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12篇 您的检索式:作者名="Runze Guo"
    题名 作者 年代 出处 被引量
1用高压氧治疗高原脱习服症的效果分析显示文摘目的:探讨用高压氧治疗高原脱习服症的临床效果。方法:对近期结束高原防守任务后赴临潼疗养院进行疗养治疗的31例高原官兵的临床资料进行回顾性研究。我们将这31例患者分为高压氧组和康复疗养组,其中,高压氧组有18例患者,康复疗养组有13例患者。我院对康复疗养组的患者进行康复疗养,在此基础上,对高压氧组的患者进行高压氧治疗。我们在患者入院时、进行治疗后的15天及30天记录其临床症状,并对其临床症状的改善情况进行评分,比较两组患者的评分结果。结果:在治疗后15天后,高压氧组患者的高原脱习服症状评分明显低于康复疗养组的患者,二者相比差异有显著性(P<0.05)。结论:在进行康复疗养的基础上用高压氧治疗高原脱习服症可明显地改善患者的症状。但该方法的治疗效果及成熟的治疗方案尚待进一步的研究。哈振德 Xu Li Shi Runze Guo Guanghui Song Wei Wang Junfang Zhang Quan 2014当代医药论丛2014,12,14:3
2The Solar Upper Transition Region Imager(SUTRI)Onboard the SATech-01 Satellite显示文摘The Solar Upper Transition Region Imager(SUTRI)onboard the Space Advanced Technology demonstration satellite(SATech-01),which was launched to a Sun-synchronous orbit at a height of~500 km in 2022 July,aims to test the on-orbit performance of our newly developed Sc/Si multi-layer reflecting mirror and the 2k×2k EUV CMOS imaging camera and to take full-disk solar images at the Ne VII 46.5 nm spectral line with a filter width of~3 nm.SUTRI employs a Ritchey-Chrétien optical system with an aperture of 18 cm.The on-orbit observations show that SUTRI images have a field of view of~416×416 and a moderate spatial resolution of~8″without an image stabilization system.The normal cadence of SUTRI images is 30 s and the solar observation time is about16 hr each day because the earth eclipse time accounts for about 1/3 of SATech-01's orbit period.Approximately15 GB data is acquired each day and made available online after processing.SUTRI images are valuable as the Ne VII 46.5 nm line is formed at a temperature regime of~0.5 MK in the solar atmosphere,which has rarely been sampled by existing solar imagers.SUTRI observations will establish connections between structures in the lower solar atmosphere and corona,and advance our understanding of various types of solar activity such as flares,filament eruptions,coronal jets and coronal mass ejections.Xianyong Bai Hui Tian Yuanyong Deng Zhanshan Wang Jianfeng Yang Xiaofeng Zhang Yonghe Zhang Runze Qi Nange Wang Yang Gao Jun Yu Chunling He Zhengxiang Shen Lun Shen Song Guo Zhenyong Hou Kaifan Ji Xingzi Bi Wei Duan Xiao Yang Jiaben Lin Ziyao Hu Qian Song Zihao Yang Yajie Chen Weidong Qiao Wei Ge Fu Li Lei Jin Jiawei He Xiaobo Chen Xiaocheng Zhu Junwang He Qi Shi Liu Liu Jinsong Li Dongxiao Xu Rui Liu Taijie Li Zhenggong Feng Yamin Wang Chengcheng Fan Shuo Liu Sifan Guo Zheng Sun Yuchuan Wu Haiyu Li Qi Yang Yuyang Ye Weichen Gu Jiali Wu Zhe Zhang Yue Yu Zeyi Ye Pengfeng Sheng Yifan Wang Wenbin Li Qiushi Huang Zhong Zhang 2023Research in Astronomy and Astrophysics2023,23,6:1
3Engineering the viscoelasticity of gelatin methacryloyl(GelMA)hydrogels via small“dynamic bridges”to regulate BMSC behaviors for osteochondral regeneration显示文摘The dynamic extracellular matrix(ECM)constantly affects the behaviors of cells.To mimic the dynamics of ECM with controllable stiffness and energy dissipation,this study proposes a strategy in which a small molecule,3,4-dihydroxybenzaldehyde(DB),was used as fast'dynamic bridges'to construct viscoelastic gelatin methacryloyl(GelMA)-based hydrogels.The storage modulus and loss modulus of hydrogels were independently adjusted by the covalent crosslinking density and by the number of dynamic bonds.The hydrogels exhibited self-healing property,injectability,excellent adhesion and mechanical properties.Moreover,the in vitro results revealed that the viscous dissipation of hydrogels favored the spreading,proliferation,osteogenesis and chondrogenesis of bone marrow mesenchymal stem cells(BMSCs),but suppressed their adipogenesis.RNA-sequencing and immunofluorescence suggested that the viscous dissipation of hydrogels activated Yes-associated protein(YAP)by stabilizing integrinβ1,and further promoted nuclear translocation of smad2/3 andβ-catenin to enhance chondrogenesis and osteogenesis.As a result,the viscoelastic GelMA hydrogels with highest loss modulus showed best effect in cartilage and subchondral bone repair.Taken together,findings from this study reveal an effective strategy to fabricate viscoelastic hydrogels for modulating the interactions between cells and dynamic ECM to promote tissue regeneration.Changjiang Liu Qifan Yu Zhangqin Yuan Qianping Guo Xiting Liao Feng Han Tao Feng Guoping Liu Runze Zhao Zhuang Zhu Haijiao Mao Caihong Zhu Bin Li 2023Bioactive Materials2023,,7:1
