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深层巩膜切除联合胶原物植入术 被引量:3
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作者 邹燕红 李静贞 《国外医学(眼科学分册)》 2000年第6期350-351,共2页
本文对一种新的抗青光眼手术方法 ,即深层巩膜切除联合胶原物植入术的方法、并发症、疗效进行了总结。
关键词 青光眼 深层巩膜切除联合胶原物植入术 dsci
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DSC及IR联合测定环氧树脂-双氰胺体系固化工艺参数 被引量:7
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作者 蔡晋 董如林 +2 位作者 陈智栋 金长春 方敏 《常州大学学报(自然科学版)》 CAS 2011年第4期14-18,共5页
采用非等温DSC法研究了固化剂用量对环氧树脂固化反应的影响,同时利用不同升温速率下测得的DSC曲线研究了环氧树脂-双氰胺体系的固化反应动力学,并由DSC及IR分析技术确定了该体系的最佳反应条件。实验结果表明:固化剂双氰胺最佳用量为5.... 采用非等温DSC法研究了固化剂用量对环氧树脂固化反应的影响,同时利用不同升温速率下测得的DSC曲线研究了环氧树脂-双氰胺体系的固化反应动力学,并由DSC及IR分析技术确定了该体系的最佳反应条件。实验结果表明:固化剂双氰胺最佳用量为5.6%,最佳固化温度为403K,固化时间为70min,该体系的反应活化能为96.82kJ/mol,反应级数为0.93。 展开更多
关键词 环氧树脂 双氰胺 DSC IR 固化反应动力学
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Role of DSC1 in Drosophila melanogaster synaptic activities in response to haedoxan A
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作者 Xingtao Qie Yaxin Ren +3 位作者 Xueting Chen Yuzhe Du Ke Dong Zhaonong Hu 《Insect Science》 SCIE CSCD 2023年第6期1677-1688,共12页
Drosophila sodium channel 1 (DSC1) encodes a voltage-gated divalent cation channel that mediates neuronal excitability in insects. Previous research revealed that DSC1 knockout Drosophila melanogaster conferred differ... Drosophila sodium channel 1 (DSC1) encodes a voltage-gated divalent cation channel that mediates neuronal excitability in insects. Previous research revealed that DSC1 knockout Drosophila melanogaster conferred different susceptibility to insecticides, which indicated the vital regulation role of DSC1 under insecticide stress. Haedoxan A (HA) is a lignan compound isolated from Phryma leptostachya, and we found that HA has excellent insecticidal activity and is worthy of further study as a botanical insecticide. Herein, we performed bioassay and electrophysiological experiments to test the biological and neural changes in the larval Drosophila with/without DSC1 knockout in response to HA. Bioassay results showed that knockout of DSC1 reduced the sensitivity to HA in both w1118 (a common wild-type strain in the laboratory) and parats1 (a pyrethroid-resistant strain) larvae. Except for parats1/DSC1−/−, electrophysiology results implicated that HA delayed the decay rate and increased the frequency of miniature excitatory junctional potentials of Drosophila from w1118, parats1, and DSC1−/− strains. Moreover, the neuromuscular synapse excitatory activities of parats1/DSC1−/− larvae were more sensitive to HA than DSC1−/− larvae, which further confirmed the functional contribution of DSC1 to neuronal excitability. Collectively, these results indicated that the DSC1 channel not only regulated the insecticidal activity of HA, but also maintained the stability of neural circuits through functional interaction with voltage-gated sodium channels. Therefore, our study provides useful information for elucidating the regulatory mechanism of DSC1 in the neural system of insects involving the action of HA derived from P. leptostachya. 展开更多
关键词 botanical insecticide Drosophila sodium channel 1(dsci) insect nervous system neuromuscular synapse activity REGULATORY
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