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Alpha 2-receptor control over release of noradrenaline in rat thalamus.

Rat brain thalamic tissue was examined for the presence of alpha 2-receptor control over noradrenaline (NA) utilization. Systemically administered clonidine (0.1 mg/kg i.p.) decreased NA turnover, yohimbine (10 mg/kg i.p.) increased NA turnover, and prazosin (0.5 mg/kg i.p.) had no effect. In vitro, yohimbine increased K+-stimulated overflow of endogenous NA in a dose-dependent fashion. It appears that locus coeruleus neurons which project to thalamus exhibit the same type of alpha 2-receptor control as those terminating in other forebrain regions.

Animals↗

Sleep promoting effect of a putative glial gamma-aminobutyric acid uptake blocker applied in the thalamus of cats.

The uptake of gamma-aminobutyric acid (GABA) by glial cells was decreased when 4,5,6,7,-tetrahydroisoxazolo-(4,5-C)-pyridin-3-ol (THPO) was applied in the thalamus of freely moving cats by in vivo microdialysis. A marked reduction in duration of wakefulness and in number of awakenings was obtained during THPO treatment. THPO did not change the ratio of slow-wave-sleep and paradoxical sleep but only increased the total sleep time. The present data suggest a possible regulatory role of the glial-neuronal interaction in the modification of the sleep-waking cycle.

Animals↗

Na+,K(+)-ATPase activity is selectively increased in thalamus in thiamine deficiency prior to the appearance of neurological symptoms.

The relationship between progression of neurological status and the activities of both Na+,K(+)- and Mg(2+)-dependent-ATPase (adenosine 5'-triphosphate phosphohydrolase) was investigated in brain regions of pyrithiamine-induced thiamine deficient rats. Thalamic Na+,K(+)-ATPase activity was selectively increased by 200% (P < 0.01) prior to the appearance of symptoms of thiamine deficiency and normalized in symptomatic rats. This selective transitory activation precludes a mediation by brain soluble fraction Na+,K(+)-ATPase modifiers as does the unaltered distribution in regional high-affinity [3H]ouabain binding densities observed throughout the time-course used in these experiments. Na+,K(+)-ATPase maintains cellular ionic gradients and has been implicated in neurotransmitter uptake and release mechanisms. The fact that the increased thalamic Na+,K(+)-ATPase activity coincides with the early alterations in serotonin metabolism observed in similarly treated animals and the concomitantly early increase in glucose utilization previously observed in the thalamus of thiamine-deficient rats is discussed.

Animals↗

Unit activity related to head and eye movements in central thalamus of cats.

Single-unit activity was recorded with stereotaxically guided microelectrodes in the central thalamus of five alert cats. The animals were studied with the head either fixed or free to move in a horizontal plane. They were trained to make eye and/or head movements toward discrete visual targets presented on a screen. Unit activity was analyzed in relation to triggered and spontaneous gaze displacements with head fixed and free successively. Four groups of cells were found, all within the thalamic internal medullary lamina: 20 cells were active with eye but not head movements, 49 with head but not eye movements, 36 with head or eye movements, and 17 responding to visual stimuli in the absence of movement. The patterns of firing during gaze shifts are described. It is hypothesized that eye- or head-related units carry a signal representing gaze driving.

Animals↗

Fetal frontal cortex transplanted to injured motor/sensory cortex of adult rats: reciprocal connections with host thalamus demonstrated with WGA-HRP.

Fetal frontal cortex was transplanted into lesion cavities formed in host motor/sensory cortex of adult rats. Eight to twenty-eight weeks later wheat germ agglutinin conjugated with horseradish peroxidase (WGA-HRP) was injected into host thalamus and the brain was sectioned and reacted using a sensitive TMB procedure. A large amount of fine granular WGA-HRP was detected in most transplants. This could represent anterograde transport demonstrating that injured adult host thalamic neurons sprouted axons into fetal cortical transplants. Conversely, none or very few retrogradely labeled pyramidal neurons were present in the transplants. This indicates that pyramidal neurons in transplants either did not sprout into adult host brain or sprouted such short distances that they did not pick up the WGA-HRP. These results are compatible with the hypothesis that high trophic/growth factor levels in newborn or fetal brain and low levels in adults determine the more extensive connections seen in newborn hosts compared with those in adult transplanted hosts. The data are also consistent with the proposal that adult host brains impair axonal growth. Functionally, the data suggest that although corticofugal effects of fetal cortical transplants in adult host brains are likely to be limited, transplants could exert beneficial trophic effects on adult host thalamic neurons.