4Reducing generation uncertainty by integrating CSP with wind power: an adaptive robust optimization-based analysis显示文摘CHEN Runze SUN Hongbin GUO Qinglai 2015IEEE Trans on Sustainable Energy2015,6,2:1
5Dynamic human retinal pigment epithelium(RPE)and choroid architecture based on single-cell transcriptomic landscape analysis显示文摘The retinal pigment epithelium(RPE)and choroid are located behind the human retina and have multiple functions in the human visual system.Knowledge of the RPE and choroid cells and their gene expression profiles are fundamental for understanding retinal disease mechanisms and therapeutic strategies.Here,we sequenced the RNA of about 0.3 million single cells from human RPE and choroids across two regions and seven ages,revealing regional and age differences within the human RPE and choroid.Cell–cell interactions highlight the broad connectivity networks between the RPE and different choroid cell types.Moreover,the transcription factors and their target genes change during aging.The coding of somatic variations increases during aging in the human RPE and choroid at the single-cell level.Moreover,we identified ELN as a candidate for improving RPE degeneration and choroidal structure during aging.The mapping of the molecular architecture of the human RPE and choroid improves our understanding of the human vision support system and offers potential insights into the intervention targets for retinal diseases.Lulin Huang Lin Ye Runze Li Shanshan Zhang Chao Qu Shujin Li Jie Li Mu Yang Biao Wu Ran Chen Guo Huang Bo Gong Zheng Li Hongjie Yang Man Yu Yi Shi Changguan Wang Wei Chen Zhenglin Yang 2023Genes & Diseases2023,10,6:0
6Phosphate-dependent regulation of vacuolar trafficking of OsSPX-MFSs is critical for maintaining intracellular phosphate homeostasis in rice显示文摘Vacuolar storage of inorganic phosphate(Pi)is essential for Pi homeostasis in plants.The SPX-MFS family proteins have been demonstrated to be vacuolar Pi transporters in many plant species.Transcriptional regulation of the predominant transporter among rice SPX-MFSs,OsSPX-MFS3,was only moderately suppressed by Pi starvation.Thus,post-transcriptional mechanisms were hypothesized to regulate the activity of OsSPX-MFS3.In this study,we found that the tonoplast localization of OsSPX-MFSs is inhibited under Pi-depleted conditions,resulting in their retention in the pre-vacuolar compartments(PVCs).A yeast two-hybrid screen identified that two SNARE proteins,OsSYP21 and OsSYP22,interact with the MFS domain of OsSPX-MFS3.Further genetic and cytological analyses indicate that OsSYP21 and OsSYP22 facilitate trafficking of OsSPX-MFS3 from PVCs to the tonoplast.Although a homozygous frameshift mutation in OsSYP22 appeared to be lethal,tonoplast localization of OsSPX-MFS3 was significantly inhibited in transgenic plants expressing a negative-dominant form of OsSYP22(OsSYP22-ND),resulting in reduced vacuolar Pi concentrations in OsSYP22-ND plants.Under Pi-depleted conditions,the interaction between OsSYP22 and OsSPX-MFS3 was disrupted,and this process depended on the presence of the SPX domain.Deleting the SPX domains of OsSPX-MFSs resulted in their tonoplast localization under both Pi-depleted and Pi-replete conditions.Complementation of the osspx-mfs1/2/3 triple mutants with the MFS domain or the SPX domain of OsSPX-MFS3 confirmed that the MFS and SPX domains are responsive to Pi transport activity and Pi-dependent regulation,respectively.These data indicated that the SPX domains of OsSPX-MFSs sense cellular Pi(InsP)levels and,under Pi-depleted conditions,inhibit the interaction between OsSPX-MFSs and OsSYP21/22 and subsequent trafficking of OsSPX-MFSs from PVCs to the tonoplast.Runze Guo Qi Zhang Kun Qian Yinghui Ying Wenying Liao Lening Gan Chuanzao Mao Yong Wang James Whelan Huixia Shou 2023Molecular Plant2023,16,8:0
