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The basal diameter, height of aerial stem, leaf length at middle stem, leaf width at middle stem, internode length at middle stem, internodes number and panicle length of 30 plants from every population were recorded. The statistics of morphological characters showed that the distribution trends of the averages of morphological characters are similar among populations. However, the coefficients of variation within population of 7 morphological characters were very different. The CV of internodes was largest and the CV of height was smallest within population. F-statistics showed that the differences of all morphological characters among populations were significant (P.01). But the differences among populations were different between different groups. The cluster analysis proved that all populations could be divided into three types: salty reed, freshwater reed and giant reed.
对来自每个种群的30个个体的基径、株高、中部叶长、中部叶宽、中部节间长、节间数、穗长7个形态特征的统计分析表明:各形态特征平均值在种群间的分布趋势相似,但变化幅度不同,株高、叶长等营养特征变化较大大,生殖特征穗长的变化较小;7个形态指标在种群内的平均变异度从大到小依次为中部节间长、中部叶宽、穗长、中部叶长、基径、节间数、株高,种群内的平均形态变异度与生境异质性有关;7个形态指标在种群间均差异显著,但多重比较分析显示显著差异主要存在于BZH、淡水生境种群和盐渍化生境种群之间,在相似生境种群间的形态差异不显著;以形态特征为依据的聚类分析支持将15个种群分为三类:盐生芦苇、淡水芦苇和巨型芦苇。
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The increase of ganglion volume mainly lied in growth of neurons and increasing of nerve fibers and neuroglia cells, but not lied in marked increase of neurons in number.
山羊胎儿脊神经节于胚胎第6周就已形成,但此时节内神经元形态不清晰,至第8周,节内神经元形态逐渐清晰,节内神经纤维数量少;随着胚胎发育,节内神经元数量并不显著增加,而是节细胞之间神经纤维及胶质细胞的增多和神经元个体的增长,从而使神经节的体积逐渐增大。
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The results indicate that the longitudinal nerve fibers in cerebral ganglia and a few of small cells in the surface layer of cerebral ganglia present NOS positive reaction. Abundant NOS positive small cells are in the surface layer of pedal ganglia, and abundant transverse positive nerve fibers in the center of pedal ganglia. A large number of transverse positive nerve fibers are in the center of visceral ganglia; abundant positive small cells and nerve fibers are in two anterior lobes; a few of positive small cells and many encircled positive nerve fibers are in the posterior lobe; a large number of radiate positive nerve fibers are in the lateral lobes.
组织化学显示,存在NOS的部位如下:脑神经节内纵行的神经纤维和表层的少量小细胞;足神经节表层的大量小细胞,中央大量水平分布的神经纤维;脏神经节中部大量水平分布的神经纤维,前叶内大量小细胞和神经纤维,后叶内少量小细胞和许多环行神经纤维,侧叶内大量似放射状分布的神经纤维;脑足和脑脏神经索内的神经纤维。
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The sex pheromone-producing gland of Ancylis.sativa Liu is amodified intersegmental membrane as a dorsal bag between eighth and ninthabdominal segments.
对枣粘虫雌蛾性信息素腺体的扫描和透射电镜观察表明,枣粘虫性信息素腺体是由第八、九腹节间的节间膜特化而成,是位于背部的一个囊状结构,它由两部分构成,前部的方形囊状体和后部的三角形囊状体,二者之间有一突起的脊;雌蛾静止时,腺体随第八和第九腹节一起嵌缩于第七腹节内,求偶时,腹部末端外伸,腺体细胞表皮外露,释放性信息素;腺体细胞呈方形,其表面覆盖几丁质表皮,表皮顶端无孔;细胞核很大,呈椭圆形,由双层核膜包被,位于细胞中下部,内有丰富的染色质;细胞质内有丰富的内质网,其内还有大量的大小不等的脂肪滴,以及线粒体和溶酶体等细胞器。
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We introduced improved primary mixed glial culture and different-attachment method to isolate and purify the OPCs, the cells were proliferated in serum-free medium, flow cytometry and immunohischemistry methods were employed to estimate the purity of cultured OPCs. Their abilities of differentiation and expression of trophic factors were identified by RT-PCR and immunostaining. Several methods including TUNEL and MTT were adopted to estimate the protective effects of conditioned culture medium from oligodendrocyte lineage cells on the primary cultured cerebellar granule neurons. Intravitreal transplant of OPCs, combined with retrograde fluorescent labeling the superior colliculus and intraorbital optic nerve transection, were used to investigate the protective effects of OPCs on the axotomized RGCs in vivo. Intravitreal transplantof OPCs or NSCs on the newborn rats, and retinal transplant of OPCs on the young rats were performed, to observe the myelin formation in the retina at different stages after cellular transplantation. Optic nerve transection was carried out on some rats with myelinated retinae, to study the influence of myelination on the injuried RGCs.
