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改良小梁切除术治疗青光眼高眼压持续状态的临床分析 被引量:15
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作者 张沧霞 郑艳霞 +3 位作者 孙卧林 王庆金 张金秀 崔艳琨 《国际眼科杂志》 CAS 2013年第10期2042-2044,共3页
目的:回顾性分析改良小梁切除术治疗青光眼持续高眼压状态的临床资料,评价改良小梁切除术的效果。方法:青光眼持续高眼压状态患者100例100眼,分为治疗组55例55眼和观察组45例45眼。治疗组采用改良小梁切除术,观察组采用常规小梁切除术... 目的:回顾性分析改良小梁切除术治疗青光眼持续高眼压状态的临床资料,评价改良小梁切除术的效果。方法:青光眼持续高眼压状态患者100例100眼,分为治疗组55例55眼和观察组45例45眼。治疗组采用改良小梁切除术,观察组采用常规小梁切除术。改良措施主要有:术前星状神经节阻滞降眼压,采用表面麻醉和20g/L利多卡因棉片巩膜面浸润麻醉;用隧道刀做板层巩膜瓣;在小梁切除部位做前房穿刺,慢放房水;术中置巩膜瓣调整缝线;术中散瞳,术毕睫状肌麻痹剂应用。结果:治疗组手术并发症发生率低于观察组,两组比较差异有统计学意义(P<0.05)。随访3mo,治疗组眼压低于观察组,两组比较差异有统计学意义(t=9.1535,P<0.05)。治疗组平均住院天数少于观察组(t=39.8010,P<0.01)。治疗组平均住院费用低于观察组(t=11.3219,P<0.01)。结论:改良小梁切除术治疗青光眼持续高眼压状态不仅挽救部分视功能,减少手术严重并发症发生率,术后眼压控制更好,还可以缩短平均住院日,减少医疗费用,从而提高了患者满意度。 展开更多
关键词 青光眼 改良小梁切除术 高眼压 平均住院日
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Regulatory effects of inhibiting the activation of glial cells on retinal synaptic plasticity 被引量:2
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作者 Lihong Zhou Hui Wang +4 位作者 Jia Luo Kun Xiong Leping Zeng Dan Chen Jufang Huang 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第4期385-393,共9页
Various retinal injuries induced by ocular hypertension have been shown to induce plastic changes in retinal synapses, but the potential regulatory mechanism of synaptic plasticity after retinal injury was still uncle... Various retinal injuries induced by ocular hypertension have been shown to induce plastic changes in retinal synapses, but the potential regulatory mechanism of synaptic plasticity after retinal injury was still unclear. A rat model of acute ocular hypertension was established by injecting saline intravitreally for an hour, and elevating the intraocular pressure to 14.63 kPa (110 mmHg). Western blot assay and immunofluorescence results showed that synaptophysin expression had a distinct spatiotemporal change that increased in the inner plexiform layer within 1 day and spread across the outer plexiform layer after 3 days. Glial fibrillary acidic protein expression in retinae was greatly increased after 3 days, and reached a peak at 7 days, which was also consistent with the peak time of synaptophysin expression in the outer plexiform layer following the increased intraocular pressure. Fluorocitrate, a glial metabolic inhibitor, was intravitreally injected to inhibit glial cell activation following high intraocular pressure. This significantly inhibited the enhanced glial fibrillary acidic protein expression induced by high intraocular pressure injury. Synaptophysin expression also decreased in the inner plexiform layer within a day and the widened distribution in the outer plexiform layer had disappeared by 3 days. The results suggested that retinal glial cell activation might play an important role in the process of retinal synaptic plasticity induced by acute high intraocular pressure through affecting the expression and distribution of synaptic functional proteins, such as synaptophysin. 展开更多
关键词 nerve regeneration neuronal plasticity retina synapses SYNAPTOPHYSIN glial cells highintraocular pressure FLUOROCITRATE glial fibrillary acidic protein NSFC grant neural regeneration
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