松果腺,pineal gland
1)pineal gland松果腺
1.Effect of pineal gland on the seasonal changes of T lymphocyte proliferation rate of spleen in rats;松果腺对大鼠脾脏T淋巴细胞增殖率季节性变化的影响
2.Effect of low dose radiation on cell apoptosis of pineal gland;低剂量电离辐射对松果腺细胞凋亡的影响
3.Effects of the resection of pineal gland on immunologic function of the lung in rats;松果腺切除对大鼠肺免疫功能的影响
英文短句/例句

1.By initiation 6000, the pituitary, pineal and male and female chakras open.到6000股为止,垂体、松果腺和男女性脉轮打开。
2.AANAT-melatonin-pineal gland in TCM regulation theory of five zang-visceraAANAT-褪黑素-松果腺在中医五脏调控理论中的作用
3.Rather unromantically, the structure he chose was the humble pineal gland.相当平淡无奇的是,这个结构,他选择的是地位低的松果腺
4.This atrophied after Lemuria's fall and became the pineal gland still found in modern humans.这是利莫里亚下沉后的衰退,松果腺仍然可以从现代人中找到。
5.Effects of Pinealectomy on Anti-oxidation Substances in Livers of 12 Months Old Mice after Long-term Swimming;松果腺切除对长期游泳12月龄小鼠肝脏某些抗氧化物质的影响
6.Change of GnRH-Ⅰ mRNA expression in pineal Gland for ISA brown layers at different photoperiods不同光周期下ISA褐蛋鸡松果腺GnRH-Ⅰ mRNA表达的变化
7.Effect of Pineal Gland and Melatonin on trkB Expression of Rat Thymus;松果体及褪黑素对大鼠胸腺trkB表达的影响
8.Pineal gland (or pineal body): Endocrine gland in the brain that produces melatonin.松果体:脑内的内分泌腺体,可调节黑素细胞凝集素的产生。
9.Role of Pineal Gland and Melatonin in the Differentiation and Development of T Cells in Rat Thymus;松果体及褪黑素在大鼠胸腺T细胞分化发育中的作用
10.Effect of Pineal Gland and Melatonin on IL-7 Expression of Rat Thymic Epithelial Cells;松果体及其褪黑素对大鼠胸腺上皮细胞IL-7表达的影响
11.Of or relating to the pineal body.松果体的松果体的或与松果体有关的
12.Squirrels garner nuts for the winter.松鼠为过冬储存松果。
13.Objective To investigate the clinical effect of prednisone on hyperthyroid atrial fibrillation associated with Graves disease (HAFGD).目的 了解泼尼松治疗格雷夫斯病合并甲状腺机能亢进性心房颤动的临床效果。
14.Preventive effect of ondansetron,droperidol combined with dexamethasone on nausea and vomiting after thyroidectomy甲状腺切除术后昂丹司琼、氟哌利多复合地塞米松预防恶心呕吐的效果
15.Studies on effective compositions of Pine cone Ⅵ. Antitumor activity of fractions from pine cone and pine nut shell of Pinus koraiensis Sieb et Zucc and P.tabulaeformis Carr.;松果有效成分研究——VI.红松与油松松塔及松子壳的抗癌活性
16.If your belt is too tight,loosen it.如果你的腰带太紧了,就松一松。
17.Measure of survive of Pinus korainese and Pinus sylvestnis of grafting保障樟子松嫁接红松果林成活的措施
18.These centers are the gonads, the lyden cells, the adrenals, the thymus, the thyroid, the pineal and the pituitary glands.这些精神中心是,性腺、阳淋巴丛、上腺、腺、状腺、果腺和脑垂体。
相关短句/例句