Animals↗

Localization of serotonin receptors in the rat thalamus by electrophysiology and the action of 5-HTP-DP-hex.

This study was designed to pinpoint the site at which N-hexanoyl-5-hydroxytryptophyl-5-hydroxytryptophan amide (5-HTP-DP-hex) exerts its previously reported effect on thalamic neurons in rats. The animals were prepared under chloralose-urethane anesthesia for a stereotaxic approach to either the nucleus ventralis posterolateralis (nVPL) or the centrum medianum-parafascicularis complex (CM-Pf) of the thalamus. Individual neurons in these nuclei were separately activated by single-pulse stimulation of the sciatic nerve or the thalamic fibers that form reciprocal connections between the CM-Pf and the second somatosensory (SII) region of the nVPL. Poststimulus time histograms were constructed from computer readouts of the stimulus-evoked responses of a neuron during a 500-ms period accumulated in a digital computer 100X. In addition, the number of spikes accumulated in each histogram was compared to the number of spikes accumulated under identical conditions on the same neuron after intracarotid infusion of 5-HTP-DP-hex. The effect of the drug was reversed by the infusion of 5-HTP. Statistical evaluation of the accumulated spike counts indicated that 5-HTP-DP-hex suppressed only the excitation of CM-Pf neurons from the SII of the nVPL; the input of the sciatic nerve into the CM-Pf remained unaltered. Furthermore, no effect was exerted by this dipeptide on the afferent excitation of neurons in the SII of the nVPL.(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗

The thalamus and aphasia, including transcortical aphasia: a review.

Left thalamic lesions can produce motor speech disturbances: disorders of articulation and of phonation. Left thalamic lesions can also produce aphasic disorders: word-emission difficulties; difficulties with comprehension, reading, writing, and arithmetic; and sometimes suppression of conversational propositional speech with preservation of nonpropositional repetitional or automatic speech. The relative preservation of nonpropositional speech justifies the assignment of such cases of thalamic aphasia to the category of transcortical aphasia (TA). Also included in TA are aphasias from dominant hemisphere supplementary motor region (SMR) lesions. In this context the suggestion by Penfield and Roberts that the thalamus and the SMR interact via the pedunculus thalami superior is noted.

Adult↗

Parameters of cholinergic neurotransmission in the thalamus in Parkinson's disease and Alzheimer's disease.

Loss of cholinergic cells in the basal forebrain is associated with commensurate reductions in cortical acetylcholine-related enzyme activities in both Alzheimer's disease (AD) and Parkinson's disease (PD). Nerve cell loss from the cholinergic pontine tegmental nuclei also occurs. As the latter nuclei project to the diencephalon, we used frozen tissue from 5 controls, 5 PD and 5 AD cases to study the distribution of ChAT, AChE and [3H]nicotine binding in the thalamus and subthalamic nucleus. The anterior nuclear group and the mediodorsal nucleus showed high activities of ChAT and AChE together with relatively high levels of [3H]nicotine binding. The centromedian nucleus and subthalamic nucleus contained equally high levels of ChAT but negligible levels of [3H]nicotine binding. There were no significant changes in the levels of ChAT, AChE and nicotine binding in the PD and AD groups indicating that involvement of the pedunculopontine tegmental nucleus is likely to be a secondary retrograde phenomenon rather than part of a systematic cholinergic fibre degeneration.

Acetylcholine↗

Antagonism of the presumed presynaptic action of L-AP4 on GABAergic transmission in the ventrobasal thalamus by the novel mGluR antagonist MPPG.

The metabotropic glutamate receptor (mGluR) agonists CCG-I and L-AP4, acting at Group II and Group III mGluRs respectively, can reduce GABAergic synaptic inhibition on single neurones in the rat thalamus in vivo via a presumed presynaptic mechanism. The actions of L-AP4 were antagonized by (+/-)-alpha-methyl-4-phosphonophenylglycine (MPPG), whereas CCG-I was significantly less affected. Thus MPPG may be a useful tool for detecting physiological roles for Group III mGluRs.

