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Journal ArticleDOI

Efferent connections of the periaqueductal gray matter in the cat.

TLDR
Electrolytic lesions were stereotaxically placed in the dorsal and ventral areas of the mesencephalic periaqueductal gray in the cat to avoid electrode damage.
Abstract
Electrolytic lesions were stereotaxically placed in the dorsal and ventral areas of the mesencephalic periaqueductal gray in the cat. A dorsal angular approach was made so that mechanical electrode damage was contralateral to the lesion, or a posterior approach through the fourth ventricle was employed to avoid electrode damage. The brains were sectioned coronally and sagittally and stained with a modifield Nauta-Gygax or Fink-Heimer stain. Degeneration from the dorsal lesions was chiefly in a radial pattern to the superior colliculus, inferior colliculus and mesencephalic reticular area. Also, fibers angled out of the dorsal gray, crossed the midline and joined the commissure of the superior colliculus, some taking a ventrolateral course through the colliculi and others running ventrally along the borders of the gray. Degeneration was traced caudally to the cuneiform nucleus and adjacent reticular area. Rostrally, fibers traveled in the dorsal longitudinal fasciculus to the pretectal area, lateral habenular nucleus and finally, the posterior hypothalamic area. Ventral lesions showed the same radial pattern of degeneration and fibers in the superior colliculus commissure. Caudally, fibers could be traced to the cuneiform nucleus, reticular area and inferior olive. The rostral course of fibers in the dorsal longitudinal fasciculus was similar, though there were additional connections with the ventral tegmental area of Tsai, the fields of Forel, and the parafascicular nucleus of the thalamus.

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Citations
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Book ChapterDOI

Assessment of Pain in Animals

TL;DR: It is incorrect to use “ pain” as an adjective in reference to a stimulus, as with a “painful” stimulus, unless the stimulus is actually perceived as being painful.
Journal ArticleDOI

A degeneration study of some habenular efferents to the midbrain in a wallaby.

TL;DR: In this study, specimens of both sexes of a Western Australian wallaby had surgical or electrolytic lesions made in the habenular complex unilaterally and degeneration was seen in the interpeduncular nucleus primarily in the dorsal and posterior parts, in the ventral tegmental nucleus and throughout the central gray.
Journal ArticleDOI

Effect of medial hypothalamic stimulation inducing both escape and approach on unit activity in rat mesencephalon

TL;DR: It is suggested that neuronal activity in the dorsal part of the CG is rather specifically implicated in the generation of MH stimulation-induced aversive effects and escape responses.
Journal ArticleDOI

Brainstem afferents to the lateral mesencephalic tegmental region of the cat

TL;DR: The lateral mesencephalic tegmental region (LTR) is a part of the midbrain reticular formation characterized by the presence of neurons exhibiting head movement‐related discharge modulation and contains directionally selective visual units.
References
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Journal ArticleDOI

Two methods for selective silver impregnation of degenerating axons and their synaptic endings in the central nervous system.

TL;DR: The original, non-suppressive Natua method for impregenation of terminal degeneration has been modified by the introduction of a potassium permanganate-uranyl nitrate sequence, resulting in a selective impregnation of degenarated axons inclusive of their synaptic thickenings.
Book

The brain stem of the cat : a cytoarchitectonic atlas with stereotaxic coordinates

TL;DR: This slim (73 text pages) volume stresses the "integrating functions of the vagi" in discussing vagal influences on the cardiovascular, respiratory, and gastrointestinal systems.
Journal ArticleDOI

Hippocampal projections and related neural pathways to the mid-brain in the cat

TL;DR: Recent studies in the rat have confirmed much earlier descriptions of widespread distributions of the fornix system to the diencephalon and the rostral mid-brain regions.
Journal ArticleDOI

Ascending axon degeneration following anterolateral cordotomy. An experimental study in the monkey.

TL;DR: In the same year in which Gowers wrote the prophetic statement quoted above, Bechterew on the basis of mylogenetic studies described two ascending fibre systems in the anterolateral funiculus of the spinal cord, two systems that were directly continuous into the reticular formation of the brain-stem.
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