7Design,Fabrication and Assembly of the Solar Upper Transition Region Imager(SUTRI)显示文摘The Solar Upper Transition Region Imager(SUTRI)focuses on the solar transition region to achieve dynamic imaging observation of the upper transition region.In this paper,we report the optical system design,mechanical design,ultrasmooth mirror manufacture and measurement,EUV multilayer film coating,prelaunch installation and calibration for the SUTRI payload at IPOE,Tongji University.Finally,the SUTRI carried by the SATech-01 satellite was successfully set to launch.All functions of this telescope were normal,and the observation results obtained in orbit were consistent with the design.Zhanshan Wang Jun Yu Runze Qi Chunling He Zhengxiang Shen Li Jiang Weichen Gu Jiali Wu Zhe Zhang Pengfeng Sheng Yifan Wang Yue Yu Zeyi Ye JingJing Xia Yujie Xing Hongfei Jiao Bin Ma Qiushi Huang Zhong Zhang Xianyong Bai Yuanyong Deng Hui Tian Nange Wang Lun Shen Song Guo Lei Jing Xiaobo Chen Yang Gao Xiaocheng Zhu Xiaofeng Zhang Junwang He Qi Shi Shuo Liu Xingzi Bi 2023Research in Astronomy and Astrophysics2023,23,9:0
8Stable correlation and robust feature screening显示文摘In this paper,we propose a new correlation,called stable correlation,to measure the dependence between two random vectors.The new correlation is well defined without the moment condition and is zero if and only if the two random vectors are independent.We also study its other theoretical properties.Based on the new correlation,we further propose a robust model-free feature screening procedure for ultrahigh dimensional data and establish its sure screening property and rank consistency property without imposing the subexponential or sub-Gaussian tail condition,which is commonly required in the literature of feature screening.We also examine the finite sample performance of the proposed robust feature screening procedure via Monte Carlo simulation studies and illustrate the proposed procedure by a real data example.Xu Guo Runze Li Wanjun Liu Lixing Zhu 2022Science China Mathematics2022,65,1:0
9Deep Sc-RNA sequencing decoding the molecular dynamic architecture of the human retina显示文摘The human retina serves as a light detector and signals transmission tissue.Advanced insights into retinal disease mechanisms and therapeutic strategies require a deep understanding of healthy retina molecular events.Here,we sequenced the m RNA of over 0.6 million single cells from human retinas across six regions at nine different ages.Sixty cell sub-types have been identified from the human mature retinas with unique markers.We revealed regional and age differences of gene expression profiles within the human retina.Cell-cell interaction analysis indicated a rich synaptic connection within the retinal cells.Gene expression regulon analysis revealed the specific expression of transcription factors and their regulated genes in human retina cell types.Some of the gene’s expression,such as DKK3,are elevated in aged retinas.A further functional investigation suggested that over expression of DKK3 could impact mitochondrial stability.Overall,decoding the molecular dynamic architecture of the human retina improves our understanding of the vision system.Lulin Huang Runze Li Lin Ye Shanshan Zhang Huaping Tian Mingyan Du Chao Qu Shujin Li Jie Li Mu Yang Biao Wu Ran Chen Guo Huang Ling Zhong Hongjie Yang Man Yu Yi Shi Changguan Wang Houbin Zhang Wei Chen Zhenglin Yang 2023Science China(Life Sciences)2023,66,3:0
10Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms显示文摘Abdominal aortic aneurysm(AAA)is a progressive aortic dilatation,causing~80%mortality upon rupture.Currently,there is no approved drug therapy for AAA.Surgical repairs are invasive and risky and thus not recommended to patients with small AAAs which,however,account for~90%of the newly diagnosed cases.It is therefore a compelling unmet clinical need to discover effective non-invasive strategies to prevent or slow down AAA progression.We contend that the first AAA drug therapy will only arise through discoveries of both effective drug targets and innovative delivery methods.There is substantial evidence that degenerative smooth muscle cells(SMCs)orchestrate AAA pathogenesis