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Predictive power of abnormal electroencephalogram for post-cerebral infarction depression 被引量:23
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作者 Yan-ping Zheng Fu-xi Wang +6 位作者 De-qiang Zhao Yan-qing Wang Zi-wei Zhao Zhan-wen Wang Jun Liu Jun Wang ping luan 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第2期304-308,共5页
Electroencephalography is a sensitive indicator for measuring brain condition, and can reflect early changes in brain function and severity of cerebral ischemia. However, it is not yet known whether electroencephalogr... Electroencephalography is a sensitive indicator for measuring brain condition, and can reflect early changes in brain function and severity of cerebral ischemia. However, it is not yet known whether electroencephalography can predict development of post-cerebral infarc- tion depression. A total of 321 patients with ischemic stroke underwent electroencephalography and Hamilton Depression Rating Scale assessment to analyze the relationship between electroencephalography and post-cerebral infarction depression. Our results show that electroencephalograms of ischemic stroke patients with depression exhibit low-amplitude alpha activity and slow theta activity. In con- trast, electroencephalograms of ischemic stroke patients without depression show fast beta activity and slow delta activity. "Ihese findings confirm that low-amplitude alpha activity and slow theta activity can be considered as independent predictors for post-cerebral infarction depression. 展开更多
关键词 nerve regeneration cerebrovascular disease brain organic mental disorders stroke ischemic stroke post-cerebral-infarction depression DEPRESSION ELECTROENCEPHALOGRAPHY Hamilton Depression Rating Scale neural regeneration
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Applications,of fluorescence lifetime imaging in clinical medicine 被引量:1
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作者 Zhanwen Wang Yanping Zheng +7 位作者 Deqiang Zhao Ziwei Zhao Lixin Liu Artem Pliss Feiqi Zhu Jun Liu Junle Qu ping luan 《Journal of Innovative Optical Health Sciences》 SCIE EI CAS 2018年第1期106-122,共17页
Fluorescence lifetime is not only associated with the molecular structure f fuorophores,but alsostrongly depends on the environment around them,which llows fuorescence lifetime imagingmicroscopy(FLIM)to be used as a t... Fluorescence lifetime is not only associated with the molecular structure f fuorophores,but alsostrongly depends on the environment around them,which llows fuorescence lifetime imagingmicroscopy(FLIM)to be used as a tool for precise measurement of the cell or tisue microenvironment,This review introduces the basic principle of fuorescence lifetime imagingtechnology and its application in clinical medicine,including research and diagnosis of diseases inskin,brain,eyes,mouth,bone,blood vessels and cavity organs,and drug evaluation.As anoninvasive,nontoxic and nonionizing radiation technique,FLIM demonstrates excellent per-formance with high sensitivity and specificity,which allows to determine precise position of thelesion and,thus,has good potential for application in biomedical research and clinical diagnosis. 展开更多
关键词 Fluorescence lifetime fluorescence lifetime imaging microscopy clinical medicine
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New advances in gated materials of mesoporous silica for drug controlled release 被引量:1
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作者 ping Huang Daizheng Lian +4 位作者 Hualin Ma Nansha Gao Limin Zhao ping luan Xiaowei Zeng 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第12期3696-3704,共9页
Drug delivery systems(DDS) are used to deliver therapeutic drugs to improve selectivity and reduce side effects. With the development of nanotechnology, many nanocarriers have been developed and applied to drug delive... Drug delivery systems(DDS) are used to deliver therapeutic drugs to improve selectivity and reduce side effects. With the development of nanotechnology, many nanocarriers have been developed and applied to drug delivery, including mesoporous silica. Mesoporous silica nanoparticles(MSNs) have attracted a lot of attention for simple synthesis, biocompatibility, high surface area and pore volume. Based on the pore system and surface modification, gated mesoporous silica nanoparticles can be designed to realize on-command drug release, which provides a new approach for selective delivery of antitumor drugs.Herein, this review mainly focuses on the “gate keepers” of mesoporous silica for drug controlled release in nearly few years(2017–2020). We summarize the mechanism of drug controlled release in gated MSNs and different gated materials: inorganic gated materials, organic gated materials, self-gated drug molecules, and biological membranes. The facing challenges and future prospects of gated MSNs are discussed rationally in the end. 展开更多
关键词 Mesoporous silica Gated materials Surface modification Drug delivery Controlled release
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