- 更多网络例句与兴奋营养的相关的网络例句 [注:此内容来源于网络,仅供参考]
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Objective To observed the effect of "Yiqitiaoxue, Fubenpeiyuan" acupuncture method combining nutritional agent on the changes of their behavior and neurohumor of the brain tissue of 6-month-old senescence accelerated mouse (Senile-Prone, SAMP8), which were compared with those of 6-month-old SAMR1 (Senile-Resistant).
目的 观察"益气调血,扶本培元"针法配合营养剂治疗对6月龄快速老化痴呆模型小白鼠(SAMP8)Morris水迷宫学习记忆能力以及脑组织单胺类神经递质、乙酰胆碱、兴奋性氨基酸水平的影响,从中枢神经递质变化的角度揭示针刺治疗痴呆的作用机理。
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The former one appears in stimulation of worm activity, spasmodic contraction of worm musculatures and severe damage to the tegument, which results in hepatic shift of schistosomes, influence on the nutrition absorption, excretion/secretion and defense function of the tegument, followed by the secondary interference with the worm metabolism.
前者表现为虫体活动兴奋,肌肉挛缩和皮层严重受损,从而导致虫的肝移,影响虫的体表营养吸收、排泌和防御功能以及继发的代谢紊乱;后者因皮层的损害和剥落破坏了虫体在宿主体内存活的伴随免疫机制,其体表抗原的显露为宿主抗血吸虫特异性抗体的免疫攻击提供了靶部位,即吡喹酮的抗血吸虫作用是免疫依赖的。
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The mechanisms of these actions may be involved in anti-exitotoxicity of aminoglutaric acid, regulating the synthesis of nitric oxide, antioxidation, antiinflammatory, inhibiting neuron apoptosis, accelerating angiogenesis, neurogenesis, neurotrophy and others.
其作用机制可能包括抗谷氨酸兴奋毒性、调节NO的合成、抗氧化作用、抗炎作用、抗神经元凋亡、促进血管生成、促进神经元再生和神经营养作用等。
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&在使用LipoPuze一星期后,我非常兴奋的感觉到了它的效果再之后的几天中学生营养晚餐食谱里,我的胃口减少了事实上,我不在需要在5小时内不停的吃东西我知道这不是最好的减肥方式,但我开始看到结果了我开始减肥,并在两个星期内,我已经减掉了两倍的重量伟大的部分, LipoPuze它让我感觉不到饿了,它确实改变了我饮食习惯,但它会自动为我减肥 LipoPuze是一种生活程序感谢您的产品,实际上帮助我减肥。&
- 更多网络解释与兴奋营养的相关的网络解释 [注:此内容来源于网络,仅供参考]
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nervous tissue:神经组织
(四)神经组织(nervous tissue)神经组织是由神经细胞或称神经元(neuron)和神经胶质细胞(neuroglia cell)组成. 神经细胞具有高度发达的感受刺激和传导兴奋的能力. 神经胶质细胞还没有证明有传导兴奋的能力,但有支持、保护、营养和修补等作用.
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neuroglia cell:神经胶质细胞
(四)神经组织(nervous tissue)神经组织是由神经细胞或称神经元(neuron)和神经胶质细胞(neuroglia cell)组成. 神经细胞具有高度发达的感受刺激和传导兴奋的能力. 神经胶质细胞还没有证明有传导兴奋的能力,但有支持、保护、营养和修补等作用.
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excitonutrient:兴奋营养的
excitonics激子学 | excitonutrient兴奋营养的 | excitor激发子 激子
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microglia:小神经胶质细胞
现在,Coull等人发现了被ATP激发的"小神经胶质细胞"(microglia)使脊髓神经细胞产生兴奋的生物物理机制. "小神经胶质细胞"释放来自大脑的神经营养因子,后者改变氯离子在脊髓的第一层中的神经细胞胞质膜两边的分布.
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trophotropic system:向营养系统
释放大量儿茶酚胺,引起肾上腺素和去甲肾上腺素的大量分泌导致中枢兴奋性增高,从而导致心理的、躯体的和内脏的功能改变,即所谓的非特应系统(ergotropic system)功能增高,而与之对应的向营养系统(trophotropic system)功能则降低.
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vitamin D deficiency:维生素D缺乏症
维生素D缺乏症(Vitamin D deficiency)是婴幼儿期常见的营养缺乏性疾病以钙、磷代谢失常和骨骼发育障碍为特点称为维生素D缺乏性佝偻病. 当甲状旁腺反应迟钝时,血中游离钙明显减低,以致神经肌肉兴奋性增高发生手足搐搦或惊厥称为维生素D缺乏性手足搐搦症,