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W Singer

Publications and source records attributed to W Singer.

At least 109 records · Page 6Linked to original sources

Critical period plasticity of kitten visual cortex is not associated with enhanced susceptibility to electrical kindling.

The goal of this study was to determine whether the use-dependent malleability of visual cortex functions which is particularly pronounced in 4-week-old kittens correlates with enhanced susceptibility to kindling. For that purpose the effects of high-frequency electrical stimulation were compared in the visual cortex of 4-week-old kittens and of adult cats. The striate cortex of one hemisphere was stimulated with a single train of pulses whose intensity was set just above the threshold for the elicitation of afterdischarges (ADs). In kittens the AD thresholds were consistently higher than in adults and with repeated stimulation, the ADs tended to disorganize, to decrease in amplitude and duration and to become more restricted to the site of stimulation after about 6 stimulations. In the adult, by contrast, the ADs remained well organized and constant in duration throughout 30 stimulations. They showed an increase in amplitude and spike frequency and spread with increasing consistency to the other hemisphere. No electrographic or behavioural signs of epileptic activity developed in kittens, while in adults ADs were on occasion followed by irregular spike activity associated with behavioural states resembling absences. We conclude that the visual cortex possesses powerful mechanisms to prevent the development of supracritical excitatory states, these mechanisms being more effective in the kitten than in the adult.

Age Factors

Gonadotropin secretion in vitro by human pituitary null cell adenomas and oncocytomas.

Pituitary null cell adenomas and oncocytomas are tumors not associated with clinical or biochemical evidence of hormone excess; morphological studies have not hitherto revealed their origin or the nature of their hormone production, if any. We examined the in vitro secretory activity of seven null cell adenomas and five oncocytomas which caused symptoms of a mass lesion and variable degrees of hypopituitarism. All tumors were classified at the time of surgical resection using immunohistochemistry and electron microscopy. RIA revealed the presence of FSH, LH, and alpha-subunit of pituitary glycoprotein hormones in the culture medium of eight tumors, FSH and alpha-subunit in the medium of one tumor, and TSH, FSH, LH, and alpha-subunit in the medium of three adenomas. Morphological examination of cultured tissues confirmed the presence of tumor resembling those in the initial surgical specimen. Thus, we conclude that null cell adenomas and oncocytomas contain cells that can produce pituitary glycoprotein hormones, and that the majority produce gonadotropins.

Adenoma

Microscopic peliosis of pancreatic islets in a woman with MEN-1 syndrome.

We report herein a case of histologically identified peliosis of pancreatic islets in the surgically removed portion of the pancreas of a 30-year-old woman with multiple endocrine neoplasm, type 1 (MEN-1) syndrome. In addition to microscopic peliosis, the pancreas contained multiple endocrine tumors producing insulin, glucagon, somatostatin, and growth hormone-releasing factor and showed evidence of widespread nesidioblastosis. It is uncertain whether peliosis of pancreatic islets and MEN-1 syndrome were coincidental or whether the two diseases were causally related. Since hormonal factors can result in hepatic peliosis, it is tempting to speculate that the endocrine imbalance secondary to MEN-1 syndrome might have played a role in the genesis of peliosis in this case. Although no direct proof of vascular damage was encountered, it is conceivable that escape of red blood cells from the circulation and their accumulation in tissue spaces was due to abnormal islet blood flow and increased capillary permeability.

Adult

Organization and morphological characteristics of choline acetyltransferase-containing fibers in the visual thalamus and striate cortex of the cat.

The morphological characteristics and the distribution of cholinergic fibers in the cat visual system were studied with immunohistochemical methods employing monoclonal antibodies directed against choline acetyltransferase (ChAT). ChAT-positive fibers form dense meshworks within the main laminae of the dorsal lateral geniculate nucleus (LGNd), the perigeniculate nucleus (PGN) and the visual cortex. The fibers are of fine caliber, branch extensively and possess numerous varicosities in close contact with cellular elements. The density of ChAT + fibers is not uniform and is particularly high in cortical laminae I-III, the PGN complex and laminae A and A1 of the LGNd.

Animals

Ultrastructural identification of somata and neural processes immunoreactive to antibodies against glutamic acid decarboxylase (GAD) in the dorsal lateral geniculate nucleus of the cat.

The cat dorsal lateral geniculate nucleus (LGN) was examined at the light- and electron-microscopic level after immunocytochemistry for GAD (the synthesizing enzyme of the inhibitory neurotransmitter GABA), to identify cells and processes with GAD-like immunoreactivity. GAD-positive perikarya were distributed throughout the A and C laminae, constituting a moderate proportion of cells in the LGN. Labeled cells were characterized by small size, scant cytoplasm, relatively large nuclei with common indentations, small mitochondria, few organelles and few strands of rough endoplasmic reticulum. Unlabeled cells were of large, medium and small size. GAD-positive terminals were identified as F1 and F2 types (Guillery's nomenclature) on the basis of their synaptic relations and ultrastructure. Labeled F2 terminals were postsynaptic to retinal (RLP) boutons and presynaptic to unlabeled dendrites in synaptic glomeruli. Labeled F1 terminals made synapses on unlabeled somata and dendrites, and on labeled dendrites and F2 terminals. Presumably, most labeled F1 terminals originate from GABAergic perigeniculate axons. Retinal (RLP) and cortico-geniculate (RSD) boutons remained unlabeled in the reactive zone. These terminals made synapses with labeled and unlabeled dendrites and with labeled F2 boutons. In conjunction with previous studies on GAD-positive cells in the perigeniculate nucleus, these results provide immunocytochemical and morphological evidence suggesting that the GABAergic intrinsic and extrinsic (perigeniculate) interneurons mediate the different inhibitory phenomena which occur in relay cells of the cat LGN. The ultrastructural features and synaptic relations of GABAergic cells and processes in the cat LGN are similar to those of equivalent neural elements in the LGN of rat and monkey, suggesting general principles of organization and morphology for GABAergic neurons in the thalamus of different mammals.

