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张守琳运用“温阳解毒通络”法治疗糖尿病肾脏病(Ⅳ-Ⅴ期)经验探析
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作者 崔成姬 张守琳 +3 位作者 刘艳华 张洪宝 刘洪凯 李凡 《长春中医药大学学报》 2024年第9期968-971,共4页
糖尿病肾脏病属中医学的“肾消(消肾)”“下消”“水肿”等范畴,目前已成为终末期肾病的主要原因。张守琳教授认为“阳虚毒瘀肾络”是糖尿病肾脏病(Ⅳ-Ⅴ期)的基本病机,阳气受损为发病之本,毒瘀肾络是发病的关键环节,并确立了“温阳解... 糖尿病肾脏病属中医学的“肾消(消肾)”“下消”“水肿”等范畴,目前已成为终末期肾病的主要原因。张守琳教授认为“阳虚毒瘀肾络”是糖尿病肾脏病(Ⅳ-Ⅴ期)的基本病机,阳气受损为发病之本,毒瘀肾络是发病的关键环节,并确立了“温阳解毒通络”的治疗原则,有效延缓了肾功能损伤的进展和进入透析的进程。 展开更多
关键词 张守琳 温阳解毒通络 糖尿病肾脏病(Ⅳ-期) 经验
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老年Ⅳ~Ⅴ级颅内动脉瘤介入栓塞术中血压管理策略对预后的影响
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作者 付煜 李舜 +3 位作者 蒋汉刚 葛俊林 罗松 苑文成 《神经损伤与功能重建》 2024年第3期130-135,共6页
目的:探究介入栓塞术中不同血压管理策略对老年Ⅳ~Ⅴ级颅内动脉瘤患者的预后影响。方法:回顾性选取我院收治的老年Ⅳ~Ⅴ级颅内动脉瘤患者110例,并纳入训练集。使用随机数字表法将患者分为观察组(55例)和对照组(55例),比较训练集两组患... 目的:探究介入栓塞术中不同血压管理策略对老年Ⅳ~Ⅴ级颅内动脉瘤患者的预后影响。方法:回顾性选取我院收治的老年Ⅳ~Ⅴ级颅内动脉瘤患者110例,并纳入训练集。使用随机数字表法将患者分为观察组(55例)和对照组(55例),比较训练集两组患者的临床资料;使用Kaplan-Meier法进行生存曲线的绘制,比较不同血压管理策略患者的2年预后不良发生率;Cox单因素和多因素回归分析患者术后预后不良的影响因素;构建预测患者术后预后不良的列线图模型;通过验证集患者以受试者工作特征曲线(ROC)和校准曲线对模型效能进行评价。依据模型预测个体风险评分,构建危险分层系统。结果:观察组患者的2年预后不良发生率明显低于对照组(P<0.05);高血压、手术时机为中期和晚期、平均动脉压≥65 mmHg、血压波动幅度≥16 mmHg、瘤体长径与瘤颈宽度的比值(AR)>2.0是老年Ⅳ~Ⅴ级颅内动脉瘤患者介入栓塞术预后不良的独立危险因素(P<0.05),术中血压管理策略为控制性降压是老年Ⅳ~Ⅴ级颅内动脉瘤患者介入栓塞术预后不良的保护因素(P<0.05);列线图预测模型有较好的区分度及准确度。危险分层系统将所有患者分为4个危险分组:极低风险组(总分<30分)、低风险组(30分≤总分<78分)、中风险组(78分≤总分<106分)和高风险组(总分≥106分)。该危险分层系统能区分不同术中血压管理策略患者的预后不良发生情况(P<0.05)。结论:在手术过程中应实施瑞芬太尼联合尼莫地平控制性降压的血压管理策略,可以提高患者的预后水平。 展开更多
关键词 老年Ⅳ~级颅内动脉瘤 介入栓塞术 术中血压管理 预后
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典型峡谷Ⅴ型地貌下桥址区风特性
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作者 张玥 刘子琦 石慧慧 《西安科技大学学报》 CAS 北大核心 2024年第3期575-586,共12页
