Search PubMed⌕ Search

Biomedical subjects

G Sandner

Publications and source records attributed to G Sandner.

53 records · Page 3Linked to original sources

Effects of unilateral microinjections of GABAergic drugs into the inferior colliculus on auditory evoked potentials and on audiogenic seizure susceptibility.

Alteration of GABAergic neurotransmission within the inferior colliculus (IC) appears to be involved in the generation of the audiogenic seizure (AGS) susceptibility. In the present study, we provide evidence indicating that this susceptibility may result from IC neuronal hyperexcitability to sound induced by a decreased GABAergic inhibition. In a first experiment, a unilateral microinjection of bicuculline, a GABAa antagonist, into the IC of normal rats increased the amplitude of the collicular auditory evoked potential, while the microinjection of THIP, a GABAa agonist, decreased this response. In a second experiment, a unilateral microinjection of bicuculline into the IC induced AGS susceptibility in normal rats.

Acoustic Stimulation↗

[The extent and quality of intensive therapy measures in psychiatry].

An epidemiological study considered all new admissions that were the subject of intensive therapy in three Leipzig clinics from October 1, 1983 to September 30, 1984, comparing them with a randomly selected control group. From a total of 1,928 admissions, 314 underwent intensive therapy, 46 of these under the intensive therapist (anesthetist, internist, surgeon). Indications arising out of intensive medicine resulted in the transfer of 1.2% of all admissions to other institutions. Extent and quality of the intensive measures was in general judged to be good.

Adolescent↗

Spike trains in rat periaqueductal gray depend on the stochastic properties of interacting electrical stimulation trains.

Spike trains flowing into the periaqueductal gray (PAG) might be discriminated from one another by PAG neurons on the basis of the distribution or sequence of their respective interspike intervals. The various sequences of interspike intervals characteristic of spontaneous PAG unit activities were assessed in a preliminary experiment. These sequences were then simulated by means of appropriate mathematical functions. These functions allowed the production of stimulation trains that were applied to two PAG sites to induce spike trains with similar sequences in order to reveal the sensitivity of PAG neurons to the stochastic structure of afferent spike trains. We placed emphasis on parameters of the spike train that proved to be altered independently of any alteration of the corresponding parameters in the stimulation train. The mean pulse rate is the simplest example of such a parameter as it was never altered in the stimulation train. Alterations of either the distribution or sequence of pulses in the stimulation train were found to affect the mean discharge rate in a number of cases (30-40% of the cases). Despite their moderate degree (20-30% mean rate alteration) such differential effects could correspond to stimulation-induced differential behavioral effects as was shown in a previous study. Furthermore, a specific dependence of the generated spike trains on the sequential structure of the stimulation train was observed in some cases when appropriate stimulation trains were simultaneously applied to another PAG stimulation site. This fact is worth considering in relation to the integrative function of the PAG neuronal network.

Action Potentials↗

Mapping of jumping, rearing, squealing and switch-off behaviors elicited by periaqueductal gray stimulation in the rat.

Rats readily learn to escape from a stimulation applied to most mesencephalic periaqueductal gray (PAG) sites. In the present study, we tried to find out to what extent the differential effects induced by such stimulations actually reflect the existence of intraPAG functional subdivisions. To that end, a row of five electrodes was implanted into the PAG of each of 29 rats. Two kinds of effects were analyzed, the stimulation-elicited overt behaviors and the generalization of switch-off responding from one stimulation site to the others. Further, switch-off latency versus interpulse interval (IPI) relationships were established and both the threshold IPIs and the ceiling switch-off latencies were determined. The most commonly elicited behaviors (jumping, rearing and squealing) as well as the threshold IPIs and the ceiling switch-off latencies were mapped within the PAG. Switch-off behavior was elicited from all the stimulation sites studied. However, in the dorsal PAG the switch-off latency was found to decrease more steeply with decreasing IPI than it did in the ventral PAG. Switch-off generalization was less frequently observed between dorsally located stimulation sites. Jumps were most often elicited from dorsally and rostrally located PAG sites while squeals were more frequently elicited from the caudal part of the PAG and rearings from PAG subareas surrounding the aqueduct.