Alanine↗

Chromatic properties of the retinal afferents in the thalamus and the tectum of the frog (Rana temporaria).

In order to clarify physiological mechanisms underlying colour-specific visually guided behaviour, we measured spectral sensitivities of On-fibres projecting to the thalamus and class 2 and 3 fibres passing to tectum opticum. In addition we recorded responses of these fibres to moving coloured papers with known spectral reflectancies. The latter method, here called paper colourimetry, allowed us to change the relative stimulations of the blue-, green- and red-sensitive photoreceptors in any direction desired. Under the photopic conditions used the tectal fibres were driven exclusively by red-sensitive receptors, while the thalamic fibres received strong On-inputs from both red- and blue-sensitive receptors. Due to a partly antagonistic interaction between these inputs the On-fibres acted in a dichromatic way, responding with specific extended low-frequency discharges to all relative increases in blue receptor stimulation, e.g. to a great reduction in red stimulation combined with unchanged blue stimulation. Thus they have functional characteristics which could serve a visual system showing colour constancy.

Action Potentials↗

Expression of epileptiform activity induced by a penicillin focus within the posterior thalamus in the awake rat.

Investigations were performed to study the epileptiform activity, induced by a local injection of penicillin (PCN) into the posterior thalamus (pTh) of the awake rat, and to compare it with the epilepsy induced in the same animals 2 weeks later by an injection of PCN into the motor cortex (MC). Using EEG recordings, 1) the distribution of focal cortical activity, and 2) the severity of the epileptiform activity (frequency of focal activity, occurrence and duration of generalized episodes) were analyzed. The focal activity of pTh rats was characterized by two types of potentials: (a) sharp potentials with a spike-like shape that developed during the first hour after PCN injection only in the visual cortex, but in the transition area between the motor and sensory cortex during the last period of epileptiform activity; and (2) large potentials with a wave- or spike-wave-like shape that had their center of focal expression in the transition zone between the motor and sensory cortex. MC rats exhibited only a spike-like potential with or without short-lasting afterdischarges in the homotopic areas of the MC of both hemispheres. During periods with large potentials only, the number of generalized episodes was significantly reduced with respect to those periods with sharp potentials. When the epileptiform activity changed from large to sharp potentials, the interictal frequency increased significantly. It is postulated (a) and a pTh focus activates the lateral and/or the reticular thalamic areas, which, due to their high intrinsic potential for synchronization, cause a self-sustained interictal activity of the large potential type; and (b) that the wave of the large potentials is involved in an anticonvulsive mechanism that reduces the extent of ictal as well as interictal activity.

Animals↗

Lesions of the basal ganglia, thalamus, and deep white matter: differential effects on language functions.

Forty-five patients with unilateral demarcated vascular lesions in the basal ganglia, the thalamus and the deep white matter were investigated with an "aphasia battery." Patients with basal ganglia lesions performed worse than both other groups in tests of articulation, syntax, and lexical functions. The deficit of patients with basal ganglia lesions on all expressive language modalities was lateralized to the left hemisphere. Patients with left thalamic lesions showed impairments of speech fluency and in the Token Test. Patients with white matter lesions alone showed no effect of laterality in tests of language functions. The results are discussed on the basis of a recent theory of the participation of the deep nuclei in language processing.

Adult↗

The role of the left and right thalamus in language asymmetry: dichotic listening in Parkinson patients undergoing stereotactic thalamotomy.

Fourteen patients with Parkinson's disease (rigidity and unilateral tremor as main symptoms) were treated with stereotactic thalamotomy. The operation was performed in either the left or right ventrolateral thalamus, depending on which hand (or foot) was most affected with tremor. Nine patients were operated on the left side and four on the right side. All patients were tested for asymmetry of language functioning with dichotic presentations of consonant-vowel (CV) syllables. The patients had to indicate which of the two syllables he/she heard on each trial. Dichotic listening was performed before and after the operation, as well as during electrical stimulation of the VL nucleus just before the lesion was carried out. The results revealed essentially three things: an overall reduced right ear advantage (REA) in the patient group compared to what is known from studies of healthy individuals; an increase in REA during left-sided stimulations; and a marked reduction in REA after left-sided lesions. It is concluded that the present data support the notion put forward by Ojemann (e.g., 1975) of a lateralized activating gating mechanism in the left VL nucleus that gates access for language information to the appropriate cortical areas. The gating mechanism seems to be activated by stimulation, and deactivated after lesions. Dichotic listening may thus be a heuristic instrument in assessment of language functions in Parkinson patients.

