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nucleus相关的网络例句

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与 nucleus 相关的网络例句 [注:此内容来源于网络,仅供参考]

Objective To investigate the effects of microinjection of exogenous ghrelin into the hypothalamic paraventricular nucleus on gastric motility and electrical activity in ambulant conscious rats and their peripheral neural mechanisms.

目的 探讨下丘脑室旁核(paraventricular nucleus,PVN)内微量注射ghrelin对清醒大鼠胃运动及胃电活动的影响及其自主神经机制。

The characteristics of on-off responses of medial geniculate body neurons to tone bursts of varying frequency, intensity and duration were affected by lateral amygdaloid nucleus stimulation, which was in form of altering the pattern of discharge or complete suppression.

在23只三碘季铵酚麻痹的新西兰兔上记录细胞外放电,观察短纯音诱发的内膝体神经元on-off反应的特性及电刺激边缘系统杏仁外侧核(Lateral amygdaloid nucleus, LAm)对反应的影响。

FLN densely distributed not only in the Ⅰ、Ⅱ layers of trigeminal caudal nucleus, but also in interpolar nucleus, oral nucleus, main sensory and body cerebral cortex. FLN were also seen in the nucleus associated with pain regulation such as parabrachial nucleus and nucleus of solitary tract.

FLN除了密集分布在三叉神经脊束核尾侧亚核(nucleus of the spinal tract of the trigeminal nerve,caudal part, sp5c的Ⅰ、Ⅱ层外,极间核、口核、感觉主核、躯体感觉皮层等可见FLN的表达;臂旁核、室旁核、中央杏仁核等与痛调节有关的内脏中继核团亦可见FLN的表达。

The nucleus isthmi of lower vertebrates is an important visual center closely related to the optic tectum .

低等脊椎动物的峡核(Nucleus isthmi,NI)是与视顶盖(Optictectum,OT)密切相连的视觉核团。

Oxytocin , a nonapeptide, is mainly synthesized in the supraoptic nucleus and paraventricular nucleus of mammals' hypothalamus, and secreted into peripheral blood through neurohypophysis when stimulated to act on the target tissues like mammary gland or myometrium. Hence, the milk ejection or myometrium contraction is induced.

催产素是一种9肽神经内分泌激素,在中枢神经系统(Central nervous system,CNS)中,主要在下丘脑视上核(Supraoptic nucleus,SO)、室旁核(Paraventricular nucleus,Pa)的大细胞内分泌神经元中合成,并经神经垂体释放入外周血,作用于其靶组织如乳腺和子宫平滑肌等,发挥促射乳、促宫缩等作用。

This is the famous nucleus embedded operating system's source code analysis of the most detailed report!

这是著名的嵌入式操作系统nucleus 的源代码最详细的分析报告!

The mouse embryonic stem cells cDNA library was screened by yeast two-hybrid assay,some candidate molecules were get,including DDX39 DEAD (Asp-Glu-Ala-Asp box polypeptide 39, BAT1A(HLA-B-associated transcript 1A), NAC1 ( nucleus accumbens-1 ), BicD2 (bicaudal D homolog 2)、MLL3 (myeloid/lymphoid or mixed-lineage leukemia 3). NAC1 and MLL3 were associated with regulation of gene transcription. DDX39 andBAT1A were associated with pre-mRNA processing and mRNA export from nucleus to cytoplasm. BicD2 was associated with the regulation of Golgi body.

通过利用酵母双杂交方法,以小鼠全长Plk1作为诱饵蛋白筛选小鼠胚胎干细胞cDNA文库中与其相互作用的蛋白,获得了DDX39DEAD(Asp-Glu-Ala-Aspbox polypeptide 39、BAT1A(HLA-B-associated transcript 1A)、NAC1(nucleus accumbens-1)、BicD2(bicaudal D homolog 2)、MLL3(myeloid/lymphoid or mixed-lineage leukemia 3)等几个候选蛋白,其中NAC1、MLL3与基因的转录调控有关,DDX39、BAT1A与mRNA前体的剪切、加工及mRNA从细胞核转运到细胞质紧密相关,而BicD2与高尔基体的调控紧密相关,提示我们Plk1与基因转录、mRNA前体的剪切、加工、mRNA的运输及胞质分裂中高尔基体的调控有关。

Cell bodies in the nucleus intermedius and the most anterior of nucleus motorius dorsalis nervi vagi et nucleus nervi glossopharyngei were labeled.

分别在延髓的内侧核(Nucleus intermediu,简称IM)和舌咽—迷走神经背运动核(Nucleus motorius dorsalis vagi nervi et nucleus nervi glossopharyngei,简称nⅨ—Ⅹ)的最首端获得标记细胞。

Fulwiler CE, Saper CP. Subnuclear organization of the efferent connections of the parabrachial nucleus in the rat. Brian Res 1984;319:229-259.[2]Herbert H, Moga MM, Saper CB. Connections of the parabrachial nucleus with the nucleus of the solitary tract and the medullary reticular formation in the rat. J Comp Neurol 1990;293:540-580.[3]Slugg RM, Light R.

