嗅觉神经元,olfactory receptor neurons
1)olfactory receptor neurons嗅觉神经元
1.Purpose To study whether apoptosis play a role in controlling the number of olfactory receptor neurons, so as to reveal the speciality and its relationship in neurogenesis.目的 研究凋亡是否参与嗅上皮正常生理更替和嗅球摘除后嗅觉神经元死亡后再生过程 ,探讨凋亡与神经元再生的关系。
2.Olfactory receptor neurons (ORNs) not only can regenerate,but also they are true bipolar neurons directly exposed to the external environment.正常情况下,生物体内嗅觉神经元(olfactory receptor neurons, ORNs)的再生与凋亡处于动态平衡之中,即通过基底细胞生成,神经细胞分化、成熟,ORNs凋亡的动态平衡而维持正常的嗅觉功能。
英文短句/例句

1.Apoptosis and Regeneration of Olfactory Receptor Neurons in Patients Suffering from Dysosmia Caused by Chronic Sinusitis;慢性鼻窦炎伴嗅觉障碍患者嗅觉神经元的凋亡与再生
2.The mechanosensitivity of our olfactory neurons has two possible functions, suggest the investigators.该研究表明:我们的嗅觉神经元的机械敏感性可能有两个功能。
3.Ultrastructural observations on apoptosis of the olfactory neuron receptors in animal models suffering from rhinosinusitis鼻腔鼻窦炎动物模型嗅觉神经元凋亡的超微结构观察
4.This also produced a similar, but smaller reaction in the olfactory neurons.他们还发现:逐渐降低无气味溶液喷入的压力,嗅觉神经元的反应随之减弱。
5.Impact of olfactory nerve transection on the apoptosis of mice olfactory receptor neurons嗅神经切断对小鼠嗅感觉神经元的影响
6.impairment of the sense of smell (as by damage to olfactory nasal tissue or the olfactory nerve or by obstruction of the nasal passages).嗅觉削弱(由于嗅觉鼻组织或嗅觉神经的损伤或鼻道阻塞而造成)。
7.The Effects of Acute Rhinosinusitis on the Regeneration of Olfactory Receptor Neurons急性鼻—鼻窦炎对嗅感觉神经元再生影响的实验观察
8.As expected, this produced a reaction in the olfactory neurons, the primary sensory neurons in the nose that perceive odors.和预期的结果一样,这一刺激引起嗅觉神经的一个反应,即鼻内基本感觉神经元感知到气味。
9.Computer Simulation of Olfactory Neural System Recognition Model;嗅觉神经系统识别机理模型仿真研究
10.Research on a Bionic Model of Olfactory Systems and Its Applications;嗅觉神经系统仿生模型及其应用研究
11.Study of Neural Network Model of Olfactory System and Its Applications on Artificial Olfaction and Iris Recognition;嗅觉系统神经网络模型研究及其在人工嗅觉与虹膜识别中的应用
12.Effects of Olfactory Ensheathing Cells on Olfactory Development and Nerve Regeneration嗅鞘细胞在嗅觉发育和神经再生中的作用及其机制研究
13.Cobalt Lysine Filling Technique for Tracing Olfactory Sensory Neurons within Antenna into the Central Nervous System触角嗅觉神经束路示踪的赖氨酸钴填充方法
14.Neurochip and Its Research for Sensory Mechanisms of Biological Olfaction;神经芯片及其在生物嗅觉传感机理中的研究
15.EFFECT OF OLFACTORY ENSHEATHING CELLS ON GROWTH OF SPINAL CORD NEURONS AND ITS PROTECTIVE EFFECT ON NEURONS AFTER INJURY IN VITRO嗅鞘细胞对正常及损伤脊髓神经元的保护作用
16.Generation of Functional Peripheral Neurons from Olfactory Neural Precursor Cells;体外共培养诱导嗅球神经前体细胞分化为功能性外周神经元
17.The Nanoparticle-Quantum Dots Distribution in the Olfactory Bulb of Mice after Nasal Inhalation;纳米颗粒—量子点经嗅觉通路进入中枢神经系统的实验研究
18.Results Orbit tumor of a 21 year old young lady extends the encephalic and endangers the olfactory nerve and optic chiasma, even cause olfaction and visual acuity to be declined.结果1例21岁女性患者,眼眶肿瘤侵入颅内损伤嗅神经及视交叉,引起嗅觉及视力下降。
相关短句/例句

Olfactory Receptor Neurons嗅觉受体神经元
3)Olfactory sensory neurons嗅感觉神经元
4)Olfactory receptor neurons ( ORNs )嗅神经元
1.Olfactory receptor neurons ( ORNs ) is a kind of special neuron in vertebrates.嗅神经元是脊椎动物的一类特殊的神经元,它的特殊性体现在:在初级感觉神经元中,嗅神经元是唯一胞体同外周环境相接触的神经元;嗅神经元的轴突没有被髓鞘化,在胚胎发育期,感觉神经元的轴突可形成神经束,并被雪旺细胞包裹,成体后这些神经束结构消失,代之以彼此分开并髓鞘化的轴突结构,但成体动物的嗅神经元依然保持这种胚胎期神经束的结构,其神经束被嗅鞘细胞松散包裹;不同于其他感觉系统,嗅觉信息可直接向皮层传递而不需要经过丘脑;嗅神经元最大的特殊性在于嗅神经元是脊椎动物唯一一种可终生不断再生的神经元,嗅神经元的再生是由位于嗅上皮基底层的干细胞完成的。
5)olfactory neural system嗅觉神经系统
1.A bionic mode simulating olfactory neural system,KⅢ model,and its application to face recognition are researched in this paper.对一种模拟嗅觉神经系统的仿生模型、KⅢ模型、及其在人脸识别中的应用进行了研究。
2.Not only is it due to the fact that olfactory system is yet among the most unknown sensory neural systems, but also because olfactory neural system has been reported to be tightly related to the learning and memory mechanisms of the brain.嗅觉神经系统的研究目前引起了世界各国学者广泛的关注。
6)olfactory neural network嗅觉神经网络
1.This paper presents a novel method directly dealing with time series of the sensors responses based on an olfactory neural network with many dynamic properties.文中提出将传感器阵列时间序列信号直接输入到一种具有丰富动力学特性的嗅觉神经网络中进行模式分类的方法。
延伸阅读

神经元形态中枢神经系统内轴突髓鞘的形成示意图
神经元形态中枢神经系统内轴突髓鞘的形成示意图 李瑞端绘[图]