Animals↗

Unit activity alterations induced in the mesencephalic periaqueductal gray by local electrical stimulation.

In the framework of a series of investigations concerning the neural substrate of aversion, electrophysiological methods were used in order to specify, within the rat's periaqueductal gray (PAG), functional properties, viz. conduction velocity and refractory period, of PAG neurons already assessed in previous studies by means of behavioral methods, and to gather data on their local synaptic relationships. Unit activities were recorded from the periaqueductal gray with the aim of analyzing those alterations that would be induced by locally applying an electrical stimulation with parameters shown to elicit escape behavior. An implanted row of electrodes allowed the application of a stimulation to several sites aligned along a mediolateral or a rostrocaudal axis through the periaqueductal gray. The results indicate that an electrical stimulation applied to the periaqueductal gray may induce its effects through the activation of a number of dendrites and many slow conducting fibers running in a great variety of directions and branching within the periaqueductal gray. Their refractory period was surprisingly low (0.6 ms) for slow conducting fibers (below 1 m/s). The local circuitry appears to include many inhibitory connections. Their organization is assumed to be partly recurrent. Stimulation-induced inhibition becomes predominant when the stimulation is moved away from the recorded neuron along the mediolateral axis, but not along the rostrocaudal axis.

Animals↗

A neuropharmacological study of the periventricular neural substrate involved in flight.

This paper reviews results obtained in experiments concerning the neurochemical characteristics of the substrate involved in the control of flight reactions and the induction of aversive effects in the rat. These experiments investigated the behavioural effects produced by microinjecting into the periaqueductal grey matter (PAG) or the medial hypothalamus (MH) compounds known to interfere with the functioning of some neurotransmitter systems known to exist in these structures. The data obtained show that: the activity of the substrate involved in the production of flight reactions is tonically inhibited by the release of GABA (gamma-aminobutyric acid); the behavioural reactions produced by microinjecting GABA antagonists can be clearly distinguished, depending on whether such drugs were injected into the PAG or the MH, despite the fact that jumps were produced from either level; behavioural effects, comparable to some extent to those produced by microinjections of GABA antagonists, can be obtained by injecting drugs which act on non-GABAergic neurochemical substrates, namely opioidergic or cholinergic systems; and behavioural effects, comparable to those produced by injecting GABA antagonists into the PAG, can be obtained by injecting such drugs into various sites located in other parts of the tectum such as the inferior colliculus or adjacent structures.

Animals↗

Effects of hypothalamic lesions on central gray stimulation induced escape behavior and on withdrawal reactions in the rat.

The effects of unilateral--medial or lateral--hypothalamic lesions were studied with regard to both switch-off (i.e., escape) responding induced by central gray (CG) stimulation and responsiveness of the same animals to peripherally-applied electrical or thermal stimulation. Medial hypothalamic (MH) lesions were found to reduce--but not abolish--the efficiency of CG stimulations applied on the side of the MH lesion, while the efficiency of contralaterally applied CG stimulations remained unchanged. Furthermore, such lesions enhanced the responsiveness to peripheral nociceptive stimuli on whatever body side they were applied. Lateral hypothalamic lesions were found to only slightly--or not at all--affect the efficiency of CG stimulations, while they enhanced the responsiveness to peripheral nociceptive stimuli on either side of the body. These results suggest that the hypothalamus does not exert a univocal control over both centrally induced escape behavior and peripherally induced withdrawal reactions.

Animals↗

Effects of dorsal raphe stimulation on escape induced by medial hypothalamic or central gray stimulation.

Electrical stimulation of the ventral part of the mesencephalic central gray affects escape responding induced by stimulation of either the medial hypothalamus (MH) or dorsal central gray (CG) in the rat. The sign and magnitude of the effect appeared to depend on the following factors: (1) The location of the site stimulated in the ventral central gray and the intensity of the stimulation. A stimulation of the dorsal raphe nucleus (DR) which induced a marked rewarding and a low aversive effect reliably suppressed MH or CG induced escape. Stimulation of sites located at the boundary between DR and central gray enhanced escape at low intensities and suppressed it at higher intensities. When located more laterally in the ventral central gray, the stimulation induced less rewarding and more marked aversive effects and it reliably enhanced MH or CG induced escape. (2) The kind of stimulation applied (monopolar or bipolar). (3) The location of the site (MH or CG) from which the stimulation-induced escape responses were obtained.