三叉神经脊束间质核(interstitial nucleus of the spinal trigeminal tract, INV)为位于延髓闩平面附近三叉神经脊束内及其周围的一些核团,由中、小型梭形、圆形或卵圆形细胞组成,经三叉神经的分支和迷走、舌咽神经接受外周内脏和躯体感觉信息[6,7]。

The effects and mechanism of GABAergic neurons, NOergic neurons, opioid peptide and cyclic adenosine monophosphate in the nucleus reticularis thalami on sleep-wakefulness cycle of rats and the effects and mechanism of the 5-HTergic nerve fibers project from the nucleus raphes dorsalis to RT on sleep-wakefulness cycle of rats were investigated with the methods of brain stereotaxic, nucleus spile, microinjection and polysomngraphy.1. The effects of GABAergic neurons in RT on sleep-wakefulness cycle of rats1.1 Microinjection of 3-mercaptopropionic acid (3-MP, a kind of glutamate decarboxylase inhibitor) into RT. On the day of microinjection, sleep only decreased a litter. On the second day, sleep marked decreased and wakefulness marked increased. On the third and fourth day, sleep and wakefulness stages resumed to normal.1.2 Microinjection of gamma-amino butyric acid (GABA 1.0μg) into RT enhanced sleep and reduced wakefulness compared with control; while microinjection of L-glutamate (L-Glu, 0.2μg) decreased sleep and increased wakefulness; microinjection of bicuculline (BIC, 1.0μg), a GABAA receptor antagonist, enhanced wakefulness and reduced sleep; microinjection of baclofen (BAC, 1.0μg), GABAB receptor agonist, had the same effects as GABA.2. The effects of NOergic neurons in RT on sleep-wakefulness cycle of rats2.1 Microinjection of L-arginine (L-Arg, 0.5μg) into RT decreased sleep compared with control, but there were on statistaical difference between L-Arg group and control; while microinjection of sodium nitroprusside (SNP, 0.2μg), a NO donor into RT, sleep marked decreased and wakefulness marked increased. Microinjection of nitric oxide synthase inhibitor, N-nitro-L-arginine (L-NNA, 2.0μg) into RT enhanced sleep and reduced wakefulness.2.2 After simultaneous microinjection of L-NNA (2.0μg) and SNP (0.2μg) into RT, SNP abolished the sleep-promoting effect of L-NNA compared with L-NNA group; after simultaneous microinjection of L-NNA (2.0μg) and L-Arg(0.5μg) into RT, we found that L-NNA could not blocked the wakefulness-promoting effect of L-Arg.3. The effects of opioid peptide in RT on sleep-wakefulness cycle of rats3.1 Microinjection of morphine sulfate (MOR, 1.0μg) into RT increased wakefulness and decreased sleep compared with control; while microinjection of naloxone hydrochloride (NAL, 1.0μg), the antagonist of opiate receptors, into RT, enhanced sleep and reduced wakefulness.3.2 After simultaneous microinjection of MOR (1.0μg) and NAL (1.0μg) into RT, the wakefulness-promoting effect of MOR and the sleep-promoting effect of NAL were not observed compared with control.4. The effects of cAMP in RT on sleep-wakefulness cycle of rats Microinjection of cAMP (1.0μg) into RT increased sleep and decreased wakefulness compared with control; microinjection of methylene blue (MB,1.0μg) into RT enhanced sleep and reduced wakefulness compared with control.5. The effects of the 5-HTergic nerve fibers project from DRN to RT on sleep-wakefulness cycle of rats5.1 When L-Glu (0.2μg) was microinjected into DRN and normal sodium (NS,1.0μg) was microinjected into bilateral RT. We found that sleep was decreased and wakefulness was increased compared with control; when L-Glu (0.2μg) was microinjected into DRN and methysergide (MS,1.0μg), a non-selective 5-HT antagonist, was microinjected into bilateral RT, We found that sleep was enhanced and wakefulness was reduced compared with L-Glu group.5.2 When p-chlorophenylalanine (PCPA, 10μg) was microinjected into DRN and NS (1.0μg) was microinjected into bilateral RT, We found that sleep was increased and wakefulness was decreased compared with control; microinjection of 5-hydroxytryptaphan (5-HTP, 1.0μg), which can convert to 5-HT by the enzyme tryptophane hydroxylase and enhance 5-HT into bilateral RT, could block the effect of microinjection of PCPA into DRN on sleep-wakefulness cycle.

