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Emotional slow negative potential shift (CNV) in the thalamus.

In order to know the functional relationship between CNV recorded at the vertex and activity of the thalamic nucleus, the CNV at the vertex and the intrathalamic slow potentials responding to an S1-S2-R paradigm were recorded during thalamotomy under local anesthesia. It might be concluded that the activity of the medial thalamus and medial parts of the subthalamic area not only generate slow potential shifts corresponding to S1-S2-R, but also play an important role in controlling the CNV at the vertex.

Brain Mapping↗

Transplantation of fetal frontal cortex onto degenerating thalamus of cats and kittens.

Tissue from fetal frontal cortex survived after transplantation onto the surface of the left thalamus in 2 kittens and 2 adult cats which 7 days previously had sustained a left cerebral hemispherectomy. There were nerve fiber connections with host tissue (WGA-HRP, Loyez myelin stain) only in the neonatal animals. The grafts contained surviving neurons in all but in one adult cat which survived 301 days. The grafts had little effects on the retrograde ventral thalamic degeneration typically seen following hemispherectomy. However, the dorsal lateral geniculate nucleus adjacent to the transplants showed reduced neuronal loss and gliosis compared to controls. Magnetic resonance imaging was successfully used to visualize the grafts in vivo and suggested a decrease in size as well as changes in composition for a graft systematically followed for 120 days posttransplantation. Cytochrome oxidase histochemistry indicated sustained metabolic activity in transplants containing surviving neurons. This study introduces the cat as a useful model for brain tissue transplantation in a classical, myelinated sensorimotor system.

Animals↗

Developmental alterations in mast cell numbers and distributions within the thalamus of the albino rat.

A total of 216 male and female albino Wistar rats (Rattus norvegicus) between 10 and 60 days old from 42 litters were studied to determine mast cell characteristics within the thalamus. Whereas the mean numbers of mast cells within both the parenchyma and leptomeninges (combined) did not change appreciably after 15 days of age, the appearance of mast cells within the parenchyma (and disappearance from the leptomeninges) is clearly age-dependent. Between 15 and 25 days of age, the relative numbers of mast cells within the thalamic parenchyma changed from 20 to 90% of the total mast cells within thalamic space.

Aging↗

[Opiate receptors and sleep. Effects of microinjections of morphine in the median thalamus and the periaqueductal gray matter of the rabbit (author's transl)].

Microinjections of morphine in optimal doses into the medial thalamus (40 micrograms) and periaqueductal gray matter (10-20 micrograms) produce slow-wave sleep with abondant spindles, in addition to analgesia. Like analgesia, the sleep-inducing effect is blocked by naloxone (1 mg/kg i.v., 160 micrograms i.c.). One may therefore conclude that the effect is related to the agonistic action of morphine on endorphine receptors. It is thus probable that the endorphins constitute a regulatory system acting on the medullary-thalamic sleep-inducing structures which generate the sleep spindles. At higher dose levels, injections of morphine into the same structures produce behavioral agitation resembling the dissociated REM sleep described by Jouvet and which is not blocked by naloxone. The agitation might be due to an indirect action of morphine, and therefore of endorphin receptors, acting on monoaminergic structures.

Animals↗

[Opiate receptors and sleep. III. Effects of microinjections of DSIP (delta-sleep peptide) in the median thalamus, Periaqueductal gray matter and nucleus of the tractus solitarius of the rabbit (author's transl)].

In the rabbit, microinjections of DSIP (delta-sleep peptide) at optimal doses in the median thalamus, periaqueductal gray matter (22.5 nmol), and nucleus of the tractus solitarius (15.0 nmol) produce slow-wave sleep with abundant recruiting spindles. As is seen with morphine, this effect is blocked by naloxone (160 micrograms intracerebrally; i.c.). At least in the rabbit, DSIP is probably a neurotransmitter or a neuromodulator of the bulbothalamic system inducing slow-wave sleep and particularly recruiting spindles. It is likely to restore slow-wave sleep after supraoptimal awakening i.c. microinjections of morphine.

Animals↗

Germ cell tumors of the basal ganglia and thalamus.

The clinicopathological findings in 6 patients with germ cell tumors originating in the basal ganglia and thalamus are presented. Clinical, biological and diagnostic features were somewhat different from germ cell tumors in the pineal region. Early and comprehensive treatment is recommended because of the possible presence of nongerminomatous germ cell components.

Basal Ganglia↗

A specific pattern of connections from the sensorimotor region of the cerebral cortex to the thalamus in the rat.

In the course of an investigation of the thalamic connections of the frontoparietal cortex in the albino rat, lesions were placed in the parietal cortex of adult rats, and the resulting terminal degeneration was observed in the ventrobasal complex, using the Fink-Heimer silver impregnation technique. Lesions made in the primary somatosensory forelimb region of the cortex result in a narrow band of terminal degeneration which extends dorsoventrally throughout the rostrocaudal two-thirds of the ventrobasal complex. This portion of the ventrobasal complex coincides with the electrophysiological representation of the thalamic primary somatosensory forelimb area, and corresponds closely to the medial portion of the lateral part of the ventrobasal complex as described by Smith, as well as to the medial portion of the posterolateral ventral nucleus according to Matano et al. These results serve to confirm the close correlation determined electrophysiologically between the topographical organization of the somatosensory forelimb areas of both the parietal cortex and the ventrobasal complex of the rat thalamus.

