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高流量氧疗与无创呼吸机对重症肺炎致呼吸衰竭的疗效
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作者 高芬 刘凤莲 张艺萍 《医学研究前沿》 2025年第9期21-23,共3页
目的探讨高流量氧疗+无创呼吸机治疗重症肺炎致呼吸衰竭患儿的效果。方法纳入2022年5月到2025年5月重症肺炎致呼吸衰竭患儿60例。经随机数字表法分组,传统组(30例)采取无创呼吸机治疗,研究组(30例)采取高流量氧疗+无创呼吸机治疗,对比... 目的探讨高流量氧疗+无创呼吸机治疗重症肺炎致呼吸衰竭患儿的效果。方法纳入2022年5月到2025年5月重症肺炎致呼吸衰竭患儿60例。经随机数字表法分组,传统组(30例)采取无创呼吸机治疗,研究组(30例)采取高流量氧疗+无创呼吸机治疗,对比效果。结果治疗48h后,研究组临床病情改善优良率、PaO_(2)、SaO_(2)水平高于传统组(p<0.05)。治疗48h后,研究组WBC、hs-CR、PCT水平、并发症率低于传统组(p<0.05)。结论高流量氧疗+无创呼吸机治疗重症肺炎致呼吸衰竭患儿,能够提高疗效,更有效改善炎症反应及血气指标水平,降低并发症风险。 展开更多
关键词 高流量氧疗 无创呼吸机 重症肺炎 呼吸衰竭 疗效
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Semaphorin 7A promotes human vascular smooth muscle cell proliferation and migration through theβ-catenin signaling pathway
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作者 XIAOSU SONG fen gao +4 位作者 HONG LI WEIWEI QIN CHANJUAN CHAI GUOJUAN SHI HUIYU YANG 《BIOCELL》 SCIE 2023年第4期849-858,共10页
Background:Vascular smooth muscle cells(VSMCs)undergo a conversion from a contractile phenotype to a proliferative synthetic phenotype,contributing to the pathogenesis of cardiovascular diseases.Semaphorin 7A(SEMA7A)i... Background:Vascular smooth muscle cells(VSMCs)undergo a conversion from a contractile phenotype to a proliferative synthetic phenotype,contributing to the pathogenesis of cardiovascular diseases.Semaphorin 7A(SEMA7A)is a glycosylphosphatidylinositol-anchored membrane protein that plays an important role in vascular homeostasis by regulating endothelial cell behaviors.However,the expression and role of SEMA7A in VSMCs remain unclear.Methods:In this study,we screened for VSMC-regulating genes in publicly available datasets and analyzed the expression of SEMA7A in human coronary artery smooth muscle cells(hCASMCs)treated with platelet-derived growth factor-BB(PDGF-BB).The effects of SEMA7A overexpression and knockdown on hCASMC proliferation and migration were examined.The signaling pathways involved in the action of SEMA7A in hCASMCs were determined.Results:Bioinformatic analysis showed that SEMA7A was significantly dysregulated in VSMCs treated with oxidized low-density lipoprotein or overexpressing progerin,a pro-atherogenic gene.The PDGF-BB stimulation led to a concentration-and time-dependent induction of SEMA7A.Depletion of SEMA7A attenuated PDGF-BB-induced hCASMC proliferation and migration.Conversely,overexpression of SEMA7A enhanced hCASMC proliferation and migration.Mechanistically,SEMA7A stimulated the activation of theβ-catenin pathway and upregulated c-Myc,CCND1,and MMP7.Knockdown ofβ-catenin impaired SEMA7A-induced hCASMC proliferation and migration.Conclusions:SEMA7A triggers phenotype switching in VSMCs through theβ-catenin signaling pathway and may serve as a potential therapeutic target for cardiovascular diseases. 展开更多
关键词 SEMA7A Vascular smooth muscle cell Phenotype switching REMODELING Β-CATENIN
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冬夏季对正常人群泪膜稳定性的对比研究
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作者 张婉婷 高芬 +1 位作者 穆东伟 周青霞 《中国现代医学杂志》 CAS 2018年第29期87-89,共3页
目的对比寒假与暑假大学生眼表泪膜稳定性和泪液分泌量。方法选取在寒假和暑假行干眼检查的大学生263例(全部为右眼),分为寒假组125例和暑假组138例。观察两组首次非侵入泪膜破裂时间(NITBUTf)、平均非侵入泪膜破裂时间(NITBUTav)、下... 目的对比寒假与暑假大学生眼表泪膜稳定性和泪液分泌量。方法选取在寒假和暑假行干眼检查的大学生263例(全部为右眼),分为寒假组125例和暑假组138例。观察两组首次非侵入泪膜破裂时间(NITBUTf)、平均非侵入泪膜破裂时间(NITBUTav)、下泪河高度(ITMH)、SchirmerⅠ试验(SⅠt)结果。结果两组患者NITBUTf、NITBUTav、ITMH比较,差异有统计学意义(P <0.05),两组SⅠt比较,差异无统计学意义(P>0.05)。结论中原地区,寒暑假对大学生干眼检查结果有影响。夏季人群泪膜稳定性较冬季好,ITMH更高,而SⅠt无差异。 展开更多
关键词 季节 泪膜破裂时间 下泪河高度 ShirmerⅠ试验
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Precision gravity measurement facility
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作者 Zebing ZHOU Yuelong LIU +3 位作者 Hao ZHOU Ji FAN Xiaochun DUAN fen gao 《Frontiers of Engineering Management》 2025年第4期1254-1258,共5页
1 Overview of the precision gravity measurement facility.The Precision Gravity Measurement Facility (PGMF) is one of China’s major national scientific and technological infrastructures. With a total investment of 859... 1 Overview of the precision gravity measurement facility.The Precision Gravity Measurement Facility (PGMF) is one of China’s major national scientific and technological infrastructures. With a total investment of 859 million RMB and a five-year construction period, the project was supervised by the Ministry of Education of China and the Hubei Provincial People’s Government, and jointly established by the Chinese Academy of Sciences (CAS) and the Wuhan Municipal People’s Government. The application was initiated in 2010, approved in 2015, and construction began in 2018. Huazhong University of Science and Technology, China (HUST) serves as the legal entity, in collaboration with the CAS Innovation Academy for Precision Measurement Science and Technology, China University of Geosciences (Wuhan), and Sun Yat-sen University, China (Luo et al., 2016). 展开更多
关键词 precision gravity measurement large-scale scientific project technological innovation gravity reference satellite gravity field measurement gravity/gravity-gradient detection
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