本研究采用脑立体定位、核团插管、微量注射、多导睡眠描记等方法,研究丘脑网状核(nucleus reticularis thalami,RT)中γ-氨基丁酸(gamma-amino butyric acid ,GABA)能神经元、一氧化氮(nitrogen monoxidum,NO)能神经元、阿片肽类神经递质、环一磷酸腺苷(cyclic adenosine monophosphate,cAMP)及中缝背核(nucleus raphes dorsalis,DRN)至RT的5-羟色胺(5-hydroxytryptamine,5-HT)能神经纤维投射对大鼠睡眠-觉醒周期的影响及其作用机制。1 RT内GABA能神经元对大鼠睡眠-觉醒周期的影响1.1大鼠RT内微量注射GABA合成关键酶抑制剂3-巯基丙酸(3-MP,5μg),注射当天睡眠时间略有减少,第二日睡眠时间显著减少,觉醒时间明显增多,第三、四日睡眠和觉醒时间逐渐恢复至正常。1.2大鼠RT内微量注射GABA受体激动剂GABA( 1.0μg)后,与生理盐水组比较,睡眠时间增加,觉醒时间减少;而RT内微量注射L-谷氨酸(glutamic acid, L-Glu, 0.2μg)后,睡眠时间减少,觉醒时间增加;RT内微量注射GABAA受体阻断剂荷包牡丹碱(bicuculline,BIC,1.0μg)后,睡眠时间减少,觉醒时间增加;RT内微量注射GABAB受体激动剂氯苯氨丁酸(baclofen,BAC,1.0μg)后,产生了与GABA相似的促睡眠效果。2 RT内NO能神经元对大鼠睡眠-觉醒周期的影响2.1大鼠RT内微量注射NO的前体L-精氨酸(L-Arg,0.5μg)后,与生理盐水组对比,睡眠时间略有减少,但无显著性意义;而RT内微量注射NO的供体硝普钠(Sodium Nitroprusside,SNP,0.2μg)后可明显增加觉醒时间,缩短睡眠时间;微量注射一氧化氮合酶抑制剂L-硝基精氨酸(L-arginine,L-NNA,2.0μg)后,引起睡眠时间增多,觉醒时间减少。2.2大鼠RT内同时微量注射L-NNA(2.0μg)和SNP(0.2μg)后与L-NNA组比较发现SNP逆转了L-NNA的促睡眠作用;RT内同时微量注射L-NNA(2.0μg)和L-Arg(0.5μg)后,与L-NNA(2.0μg)组比较发现L-Arg可以增加觉醒而缩短睡眠,其促觉醒作用未能被NOS的抑制剂L-NNA所逆转。3 RT内阿片肽对大鼠睡眠-觉醒周期的影响3.1大鼠RT内微量注射硫酸吗啡(morphine sulfate,MOR,1.0μg)后与生理盐水组对比,睡眠时间减少而觉醒时间增加; RT内微量注射阿片肽受体拮抗剂盐酸纳洛酮(naloxone hydrochloride,NAL,1.0μg)后与生理盐水组比较,睡眠时间增加而觉醒时间减少。3.2大鼠RT内同时微量注射MOR(1.0μg)和NAL(1.0μg)后,与生理盐水组对比,原有的MOR促觉醒效果和NAL的促睡眠效果都没有表现。4 RT内环一磷酸腺苷信使对大鼠睡眠-觉醒周期的影响大鼠RT内微量注射cAMP(1.0μg)后与NS(1.0μg)组比较,睡眠时间增多而觉醒时间减少;RT内微量注射亚甲蓝(methylene blue,MB,1.0μg)后,与NS组比较,睡眠时间增多而觉醒时间减少。5中缝背核投射到丘脑网状核的5-羟色胺能神经纤维对大鼠睡眠-觉醒周期的影响5.1大鼠DRN内微量注射L-Glu(0.2μg),同时在双侧RT内微量注射NS (1.0μg)后,与对照组(DRN和双侧RT注射NS, 0.2μg)比较,睡眠时间减少,觉醒时间增多;大鼠DRN内微量注射L-Glu(0.2μg),同时在双侧RT内微量注射二甲基麦角新碱(methysergide, MS, 1.0μg )后,与对照组(DRN注射L-Glu 0.2μg,双侧RT注射NS 1.0μg)比较,睡眠时间增多,觉醒时间减少。5.2大鼠DRN内微量注射对氯苯丙氨酸(p-chlorophenylalanine,PCPA,10μg),同时在双侧RT内微量注射NS (1.0μg)后,与对照组(DRN和双侧RT注射NS, 1.0μg)比较,睡眠时间增多,觉醒时间减少;大鼠DRN内微量注射PCPA(10μg),产生睡眠增多效应后,在双侧RT内微量注射5-羟色胺酸(5-hydroxytryptaphan , 5-HTP, 1.0μg )后,与对照组(DRN注射PCPA 10μg,双侧RT注射NS 1.0μg)比较,睡眠时间减少,觉醒时间增多。

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推荐网络例句

The sun will go downhill soon , I sit to be dead tired on the bicycle, Wang Ming also feels very weary , we have a rest thereupon on arriving in a slice exuberant grassplot.

太阳快下山了,我坐在自行车上精疲力竭,王明也觉得很疲劳,于是我们来到一片茂盛的草地上休息。

My professional interest is the type of community-based enterprises.

我的职业兴趣类型是企业社会型。

This is I last time bursts into tears for you!

我没能做到您所期望的那样!