Animals↗

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

The activity of central gray (CG) neurons was previously shown to be affected by medial hypothalamic (MH) stimulation, and the discharge rate alterations were found to be often closely correlated with the vigor of the stimulation-induced escape responses. Since MH stimulation induces not only escape responses but also approach responses, this allowed a further investigation of the degree of specificity of the correlation between stimulation-induced neuronal activity and escape responses. Out of 129 CG units studied (in 39 rats), 26 clearly responded to the MH stimulation. When the stimulation parameters were varied, the mean discharge rate alterations of 9 units located in the dorsal part of the mesencephalic CG proved to be closely correlated exclusively with the alterations that affected the stimulation-induced escape responses. Furthermore, the variation of the most frequent interspike interval (modal ISI) proved to be closely correlated with the variation of the escape response in 3 instances in which the mean discharge rate showed no such correlation. In a few instances (2 units located much more ventrally, the spike rate alterations were closely correlated only with the alterations that affected the approach responses. 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.

Animals↗

Distribution of GABA in the periaqueductal gray matter. Effects of medial hypothalamic lesions.

Gas chromatography and chemical ionization mass spectrometry were used in order to measure the GABA (gamma-aminobutyric acid) concentration in a series of successive horizontal slices of the mesencephalic periaqueductal gray (CG) as well as in a series of successive frontal CG slices in the rat. Along the dorso-ventral axis, the GABA concentration (3.5-7 microgram/mg protein) was found first to increase and then to decrease, a maximum concentration being found at the level of the aqueduct. In contrast, no concentration gradient was found along the caudo-rostral axis. In an additional experiment, the medial hypothalamus (MH) was lesioned on one side and the effect of such a unilateral MH lesion on the caudo-rostral distribution of GABA was investigated. Fifteen days after performing the lesion, a graded decrease in GABA concentration--with a maximum in the rostral CG--was found to occur mainly on the lesioned side.

Animals↗

Escape and approach induced by brain stimulation: a parametric analysis.

The study reported pursued two general aims: (a) to find out whether a brain-stimulation-induced escape response results from the bringing into play of similar mechanisms irrespective of whether the stimulation is applied to a site located in the mesencephalic central gray (CG), in the medial hypothalamus (MH) or in the lateral hypothalamus (LH); and (b) to verify whether escape and approach that can be induced by stimulating one and the same hypothalamic site result from a combined activation of two distinct neuronal systems, by means of specifying some of their functional characteristics that would possibly allow differentiation between them. Three experiments were carried out using a situation (shuttle-box) that allowed the measurement, for each given brain site, of both the time for which the rat underwent the stimulation before interrupting it (stimulation time, st., corresponding to an escape latency) and the time for which the animal remained non-stimulated before eventually restarting the stimulation himself (non-stimulation time, nst, corresponding to an approach latency). The following stimulation parameters were varied: the pulse duration (D), the stimulation intensity (I) and the interpulse interval (IPI = 1/stimulation frequency), i.e. the time interval that separated the beginning of a stimulating pulse from the beginning of the next one. The results obtained suggest the following. (1) Some of the mechanisms implicated in the elaboration of an escape response are similar irrespective of whether escape is induced by stimulating a site located in the CG, in the MH or in the LH.

Animals↗

Central gray and medial hypothalamic stimulation: correlation between escape behavior and unit activity.