Animals↗

Comparative mapping of acetylcholinesterase and reduced nicotinamide adenine dinucleotide diaphorase in the rabbit dorsal thalamus.

The distribution of acetylcholinesterase and reduced nicotinamide adenine dinucleotide (NADH) diaphorase enzymatic activities was mapped histochemically in the dorsal thalamus of the rabbit. A comparison of the resulting patterns helped in the histochemical delimitation of a number of nuclei, as well as in the detection of some subdivisions, that showed differential expression of these enzymes. It was observed that AChE and NADH diaphorase tend to appear in a complementary fashion in many dorsal thalamic neuropiles, so that intense activity of the one was accompanied by low activity of the other. However, coincident expression of both enzymes was also obtained in a small number of areas. The correlation of these patterns with other chemo-architectonic and hodologic data does not yet disclose an explanation of these regularities, which however suggest some functional significance.

Acetylcholinesterase↗

Vascular syndromes of the thalamus.

BACKGROUND: This article reviews the anatomy, connections, and functions of the thalamic nuclei, their vascular supply, and the clinical syndromes that result from thalamic infarction. SUMMARY OF REVIEW: Thalamic nuclei are composed of 5 major functional classes: reticular and intralaminar nuclei that subserve arousal and nociception; sensory nuclei in all major domains; effector nuclei concerned with motor function and aspects of language; associative nuclei that participate in high-level cognitive functions; and limbic nuclei concerned with mood and motivation. Vascular lesions destroy these nuclei in different combinations and produce sensorimotor and behavioral syndromes depending on which nuclei are involved. Tuberothalamic territory strokes produce impairments of arousal and orientation, learning and memory, personality, and executive function; superimposition of temporally unrelated information; and emotional facial paresis. Paramedian infarcts cause decreased arousal, particularly if the lesion is bilateral, and impaired learning and memory. Autobiographical memory impairment and executive failure result from lesions in either of these vascular territories. Language deficits result from left paramedian lesions and from left tuberothalamic lesions that include the ventrolateral nucleus. Right thalamic lesions in both these vascular territories produce visual-spatial deficits, including hemispatial neglect. Inferolateral territory strokes produce contralateral hemisensory loss, hemiparesis and hemiataxia, and pain syndromes that are more common after right thalamic lesions. Posterior choroidal lesions result in visual field deficits, variable sensory loss, weakness, dystonia, tremors, and occasionally amnesia and language impairment. CONCLUSIONS: These vascular syndromes reflect the reciprocal cerebral cortical-thalamic connections that have been interrupted and provide insights into the functional properties of the thalamus.

Animals↗

Transformation of diffuse beta-amyloid precursor protein and beta-amyloid deposits to plaques in the thalamus after transient occlusion of the middle cerebral artery in rats.

BACKGROUND AND PURPOSE: The present study examined the long-term presence of beta-amyloid precursor protein (APP) and beta-amyloid (Abeta) accumulation in the rat thalamus after focal cerebral ischemia. METHODS: Male Wistar rats were subjected to transient middle cerebral artery occlusion (MCAO) for 2 hours. Sensorimotor outcome was assessed using a tapered/ledged beam-walking task after operation. The distribution of APP and Abeta was examined immunohistochemically at 1 week, 1 month, and 9 months after MCAO. RESULTS: MCAO caused a long-lasting deficit in forelimb and hind limb function assessed using the beam-walking test. Histologic examination revealed a transient increase in APP and Abeta staining in axons in the corpus callosum and in neurons at the border of the ischemic region. APP and Abeta deposits persisted in the thalamic nuclei (ventroposterior lateral and ventroposterior medial nuclei), eventually leading to dense plaque-like deposits by the end of the 9-month follow-up. The deposits were surrounded by an astroglial scar. The deposits were positive for Abeta and N-terminal APP, but not for C-terminal APP. Antibodies against the C-terminal of Abeta, ie, Abeta42 and Abeta40, showed a preferential staining for Abeta42. Congo red or thioflavine S did not stain the deposits. CONCLUSIONS: The present results demonstrated the persistent presence and aggregation of APP and Abeta, or their fragments, to dense plaque-like deposits in the ventroposterior lateral and ventroposterior medial nuclei of rats subjected to focal cerebral ischemia.

Amyloid beta-Peptides↗

Evidence of somatotopic organization of the sensory thalamus based on infarction in the nucleus ventralis posterior.

BACKGROUND: This is to describe a restricted sensory syndrome of unique distribution due to thalamic infarct. CASE DESCRIPTION: We report a case of pure sensory disturbance involving the left intraoral and perioral regions and the tips of the thumb and forefinger of the left hand. Magnetic resonance imaging revealed a small infarct in the contralateral thalamus, presumably affecting the nucleus ventralis posterior. CONCLUSIONS: This patient provides an excellent correlation between clinical findings and thalamic representation of body surface as established during stereotactic procedures.

