PubMed HealthSearch

PubMed · 7529024

Auditory integration training.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

1994. Auditory integration training.. https://pubmed.ncbi.nlm.nih.gov/7529024/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Convergent input from brainstem coincidence detectors onto delay-sensitive neurons in the inferior colliculus.

Responses of low-frequency neurons in the inferior colliculus (IC) of anesthetized guinea pigs were studied with binaural beats to assess their mean best interaural phase (BP) to a range of stimulating frequencies. Phase plots (stimulating frequency vs BP) were produced, from which measures of characteristic delay (CD) and characteristic phase (CP) for each neuron were obtained. The CD provides an estimate of the difference in travel time from each ear to coincidence-detector neurons in the brainstem. The CP indicates the mechanism underpinning the coincidence detector responses. A linear phase plot indicates a single, constant delay between the coincidence-detector inputs from the two ears. In more than half (54 of 90) of the neurons, the phase plot was not linear. We hypothesized that neurons with nonlinear phase plots received convergent input from brainstem coincidence detectors with different CDs. Presentation of a second tone with a fixed, unfavorable delay suppressed the response of one input, linearizing the phase plot and revealing other inputs to be relatively simple coincidence detectors. For some neurons with highly complex phase plots, the suppressor tone altered BP values, but did not resolve the nature of the inputs. For neurons with linear phase plots, the suppressor tone either completely abolished their responses or reduced their discharge rate with no change in BP. By selectively suppressing inputs with a second tone, we are able to reveal the nature of underlying binaural inputs to IC neurons, confirming the hypothesis that the complex phase plots of many IC neurons are a result of convergence from simple brainstem coincidence detectors.

Acoustic Stimulation

P300 and the thought disorder factor extracted by factor-analytic procedures in schizophrenia.

BACKGROUND: In order to clarify the clinical significance of P300 as a biologic marker that can reflect schizophrenic symptomatology, many previous studies have evaluated the relationship of P300 with the symptoms on the basis of a positive/negative dichotomy, but yielded inconsistent conclusions. Such a dichotomy has been criticized as being too reductionistic. Recently, most studies with factor-analytic procedures have extracted some symptom factors outside this dichotomy. Therefore, it is important to examine associations of P300 with the symptom factors extracted by these statistical analyses. METHODS: In the present study, the amplitudes of P300 were measured by using an auditory oddball paradigm for 73 schizophrenics whose psychopathology was assessed with the Positive and Negative Syndrome Scale (PANSS). RESULTS: The principal component analysis of the PANSS items revealed five factors labeled the thought disorder, negative, hostile/excitable, delusional/hallucinatory, and depressive factors. The score for the thought disorder factor correlated negatively with the amplitude of P300 recorded at Pz T5, and T6, but that for the other factors did not. CONCLUSIONS: These findings suggest that the reduction of P300 amplitudes recorded at the midline parietal and bilateral temporoparietal regions may be one of the electrophysiologic indices representing the thought disorder clinically observed in schizophrenia.

Acoustic Stimulation

Nicotinic receptor desensitization and sensory gating deficits in schizophrenia.

BACKGROUND: Nicotinic receptor dysfunction is a possible mechanism of the abnormal sensory gating observed in schizophrenia with the P50 auditory event-related potential. Although nicotinic receptors normally desensitize after activation by acetylcholine or nicotine, pathologically increased desensitization might cause receptor dysfunction in schizophrenia. To examine this possibility, central cholinergic neuronal activity was diminished by allowing schizophrenic patients to sleep briefly, after which they experienced a transient period of normal P50 gating, consistent with receptor resensitization during the absence of cholinergic stimulation. A critical test of the mechanism is whether this resensitization is blocked by concurrent administration of nicotine, which would provide continuous receptor stimulation. METHODS: Six schizophrenic patients repeated the sleep experiment during nicotine exposure from a dermal patch, in a double-blind, placebo-controlled design. RESULTS: The normalization of P50 gating immediately postsleep was replicated in the placebo arm, but this effect was decreased in all six patients during exposure to nicotine. CONCLUSIONS: The results suggest that nicotinic receptor desensitization is responsible for the loss of P50 gating in schizophrenia.

Acoustic Stimulation