A chronic experiment and an acute one were carried out in the same rat in order to get information on the neuronal events correlated with the escape latency (EL) induced by an electrical stimulation in the mesencephalic central gray (CG) or in the medial hypothalamus (MH). Escape latencies as well as unitary MH and CG neuronal responses (104 units in 25 rats) were studied as functions of the intensity and the pulse duration of a 50 pulses/sec stimulation train. The CG and/or the MH neuronal firing rate was either synchronized or diffusely altered, either inhibited or activated, by the CG or the MH stimulations. Many neuronal firing rate alterations were highly correlated with the escape speed (ES = 1/EL) induced by the same stimulation. Intensity duration trade-off functions were computed from both the EL and the unit recordings. Chronaxie determinations were performed from these data: the behaviorally determined chronaxies did not differ from the unitary ones (limit values: 0.05-0.42 msec). The discussion bear on the possible role of the observed neuronal alterations induced by CG or MH stimulations in relation to their behavioral effects.

Animals↗

Differential effect of free intake versus oral perfusion of sucrose in conditioned taste aversion in rats.

Five experiments were designed to investigate LiCl-induced conditioned taste aversion (CTA) obtained in rats whether after free intake of a sucrose solution (active mode) or after forced administration through an intraoral cannula (passive mode). It was found in Experiment 1 that actively conditioned rats showed a slower extinction rate as revealed by repeated two-bottle tests (active testing) as opposed to passively conditioned ones. As these rats underwent a mode change between conditioning and testing, the differential extinction rate might have arisen from this change inducing a generalization decrement effect or acting as a contextual shift. In Experiment 2, no evidence for any generalization decrement was found. The possibility that the mode of sucrose delivery could have contextual properties in CTA through a "renewal test" after extinction and a latent inhibition experiment was further tested in Experiments 3 and 4. When active testing followed passive extinction, a CTA was afresh obtained in rats actively conditioned in active conditions. Latent inhibition was attenuated in rats preexposed in passive conditions and conditioned in active conditions (i.e., when a shift in the drinking mode occurred between preexposure and conditioning). In Experiment 5, intraoral perfusion was used in both groups. The active subjects had to nose poke for intraoral administration of sucrose. The yoked control passive subjects received simultaneously the same amount of sucrose. The levels of CTA differed also from the actively to the passively conditioned subjects. Results are discussed in terms of free intake activity acting as a contextual modulator of CTA.

Animals↗

[Prenatal manifestation of a congenital glioblastoma - Case report].

In prenatal ultrasound screening, internal hydrocephalus and intracranial bleeding of the fetus are considered as primary diagnostic signs for a congenital brain tumor. We report the prenatal sonographic diagnosis of a congenital glioblastoma due to acute fetal internal hydrocephalus in the 37th week of gestation. After birth, the tumor's hyperechoic appearance on ultrasound was indistinguishable from intracranial bleeding. Diagnosis of a congenital glioblastoma (WHO stage IV) was confirmed by subtotal tumorectomy in the 9th week of life. In the international literature, only 6 cases of prenatally diagnosed glioblastomas have so far been reported, all of which associated with sonographically diagnosed fetal hydrocephalus. Further sonographic signs for a brain tumor are the tumor mass itself, a polyhydramnion, enlarged biparietal diameters and head circumferences, as well as suspected intracranial bleeding.

Adult↗

Myoclonic and tonic seizures elicited by microinjection of cholinergic drugs into the inferior colliculus.

The inferior colliculus (IC) is the initiation site in the neuronal network for the epileptic audiogenic seizure (AGS). The present study investigates the effects of alteration of IC cholinergic transmission on the elicitation of epileptic seizures. Unilateral microinjections of carbachol (3 and 6 micrograms/0.2 microliter) into the IC elicited intense locomotor activity, contraversive rotations and myoclonic seizures. This result indicates that the IC is the initiation site for the induction of myoclonic seizures and suggests that these myoclonic seizures may result from activation of m1 muscarinic receptors. Microinjections of the nicotinic-muscarinic antagonist, gallamine (2 and 6 micrograms/0.2 microliter), into the IC induced AGS susceptibility. However, microinjections of muscarinic antagonists, atropine (15 micrograms/0.2 microliter) and scopolamine (12 and 20 micrograms/0.2 microliter), or the nicotinic antagonist, hexamethonium (12 and 20 micrograms/0.2 microliter), into the IC have no effect. Gallamine-induced AGS susceptibility may result from a selective blockade of m2 muscarinic receptors.

Acetylcholine↗