Cerebral Infarction↗

Ventricular enlargement in schizophrenia related to volume reduction of the thalamus, striatum, and superior temporal cortex.

OBJECTIVE: Enlargement of the lateral ventricles is among the most frequently reported macroscopic brain structural changes in schizophrenia, although variable in extent and localization. The authors investigated whether ventricular enlargement is related to regionally specific volume loss. METHOD: High-resolution magnetic resonance imaging scans from 39 patients with schizophrenia were analyzed with deformation-based morphometry, a voxel-wise whole brain morphometric technique. RESULTS: Significant negative correlations with the ventricle-brain ratio were found for voxels in the left and right thalamus and posterior putamen and in the left superior temporal gyrus and insula. CONCLUSIONS: Thalamic shrinkage, especially of medial nuclei and the adjacent striatum and insular cortex, appear to be important contributors to ventricular enlargement in schizophrenia.

Adolescent↗

The thalamus and neuropsychiatric illness.

Although the cerebral cortex is usually thought of as a likely substrate for psychiatric disease, the close relationship of thalamus to cortex, both structurally and functionally, argues for much closer consideration of this structure in both research and clinical settings. Four thalamic nuclei with widely differing functions are considered in terms of the specific roles they appear to play in central nervous system activity and their possible roles in psychiatric disease. These nuclei include the ventrobasal complex, the nucleus reticularis thalami, the mediodorsal nucleus, and the dorsal thalamic system with special reference to the habenula.

Animals↗

Sodium channel expression in the ventral posterolateral nucleus of the thalamus after peripheral nerve injury.

Peripheral nerve injury is known to up-regulate the expression of rapidly-repriming Nav1.3 sodium channel within first-order dorsal root ganglion neurons and second-order dorsal horn nociceptive neurons, but it is not known if pain-processing neurons higher along the neuraxis also undergo changes in sodium channel expression. In this study, we hypothesized that after peripheral nerve injury, third-order neurons in the ventral posterolateral (VPL) nucleus of the thalamus undergo changes in expression of sodium channels. To test this hypothesis, adult male Sprague-Dawley rats underwent chronic constriction injury (CCI) of the sciatic nerve. Ten days after CCI, when allodynia and hyperalgesia were evident, in situ hybridization and immunocytochemical analysis revealed up-regulation of Nav1.3 mRNA, but no changes in expression of Nav1.1, Nav1.2, or Nav1.6 in VPL neurons, and unit recordings demonstrated increased background firing, which persisted after spinal cord transection, and evoked hyperresponsiveness to peripheral stimuli. These results demonstrate that injury to the peripheral nervous system induces alterations in sodium channel expression within higher-order VPL neurons, and suggest that misexpression of the Nav1.3 sodium channel increases the excitability of VPL neurons injury, contributing to neuropathic pain.

Animals↗

Minimal tissue damage after stimulation of the motor thalamus in a case of chorea-acanthocytosis.

Autopsy findings are reported from a patient with chorea-acanthocytosis treated for 2 years by deep brain stimulation (DBS) of the motor thalamus. Postoperative testing showed a progressive improvement in axial truncal spasms. Although relatively high currents were used for 2 years in this patient, postmortem analysis showed minimal tissue damage in the vicinity of the electrode tip. It is concluded that DBS has little impact on the surrounding tissues.

Adult↗

Neuropathology of Huntington's chorea. Studies of the ventrobasal complex of the thalamus.

In seven cases of Huntington's chorea, the ventrolateral thalamus was studied by quantitative cytometry. A selective 50 percent atrophy of microneurons (internuncial cells) was found while the macroneurons did not show significant atrophy. Thalamic microneurons might be presynaptic and postsynaptic inhibitory cells. Their specific atrophy in Huntington's chorea thus could be related to the known decrease of gamma aminobutyric acid (GABA) in Huntington's chorea.

Adult↗

Pathologic findings of silent, small hyperintense foci in the basal ganglia and thalamus on MRI.

We analyzed the pathologic features of silent, small hyperintense foci in the basal ganglia and thalamus on MRI T2-weighted images (T2WI). Eight foci were histologically lacunar infarcts (LI), and 21 were dilated perivascular spaces (DPS). The foci with smooth margins were mostly DPS, whereas those with irregular margins were mostly LI (p = 0.018). Most putaminal foci were DPS, whereas most thalamic foci were LI (p = 0.001). The mean areas of LI and DPS overlapped below 19.6 mm2. The shape and site of hyperintense foci on T2WI are important for differentiating LI from DPS.

Aged↗

Solitary histoplasmoma of the thalamus: case report and literature review.

Only nine cases of solitary thalamic abscess have been reported. All were of bacterial origin, and three were successfully treated by surgical drainage and antibiotic therapy. The authors present the history of a patient with a histoplasmoma of the thalamus. As is often the case with solitary thalamic lesions, this lesion was initially assumed to be a tumor and was first treated with radiotherapy. Despite the sensitive location of the lesion, tissue diagnosis and decompression was safely accomplished with the aid of ultrasonic localization. Appropriate antifungal treatment was given, and the patient made a good recovery.

Aged↗