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盲囊

与 盲囊 相关的网络例句 [注:此内容来源于网络,仅供参考]

In the microstructure of the digestive gland from treatment groups exposed to 10 μg·L-1 BP for 10 days, basophil granules in the acinus increased, the borders between cells of the acinus were obscured, and the number of food particles decreased.

观察结果表明,10μg·L-1 BP处理10d时,栉孔扇贝的鳃上皮粘液细胞增多,在回血管中血细胞出现聚集现象;消化盲囊腺泡中嗜碱性颗粒增多,腺泡内细胞间界限模糊。

Similarly, histological sections of amphioxus showed vacuolations and consequent destruction of the hepatic diverticulum.

实验结果显示文昌鱼的肝盲囊和脊椎动物的肝脏一样,也是受过量铜显著毒害的主要靶器官器官。

By the same method, delta receptor was detected on the cerebral ganglia, pedal ganglia, visceral ganglia, coat ganglia and in the mouth, esophagus, craw, stomach, stomachic caecus, the epithelium of the intestines, sialoid gland, branchia, branchia gland, ventricle, branchial heart, kidneys, ovary, fallopian tube, back of mantle, abdomen of mantle, wrist, membrane of wrist, funnel and immunocytes of Octopus ocellatus.

2在短蛸的脑神经节、足神经节、脏神经节、外套神经节、口球、食道、嗉囊、胃、胃盲囊、肠、后唾液腺、鳃、鳃腺、心室、鳃心、肾静脉腺质附属物、卵巢、输卵管腺、外套膜背面、外套膜腹面、腕、腕间膜、漏斗中检测到呈不同阳性反应的δ受体。

Using the immunohistochemical technique, nerve cell bodies and fibres immunoreactive to the anti-Met-enkephalin sera were observed in the cerebral ganglia, pedal ganglia, visceral ganglia, inspect ganglia and coat ganglia of Octopus ocellatus. Met-ENK immunoreactivity was also localized in the mouth, esophagus, craw, stomach, stomachic caecus, the epithelium of the intestines, rectum, sialoid gland, liver, branchia, branchia gland, ventricle, branchial heart, kidneys, ovary, fallopian tube, back of mantle, abdomen of mantle, wrist, membrane of wrist, funnel, and immunocytes of Octopus ocellatus.

免疫组织化学定位结果表明:(1)在短蛸的脑神经节、足神经节、脏神经节、视神经节、外套神经节、口球、食道、嗉囊、胃、胃盲囊、肠、直肠、前唾液腺、后唾液腺、肝胰脏、鳃、鳃腺、心室、鳃心、肾静脉腺质附属物、卵巢、输卵管腺、外套膜背面、外套膜腹面、腕、腕间膜、漏斗中检测到呈不同阳性反应的Met-ENK分子。

Mu opioid receptor was not observed in the wrist, funnel, abdomen of mantle, mouth, craw, stomach theca, intestine, rectum, sialoid gland, liver. Weak positive mu opioid receptor immunoreaction was found in inner epidermis, ectoblast, connective tissue of the esophagus and the keratolytic of the stomach and positive immunoreaction in epidermis of back of mantle and membrane of wrist.

结果表明,短蛸腕、漏斗、外套膜腹面、口球、嗉囊、胃盲囊、肠、直肠、前唾液腺、后唾液腺、肝胰脏均呈μ受体阴性,但食道内上皮、外膜、结缔组织和胃角质层有μ受体分布,外套膜背面、腕间膜的上皮或近上皮部位呈μ受体阳性。

The predominant expression in the gill, hepatic caecum, hind-gut, endostyle, and ovary may be in line with a rapid energy turnover in these tissues.

广泛表达的模式说明它可能行驶基本的生理功能,肝盲囊、后肠、卵巢和内柱的高量表达与这些组织的快速能量代谢有关。

The electrical activities and sequences of oesophagus, reticulum and the four compartments of rumen in sheep were recorded with polygram system RM-6008 during rest, feed, rumination and eructation.

用RM-6008型记录仪记录了绵羊在安静、进食、反刍和嗳气等状态下的食管、网胃和瘤胃的前背囊、后背盲囊、后腹盲囊、前腹囊的电活动及其先后次序。

Firstly,the presence and location of AAT in amphioxus was studied by Westernblotting and immunohistochemical methods.The results first revealed that AATpresent in amphioxus,a cephalochordate.Also it was demonstrated that AATdistributed in cellular plasma in hepatic diverticulum,the pouch that protrudesforward as an outpocketing of the digestive tube and extends along the right side ofthe posterior part of the pharynx,which has long been considered to be the precursorof vertebrate liver.In vertebrate,AAT is primary synthesized in liver.

我们首先利用免疫组化和Western blotting方法,研究了AAT在文昌鱼的组织表达和定位,首次在头索动物文昌鱼中证明了AAT的存在,结果显示,AAT定位于文昌鱼肝盲囊的细胞浆内,从AAT在文昌鱼中的合成部位来看,在功能上文昌鱼的肝盲囊等同于脊椎动物肝脏,肝盲囊是在发育分化过程中消化道组织向右前方突出沿着咽后部向前扩展和延伸形成的一个囊袋状结构。

Amylase activities in stomach and liver were highest at neutral or weak acid condition and in pyloric caeca and intestine were strongest in alkaline condition.

幽门盲囊和肠淀粉酶在碱性环境下活力最大,肝胰脏和胃淀粉酶在中性或酸性条件下活力充分发挥。

The optimum temperature s and pH were(40℃,2.4)for stomach,(55℃,7.6) for pyloric caeca(45℃,8.0) for gut. The optimum temperature for protease activity was higher than that in the fish body. The highest activity of protease occurred in strong acidic condition in stomach,but in neutral or weak alkaline condition in pyloric caeca and gut.

蛋白酶的活力随温度和pH变化呈现一定的规律性,不同消化器官蛋白酶的最适温度、pH依次为胃(40℃,2.4)、幽门盲囊(55℃,7.6)、肠(45℃,8.0),蛋白酶的最适温度高于体温,胃蛋白酶在强酸环境下活力最大,幽门盲囊与肠在中性和偏碱条件下活力最大

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