ホーム › PubMed Lab 🤖 自分の AI で使う ⭐ 保存した論文

🔬 PubMed Lab

日本語で入力するだけで、PubMed の英語論文を検索できるリサーチアシスタントです。
卒論・研究テーマ探し、興味のある論文を効率よく見つけられます。

「マウスの性行動研究が解き明かす脳と行動のメカニズム」の検索結果

1,033 件中 10 件を表示 (4570 ms) · ⭐ 保存した論文

AI が生成した英語クエリを見る
(sexual behavior[MeSH] OR mating behavior OR reproductive behavior) AND (mice[MeSH] OR mouse) AND (brain[MeSH] OR neural mechanisms OR neurobiological)

💡 マウスの性行動・交尾行動と脳・神経メカニズムを組み合わせた検索式を構築しました

🎓 卒論・修論テーマを AI が提案

この 5 本の論文を俯瞰して、あなたが実際に卒論・修論で研究できるテーマを 3 つ提案します。

残り 3 / 3 回 (今日)

📖 このサイトの解説記事から (日本語で読める)

PubMed Trivia が過去に取り上げた論文を日本語で解説している記事です。

🔍 PubMed の検索結果

  • Oxytocin neurons enable social transmission of maternal behaviour.

    Ioana Carcea, Naomi López Caraballo, Bianca J Marlin 他 · Nature · 2021

    Maternal care, including by non-biological parents, is important for offspring survival1-8. Oxytocin1,2,9-15, which is released by the hypothalamic paraventricular nucleus (PVN), is a critical maternal hormone. In mice, oxytocin enables neuroplasticity in the auditory cortex for maternal recognition of pup distress15. However, it is unclear how initial parental experience promotes hypothalamic sig…

    📄 PubMed で読む (PMID: 34381215)
  • Next-generation GRAB sensors for monitoring dopaminergic activity in vivo.

    Fangmiao Sun, Jingheng Zhou, Bing Dai 他 · Nature methods · 2020

    Dopamine (DA) plays a critical role in the brain, and the ability to directly measure dopaminergic activity is essential for understanding its physiological functions. We therefore developed red fluorescent G-protein-coupled receptor-activation-based DA (GRABDA) sensors and optimized versions of green fluorescent GRABDA sensors. In response to extracellular DA, both the red and green GRABDA sensor…

    📄 PubMed で読む (PMID: 33087905)
  • Inside the mind of an animal.

    Alison Abbott · Nature · 2020

    📄 PubMed で読む (PMID: 32782378)
  • Oxytocin enables maternal behaviour by balancing cortical inhibition.

    Bianca J Marlin, Mariela Mitre, James A D'amour 他 · Nature · 2015

    Oxytocin is important for social interactions and maternal behaviour. However, little is known about when, where and how oxytocin modulates neural circuits to improve social cognition. Here we show how oxytocin enables pup retrieval behaviour in female mice by enhancing auditory cortical pup call responses. Retrieval behaviour required the left but not right auditory cortex, was accelerated by oxy…

    📄 PubMed で読む (PMID: 25874674)
  • Neuropeptide therapeutics to repress lateral septum neurons that disable sociability in an autism mouse model.

    Amélie M Borie, Yann Dromard, Prabahan Chakraborty 他 · Cell reports. Medicine · 2024

    Confronting oxytocin and vasopressin deficits in autism spectrum disorders and rare syndromes brought promises and disappointments for the treatment of social disabilities. We searched downstream of oxytocin and vasopressin for targets alleviating social deficits in a mouse model of Prader-Willi syndrome and Schaaf-Yang syndrome, both associated with high prevalence of autism. We found a populatio…

    📄 PubMed で読む (PMID: 39423809)
  • Microbiota regulate social behaviour via stress response neurons in the brain.

    Wei-Li Wu, Mark D Adame, Chia-Wei Liou 他 · Nature · 2021

    Social interactions among animals mediate essential behaviours, including mating, nurturing, and defence1,2. The gut microbiota contribute to social activity in mice3,4, but the gut-brain connections that regulate this complex behaviour and its underlying neural basis are unclear5,6. Here we show that the microbiome modulates neuronal activity in specific brain regions of male mice to regulate can…

    📄 PubMed で読む (PMID: 34194038)
  • Prenatal exposure to paracetamol/acetaminophen and precursor aniline impairs masculinisation of male brain and behaviour.

    Anders Hay-Schmidt, Olivia T Ejlstrup Finkielman, Benjamin A H Jensen 他 · Reproduction (Cambridge, England) · 2017

    Paracetamol/acetaminophen (N-Acetyl-p-Aminophenol; APAP) is the preferred analgesic for pain relief and fever during pregnancy. It has therefore caused concern that several studies have reported that prenatal exposure to APAP results in developmental alterations in both the reproductive tract and the brain. Genitals and nervous system of male mammals are actively masculinised during foetal develop…

    📄 PubMed で読む (PMID: 28559473)
  • Integrating reproductive states and social cues in the control of sociosexual behaviors.

    Yuping Wang, Xinli Song, Xiangmao Chen 他 · Cell · 2025

    Female sociosexual behaviors, essential for survival and reproduction, are modulated by ovarian hormones and triggered in the context of appropriate social cues. Here, we identify primary estrous-sensitive Cacna1h-expressing medial prefrontal cortex (mPFCCacna1h+) neurons that integrate hormonal states with recognition of potential mates to orchestrate these complex cognitive behaviors. Bidirectio…

    📄 PubMed で読む (PMID: 40398420)
  • Maternally inherited peptides as strain-specific chemosignals.

    Hideto Kaba, Hiroko Fujita, Takeshi Agatsuma 他 · Proceedings of the National Academy of Sciences of the United States of America · 2020

    Most mammals rely on chemosensory cues for individual recognition, which is essential to many aspects of social behavior, such as maternal bonding, mate recognition, and inbreeding avoidance. Both volatile molecules and nonvolatile peptides secreted by individual conspecifics are detected by olfactory sensory neurons in the olfactory epithelium and the vomeronasal organ. The pertinent cues used fo…

    📄 PubMed で読む (PMID: 33199615)
  • Bidirectional control of social hierarchy by synaptic efficacy in medial prefrontal cortex.

    Fei Wang, Jun Zhu, Hong Zhu 他 · Science (New York, N.Y.) · 2011

    Dominance hierarchy has a profound impact on animals' survival, health, and reproductive success, but its neural circuit mechanism is virtually unknown. We found that dominance ranking in mice is transitive, relatively stable, and highly correlates among multiple behavior measures. Recording from layer V pyramidal neurons of the medial prefrontal cortex (mPFC) showed higher strength of excitatory …

    📄 PubMed で読む (PMID: 21960531)