pineal gland body松果腺体
3)pinealectomy[,pini?'lekt?mi]松果腺摘除
1.Methods The spontaneous firing of SCN neurons was recorded in vivo extracellularly during the subjective day (CT4-8) and the subjective night (CT16-20) after pinealectomy (PINX) and after inhibition of endogenous melatonin (MEL) synthesis by methotrexate (MTX), and the effect of exogenous MEL on the neuronal firing of SCN was examined.方法 在昼夜周期的不同时相 (主观白天的CT4~ 8和主观黑夜的CT16~ 2 0 ) ,采用松果腺摘除 (PINX)和氨甲蝶呤 (MTX)抑制褪黑素 (MEL)合成的方法 ,分别去除内源性MEL的主要来源后 ,观察大鼠SCN神经元自发放电的变化以及侧脑室注射外源性MEL的作用。
2.The spontaneous firing of hypothalamic suprachiasmatic nucleus (SCN) neurons was recorded in vivo extracellularly during the subjective day (CT1O-14) and the subjective night (CT22-02) after pinealectomy (PINX) and after inhibition of endogenous melatonin (MEL) synthesis by methotrexate (MTX), and the effect of exogenous MEL on the neuronal firing of SCN was examined.本文采用在体细胞外记录大鼠下丘脑视交叉上核(SCN)神经元单位放电的方法,在昼夜周期的不同时相(主观白天的CT10-14和主观黑夜的CT22-02),采用松果腺摘除(PINX)和采用氨甲蝶呤(MTX)抑制褪黑素(MEL)合成的方法分别去除内源性MEL的主要来源后,观察大鼠SCN神经元自发放电的变化以及外源性MEL的作用。
4)Pineal gland in mice小鼠松果腺
5)pinealocyte melatonin松果腺细胞
6)Pineal complex松果腺复合体
1.with a special morphohistological study(Achucarro-Hortega staining),the evidence for a pineal complex in the brain of the ricefield eel(Monopterus albus Zuiew)is presented.应用松果腺细胞改良染色法(Achucarro-HortegaStaining),证实了黄鳝脑部存在松果腺复合体。
2.The morphologies and structures of the pineal complex of Lamptera japonica,Carassius auratus, Rana nigromaculata and Eremias argus were observed and compared by light and electron microscopes.本文采用光镜和透射电镜,对日本七鳃鳗、鲫鱼、黑斑蛙和丽斑麻蜥4种变温动物的松果腺复合体,进行了观察和比较,并对其结构与功能的关系作了初步探讨。
延伸阅读

松果腺松果腺pinealgland脊椎动物间脑顶部的小的松果样内分泌腺。又称松果体、脑上腺。一般认为,松果腺中含有抗性腺激素和降血糖因素,在幼年有抑制性成熟、抑制生殖器官发育和阻碍性征出现的作用。光照及季节变化通过松果腺调节着鸟类的迁徙等行为。人的松果腺位于脑胼胝体后尾下方,居于中脑的左、右上丘构成的凹内,并有一柄与第三脑室后丘脑顶部相连,人类松果腺在胚胎发育早期即出现,起源于神经外胚层。出生后松果腺细胞停止增生,但体积继续增大,并增加神经胶质及间质等成分。7~10岁起,松果腺开始退化并逐渐钙化,形成脑砂(或松果砂),在头颅X光检查时往往可见。据统计,70%的人,松果腺在60岁前均已钙化。哺乳动物的松果腺是个神经内分泌器官,它含有极丰富和发育良好的血管系统。哺乳类的松果腺至少具有以下3个主要的特点:①实质性器官,具有实质细胞和间质细胞,前者含有分泌细胞所特有的亚细胞器,以及含有分泌颗粒的小泡。②胚胎发生虽然来源于脑的一部分,但出生后不久即失去与脑的直接联系,受到来自颈上神经节的交感节后纤维的支配。③部分视网膜细胞发出的视束纤维形成一特殊的神经束——下附属视束,传导光线的刺激,经颈上神经到达松果腺,调节其功能。此外,还存在着直接的视网膜-下丘脑联系,共同调节松果腺的神经内分泌反应。