Source Paper
Sensorimotor Gating in Larval Zebrafish
Harold A. Burgess, Michael Granato
Journal of Neuroscience • 2007
View Abstract
Control of behavior in the natural environment where sensory stimuli are abundant requires superfluous information to be ignored. In part, this is achieved through selective transmission, or gating of signals to motor systems. A quantitative and clinically important measure of sensorimotor gating is prepulse inhibition (PPI) of the startle response, impairments in which have been demonstrated in several neuropsychiatric disorders, including schizophrenia. Here, we show for the first time that the acoustic startle response in zebrafish larvae is modulated by weak prepulses in a manner similar to mammalian PPI. We demonstrate that, like in mammals, antipsychotic drugs can suppress disruptions in zebrafish PPI induced by dopamine agonists. Because genetic factors underlying PPI are not well understood, we performed a screen and isolated mutant lines with reduced PPI. Analysis of Ophelia mutants demonstrates that they have normal sensory acuity and startle performance, but reduced PPI, suggesting that Ophelia is critical for central processing of sensory information. Thus, our results provide the first evidence for sensorimotor gating in larval zebrafish and report on the first unbiased screen to identify genes regulating this process.
Sensory Acuity and Startle Performance Assessment
Objective: Evaluation of sensory acuity and baseline startle response performance in Ophelia mutant zebrafish larvae to assess normal sensory function and startle capabilities
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Protocol Steps
Assess Sensory Acuity
Evaluate sensory acuity in Ophelia mutant zebrafish larvae to establish baseline sensory capabilities
Note: This assessment determines whether mutants have normal sensory function
View evidence from paper
“Ophelia mutants demonstrates that they have normal sensory acuity and startle performance”
Measure Baseline Startle Response
Measure baseline startle response performance in Ophelia mutant larvae using acoustic stimuli
Note: Baseline startle performance is compared to control larvae to establish normal motor response capabilities
View evidence from paper
“Ophelia mutants demonstrates that they have normal sensory acuity and startle performance, but reduced PPI”
Analyze Sensorimotor Gating
Evaluate prepulse inhibition of the startle response to assess sensorimotor gating function
Note: Ophelia mutants show reduced PPI despite normal sensory acuity and startle performance, suggesting deficits in central processing
View evidence from paper
“reduced PPI, suggesting that Ophelia is critical for central processing of sensory information”