为此,本研究采用改良的胶质细胞混合培养与差速贴壁方法获得大鼠OPCs,使用无血清培养基进行扩增、培养,用免疫组织化学和流式细胞技术对培养细胞的纯度进行鉴定,对少突胶质系细胞表达部分营养因子的情况进行检测;采用TUNEL、MTT等方法对少突胶质系细胞条件培养基对原代培养小脑颗粒神经元的保护作用进行检测;将OPCs移植入成年SD大鼠玻璃体内,利用上丘逆行荧光标记技术,观察眼内移植的OPCs对眶内视神经切断时的视网膜神经节细胞的保护作用及其持续时间;将OPCs或NSCs移植入新生和幼年SD大鼠玻璃体或视网膜内,观察不同时期视网膜内髓鞘形成与分布特点,分析髓鞘的超微结构,并观察眼内髓鞘形成对损伤神经节细胞的保护作用。
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Photomicrographs of retrogradely labeled neurons in the trigeminal ganglion after Fast blueand Nuclear yellow injecting into the caudal subnucleus of spinal trigeminal nucleusand the nucleus of the solitary tract,respectively.
图A、B分别注射Fast blue和Nuclear yellow入三叉神经乙肝脊束核尾侧亚核和孤束核后三叉神经乙肝节内的逆行标记孩子细胞。
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The effects of bur cucumber as rootstock on the mass of the first fruit, the number of female flowers on the main stem in 20 nodes, plant height, area of the biggest leaf, number of leaves, stem diameter, number of nodes were in the middle of the effects of black seed pumpkin as rootstock and self-rooted cucumber.
结果表明,棘瓜嫁接可使'中农21号'黄瓜的第1雌花开放期和始收期提前,对根瓜质量、20节内的雌花数、株高、最大叶面积、叶片数、茎粗和节数的影响小于'黑籽南瓜'嫁接处理;前者的抗寒能力、净光合速率强于后者和自根苗;棘瓜嫁接对黄瓜具有增产、抗枯萎病、抗根结线虫的作用,并且果实品质显著优于以黑籽南瓜嫁接的。
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The results show that space finite analysis results are close to test ones, bottom chords suffer axial force and large in-plane bending, and the max stress is nearby each middle internode. The max stress of node crossbeams occurs in No.2 bottom flange, and that of internode crossbeams happens in ones lying in the middle of every internode. The concrete slab is in tension at the longitudinal direction, and also suffers bent at vertical loads. The degree of completely-composite model taking part in the combined actions is about 55%, while that of semi-composite model is 42%-43%. The combination of concrete slab and bottom chord increases the degree of floor system taking part in the combined actions, lightens the burden of bottom chord, and reduces out-of-plane bending of node crossbeams especially the ones near bridgehead. Stress and displacement of main truss can be evaluated by a equivalent plane rigid frame in preliminary design, and effective stiffness of bottom chords are composed of original ones and concrete slab, and the concentrated load from deck can be translated into uniform load.
研究结果表明:空间有限元分析结果与试验结果较吻合;下弦杆受到轴向拉力和较大的面内弯矩作用,各节间最大应力出现在节间中点附近;节点横梁最大应力发生在横梁2的下翼缘,节间横梁最大应力发生在位于端节间中部的小横梁上;混凝土板顺桥向整体受拉,并在竖向集中荷载作用下产生弯曲变形;全结合模型大部分节间内的桥面板参与主桁共同作用的程度为55%左右,半结合模型桥面板的参与程度为42%~43%;桥面板与下弦杆结合能够增加桥面板的参与程度,减轻下弦杆荷载,减少节点横梁尤其是靠近桥头横梁的面外弯曲;对桥梁进行初步设计时,主桁杆件的位移与内力可按照1个等效的平面刚架计算,下弦杆的等效刚度由原下弦杆截面和混凝土桥面板截面组合而成,桥面荷载可转化为均布荷载施加。
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Positive nerve fibers are in pedal nerve cords and visceral nerve cords. There are no neuronal nitric oxide synthase or inducible nitric oxide synthase positive cells or fibers in the nervous system. A few of endothelial nitric oxide synthase strongly positive nerve cells are identified in pedal ganglia and visceral ganglia. Weakly positive cells and nerve fibers of eNOS can be seen in all of the ganglia and nerve cords.