为得到山区峡谷典型Ⅴ型地形下的桥梁抗风设计的关键风特性参数,通过“数值风洞试验”建立模型,以实桥为工程背景构建三维地形网格,基于3种典型湍流模型和流体壁面粗糙度对桥位的风场特性进行分析,选取最优湍流模型和流体壁面粗糙度对... 为得到山区峡谷典型Ⅴ型地形下的桥梁抗风设计的关键风特性参数,通过“数值风洞试验”建立模型,以实桥为工程背景构建三维地形网格,基于3种典型湍流模型和流体壁面粗糙度对桥位的风场特性进行分析,选取最优湍流模型和流体壁面粗糙度对该地形桥位处的风场特性进行分析;围绕两个影响桥址区风特性的地形参数(山体高度和夹角),阐明Ⅴ型峡谷地形下风特性参数的变化规律,并与现行规范进行对比,推算桥面设计基准风速。结果表明:该Ⅴ型峡谷地形的最佳湍流模型和流体壁面粗糙度分别为RNG k-ε和20 m;随着山体高度及山体夹角两参数的变化,风速增加幅度分别为2.37%~12.56%和1.24%~6.98%;山体高度及山体夹角两变参数下,梯度风高度分别为700 m和800 m左右;实际湍流强度大于规范中四类地表规范值,在离地高度40 m范围内,湍流强度更接近于D类地表。实际Ⅴ型峡谷桥址区不能简单按规范归为C类或D类地形,在设计风参数计算时应综合考虑规范和经验公式,还可借助模拟手段来提高其准确性。 展开更多
关键词 风特性 型峡谷 数值风洞试验 湍流模型 地形参数 设计基准风速
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基于恒电容表面络合模型预测土壤中As(Ⅴ)吸附行为研究
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作者 薛沁 李焱 +1 位作者 郁何敏 王玉军 《农业环境科学学报》 CAS CSCD 北大核心 2024年第2期278-284,共7页
吸附是控制As在土壤中迁移的重要过程之一,为了预测As(Ⅴ)在土壤中的吸附过程,使用恒电容表面络合模型(CCM)模拟As(Ⅴ)在土壤中的吸附行为,获取As(Ⅴ)在土壤上吸附的表面络合常数,建立土壤基本理化性质(pH、有机质、碳酸钙、无定形铁/铝... 吸附是控制As在土壤中迁移的重要过程之一,为了预测As(Ⅴ)在土壤中的吸附过程,使用恒电容表面络合模型(CCM)模拟As(Ⅴ)在土壤中的吸附行为,获取As(Ⅴ)在土壤上吸附的表面络合常数,建立土壤基本理化性质(pH、有机质、碳酸钙、无定形铁/铝/锰、总铁)与As(Ⅴ)表面络合参数的线性回归模型,以阐明As在土壤中吸附的主控因子。结果显示,As(Ⅴ)在不同类型的土壤中表现出不同的吸附特征,恒电容模型能够很好地模拟As(Ⅴ)在不同pH下的吸附特性(R^(2)为0.71~0.96),通过CCM模型拟合得到As(Ⅴ)在土壤表面的3个表面络合常数,绝大部分土壤lg K_(1)比lg K_(2)和lg K_(3)的值要大,说明As(Ⅴ)在土壤中的吸附相较于单齿络合物更偏向于形成双齿双核的络合物。As(Ⅴ)表面络合常数与土壤性质间的回归分析结果表明,As(Ⅴ)表面络合常数主要受土壤pH和无定形铁、无定形锰含量的影响。为了进一步验证上述线性模型的普适性,利用文献数据中土壤性质数据预测不同土壤上As(Ⅴ)的表面络合常数,并结合CCM模型预测了As(Ⅴ)在文献土壤中的吸附量,预测值和实测值具有很好的相关性,说明该模型具有一定的普适性。 展开更多
关键词 表面络合模型 As() 吸附 恒电容模型 广义复合模式
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双洞八车道特大跨度隧道Ⅴ级石质围岩开挖工法
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作者 施有志 刘旭东 雍金柱 《中外公路》 2024年第2期231-242,共12页
为减小双洞八车道特大跨度隧道洞口Ⅴ级石质围岩后行导坑爆破对已完成支护结构的不利影响,该文以平潭牛寨山隧道工程为例,针对原设计双侧壁导坑法在后行的临近导坑爆破时,易将原先已施工完成的临时钢支撑震塌,提出取消临时横向支撑的变... 为减小双洞八车道特大跨度隧道洞口Ⅴ级石质围岩后行导坑爆破对已完成支护结构的不利影响,该文以平潭牛寨山隧道工程为例,针对原设计双侧壁导坑法在后行的临近导坑爆破时,易将原先已施工完成的临时钢支撑震塌,提出取消临时横向支撑的变更方案1,以及带竖向支撑的上下台阶法(变更方案2),再利用有限元法计算,模拟3种不同开挖工法对隧道变形及受力的影响。计算结果表明:3种方案引起的拱顶沉降相差较小,最大相差约11.8%;变更方案2引起的围岩应力最大,但变更方案2同时取消了左右侧壁导坑的横向支撑以及左右侧壁导坑下台阶的竖向支撑,大大简化了施工工序。最后,结合监测数据进行分析,隧道结构安全稳定,变更方案2不仅合理可靠,而且加快了施工进度,节约了造价。 展开更多
关键词 特大跨度隧道 级石质围岩 工法优化 数值模拟 现场监测
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PrxⅤ在芝麻素增强吉西他滨诱导的肺癌细胞凋亡中的作用机制