Animals

The cholinergic innervation of the visual thalamus: an EM immunocytochemical study.

In this study we demonstrate at the ultrastructural level that both the dorsal lateral geniculate nucleus (dLGN), the visual relay of the thalamus, and the perigeniculate nucleus (PGN), the visual segment of the thalamic reticular nucleus (TRN), are densely innervated by fibres with Choline-Acetyl-Transferase (ChAT) like immunoreactivity. These axons make synaptic contacts with interneurones considered to be inhibitory, both in the PGN and within the synaptic glomeruli of the dLGN. In addition, Chat positive terminals form intra- and extraglomerular synapses with dendrites thought to arise from relay cells. We interpret these results as evidence for direct cholinergic modulation of both relay cells and inhibitory interneurones.

Animals

Central control of developmental plasticity in the mammalian visual cortex.

Visual experience influences the development of visual cortex functions. By manipulating retinal activity the efficacy of excitatory connections between the eyes and cortical neurones can be modified dramatically. A criterion for the enhancement or impairment of transmission is the temporal contiguity of pre- and postsynaptic activation. For a change to occur it is necessary that the cortical cells respond to retinal activity but this condition is not sufficient. Further permissive gating signals of nonretinal origin are required. It is proposed that these "now print" signals act by controlling the Ca2+-conductance of cortical dendrites. The possible role of these activity dependent modifications is discussed in the context of the development of cooperatively coupled cell assemblies.

Action Potentials

Ultrastructure and synaptic relations of neural elements containing glutamic acid decarboxylase (GAD) in the perigeniculate nucleus of the cat. A light and electron microscopic immunocytochemical study.

The perigeniculate nucleus of the cat (PGN) was examined at light and electron microscopic levels after immunocytochemical labeling for the gamma-aminobutyric acid (GABA) synthesizing enzyme, glutamic acid decarboxylase (GAD). In light microscopic sections, virtually all perikarya were found to be labeled (GAD+), as well as proximal dendrites, fibres and punctiform elements. Cells in the thalamic reticular nucleus (TRN) dorsal to PGN were also labeled. Ultrastructural analysis of PGN showed immunoreactivity in all somata, in dendrites and in the following vesicle containing profiles: 1.) F1 terminals, which are characterized by large size, dark mitochondria, and pleomorphic vesicles. These terminals form symmetrical synaptic contacts with somata, somatic spines and with dendrites of GAD+ PGN cells. 2.) F2 terminals, which are smaller than F1 terminals, contain also pleomorphic vesicles and frequently make serial synapses of the symmetric type with other F2 terminals. Presumably, F1 terminals are formed by collaterals of PGN-cell axons and F2 terminals by vesicle containing dendrites of PGN cells. Terminals devoid of immunoreactivity included: 1.) RLD terminals characterized by large size, round vesicles, dark mitochondria, and by asymmetric synaptic contacts with somata, especially with somatic spines, and with dendrites of GAD+ perigeniculate neurons; 2.) RSD terminals, characterized by small size, round vesicles and dark mitochondria, which make asymmetric synapses with GAD+ dendrites of medium and small size; 3.) Multivesicular (MV) terminals with variably shaped vesicles including dense core vesicles synapsing on GAD+ dendrites. There are reasons to believe that RSD terminals belong to corticofugal axons and RLD terminals to collateral axons of LGN relay cells. The origin of MV terminals remains to be determined. The GABAergic nature of the PGN cells conforms with the presumed function of these cells as mediators of inhibition of LGN relay cells. The complex synaptic relations observed between GAD+ elements in the PGN would allow for reciprocal inhibition between perigeniculate cells.

Animals

A case for hypothalamic acromegaly: a clinicopathological study of six patients with hypothalamic gangliocytomas producing growth hormone-releasing factor.

