Prepulse inhibition decreases as startle reactivity habituates

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Prepulse-elicited startle in prepulse inhibition.

BACKGROUND Prepulse inhibition (PPI) has become a major experimental paradigm in the study of psychiatric disorders. In this study, a potential confound in measurement and interpretation of PPI, namely startle reactions to so-called "nonstartling" prepulses, was examined. METHODS Prepulses of 80, 85, and 90 dB(A) were presented on their own or followed by a pulse of 115 dB(A) (lead interval: ...

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On the influence of baseline startle reactivity on the indexation of prepulse inhibition.

Prepulse inhibition (PPI) of the startle reflex refers to the reduction of the reflexive startle response to an intense pulse stimulus when its presentation is shortly preceded by a weak prepulse stimulus. PPI is considered as a cross-species translational model of sensorimotor gating, and deficient PPI has been reported in a number of neuropsychiatric disorders. Although a part of the literatu...

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Background noise decreases both prepulse elicitation and inhibition of acoustic startle blink responding.

Prepulse inhibition of startle (PPI) has proved to be useful in distinguishing between schizophrenia patients and normal controls, although not all studies in this area find such group differences. One reason for this inconsistency may be the fact that some research labs present the startle eliciting and inhibiting stimuli over a steady background noise (70 dB), whereas others present stimuli i...

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Enhanced prepulse inhibition of startle using salient prepulses in rats.

Prepulse inhibition (PPI) of the startle reflex occurs when a non-startling stimulus is presented shortly prior to the startling stimulus. PPI is an operational measure for sensorimotor gating. PPI in humans is enhanced by attention, but there is no evidence yet for attentional modulation of PPI in animals. We here combined PPI and conditioned inhibition paradigms in order to investigate attent...

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Habituation and prepulse inhibition of acoustic startle in rodents.

The acoustic startle response is a protective response, elicited by a sudden and intense acoustic stimulus. Facial and skeletal muscles are activated within a few milliseconds, leading to a whole body flinch in rodents(1). Although startle responses are reflexive responses that can be reliably elicited, they are not stereotypic. They can be modulated by emotions such as fear (fear potentiated s...

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ژورنال

عنوان ژورنال: Psychophysiology

سال: 1997

ISSN: 0048-5772,1469-8986

DOI: 10.1111/j.1469-8986.1997.tb02388.x