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作者 孙婉婧 林星 +2 位作者 姜云峰 杨哲智 车成日 《延边大学医学学报》 CAS 2024年第2期79-84,共6页
[目的]探讨PrxⅤ在芝麻素增强吉西他滨诱导的人肺腺癌A549细胞凋亡中的作用机制,旨在为肺癌的治疗提供靶点.[方法]取人肺腺癌A549细胞株体外培养48 h,采用MTT法检测不同浓度吉西他滨及芝麻素作用下的A549细胞的存活率,并计算半数抑制浓... [目的]探讨PrxⅤ在芝麻素增强吉西他滨诱导的人肺腺癌A549细胞凋亡中的作用机制,旨在为肺癌的治疗提供靶点.[方法]取人肺腺癌A549细胞株体外培养48 h,采用MTT法检测不同浓度吉西他滨及芝麻素作用下的A549细胞的存活率,并计算半数抑制浓度.[结果]吉西他滨、芝麻素作用于人肺腺癌A549细胞的半数抑制浓度分别为7、45μmol/L.划痕实验结果显示联合用药组划痕修复率显著低于单用药组(P<0.05,P<0.01).TUNEL染色结果显示联合用药组凋亡细胞数显著高于吉西他滨组和芝麻素组(P<0.01).JC-1荧光探针标记检测结果显示联合用药组细胞中线粒体膜电位降低幅度显著高于吉西他滨组和芝麻素组(P<0.05).荧光探针DCFH-DA检测结果显示吉西他滨组和芝麻素组细胞ROS水平显著低于联合用药组.蛋白印迹实验结果显示吉西他滨和芝麻素均可抑制A549细胞中PrxⅤ表达,联合用药组抑制作用更为显著.[结论]吉西他滨和芝麻素均可抑制人肺腺癌A549细胞的增殖和迁移,且芝麻素可增强吉西他滨的上述作用;吉西他滨可降低PrxⅤ表达,从而减弱PrxⅤ对人肺腺癌A549细胞的保护作用,芝麻素可增强吉西他滨的这一作用;吉西他滨和芝麻素可降低人肺腺癌A549细胞内PrxⅤ表达,升高细胞内ROS水平,降低线粒体膜电位,从而使细胞发生凋亡. 展开更多
关键词 非小细胞肺癌 吉西他滨 芝麻素 活性氧 Prx
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盐城坳陷带典型区域新近系盐城组第Ⅴ承压含水层特征方法研究
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作者 李朗 何伟 黄晓燕 《西部探矿工程》 CAS 2024年第5期111-114,共4页
盐城市区地处苏北盐城坳陷带,境内的新近系盐城组孔隙含水层深达1000~1300m。前人对400m以下的第Ⅴ承压含水层划分、研究较为粗略。通过岩芯分析、物探、野外调查、水化学分析、数值模拟等多种方法的综合运用,重新划定了第Ⅴ承压含水层... 盐城市区地处苏北盐城坳陷带,境内的新近系盐城组孔隙含水层深达1000~1300m。前人对400m以下的第Ⅴ承压含水层划分、研究较为粗略。通过岩芯分析、物探、野外调查、水化学分析、数值模拟等多种方法的综合运用,重新划定了第Ⅴ承压含水层的赋存边界,深入研究了区域该含水层的赋存特征,同时计算了其可持续利用资源量。研究成果可为盐城坳陷带其他区域该含水层的研究提供科学的借鉴。 展开更多
关键词 盐城坳陷带 新近系盐城组 承压含水层 技术方法 水文地质特征
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PEI功能化多孔生物炭对水中V(Ⅴ)的吸附研究
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作者 于浩洋 陈可欣 彭书明 《化工新型材料》 CAS CSCD 北大核心 2024年第1期220-226,共7页
针对水体钒污染现象,以经磷酸浸渍的马缨丹为原料制备多孔生物炭后负载聚乙烯亚胺(PEI),得到PEI功能化多孔生物炭(PBC)。采用BET、扫描电镜(SEM)、EDS能谱和红外光谱(FT-IR)进行表征,并探究其对水中钒离子[V(Ⅴ)]的吸附。结果表明:PBC... 针对水体钒污染现象,以经磷酸浸渍的马缨丹为原料制备多孔生物炭后负载聚乙烯亚胺(PEI),得到PEI功能化多孔生物炭(PBC)。采用BET、扫描电镜(SEM)、EDS能谱和红外光谱(FT-IR)进行表征,并探究其对水中钒离子[V(Ⅴ)]的吸附。结果表明:PBC具有丰富的孔隙结构及表面官能团,比表面积和孔容分别为原始炭(LBC)的5.87倍和12.33倍;PBC和LBC对V(Ⅴ)的饱和吸附量分别为147.47mg/g和4.98mg/g;PBC对V(Ⅴ)的吸附行为符合Langmuir模型和拟二级动力学模型,可选择性高效吸附水中V(Ⅴ)并循环再生利用。PBC对V(Ⅴ)的吸附机理以静电作用、多孔吸附、络合及还原作用为主。 展开更多
