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This study may provide the anatomical basis for the surgical treatment of the anterior interosseous nerve syndrome andrepair of the median nerve and ulnar nerve.The relative data and location method provided in this study are helpful to improve the accuracy and security of operation.

测量并总结得出的有关手术治疗骨间前神经卡压综合征及修复正中神经和尺神经损伤的解剖学数据和定位方法有助于提高操作的准确性和安全性。

This two-week course provides graduate students with an intensive review of neuroanatomy across several species.

这门两个星期的课程,给予研究所的学生,一个彻底复习各类物种神经解剖学的机会。

Since human's knowledge of real neural system is very limited, the improvement and development of artificial neural network need more detail information from neurophysiology and neuroanatomy.

由于人类对真实神经系统只了解非常有限一部分,人工神经网络的完善与发展有待于神经生理学、神经解剖学的研究给出更加详细的信息和证据。

Neuropharmacology is a basic science and forms general neuroscience together with neuro-anatomy, neurochemistry, neuro-physiology, etc.

神经药理学是一门基础科学,和神经解剖学,神经化学,神经生理学等共同形成了综合性的神经科学。

It integrates neuroanatomy, neurophysiology, neurochemistry, molecular biology, psychology, neuropharmacology and neuropathology to explore the structure and functions of nervous system from system, organ, cell and molecule.

它是融神经解剖学、神经生理学、神经化学、分子生物学、心理学、神经药理学、神经病理学为一学科,从系统、器官、细胞和分子多层次探索神经系统结构和功能的学科。

It is intended to provide a forum for the many disciplines involved such as neurology, neurosurgery, neurophysiology, neuropharmacology, neurochemistry, neuroanatomy, neuropathology, neuroendocrinology, neurotoxicology, neurogenetics, neuroimaging, neuropsychology, neuropsychiatry, molecular neurobiology, clinical chemistry and paediatrics.

该期刊打算为以下涉及到的学科提供一个论坛,这些学科包括:神经病学、神经外科学、神经生理学、神经药理学、神经化学、神经解剖学、神经病理学、神经内分泌学、神经毒理学、神经遗传学、神经心理学、神经精神病学、分子神经生物学、临床化学和儿科学等。

Division of Anatomy is primarily dedicated to teaching and research in anatomy including vertebrate morphogenesis, oxygen regulation of placental development, neural coding in the hypothalamus, neurogenesis, brain mechanisms of emotion, animal models for schizophrenia, the notochord and vertebral patterning, axon guidance in the developing brain, brain information processing in cerebellar cortex.

解剖学系主要致力于解剖学的教学与研究,研究领域包括脊椎动物形态发生,胎盘发育的氧调整,丘脑下部的神经编码,神经发生,情绪情感的脑机制,神经分裂症动物模型,脊索和脊椎模型,大脑发育时轴索控制,小脑皮层中的脑信息加工等。

In this review, we primarily focus on the behavioral-neuroendocrine mechanism of development of homosexuality from genetic, neuroendocrine neuroanatomical and behavioral studies.

本文主要从生物学角度出发,从遗传学、神经内分泌学、行为学和神经解剖学方面综述了同性恋发生的神经内分泌机制。

The Joint Laboratories for Language and Cognitive Neuroscience is primarily dedicated to education and research in language and cognitive neuroscience including cognitive and brain processing of the Chinese language, brain science and cognitive development, cognitive processes and neuroanatomical mechanisms, brain mechanisms for language cognition and language learning.

实验室语言和认知神经科学研究中心主要致力于语言和认知神经科学的教学与研究,其研究领域包括中文的认知和脑加工,脑科学和认知发展,认知进程和神经解剖学的机理,语言认知和语言学习的脑机制等。

The osteofibrous apertures,osteofibrous canal and the tendious decussating fibers of the nuchal muscles passed through by the greater occipital nerve are the anatomic basis of the greater occipital nerve compression syndrome.

枕大神经穿行的骨性纤维孔、纤维管道及项部肌群的腱性交叉纤维对神经的固定作用,是颈部运动或组织劳损时造成枕大神经卡压的解剖学基础。

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Fancy gold-plated dangling earrings with facetted White Opal crystals.

花式镀金悬垂耳环与facetted白欧泊水晶。

This essay chooses the study aim from biology teachers in middle school in Shi Jiazhuang which tells us that most of the middle school biology teachers in Shi Jiazhuang have the"burnout", lower successfulness, individualize.

本文选取石家庄市初中生物教师作为研究对象,运用问卷调查的方法对石家庄市初中生物教师职业倦怠的现状进行调查,调查结果发现,石家庄市初中生物教师这一群体普遍存在职业倦怠,情感枯竭程度偏高,成就感偏低,去个性化程度最为严重。

In measurements of a day,generallyspeaking,the photosynthesis of birch in mesophytic habitat is better than that in xerophytichabitat(peak values are 12.8,10.33μmolCO2m-2s-1 respectively);that of sexual birch inmesophytic habitat is better than that of clone birch(peak values are 9.87,6.71μmolCO2m-2s-1respectively);that of young tree is better than that of seedling(peak values are12.37,10.05μmolCO2m-2s-1 respectively).

在一天中的各个时刻,总体说来,中生生境生长的白桦光合作用超过旱生生境生长的白桦光合作用(净光合速率峰值分别为12.8、10.33μmolCO2m-2s-1);白桦幼树的光合作用超过白桦幼苗(净光合速率峰值分别为12.37、10.05μmolCO2m-2s-1);中生生境有性白桦的光合作用超过无性白桦的光合作用(净光合速率峰值分别为9.87μmolCO2m-2s-1、6.71μmolCO2m-2s-1)。