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伏隔核经射频或多巴胺耗竭性损伤后雄性大鼠的性行为

Sexual behavior in male rats after radiofrequency or dopamine-depleting lesions in nucleus accumbens.

作者信息

Liu Y C, Sachs B D, Salamone J D

机构信息

Department of Psychology, and Biobehavioral Sciences Graduate Degree Program, University of Connecticut, Storrs 06269-1020, USA.

出版信息

Pharmacol Biochem Behav. 1998 Jun;60(2):585-92. doi: 10.1016/s0091-3057(98)00022-7.

Abstract

Considerable neurochemical evidence links dopamine (DA) in nucleus accumbens (NAcc) to male sexual behavior. The present experiments were conducted to extend this information to the male's sexual response to remote stimuli from estrous female (noncontact erection; NCE). Male rats were tested for copulation and NCE after either 6-hydroxydopamine (6-OHDA) or radiofrequency (RF) lesions in NAcc). Males with an average 78% depletion of DA in NAcc had a lower incidence of NCE, longer latency to display NCE, and fewer erections. DA-depleted males also had less locomotor activity after injections of d-amphetamine, and reductions in apomorphine-induced yawning, but a normal incidence of penile erection. Males with RF lesions of the NAcc had longer NCE latencies. All males copulated to ejaculation after either 6-OHDA or RF lesions with little or no deficit, although the 6-OHDA-treated males had longer intromission latencies. The NCE deficit supports the hypothesized role of NAcc DA in arousal processes in responding to remote cues from estrous females. The minimal effect of lesions on copulation suggests that the presence of additional proximal stimulation during copulation may overcome the deficits induced by DA depletions or lesions in NAcc.

摘要

大量神经化学证据表明,伏隔核(NAcc)中的多巴胺(DA)与雄性性行为有关。本实验旨在将这一信息扩展到雄性对发情期雌性远距离刺激的性反应(非接触性勃起;NCE)。对雄性大鼠进行伏隔核6-羟基多巴胺(6-OHDA)或射频(RF)损伤后,测试其交配和非接触性勃起情况。伏隔核中多巴胺平均耗竭78%的雄性大鼠,非接触性勃起的发生率较低,出现非接触性勃起的潜伏期较长,勃起次数较少。多巴胺耗竭的雄性大鼠在注射右旋苯丙胺后运动活性也较低,阿扑吗啡诱导的打哈欠次数减少,但阴茎勃起发生率正常。伏隔核接受射频损伤的雄性大鼠非接触性勃起潜伏期较长。尽管接受6-OHDA治疗的雄性大鼠插入潜伏期较长,但所有雄性大鼠在接受6-OHDA或射频损伤后均能交配射精,且几乎没有缺陷。非接触性勃起缺陷支持了伏隔核多巴胺在对发情期雌性远距离线索的唤醒过程中所起的假设作用。损伤对交配的影响最小,这表明交配过程中额外近端刺激的存在可能克服伏隔核多巴胺耗竭或损伤所诱导的缺陷。

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