• The lyolysis-ultracentrifugation is a perfect approach for extracting protein in the optic ganglion of Sepia esculenta.

    裂解-超速离心法金乌贼视神经最佳蛋白质提取方法

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  • This present work provides the morphological basis for the regulation of estrogen on the neurosecretion in optic ganglion of Scylla serrata.

    研究雌激素参与视神经节神经内分泌调节作用提供了形态学依据

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  • The morphological changes in the retinal ganglion cells(RGCs) and optic nerve axons were observed and quantified in the specimens.

    观察大鼠视神经视网膜神经节细胞RGC形态及数目变化

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  • Glaucoma is a chronic optic neuropathy characterized by retinal ganglion cell death resulting in damage to the optic nerve head and the retinal nerve fiber layer.

    青光眼一种慢性视神经病变,它特征视网膜的视网膜神经节细胞死亡造成视神经盘视网膜神经纤维层的损害。

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  • Aim to observe the effect of treatment on absolute glaucoma with acute ache with ciliary nerve ganglion cauterization and optic neurotomy.

    目的观察睫状神经节烧灼视神经剪断术治疗伴有剧烈疼痛绝对期青光眼疗效

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  • The reacted products of SDH showed in either retinal ganglion cells (RGCs) or optic nerve fibers of the experimental eyes were lighter than those of the control eyes under microscope.

    光镜下可见高压视网膜细胞SDH反应对照浅淡,且高压眼视网膜的视神经纤维较少显色。

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  • Methods Treating 15 cases (15 eyes) diagnosed absolute glaucoma with acute ache with ciliary nerve ganglion cauterization and optic neurotomy.

    方法15(15)确诊为绝对期青光眼并伴有剧烈疼痛者,采用睫状神经节烧灼加视神经剪断术进行治疗。

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  • Objective To evaluate the efficacy of stellate ganglion block (SGB) in the treatment of ischemic optic neuropathy (ion) as compared with that of steroids.

    目的比较状神经节阻滞(SGB)及肾上腺皮质激素治疗缺血性神经病(ION)疗效

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  • Following the initial insult optic nerve swelling within the optic nerve canal or compression by bone fragments are thought to result in secondary retinal ganglion cell loss.

    一般认为受伤时视神经管内视神经肿胀碎片压迫视神经,会引起续发性的网膜神经节细胞丧失。

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  • Objective To observe the change of retinal ganglion cells(RGCs)and the expression of Bad after optic nerve injury, so as to study the changes of optic function level on morphology and molecular.

    目的建立视网膜神经节细胞体外高压培养模型观察压力和加压时间视网膜神经节细胞凋亡的影响

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  • Objective To examine the effect of inosine-loaded nanoparticles on the survival of retinal ganglion cells (RGCs) after optic nerve transection.

    目的研究载有肌苷微粒视神经切断视网膜细胞(RGC)存活影响

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  • Objective To examine the effect of inosine-loaded nanoparticles on the survival of retinal ganglion cells (RGCs) after optic nerve transection.

    目的研究载有肌苷微粒视神经切断视网膜细胞(RGC)存活影响

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