关键词 生物炭 聚乙烯亚胺 功能化 吸附
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胶原蛋白Ⅴ型2链对胃癌细胞增殖、迁移和侵袭及肿瘤生长的调控作用 被引量:1
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作者 仇建玲 吴胜文 +1 位作者 俞进友 朱正峰 《安徽医药》 CAS 2024年第2期280-285,F0003,共7页
目的 探究胶原蛋白Ⅴ型2链(COL5A2)对胃癌细胞增殖、迁移和侵袭及肿瘤生长的调控作用。方法 于2022年1―3月开展研究,基于TCGA数据库分析COL5A2在胃癌组织、正常组织中的表达差异,COL5A2对胃癌分期的作用及对病人预后的价值。荧光定量... 目的 探究胶原蛋白Ⅴ型2链(COL5A2)对胃癌细胞增殖、迁移和侵袭及肿瘤生长的调控作用。方法 于2022年1―3月开展研究,基于TCGA数据库分析COL5A2在胃癌组织、正常组织中的表达差异,COL5A2对胃癌分期的作用及对病人预后的价值。荧光定量聚合酶链式反应(qRT-PCR)、蛋白质印迹法(WB)检测正常人胃黏膜上皮细胞GES-1、胃癌细胞MGC-803、MKN-45、SGC7901中COL5A2的表达。慢病毒介导稳定转染shRNA-COL5A2、shRNA、NC的MKN-45细胞。克隆形成实验、细胞计数试剂盒(CCK8)、5-乙炔基-2’-脱氧尿苷(EdU)染色检测细胞的增殖;碘化丙啶(PI)染色检测细胞周期分布;Transwell实验、伤口愈合实验检测细胞的迁移、侵袭能力;裸鼠成瘤实验检测肿瘤的生长;免疫组织化学实验检测肿瘤组织PCNA蛋白。结果 胃癌组织COL5A2相对表达量为4.74±0.45,显著高于正常组织的2.53±0.26(P<0.05),与正常组织相比,胃癌组织中COL5A2升高,与病人临床分期、预后差有关。GES-1组COL5A2相对表达量为0.25±0.04,显著低于胃癌细胞中MGC-803组0.47±0.05、MKN-45组0.72±0.08、SGC7901组0.54±0.04(P<0.05),其中MKN-45升高幅度最大。与shRNA组细胞相比,shRNACOL5A2组细胞COL5A2表达降低,细胞的克隆形成数、在48、72 h的活性、EdU阳性率、迁移和侵袭数量、划痕愈合率均降低,细胞周期阻滞G1/S期,CyclinD1和CDK4表达降低(P<0.05)。异种移植裸鼠成瘤的体积、质量均降低,肿瘤PCNA表达也降低。结论 COL5A2在胃癌中高表达,下调COL5A2抑制癌细胞增殖、迁移侵袭及肿瘤的生长。 展开更多
关键词 胃肿瘤 胶原蛋白型2链 裸鼠成瘤 增殖 迁移 侵袭
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浅埋超大跨四线隧道Ⅴ级围岩开挖关键参数研究
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作者 刘夏冰 王雨 +2 位作者 王文谦 贺少辉 麻建飞 《铁道标准设计》 北大核心 2024年第7期132-140,共9页
为适应城市地形及高铁选线需求,部分线路需以四线超大跨度隧道的形式面临浅埋、Ⅴ级围岩等客观条件,目前缺乏对此类隧道的规范指导,应重点关注其开挖安全。以杭台高铁下北山隧道为工程依托,采用现场测试方法研究其围岩变形、初期支护受... 为适应城市地形及高铁选线需求,部分线路需以四线超大跨度隧道的形式面临浅埋、Ⅴ级围岩等客观条件,目前缺乏对此类隧道的规范指导,应重点关注其开挖安全。以杭台高铁下北山隧道为工程依托,采用现场测试方法研究其围岩变形、初期支护受力特征,通过三维数值模拟方法对多组工法进行开挖模拟,总结得出浅埋四线高铁隧道Ⅴ级围岩的开挖关键参数。结果表明,采用双侧壁导坑法的拱顶沉降主要发生在各导洞上台阶开挖阶段,中部岩柱开挖对拱顶沉降的贡献为62.2%;依托工程喷射混凝土结构和型钢拱架的安全性均满足施工要求,当前初期支护的安全富余较多;双侧壁导坑法对围岩变形控制效果较好,但三台阶法的围岩应力分布均匀,初期支护的安全系数也满足要求;考虑到原设计双侧壁导坑法存在较多临时支护,为提升施工效率,宜在保障围岩稳定的前提下减少开挖分部数量,探索将双侧壁导坑法优化为少临时支护的三台阶法。 展开更多
