发表一篇学和医学成像类SCI论文
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Abstract:
:The prethalamic eminence (PThE) is the most dorsal subdomain of the prethalamus, which corresponds to prosomere 3 (p3) in the prosomeric model for vertebrate forebrain development. In mammalian and avian embryos, the PThE can be delimited from other prethalamic areas by its lack of Dlx gene expression, as well as by its expression of glutamatergic-related genes such as Pax6, Tbr2 and Tbr1. Several studies in mouse embryos postulate the PThE as a source of migratory neurons that populate given telencephalic centers. Concerning the avian PThE, it is visible at early embryonic stages as a compact primordium, but its morphology becomes cryptic at perinatal stages, so that its developmental course and fate are largely unknown. In this report, we characterize in detail the ontogeny of the chicken PThE from 5 to 15 days of development, according to morphological criteria, and using Tbr1 as a molecular marker for this structure and its migratory cells. We show that initially the PThE contacts rostrally the medial pallium, the pallial amygdala and the paraventricular hypothalamic alar domain. Approximately from embryonic day 6 onwards, the PThE becomes progressively reduced in size and cell content due to massive tangential migration of many of its neuronal derivatives towards nearby subpallial and hypothalamic regions. Our analysis supports that these migratory neurons from the avian PThE target telencephalic centers such as the commissural septal nuclei, as previously described in mammals, but also the diagonal band and preoptic areas, and hypothalamic structures in the paraventricular hypothalamic area.
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最新影响因子:3.748 | 期刊ISSN:1863-2653 | CiteScore:3.57 |
出版周期:Bimonthly | 是否OA:YES | 出版年份:2007 |
自引率:4.50% | 研究方向:医学-解剖学与形态学 |
出版地区:GERMANY |
SCI期刊coverage:Science Citation Index Expanded(科学引文索引扩展)
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Brain Structure & Function offers free color in print and online for all its papers! Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. BS&F does not publish purely clinical or neuropathological papers except in cases where the work actually contributes to the understanding of normal brain structure and function. Research on the peripheral nervous system is not the focus of BS&F. Studies of the mammalian nervous system are central to the journal, yet coverage may range beyond this taxon. Methodologies include modern tracing, immunocytochemistry and neuroimaging as well as genetic methods, neuroinformatics (atlases, databases and internet tools), statistical techniques that support the integration of cellular and systems-level anatomical and functional data, and genetic/molecular/electrophysiological approaches to understanding brain organization. The journal publishes full-length papers, short communications (maximum five printed pages including figures and references), reviews and letters to the editors that foster a vivid discussion of current topics. Methods papers that fit into the mission of the journal are also welcome.
大脑结构和功能提供免费的彩色印刷和在线为其所有的论文! 《大脑结构与功能》发表研究报告,深入探讨大脑结构与功能之间的关系。在这里发表的研究整合了从分子、细胞、发育和系统架构到行为和认知功能的神经解剖学的数据。BS&F不发表纯粹的临床或神经病理学论文,除非该工作实际上有助于理解正常的大脑结构和功能。外周神经系统的研究并不是BS&F研究的重点。 对哺乳动物神经系统的研究是该杂志的核心内容,但研究范围可能超出这个分类单元。方法包括现代追踪、免疫细胞化学和神经成像以及遗传学方法、神经信息学(地图册、数据库和互联网工具)、支持细胞和系统级解剖和功能数据一体化的统计技术以及理解大脑组织的遗传/分子/电生理方法。 该杂志出版长篇论文,简短的交流(最多五页印刷,包括图表和参考文献),评论和给编辑的信件,促进了对当前话题的生动讨论。 我们也欢迎符合期刊宗旨的论文发表。
大类(学科) | 小类(学科) | 学科排名 |
医学 |
ANATOMY & MORPHOLOGY(解剖学和形态学) 1区 NEUROSCIENCES(神经系统科学) 2区 |
1/21 64/261 |
年度总发文量 | 年度论文发表量 | 年度综述发表量 |
264 | 255 | 9 |
引文计数(2018)
文献(2015-2017)
2358次引用
660篇文献
序号 | 类别 | 排名 | 百分位 |
1 |
大类(学科):Medicine
小类(学科):Anatomy
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#3/35
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2 |
大类(学科):Neuroscience
小类(学科):General Neuroscience
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#23/111
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3 |
大类(学科):Medicine
小类(学科):Histology
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#9/61
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研究方向:医学 解剖学 形态学
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审稿时间: 12个月内 接受率: 比较困难(25%命中)
影响因子:2.438
ISSN:0261-1929
研究方向:农林科学-兽医学
影响因子:3.025
ISSN:1094-7159
研究方向:医学-临床神经学
影响因子:4.169
ISSN:0264-410X
研究方向:医学-免疫学
影响因子:17.579
ISSN:0022-1007
研究方向:医学-免疫学
影响因子:5.274
ISSN:0971-5916
研究方向:医学-免疫学
影响因子:4.061
ISSN:2314-6745
研究方向:ENDOCRINOLOGY & METABOLISM-MEDICINE, RESEARCH & EX
影响因子:2.976
ISSN:0914-8779
研究方向:医学-内分泌学与代谢
影响因子:4.75
ISSN:0141-8955
研究方向:医学-内分泌学与代谢
影响因子:10.171
ISSN:1931-5244
研究方向:医学-医学:内科
发表一篇学和医学成像类SCI论文
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