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Neuroanatomical correlates of penile erection evoked by photographic stimuli in human males.

机译:摄影刺激在男性男性中引起的阴茎勃起的神经解剖学相关性。

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The objective of this study was to identify the cerebral correlates of the early phase, and of low to moderate levels, of penile tumescence using for the first time a volumetric measure of the penile response. We hypothesized that (i) regions whose response had been found correlated with circumferential penile responses in previous studies would be identified with volumetric plethysmography and (ii) that other brain regions, including the amygdalae, would be found using the more sensitive volumetric measurement. In ten healthy males, functional magnetic resonance imaging (fMRI) was used to study brain responses to sexually stimulating photographs and to various categories of control photographs. Both ratings of perceived erection and penile plethysmography demonstrated an erectile response to the presentation of sexually stimulating photographs. Regions where the BOLD signal was correlated with penile volumetric responses included the right medial prefrontal cortex, the right and left orbitofrontal cortices, the insulae, the paracentral lobules, the right ventral lateral thalamic nucleus, the right anterior cingulate cortex and regions involved in motor imagery and motor preparation (supplementary motor areas, left ventral premotor area). This study suggests that the development of low levels of penile tumescence in response to static sexual stimuli is controlled by a network of frontal, parietal, insular and cingulate cortical areas and that penile tumescence reciprocally induces activation in somatosensory regions of the brain.
机译:这项研究的目的是首次使用体积测量的阴茎反应来确定早期和低度至中度水平的阴茎肿胀的大脑相关性。我们假设(i)在以前的研究中发现其反应与周围阴茎反应相关的区域将通过体积体积描记法进行识别,并且(ii)使用更灵敏的体积测量可以发现其他大脑区域,包括杏仁核。在十名健康男性中,功能磁共振成像(fMRI)用于研究大脑对刺激性照片和对各种对照照片的反应。感知勃起和阴茎体积描记法评分均显示出对性刺激照片呈现的勃起反应。 BOLD信号与阴茎体积反应相关的区域包括右内侧前额叶皮层,右和左眶额叶皮层,岛状,中央旁小叶,右腹外侧丘脑核,右前扣带回皮层和运动图像涉及的区域和运动准备(辅助运动区域,左腹前运动区域)。这项研究表明,响应于静态的性刺激,低水平的阴茎肿胀的发展是由额叶,顶叶,岛状和扣带状皮层区域的网络控制的,并且阴茎肿胀在大脑的体感区域相互诱导激活。

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