关键词 浅埋隧道 超大跨度隧道 级围岩 开挖关键参数 分部开挖 现场测试 数值模拟
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N-乙酰氨基葡萄糖转移酶Ⅴ介导糖尿病小鼠心肌损伤的作用及机制
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作者 赵然 王婷婷 +2 位作者 王晓宇 冯艳 李妍 《山西医科大学学报》 CAS 2024年第2期150-156,共7页
目的 探究N-乙酰氨基葡萄糖转移酶Ⅴ(N-acetylglucosamine transferaseⅤ,GnT-Ⅴ)介导糖尿病小鼠心肌损伤的作用及其机制。方法 6~8周龄雄性C57BL/6小鼠30只,随机分为正常对照组(Ctrl组)、糖尿病组(DM组)和糖尿病+干扰GnT-Ⅴ基因的腺相... 目的 探究N-乙酰氨基葡萄糖转移酶Ⅴ(N-acetylglucosamine transferaseⅤ,GnT-Ⅴ)介导糖尿病小鼠心肌损伤的作用及其机制。方法 6~8周龄雄性C57BL/6小鼠30只,随机分为正常对照组(Ctrl组)、糖尿病组(DM组)和糖尿病+干扰GnT-Ⅴ基因的腺相关病毒组(DM+shGnT-Ⅴ组),每组10只。采用超声心动图检测各组小鼠心功能及左室质量,HE染色观察各组小鼠心肌组织病理变化,实时定量PCR检测心肌组织中心房钠尿肽(atrial natriuretic peptide, ANP)和B型钠尿肽(B-type natriuretic peptide, BNP)的表达,免疫印迹方法检测心肌组织中GnT-Ⅴ、转化生长因子-β激活激酶1(transforming growth factor-β-activated kinase 1, TAK1)蛋白表达。体外培养原代心肌细胞,分为正常葡萄糖组(NG组)、高糖组(HG组)、高糖+干扰GnT-Ⅴ基因的腺病毒组(HG+Ad-shGnT-Ⅴ组)和高糖+干扰GnT-Ⅴ基因的腺病毒+过表达TAK1基因的腺病毒组(HG+Ad-shGnT-Ⅴ+Ad-TAK1组)。免疫印迹方法检测原代心肌细胞中GnT-Ⅴ、TAK1蛋白表达,免疫荧光检测α-辅肌动蛋白(α-actinin)表达水平。结果 与Ctrl组相比,DM组小鼠心脏收缩功能显著下降(P<0.001),左室质量明显增加(P<0.001),心肌细胞肥大(P<0.001),GnT-Ⅴ和TAK1表达水平明显升高及ANP和BNP在mRNA水平表达显著增加(P<0.01)。与DM组相比,DM+shGnT-Ⅴ组小鼠心脏功能明显改善(P<0.01),左室质量明显降低(P<0.01),心肌肥大症状明显减轻(P<0.001),GnT-Ⅴ、TAK1、ANP及BNP表达明显减少(P<0.05)。与NG组相比,HG组原代心肌细胞α-actinin免疫荧光强度增强,GnT-Ⅴ和TAK1的表达显著增加(P<0.05);与HG组相比,HG+Ad-shGnT-Ⅴ组GnT-Ⅴ、TAK的表达显著减少(P<0.05),α-actinin免疫荧光强度减弱;与HG+Ad-shGnT-Ⅴ组相比,HG+Ad-shGnT-Ⅴ+Ad-TAK1组GnT-Ⅴ表达未见明显变化,TAK1的表达明显增加(P<0.05),心肌细胞α-actinin免疫荧光强度增强。结论 GnT-Ⅴ可能通过激活TAK1调控糖尿病小鼠的心肌损伤。 展开更多
关键词 糖尿病 心肌肥厚 糖尿病心肌病 GnT- TAK1
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加长股骨近端防旋髓内钉治疗SeinsheimerⅤ型股骨转子下骨折的疗效
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作者 华长城 杨飞 +1 位作者 孙治强 王小合 《局解手术学杂志》 2024年第6期532-534,共3页
目的探讨加长股骨近端防旋髓内钉(PFNA)治疗SeinsheimerⅤ型股骨转子下骨折的临床疗效。方法回顾性分析2020年1月至2022年8月我院收治的采用闭合复位或有限切开钢丝捆绑联合加长PFNA治疗的21例SeinsheimerⅤ型股骨转子下骨折患者的临床... 目的探讨加长股骨近端防旋髓内钉(PFNA)治疗SeinsheimerⅤ型股骨转子下骨折的临床疗效。方法回顾性分析2020年1月至2022年8月我院收治的采用闭合复位或有限切开钢丝捆绑联合加长PFNA治疗的21例SeinsheimerⅤ型股骨转子下骨折患者的临床资料。术后记录并评估患者骨折愈合情况、治疗效果、术后并发症情况及术后末次随访髋关节功能Harris评分。结果所有患者均随访6~12个月,骨折均愈合良好,无内固定物断裂、切割病例,无血管损伤病例,1例患者出现异位骨化。末次随访时髋关节功能:优15例、良4例、可2例,优良率90.48%。结论加长PFNA可以有效治疗SeinsheimerⅤ型股骨转子下骨折,闭合复位不理想时行微创钢丝环扎,具有创伤小、骨折愈合快、术后并发症少、髋关节功能恢复好等优点,值得临床推广应用。 展开更多