免疫组化定位表明,神经型一氧化氮合酶和诱导型一氧化氮合酶在整个神经系统内均呈阴性;足神经节和脏神经节内有少量神经细胞呈内皮型一氧化氮合酶强阳性;各神经节和神经索内的部分小细胞和神经纤维呈eNOS弱阳性。
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The results indicated that visitors' activities caused a serious influence on the soil in the park, especially in the two most used scenic spots-Yellowstone Village and Gold Whip Stream. The impact of tourism on soil mainly occurred within 3 m along the trails. The impact shapes are classified into six type as single-sided node type, double-sided node type, cross node type, single-sided linkage type, double-sided linkage type and short-cut linkage type. Of six types of impact shapes, the single-sided node type and double-sided type were dominant. The average water contents of soil for six scenic spots at sample areas of 1 m, 2 m and 3 m from trial is 36.6%, 24.5% and 2.2% lower than that of the control area, respectively. The average soil hardness for six scenic spots at 1m, 2 m, and 3m from the trails tramped increased 167.9%, and 122.2%, and 15.8%, respectively, compared with the control area. Soil bulk density increased 26.5% at 1 m and 20.9% at 2 m from the trails.
结果表明:游客活动对张家界世界地质公园土壤产生了较大的影响,特别是在游客相对集中的黄石寨景区和金鞭溪景区,影响十分明显;游客对土壤影响的范围主要发生在距游道两侧3米以内的范围;公园内土壤影响形态可分为单侧节型、双侧节型、单侧链型、双侧链型、十字节型和捷径链型6种类型,其中又以单侧节型和双侧节型为主;在六个景区中,距游道边缘1米、2米及3米范围内土壤的平均含水率较对照区分别低了36.6%、24.5%和2.2%;与对照区相比,距游道边缘1米、2米及3米的土壤硬度分别增加了167.9%、122.2%和15.8%,而距游道边缘1米和2米范围内的土壤容重则分别比对照区增加了26.5%和20.9%。
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intraperitoneal, i.p:腹腔内的
腹腔淋巴结 coeliac lymph node | 腹腔内的 intraperitoneal, i.p | 腹腔神经节 coeliac ganglion
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podite:肢节
节肢和肢节:节肢动物的附肢是实心的,内有发达的肌肉,不但与身体相连处有活动的关节,并且本身也分节,十分灵活,这种附肢称为节肢(Arthropodium),其各节称为肢节(podite)
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spavin:飞节内肿
spatulate 铲状的 | spavin 飞节内肿 | spawing site 产卵场
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spavin:跗节内肿
spatulate 竹片状的 | spavin 跗节内肿 | spavined 患跗节内肿的
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intrasegmental:节内的
intramuscular肌内的 | intrasegmental节内的 | intrauterino子宫内的
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intraseminal:种子内的
intrasegmental 节内的 | intraseminal 种子内的 | intrasexual 性内的
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paracentric:不包含中节在内的;臂内的
拋物线型生长 parabola-growht | 不包含中节在内的;臂内的 paracentric | 不包含中节在内的倒位,染色体臂内倒位 paracentric inversion; acentric inversion; aprakinetic inversion; asymetrical inversion
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paracentric inversion; acentric inversion; aprakinetic inversion; asymetrical inversion:不包含中节在内的倒位,染色体臂内倒位
拋物线型生长 parabola-growht | 不包含中节在内的;臂内的 paracentric | 不包含中节在内的倒位,染色体臂内倒位 paracentric inversion; acentric inversion; aprakinetic inversion; asymetrical inversion
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spavined:患跗节内肿的
spavin 跗节内肿 | spavined 患跗节内肿的 | spawn 卵
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Kaes?Bekhterev layer:克斯--别赫捷列夫层(大脑皮层外粒层内的纤维层)
juvenile gangliosidosis 少年型神经节苷脂沉积病 | Kaes Bekhterev layer 克斯--别赫捷列夫层(大脑皮层外粒层内的纤维层) | Kaes feltwork 克斯神经纤维网(在大脑皮层内)