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16篇 您的检索式:作者名="Quilichini"
    题名 作者 年代 出处 被引量
1Histological and molecular classification of gliomas显示文摘Rev Neurol (Paris). 2008 June-July;164(6-7):505-515. Epub 2008 Jun 10.Gliomas are the most frequent tumors of the central nervous system. The WHO classification, based on the presumed cell origin,distinguishes astrocytic,oligodendrocytic and mixed gliomas. A grading system is based on the presence of the following criteria: in-Figarella-Branger D Colin C Coulibaly B Quilichini B Maues De Paula A Fernandez C Bouvier C 2008中国神经肿瘤杂志2008,6,2:3
2Hidden chromosomal abnormalities in pleuropulmonary blastomas identified by multiplex FISH显示文摘Quilichini B Andre N Bouvier C 2006BMC Cancer2006,6,:1
3Relationships between muscle type and some traits influencing veal colour显示文摘GUIGNOT F QUILICHINI Y RENERRE M 1992J Sci Food Agric1992,58,:1
4ATP Binding Cassette Transporter G26 is Required for Male Fertili- ty and Pollen Exine Formation in Arabidopsis Thaliana显示文摘Quilichini T D Friedmann M C Samuels A L 2010Plant Physio12010,154,:1
5ATP-binding cassette transporter G26 is required for male fertility and pollen exine formation in Arabidopsis显示文摘Quilichini T D Friedmann M C Samuels A L 2010Plant Physiology2010,154,2:1
6Predominant enhanc- ement of glucose uptake in astrocytes versus neurons during activati- on of the somatosensory cortex显示文摘Chuquet J Quilichini P Nimchinsky EA 2010Neurosci2010,30,15:1
7Predominant enhancement of glucose uptake in astrocytes versus neurons during activation of the somatosensory cortex显示文摘Julien Chuquet Pascale Quilichini Esther A Nimchinsky 0,,45:1
8In Vivo Recordings of Brain Activity Using Organic Transistors显示文摘Khodagholy D Doublet T Quilichini P 0,,:1
9Intrinsic circuit organization and theta-gamma oscillation dynamics in the entorhinal cortex of the rat 显示文摘Quilichini P Sirota A Buzsaki G 2010J Neurosci2010,30,11:1
10Hub GABA neurons mediate gamma-frequency oscillations at ietal- like event onset in the immature hippocampus显示文摘Quilichini PP Le Van Quyen M Ivanov A 2012Neuron2012,74,:1
11Semi-free radial forearm flap for head and neck reconstruction in vessel-depleted neck after radiotherapy or radical neck dissection显示文摘Quilichini J Benjoar MD Hivelin M 2012Microsm''- gery2012,32,4:1
12Septocutaneous gluteal artery perforator flap in lateral decubitus position for breast reconstruction显示文摘Quilichini J Hivelin M Matar N 2012Plast Reconstr Surg2012,129,2:1
13Peritonites post-operatoires d′origine colique显示文摘Frileux P Quilichini M A Cugnenc P H 1985Ann Chir1985,39,:1
14On the nature of seizure dynamics显示文摘Jirsa VK Stacey WC Quilichini PP 2014Brain2014,137,8:1
15An adjustable distractor for transverse maxillary distraction osteogenesis显示文摘Leyder P Wycisk G Quilichini J 0,,:1
16短暂性脱髓鞘导致长期认知障碍、髓鞘改变和神经网络同步缺陷显示文摘在成年大脑中,活动依赖性髓鞘可塑性是正确学习和记忆巩固所必需的。因此,髓鞘的丢失、改变,甚至细微的结构变更都会损害神经网络活动,导致功能障碍。在多发性硬化症中,虽然自发的髓鞘修复过程是可能的,但患者之间存在异质性。髓鞘修复有时会导致功能恢复,这通常在运动水平比在认知水平更明显。在铜宗处理的小鼠模型中,大量脑脱髓鞘随后发生自发且强烈的髓鞘再生。然而,重组髓鞘虽然具有功能,但可能不会表现出与发育髓鞘相同的形态特征,这可能会对神经网络的活动产生影响。基于此,本研究使用铜腙处理的小鼠模型来分析短暂性脱髓鞘对脑结构、功能和认知的长期影响。本研究结果表明,尽管脱鞘事件后存在髓鞘再生,但仍会导致长期认知障碍,例如空间工作记忆、社交记忆、认知灵活性和多动症的缺陷。这些缺陷与内侧前额叶皮质(m PFC)和海马体(HPC)髓鞘含量的减少以及结构髓鞘修饰有关,表明这些结构中的髓鞘再生过程可能不完善。在体电生理记录表明,脱髓鞘事件改变了HPC-mPFC活动的同步性,这对于记忆过程至关重要。总而言之,本研究数据表明,短暂脱髓鞘后的髓鞘修复过程不允许完全恢复皮质结构中的初始髓鞘特性。这些细微的变更改变了神经网络特征并导致小鼠长期认知缺陷。Océane Mercier Pascale P Quilichini Karine Magalon Florian Gil Antoine Ghestem Fabrice Richard Thomas Boudier Myriam Cayre Pascale Durbec 杜一星(编译) 2024神经损伤与功能重建2024,19,3:0
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