Adult↗

TRH analogue antagonizes anaesthetic induced depression of information transfer through the ventrobasal thalamus of the rat.

Previous studies have indicated an anti-narcotic action of TRH and its analogues. A major site of anaesthetic action is in the ventrobasal thalamus (VBT). The present experiments were performed to determine whether there was antagonism between anaesthetics and a TRH analogue on VBT transmission. It was found that the TRH analogue CG3703 reversed the depressant actions of the anaesthetics urethane, sodium pentobarbitone and sodium brietal on ventrobasal transmission. These actions were also observed at the cortical level but cuneate transmission was unaffected. These results are discussed in the context of modulation of information flow through VBT. In particular it is suggested that TRHergic input from the thalamic reticular nucleus may be an important regulator of VBT transmission.

Anesthetics↗

Transient patterns of acetylcholinesterase activity in developing thalamus: a comparative study in rodents.

This paper describes acetylcholinesterase (AChE) activity in the dorsal thalamus of several rodents, including rat, mouse, gerbil, hamster and guinea pig. Tissue from fetal, neonatal, and adult animals was studied using histochemical techniques. Developing animals of all species display prominent AChE staining in the ventral medial geniculate nucleus and the ventral posterior nucleus, while adult animals show very light staining in these thalamic regions. Similarly, the dorsal lateral geniculate nucleus of all species shows stronger staining in developing animals than in adults. These data indicate that transient expression of AChE activity in primary sensory thalamic nuclei is a characteristic common to a variety of rodents.

Acetylcholinesterase↗

Ontogeny of cholecystokinin gene expression in the rat thalamus--a hybridization histochemical study.

We examined the ontogeny of cholecystokinin (CCK) gene expression in the rat thalamus using hybridization histochemistry. Maturation of CCK gene expression occurred over the course of a month, beginning in the medial geniculate nucleus on the 17th day of gestation. CCK mRNA was found in the caudal nuclei first, later in the rostral; the ventral were followed by the dorsal; and the lateral by the medial. In some nuclei, such as the medial geniculate, CCK mRNA was present prior to the full differentiation of the neurons; whereas in others, such as the mediodorsal, the neurons differentiated to almost adult morphology before CCK mRNA was detected.

Aging↗

Different postnatal ontogenic profiles of neurons containing beta (beta 1, beta 2 and beta 3) subunit mRNAs of GABAA receptor in the rat thalamus.

The postnatal ontogeny of neurons containing different GABAA receptor beta (beta 1, beta 2 and beta 3) subunit mRNAs were examined in the rat thalamus using in situ hybridization histochemistry. Neurons containing beta 1 or beta 2 subunit mRNA developed remarkably postnatally, while most neurons were already strongly labeled with beta 3 probe at birth. However, beta 3 subunit mRNA decreased rapidly after birth, few cells being labeled with this probe at day 35 and thereafter.

Aging↗

Acetylcholinesterase as an early marker of the differentiation of dorsal thalamus in embryonic rats.

The enzyme acetylcholinesterase (AChE) is transiently expressed in rats by neurons of the principal sensory thalamic nuclei, although these neurons do not use acetylcholine as a neurotransmitter. Reports that AChE expression begins at late embryonic stages led to the proposal that AChE may function in the establishment of connections, but not in earlier events. However, we find AChE reactivity in rat dorsal thalamus 5 days earlier than previously described. Cells that form the ventrobasal complex (VB), the dorsal lateral geniculate nucleus (dLG) and the medial geniculate nucleus, express AChE as they migrate and aggregate into definitive nuclei. AChE-positive cells are occasionally observed in the dorsal thalamic neuroepithelium, but are more common in others regions of the diencephalic neuroepithelium. AChE reactivity delineates VB and dLG earlier than Nissl-stained cytoarchitecture. These findings indicate that AChE is an early marker of neuronal differentiation. Certain properties of AChE, together with its early detection, are consistent with a proposed role in the migration of principal sensory neurons and their organization into discrete nuclei.

Acetylcholinesterase↗