Paced Mating Behaviour Is Influenced by Duration of Female Post-Ejaculatory Interval

Author:

Corlett Allison G.,Frankl Paula R.,Akindona Funto A.B.,VanDerwerker Margriet E.,Meerts Sarah H.1

Affiliation:

1. Neuroscience Program and Department of Psychology, Carleton College , Northfield, MN , USA

Abstract

ABSTRACT Background Laboratory paradigms that enable the female rat to control the frequency and temporal distribution of sexual stimulation are well-suited to gaining knowledge about female sexual function; however, the variety of procedures used influence the specific behaviors exhibited by female rats and bring uncertainty into the conclusions that can be drawn. Aim In this study, we evaluated the effects of test parameters on the display of paced mating behavior in female rats to develop better preclinical models for exploring female sexual health. Methods Sexually experienced, estradiol- and progesterone-primed female rats were tested under paced mating conditions to determine whether sexual behavior differed as a function of number of male partners (1 or 3; Experiment 1), the time span between receipt of an ejaculation and the next intromission (ie, the post-ejaculatory interval or PEI; Experiment 2), or the duration of ejaculations (Experiment 3). Outcomes Contact-return latency, exit latency, and withdrawal duration after mounts, intromissions, and ejaculations. Results The shorter withdrawal latency after intromission and longer return latency after ejaculation observed in 30-minute paced mating tests is best attributed to the female’s PEI. The duration of the PEI is a specific factor that affects the display of paced mating behavior. Clinical Translation Understanding of neurobiological mechanisms and sensory factors influencing sexual behavior learned from these models can be applied to studies of human female sexual health. Strengths & Limitations Sexual motivation is indicated by analogous behaviors and supported by evolutionarily conserved systems in women and rats, meaning that animal models can be used to identify neurobiological mechanisms subserving these behaviors. Nonetheless, data related specifically to physiological effects of different mating paradigms are needed in future research. Conclusion Procedures that mimic naturalistic settings, and thus enable female sexual motivation to drive behavior, are apt for studies aimed at understanding mechanisms supporting female sexual function whereas artificially lengthening the interval between an ejaculation and subsequent intromission may provide a model to study female sexual dysfunction.

Funder

Carleton College

Publisher

Oxford University Press (OUP)

Subject

Urology,Reproductive Medicine,Endocrinology,Endocrinology, Diabetes and Metabolism,Psychiatry and Mental health

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