Why the study?
Does an acoustic startle stimulus affect heart rate and autonomic activation differently in preweanling versus adult rats?
Does an acoustic startle stimulus affect heart rate and autonomic activation differently in preweanling versus adult rats?
Acoustic startle stimuli elicit age-dependent autonomic and cardiac responses in rats, with adults shifting to sympathetic-driven tachycardia upon repeated exposure while preweanlings maintain parasympathetic-driven bradycardia.
Rat autonomic responses to startle should not guide human care; leaves open whether similar age-dependent patterns exist clinically.
The purpose of this research was to study the cardiac response of preweanling and adult rats to 10 presentations of an acoustic startle stimulus (0 ms rise time, 100 ms, 130 dB, white noise stimulus). The first presentation of the startle stimulus produced a decrease in heart rate (HR) at both ages. With continued stimulus presentations, the response shifted to tachycardia in the adults but remained bradycardia in the preweanlings. Pharmacological analysis revealed that the startle stimulus activated only the parasympathetic system in the preweanling rats on all 10 trials. In contrast, the startle stimulus produced coactivation of the parasympathetic and sympathetic systems in the adults on the first trial, with the parasympathetic system predominating, and solely sympathetic activation on later trials. These results are discussed in terms of current psychophysiological models of (a) the cardiac response to startle stimuli and (b) autonomic space.
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Richardson et al. (1996) studied this question.
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