关键词 加长股骨近端防旋髓内钉 Seinsheimer型股骨转子下骨折 微创钢丝环扎
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MIL-100(V) derived porous vanadium oxide/carbon microspheres with oxygen defects and intercalated water molecules as high-performance cathode for aqueous zinc ion battery
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作者 Yuexin Liu Jian Huang +3 位作者 Xiaoyu Li Jiajia Li Jinhu Yang Kefeng Cai 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期578-589,I0013,共13页
The development of aqueous zinc ion battery cathode materials with high capacity and high magnification is still a challenge.Herein,porous vanadium oxide/carbon(p-VO_(x)@C,mainly VO_(2) with a small amount of V_(2)O_(... The development of aqueous zinc ion battery cathode materials with high capacity and high magnification is still a challenge.Herein,porous vanadium oxide/carbon(p-VO_(x)@C,mainly VO_(2) with a small amount of V_(2)O_(3)) core/shell microspheres with oxygen vacancies are facilely fabricated by using a vanadium-based metal-organic framework(MIL-100(V)) as a sacrificial template.This unique structure can improve the conductivity of the VO_(x),accelerate electrolyte diffusion,and suppress structural collapse during circulation.Subsequently,H_(2)O molecules are introduced into the interlayer of VO_(x) through a highly efficient in-situ electrochemical activation process,facilitating the intercalation and diffusion of zinc ions.After the activation,an optimal sample exhibits a high specific capacity of 464.3 mA h g^(-1) at0.2 A g^(-1) and 395.2 mA h g^(-1) at 10 A g^(-1),indicating excellent rate performance.Moreover,the optimal sample maintains a capacity retention of about 89.3% after 2500 cycles at 10 A