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手足口病合并病毒性脑炎患儿脑脊液和血清NSE测定及意义 被引量:12
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作者 谢付静 周方 +5 位作者 蒋就喜 骆安德 杨方源 江廷开 张思轩 沈建峰 《山东医药》 CAS 北大核心 2010年第41期10-12,共3页
目的探讨手足口病(HFMD)合并病毒性脑炎(VE)患儿脑脊液和血清神经元特异性烯醇化酶(NSE)含量变化的临床意义。方法采用酶联免疫吸附试验双抗体夹心法对32例HFMD合并VE、30例单纯HFMD和26例非神经系统疾病患儿的脑脊液和血清NSE进行测定... 目的探讨手足口病(HFMD)合并病毒性脑炎(VE)患儿脑脊液和血清神经元特异性烯醇化酶(NSE)含量变化的临床意义。方法采用酶联免疫吸附试验双抗体夹心法对32例HFMD合并VE、30例单纯HFMD和26例非神经系统疾病患儿的脑脊液和血清NSE进行测定,比较各组NSE水平及惊厥/抽搐组与无惊厥/抽搐组、嗜睡/昏睡组与无意识障碍组脑脊液和血清NSE水平的差异。结果与对照组相比,HFMD合并VE组脑脊液和血清NSE水平均有统计学差异(P<0.05),单纯HFMD组脑脊液和血清NSE水平无统计学差异(P>0.05);HFMD合并VE患儿惊厥/抽搐组脑脊液和血清NSE水平高于无惊厥/抽搐组,意识障碍组脑脊液和血清NSE水平高于无意识障碍组(P均<0.01);患儿脑脊液和血清NSE含量呈正相关(r=0.87,P<0.01)。结论 HFMD合并VE患儿脑脊液和血清NSE水平与疾病的严重程度相关,检测HFMD患儿脑脊液及血清NSE水平的变化有助于判定脑组织受损的严重程度及评估预后。 展开更多
关键词 手足口病 脑炎 病毒性 磷酸丙酮酸水合酶
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Ni-MOFs@GO复合材料吸附亚甲基蓝工艺优化及其性能研究 被引量:5
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作者 张思轩 张爱佳 +1 位作者 沈诗淳 单凤君 《化学研究与应用》 CAS 北大核心 2023年第1期39-46,共8页
为了提高氧化石墨烯(GO)对阳离子染料的吸附效果,采用溶液共混法制备Ni-MOFs@GO复合材料。采用X射线衍射仪(XRD)、傅里叶红外光谱仪(FTIR)和扫描电子显微镜(SEM)对其结构和形貌进行了表征。采用响应曲面法(RSM)优化Ni-MOFs@GO对亚甲基蓝... 为了提高氧化石墨烯(GO)对阳离子染料的吸附效果,采用溶液共混法制备Ni-MOFs@GO复合材料。采用X射线衍射仪(XRD)、傅里叶红外光谱仪(FTIR)和扫描电子显微镜(SEM)对其结构和形貌进行了表征。采用响应曲面法(RSM)优化Ni-MOFs@GO对亚甲基蓝(MB)的吸附工艺。以Ni-MOFs@GO浓度、MB质量浓度和吸附温度3因素为变量,以MB吸附量为响应值,建立了二项式回归模型方程,确定最佳吸附条件,并进行动力学和热力学分析。结果表明:3因素的一次项和二次项对MB的吸附效果影响显著,交互项影响不明显。Ni-MOFs@GO对MB最佳吸附条件为Ni-MOFs@GO浓度为0.6 g·L^(-1),MB质量浓度为30 mg·L^(-1),吸附温度为26℃,MB吸附量为259.83 mg/g;吸附过程符合准二级动力学方程,吸附模型符合Freundlich等温线方程。 展开更多
关键词 金属有机骨架材料 氧化石墨烯 亚甲基蓝 吸附 优化
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Quantum fluctuation of entanglement for accelerated two-level detectors
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作者 Si-Xuan Zhang Tong-Hua Liu +3 位作者 Shuo Cao Yu-Ting Liu Shuai-Bo Geng Yu-Jie Lian 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第5期149-154,共6页
It is well known that the quantum fluctuation of entanglement(QFE) between Unruh–De Witt detector(modeled by a two-level atom) is always investigated in a relativistic setting. However, both of the Unruh radiation an... It is well known that the quantum fluctuation of entanglement(QFE) between Unruh–De Witt detector(modeled by a two-level atom) is always investigated in a relativistic setting. However, both of the Unruh radiation and quantum fluctuation effects play an important role in precise measurements of quantum entanglement. In this paper, we have quantitatively analyzed how the relativistic motion affects the QFE for two entangled Unruh–De Witt detectors, one of which is accelerated and interacting with the neighbor external scalar field. Our results show that the QFE, which initially increases by the Unruh thermal noise, will suddenly decay when the acceleration reaches to a considerably large value. Therefore, the relativistic effect will lead to non-negligible QFE effect. We also find that the initial QFE(without acceleration effect) reaches its minimum value at the maximally entangled state and the separable state. More importantly, our analysis demonstrates that although the QFE has a huge decay when the acceleration is greater than ~ 0.96, the ratio of △E/C is still very large, due to the simultaneous decay of concurrence to a very low value. Finally, enlightened by the well-known equivalence principle,we discuss the possibility of applying the above findings to the dynamics of QFE under the influence of gravitation field. 展开更多
关键词 relativistic quantum information quantum fluctuation Unruh effect
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