We report the histological, ultrastructural, and immunocytochemical features of six hypothalamic gangliocytomas associated with pituitary GH cell adenomas and/or acromegaly. In four patients, the gangliocytoma was intrasellar, and no hypothalamic investigation was performed; in two patients, autopsy confirmed hypothalamic involvement. Four patients had a gangliocytoma associated with pituitary GH cell adenoma and acromegaly; electron microscopy demonstrated an intimate association between neurons and adenomatous GH cells. One patient had a gangliocytoma and a GH cell adenoma but no clinical evidence of acromegaly. In the sixth patient, clinical and biochemical acromegaly was manifest, but no pituitary adenoma was demonstrated. Using immunocytochemistry, human pancreatic tumor GRF (hptGRF-40) was localized in the majority of neurons of all six gangliocytomas. The pituitary adenomas and nontumorous adenohypophyses were negative for hptGRF-40. In addition, somatostatin, glucagon, and GnRH were demonstrated within some neurons of several tumors; insulin and gastrin stains were equivocal. These findings confirm previous proposals of production of a GRF by such gangliocytomas. While the significance of other peptides found in some of the tumors is uncertain, the presence of hptGRF-40 in neurons of these gangliocytomas supports the theory that GRF excess is the mechanism responsible for over-production of GH and provides evidence for a syndrome of hypothalamic acromegaly.

Acromegaly

Immunohistochemical localization of neuron-specific enolase in the human hypophysis and pituitary adenomas.

Neuron-specific enolase (NSE) was localized, using the immunoperoxidase technique, in the cytoplasm of the five adenohypophyseal hormone-secreting cell types, and in nerve fibers of the pars nervosa of the human pituitary. Crooke's hyaline material was negative. Neuron-specific enolase was found in all pituitary adenoma types; there was no correlation between degree of granularity or differentiation of tumor cells and intensity of NSE immunopositivity. One hypothalamic hamartoma was positive for NSE; a craniopharyngioma and a neurohypophyseal granular cell tumor were not. Neuron-specific enolase was present in peptide hormone-producing endocrine cells outside the pituitary and in their tumors; the majority of other tumors were negative for NSE, although one breast carcinoma, one ovarian cystadenocarcinoma, and one lymphoma were positive for NSE. In control studies, absorption of NSE antisera with growth hormone abolished immunoreactivity; there was no immunologic cross-reaction demonstrable by radioimmunoassay.

Adenoma

Pituitary and hypothalamic dysfunction in a patient with a basal encephalocele.

A 31 year old Chinese man was found to have a large basal encephalocele extending into the nasopharynx associated with a cleft palate and chiasmal damage producing visual field defects. He was found to have marked hypothalamic-pituitary dysfunction including deficiencies of growth hormone, thyrotropin, adrenocorticotropic hormone and gonadotropins, diabetes insipidus, adipsia with essential hypernatremia and poikilothermia. This man illustrates the importance of careful assessment of patients with craniofacial anomalies and outlines a simple investigational protocol.

Adult

Direct and indirect visual inputs to superficial layers of cat superior colliculus: a current source-density analysis of electrically evoked potentials.

1. The spatiotemporal pattern of visual inputs to the stratum griseum superficiale (SGS) and stratum opticum (SO) of the cat superior colliculus (SC) has been determined by an analysis of the current sinks occurring during postsynaptic activity following stimulation of each optic nerve (ON) and the optic chiasm (OX). Electrolytic lesions were used to determine the locations of the five major current sinks. 2. Direct SC afferents from the contralateral ON induced three current sinks whose maxima were located a) in the upper part of the SGS, b) in the middle part of the SGS, and c) in the lower part of the SGS and upper part of the SO. These three sinks were generated by three afferent fiber groups conducting in the optic nerve with modal and maximum velocities, respectively, of a) 4 and 5 m/s (slow W-group), b) 7 and 10 m/s (fast W-group), and c) 32 and 43 m/s (Y-group). 3. Indirect SC inputs from the contralateral ON via the ipsilateral visual cortex were identified by comparing the pattern of current sinks generated by OX stimulation before and after cortical ablation. The most prominent and fastest indirect sink (Y-group) was found in ;the lower half of the SGS and uppermost part of the SO. Low-amplitude, long-latency indirect current sinks were also found in the upper and lower thirds of the SGS. 4. The principal conclusions of this report are first, that the SGS is divisible into three physiologic regions according to the spatiotemporal pattern of excitatory synaptic activity generated by the afferent inputs and second, that there is a spatiotemporal matching of the direct collicular afferents from the contralateral retina and the indirect retinal afferents relaying through the ipsilateral visual cortex.

Animals

Mechanisms of experience dependent self-organization of neuronal assemblies in the mammalian visual system.

Neuronal activity and hence sensory signals serve as a shaping factor in the development of the structural and functional organization of the mammalian visual cortex. The electrical responses of cortical neurons control the consolidation and repression of interneuronal connections. The algorithms of this activity dependent selection process closely resemble those proposed by Hebb for adaptative synaptic connections. These local modifications depend in addition on internally generated gating signals. The latter exert a "now print" function by controlling Hebbian modifications as a function of the animal's central state. These permissive gating signals are related to mechanisms which control arousal and visual attention. Evidence as available which suggests that the activation of voltage dependent Ca++ -channels in the dendrites of cortical neurones is the trigger signal for a Hebbian modification. The permissive gating signals appear to control the probability of Ca++ -channel activation. It is concluded that these activity-dependent modifications of neuronal connectivity have an function. They are capable of developing assemblies of cooperating neurones by specifying according to functional criteria which neurones should interact with each other.

Adaptation, Physiological