninterrupted sheet. The corresponding portion of the ipsilateral colliculus had no retinal input, in agreement with the concept that this region most likely represented the temporal crescent of the visual field. In the most anterior portion of the superior colliculus where the fovea is known to be represented, the ipsilateral and contralateral projections were sparse but, nevertheless, discernible. There was a partial laminar segregation of terminals. The majority of the terminal fields in the contralateral colliculus was located in the most dorsal tier of the stratum griseum superficiale, whereas the majority of the ipsilateral input was slightly deeper in the same stratum. The distribution of corticocollicular fibers was studied by the autoradiographic technique. The fibers from areas 17 and 18 terminated predominantly in the dorsal portion of the stratum griseum superficiale. Area 19, in contrast, projected to the ventral portion of the stratum griseum superficiale. Thus the terminal fields of axons from the retina, area 17 and area 18, overlap in the superior colliculus, whereas axons arising from area 19 terminate in another substratum.
منابع مشابه
Changes of immunocytochemical localization of vesicular glutamate transporters in the rat visual system after the retinofugal denervation.
To clarify which vesicular glutamate transporter (VGluT) is used by excitatory axon terminals of the retinofugal system, we examined immunoreactivities and mRNA signals for VGluT1 and VGluT2 in the rat retina and compared immunoreactivities for VGluT1 and VGluT2 in the retinorecipient regions using double immunofluorescence method, anterograde tracing, and immunoelectron microscopy. Furthermore...
متن کاملSensory Cortical Control of a Visually Induced Arrest Behavior via Corticotectal Projections
Innate defense behaviors (IDBs) evoked by threatening sensory stimuli are essential for animal survival. Although subcortical circuits are implicated in IDBs, it remains largely unclear whether sensory cortex modulates IDBs and what the underlying neural pathways are. Here, we show that optogenetic silencing of corticotectal projections from layer 5 (L5) of the mouse primary visual cortex (V1) ...
متن کاملNeuronal activity in the inferior colliculus and bordering structures during vocalization in the squirrel monkey.
In four squirrel monkeys (Saimiri sciureus), the inferior colliculus, together with the neighboring superior colliculus, reticular formation, cuneiform nucleus and parabrachial area, were explored with microelectrodes, looking for neurons that might be involved in the discrimination between self-produced and external sounds. Vocalization was elicited by kainic acid injections into the periaqued...
متن کاملRetinal Afferent Ingrowth to Neocortical Transplants in the Adult Rat Superior Colliculus is due to the Regeneration of Damaged Axons
Retinal afferent ingrowth to embryonic neural transplants in the adult rat superior colliculus may represent either sprouting of intact axons or the regeneration of transected axons. If ingrowth represents regeneration of damaged retinofugal axons, then lesions that axotomize more retinofugal axons at the transplantation site should induce greater retinal afferent ingrowth. Alternately, if ingr...
متن کاملResponse characteristics of single cells in the monkey superior colliculus following ablation or cooling of visual cortex.
ELECTROPHYSIOLOGICAL STUDIES have shown that the characteristics of single cells in the superior colliculus depend to a considerable extent on cortical input. In the cat, the majority of studies reveal a dramatic loss of binocularity and direction selectivity in superficial collicular units following ablation of the visual cortex (1, 18, 25). In the ground squirrel, removal of the visual cortex...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Investigative ophthalmology & visual science
دوره 20 2 شماره
صفحات -
تاریخ انتشار 1981