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首页> 外文期刊>Biology of Sex Differences >Sex differences in the ability of corticostriatal oscillations to predict rodent alcohol consumption
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Sex differences in the ability of corticostriatal oscillations to predict rodent alcohol consumption

机译:皮质棘轮振荡预测啮齿动物消费能力的性差异

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Although male and female rats differ in their patterns of alcohol use, little is known regarding the neural circuit activity that underlies these differences in behavior. The current study used a machine learning approach to characterize sex differences in local field potential (LFP) oscillations that may relate to sex differences in alcohol-drinking behavior. LFP oscillations were recorded from the nucleus accumbens shell and the rodent medial prefrontal cortex of adult male and female Sprague-Dawley rats. Recordings occurred before rats were exposed to alcohol (n?=?10/sex?×?2 recordings/rat) and during sessions of limited access to alcohol (n?=?5/sex?×?5 recordings/rat). Oscillations were also recorded from each female rat in each phase of estrous prior to alcohol exposure. Using machine learning, we built predictive models with oscillation data to classify rats based on: (1) biological sex, (2) phase of estrous, and (3) alcohol intake levels. We evaluated model performance from real data by comparing it to the performance of models built and tested on permutations of the data. Our data demonstrate that corticostriatal oscillations were able to predict alcohol intake levels in males (p??0.01), but not in females (p?=?0.45). The accuracies of models predicting biological sex and phase of estrous were related to fluctuations observed in alcohol drinking levels; females in diestrus drank more alcohol than males (p?=?0.052), and the male vs. diestrus female model had the highest accuracy (71.01%) compared to chance estimates. Conversely, females in estrus drank very similar amounts of alcohol to males (p?=?0.702), and the male vs. estrus female model had the lowest accuracy (56.14%) compared to chance estimates. The current data demonstrate that oscillations recorded from corticostriatal circuits contain significant information regarding alcohol drinking in males, but not alcohol drinking in females. Future work will focus on identifying where to record LFP oscillations in order to predict alcohol drinking in females, which may help elucidate sex-specific neural targets for future therapeutic development.
机译:虽然雄性和雌性大鼠在其酒精使用模式中不同,但是关于神经电路活动的少量是已知的,这些活动是这种行为的这些差异。目前的研究用来了机器学习方法来表征当地潜在(LFP)振荡的性别差异,可能与酒精饮用行为的性别差异有关。从核心骨壳和成年女性和雌性Sprague-Dawley大鼠的啮齿动物内侧前甲醛皮质中记录了LFP振荡。在大鼠暴露于酒精之前发生录音(n?= 10 /性别?×2录录/大鼠)以及有限访问酒精的会话(n?=?5 /性?×5录录/大鼠)。在酒精暴露之前,还从每个雌性大鼠记录振荡。使用机器学习,我们建立了具有振荡数据的预测模型,以基于:(1)生物性,(2)阶段的溶解和(3)醇摄入水平进行分类。通过将其与数据的模型的性能进行比较,我们从真实数据中评估了模型性能。我们的数据表明,皮质棘状振荡能够预测雄性的酒精进气水平(P?<?0.01),但不在女性中(P?= 0.45)。预测生物性别的模型和术语的模型的准确性与酒精饮用水平中观察到的波动有关;二分裂的女性比男性更多的酒精(P?= 0.052),而且与机会估计相比,雄性与二雌雌性模型具有最高的准确度(71.01%)。相反,Estrus中的女性喝了非常相似的醇对男性(p?= 0.702),而男性与雌性模型与机会估计相比具有最低精度(56.14%)。目前的数据表明,从皮质棘式电路记录的振荡含有关于雄性酒精饮用的重要信息,但不会在女性中饮用酒精。未来的工作将侧重于识别在何处录制LFP振荡,以预测女性的酒精饮酒,这可能有助于阐明性别特异性神经目标以用于未来的治疗发展。

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