and progression.In this study,we made an exciting finding that PERK,the endoplasmic reticulum(ER)stress Protein Kinase R-like ER Kinase,is a potent driver of SMC degeneration and hence a potential therapeutic target.Indeed,local knockdown of PERK in elastase-challenged aorta significantly attenuated AAA lesions in vivo.In parallel,we also conceived a biomimetic nanocluster(NC)design uniquely tailored to AAA-targeting drug delivery.This NC demonstrated excellent AAA homing via a platelet-derived biomembrane coating;and when loaded with a selective PERK inhibitor(PERKi,GSK2656157),the NC therapy conferred remarkable benefits in both preventing aneurysm development and halting the progression of pre-existing aneurysmal lesions in two distinct rodent models of AAA.In summary,our current study not only establishes a new intervention target for mitigating SMC degeneration and aneurysmal pathogenesis,but also provides a powerful tool to facilitate the development of effective drug therapy of AAA.Nisakorn Yodsanit Takuro Shirasu Yitao Huang Li Yin Zain Husain Islam Alexander Christopher Gregg Alessandra Marie Riccio Runze Tang Eric William Kent Yuyuan Wang Ruosen Xie Yi Zhao Mingzhou Ye Jingcheng Zhu Yi Huang Nicholas Hoyt Mengxue Zhang John A.Hossack Morgan Salmon K.Craig Kent Lian-Wang Guo Shaoqin Gong Bowen Wang 2023Bioactive Materials2023,,8:0
11Advances in 3D Bioprinting显示文摘Three-dimensional(3D)bioprinting has emerged as a promising approach for engineering functional tissues and organs by layer-by-layer precise positioning of biological materials,living cells,and biochemical components.Compared with nonbiological printing,3D bioprinting involves additional complexities and technical challenges owing to the processing of living cells,such as the appropriate biomaterials that fulfill the requirements for both printability and functionality.In this review,we first introduce the development course of 3D bioprinting,highlighting innovative forms of living building blocks and advances in enabling techniques of 3D bioprinting.We then summarize the state-of-the-art advancements in 3D bioprinting for biomedical applications,including macroscale tissue or organ bioprinting,disease modeling,microphysiological systems,biobots,and bioprinting in space.Despite the rapid development of 3D bioprinting over the past decades,most 3D bioprinted tissue or organ constructs are still far from being suitable for clinical translation,and it is necessary for the field of bioprinting to shift its focus from shape mimicking towards functionality development.Therefore,we provide our perspectives on this burgeoning field with an emphasis on functional maturation post printing and translational applications at the bedside.Yongcong Fang Yuzhi Guo Tiankun Liu Runze Xu Shuangshuang Mao Xingwu Mo Ting Zhang Liliang Ouyang Zhuo Xiong Wei Sun 2022Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)2022,1,1:0
12Microfluidic field strategy for enhancement and scale up of liquid-liquid homogeneous chemical processes by optimization of 3D spiral baffle structure显示文摘Due to the scale effect, the uniform distribution of reagents in continuous flow reactor becomes bad when the channel is enlarged to tens of millimeters. Microfluidic field strategy was proposed to produce high mixing efficiency in large-scale channel. A 3D spiral baffle structure(3SBS) was designed and optimized to form microfluidic field disturbed by continuous secondary flow in millimeter scale Y-shaped tube mixer(YSTM). Enhancement effect of the 3SBS in liquid-liquid homogeneous chemical processes was verified and evaluated through the combination of simulation and experiment. Compared with 1 mm YSTM, 10 mm YSTM with 3SBS increased the treatment capacity by 100 times, shortened the basic complete mixing time by 0.85 times, which proves the potential of microfluidic field strategy in enhancement and scale-up of liquid-liquid homogeneous chemical process.Shuangfei Zhao Yingying Nie Wenyan Zhang Runze Hu Lianzhu Sheng Wei He Ning Zhu Yuguang Li Dong Ji Kai Guo 2023Chinese Journal of Chemical Engineering2023,56,4:0
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