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Oscillatory motion of the normal cervical spinal cord   总被引:2,自引:0,他引:2  
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Several studies have shown a relationship between high testosterone and violent aggressive behaviour. The general aim of this study was to gain knowledge of the importance of testosterone in suicide attempters. Testosterone in cerebrospinal fluid (CSF) was analysed in men with a recent suicide attempt, diagnostically subdivided into groups according to DSM-III-R axis I and II diagnosis and mode of suicidal behaviour. In general, our patients had lower CSF testosterone levels than aggressive violent patients in other studies. Patients with depression NOS or dysthymia showed higher CSF testosterone levels than the rest. Significant positive correlation between testosterone and irritability or a negative correlation with social desirability was found in diagnostic subgroup of patients, specifically axis II, cluster B personality disorders. The results suggest that suicide attempts may be mediated by different biological variables than aggression.  相似文献   
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We examined the effects of early rearing experience on the development of dominance status in 53 juvenile (age 3) and then in 38 adult (ages 5-8) rhesus macaques. Based on previous research investigating the behavioral outcomes of nursery-rearing, we predicted that mother-reared (MR) monkeys would outrank peer-only reared (PR) monkeys, which would in turn outrank surrogate/peer-reared (SPR) subjects. Juvenile MR and PR subjects did not differ in ranks, but monkeys from both rearing backgrounds outranked SPR cage-mates at age 3. Independent of rearing condition, high-ranking juveniles gained the most weight between ages 1-3, suggesting that low status may be associated with decreases in early weight gain. Adult MR subjects outranked both PR and SPR subjects, with PR animals occupying intermediate ranks. These results indicate that impoverished early experiences, such as adult absence and limited social interaction, are useful predictors of future social success in rhesus macaques.  相似文献   
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To better understand population phenomena in thalamocortical neuronal ensembles, we have constructed a preliminary network model with 3,560 multicompartment neurons (containing soma, branching dendrites, and a portion of axon). Types of neurons included superficial pyramids (with regular spiking [RS] and fast rhythmic bursting [FRB] firing behaviors); RS spiny stellates; fast spiking (FS) interneurons, with basket-type and axoaxonic types of connectivity, and located in superficial and deep cortical layers; low threshold spiking (LTS) interneurons, which contacted principal cell dendrites; deep pyramids, which could have RS or intrinsic bursting (IB) firing behaviors, and endowed either with nontufted apical dendrites or with long tufted apical dendrites; thalamocortical relay (TCR) cells; and nucleus reticularis (nRT) cells. To the extent possible, both electrophysiology and synaptic connectivity were based on published data, although many arbitrary choices were necessary. In addition to synaptic connectivity (by AMPA/kainate, NMDA, and GABA(A) receptors), we also included electrical coupling between dendrites of interneurons, nRT cells, and TCR cells, and--in various combinations--electrical coupling between the proximal axons of certain cortical principal neurons. Our network model replicates several observed population phenomena, including 1) persistent gamma oscillations; 2) thalamocortical sleep spindles; 3) series of synchronized population bursts, resembling electrographic seizures; 4) isolated double population bursts with superimposed very fast oscillations (>100 Hz, "VFO"); 5) spike-wave, polyspike-wave, and fast runs (about 10 Hz). We show that epileptiform bursts, including double and multiple bursts, containing VFO occur in rat auditory cortex in vitro, in the presence of kainate, when both GABA(A) and GABA(B) receptors are blocked. Electrical coupling between axons appears necessary (as reported previously) for persistent gamma and additionally plays a role in the detailed shaping of epileptogenic events. The degree of recurrent synaptic excitation between spiny stellate cells, and their tendency to fire throughout multiple bursts, also appears critical in shaping epileptogenic events.  相似文献   
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Background: Acute and chronic tolerance, as well as locomotor sensitization, have been linked to ethanol intake. This study examined the change in response between 2 acutely administered doses of ethanol in adolescent rhesus macaques, with the objective of investigating rapid tolerance and locomotor sensitization to the behavioral effects of ethanol, and whether these phenomena are related to voluntary ethanol consumption in nonhuman primates. Methods: Rhesus macaques (n = 109, 42 males, 67 females) were administered 2 sequential intravenous doses of ethanol (2.2 g/kg for males, 2.0 g/kg for females) separated by a period of 5 to 30 days. Following each injection, subjects underwent a 30‐minute behavior assessment. Behavioral data were summarized using factor analysis, and compared between the 2 doses using repeated measures ANOVA. The relationship between behavioral response measures and the number of days between doses was analyzed using regression analyses. Following the second ethanol dose, subjects were given free access to an aspartame‐sweetened 8.4% ethanol solution for 1 hour a day for 4 weeks. Percent change in behavioral response measures from dose 1 to dose 2 was analyzed for associations with ethanol consumption using multiple regression analyses. Results: Factor analysis yielded 3 factors: ataxia, stimulation, and jumping. From dose 1 to dose 2 there was a significant decrease in ataxia and a significant increase in stimulation. Peak blood ethanol concentration did not differ between doses. There were no significant associations between the number of days between doses and the magnitude of change in response for any of the behavioral measures. Percent change in stimulation from dose 1 to dose 2 was positively associated with subsequent oral ethanol consumption only in females tested in a social setting. Conclusions: Adolescent rhesus macaques develop rapid tolerance to the motor‐impairing effects of alcohol, while at the same time developing locomotor sensitization. These changes in response are not necessarily short lived, and may persist for some time following the first ethanol dose. Clear and consistent associations between rapid tolerance and locomotor sensitization and ethanol intake levels have yet to be demonstrated, however.  相似文献   
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BACKGROUNDDirect-acting antiviral (DAA) therapy regimens are highly effective at eliminating hepatitis C virus (HCV) infection but rates of sustained virologic response (SVR) are lower in patients with decompensated cirrhosis or hepatocellular carcinoma. Since many of these patients will be referred for liver transplant, they will require retreatment after transplantation. Sofosbuvir/velpatasvir/voxilaprevir (SOF/VEL/VOX) is recommended by guidelines as the preferred regimen to treat HCV in DAA-experienced patients following liver transplant however there is limited data.CASE SUMMARYWe present the cases of six liver transplant recipients who had previous treatment failure with sofosbuvir-based DAA therapy prior to transplantation and who then received SOF/VEL/VOX after transplant.CONCLUSIONThis case series demonstrate the real-world efficacy and safety of SOF/VEL/VOX in the post liver transplant setting. Treatment was successful with all patients achieving SVR, it was well tolerated, and there were minimal drug-drug interactions with their immunosuppressants.  相似文献   
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The neural integration of afferent inputs evoked by spatiotemporally distributed sensory stimuli is a critical step in the formation of coherent and continuous perceptual representations. Integration mechanisms in various systems include linear and nonlinear summation of sensory responses. One well-known example in the rat barrel system is the suppressive interaction between responses to the consecutive deflection of neighboring whiskers. The mechanism underlying cross-whisker suppression has long been postulated to rely on intracortical postsynaptic inhibition, although this hypothesis has been challenged by recent reports. Here we show, using intracellular and extracellular recordings in vivo, that cross-whisker suppression occurs in the absence of cortical activity. Instead, suppression arises from local circuit operations at multiple levels of the subcortical afferent pathway and is amplified by the nonlinear transformation of synaptic input into spike output in both the thalamus and cortex. Because these cellular processes are common to neural circuits subserving visual and auditory modalities, we propose that the suppressive mechanisms elucidated here are a general property of thalamocortical sensory systems.  相似文献   
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