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本文引用的文献

1
Formulation of a behavior system for sexual conditioning.性行为条件反射系统的构建。
Psychon Bull Rev. 1994 Dec;1(4):421-8. doi: 10.3758/BF03210946.
2
Photoperiodic control of the cloacal gland of the Japanese quail.光周期对鹌鹑泄殖腔腺的控制。
Science. 1967 Jul 14;157(3785):201-3. doi: 10.1126/science.157.3785.201.
3
The Japanese quail as a model system for the investigation of steroid-catecholamine interactions mediating appetitive and consummatory aspects of male sexual behavior.日本鹌鹑作为一种模型系统,用于研究介导雄性性行为求偶和交配方面的类固醇-儿茶酚胺相互作用。
Annu Rev Sex Res. 1998;9:96-176.
4
Anatomical and neurochemical definition of the nucleus of the stria terminalis in Japanese quail (Coturnix japonica).日本鹌鹑(Coturnix japonica)终纹床核的解剖学和神经化学定义。
J Comp Neurol. 1998 Jun 29;396(2):141-57.
5
Role of the archistriatal nucleus taeniae in the sexual behavior of male Japanese quail (Coturnix japonica): a comparison of function with the medial nucleus of the amygdala in mammals.
Brain Behav Evol. 1998;51(4):215-29. doi: 10.1159/000006539.
6
Importance of the medial amygdala in rat penile erection evoked by remote stimuli from estrous females.内侧杏仁核在动情期雌性大鼠远距离刺激诱发的阴茎勃起中的重要性。
Behav Brain Res. 1997 Nov;88(2):153-60. doi: 10.1016/s0166-4328(97)02287-0.
7
Induction of the Zenk protein after sexual interactions in male Japanese quail.
Neuroreport. 1997 Sep 8;8(13):2965-70. doi: 10.1097/00001756-199709080-00032.
8
Implications of immediate-early gene induction in the brain following sexual stimulation of female and male rodents.
Brain Res Bull. 1997;44(4):397-407. doi: 10.1016/s0361-9230(97)00219-0.
9
Testosterone, preoptic dopamine, and copulation in male rats.雄性大鼠的睾酮、视前区多巴胺与交配行为
Brain Res Bull. 1997;44(4):327-33. doi: 10.1016/s0361-9230(97)00211-6.
10
Thinking about networks in the control of male hamster sexual behavior.关于雄性仓鼠性行为控制中的神经网络研究
Horm Behav. 1997 Aug;32(1):40-5. doi: 10.1006/hbeh.1997.1403.

日本鹌鹑的求偶和性行为受视前内侧核各亚区的差异调节。

Appetitive and consummatory male sexual behavior in Japanese quail are differentially regulated by subregions of the preoptic medial nucleus.

作者信息

Balthazart J, Absil P, Gérard M, Appeltants D, Ball G F

机构信息

Laboratoire de Biochimie, Unité de Recherches en Neuroendocrinologie du Comportement, Université de Liège, B-4020 Liège, Belgique.

出版信息

J Neurosci. 1998 Aug 15;18(16):6512-27. doi: 10.1523/JNEUROSCI.18-16-06512.1998.

DOI:10.1523/JNEUROSCI.18-16-06512.1998
PMID:9698339
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6793208/
Abstract

Central testosterone aromatization is required for the activation of both appetitive (ASB) and consummatory (CSB) male sexual behavior in Japanese quail. There are two major clusters of aromatase immunoreactive (ARO-ir) cells in the rostral forebrain; these outline the nucleus preopticus medialis (POM) and the nucleus striae terminalis (BST). We investigated the role of these nuclei in the regulation of ASB and CSB. Appetitive male sexual behavior was measured with the use of a learned social proximity procedure that quantified the time spent by a male in front of a window with a view of a female who was subsequently released into the cage, providing an opportunity for CSB. Males first acquired the response and then received bilateral electrolytic lesions aimed at the POM or BST, followed by retesting for ASB and CSB. Brain sections were stained for ARO-ir, and lesions to the two ARO-ir cell groups were quantitatively characterized. Lesions damaging the POM completely abolished CSB and also significantly decreased ASB. Lesions of the rostral BST had no effect on ASB, but moderately decreased CSB. Detailed anatomical analysis revealed that lesions of a subdivision of the POM just rostral to the anterior commissure specifically impair CSB, whereas lesions that are more rostral to this subdivision induce a severe deficit in ASB. These data indicate that different subregions of the POM regulate ASB and CSB in a somewhat independent manner, whereas the BST is only important in the regulation of CSB.

摘要

在日本鹌鹑中,中枢睾酮芳香化作用对于激发雄性的求偶性行为(ASB)和交配性行为(CSB)都是必需的。在前脑嘴端有两个主要的芳香化酶免疫反应性(ARO-ir)细胞簇;它们勾勒出内侧视前核(POM)和终纹床核(BST)的轮廓。我们研究了这些核团在调节ASB和CSB中的作用。雄性求偶性行为通过一种习得的社会接近程序来测量,该程序量化雄性在面对一扇窗户时所花费的时间,透过窗户可以看到一只随后被放入笼中的雌性,从而为CSB提供机会。雄性首先习得这种反应,然后接受针对POM或BST的双侧电解损伤,随后重新测试ASB和CSB。对脑切片进行ARO-ir染色,并对两个ARO-ir细胞群的损伤进行定量表征。损伤POM会完全消除CSB,也会显著降低ASB。嘴端BST的损伤对ASB没有影响,但会适度降低CSB。详细的解剖学分析表明,紧靠前连合嘴端的POM一个亚区的损伤会特异性损害CSB,而比这个亚区更靠嘴端的损伤会导致ASB严重缺陷。这些数据表明,POM的不同亚区以某种独立的方式调节ASB和CSB,而BST仅在CSB的调节中起重要作用。