g^(-1).Density functional theory calculation demonstrates that the presence of oxygen vacancies and intercalated water molecules can significantly reduce the diffusion barrier for zinc ions.In addition,it is proved that the storage of zinc ions in the cathode is achieved by reversible intercalation/extraction during the charge and discharge process through various ex-situ analysis technologies.This work demonstrates that the p-VO_(x)@C has great potential for applications in aqueous ZIBs after electrochemical activation. 展开更多
关键词 Metal-organic frameworks vanadium oxide Carbon Zn-ion batteries Electrochemical activation
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Synergism of preintercalated manganese ions and lattice water in vanadium oxide cathodes for high-capacity and long-life Zn-ion batteries
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作者 Mengjing Wu Rongrong Li +3 位作者 Kai Yang Lijiang Yin Weikang Hu Xiong Pu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第9期709-717,共9页
Aqueous Zn-ion batteries(AZIBs)are recognized as a promising energy storage system with intrinsic safety and low cost,but its applications still rely on the design of high-capacity and stable-cycling cathode materials... Aqueous Zn-ion batteries(AZIBs)are recognized as a promising energy storage system with intrinsic safety and low cost,but its applications still rely on the design of high-capacity and stable-cycling cathode materials.In this work,we present an intercalation mechanism-based cathode materials for AZIB,i.e.the vanadium oxide with pre-intercalated manganese ions and lattice water(noted as MVOH).The synergistic effect between Mn^(2+)and lattice H_(2)O not only expands the interlayer spacing,but also significantly enhances the structural stability.Systematic in-situ and ex-situ characterizations clarify the Zn^(2+)/H^(+)co–(de)intercalation mechanism of MVOH in aqueous electrolyte.The demonstrated remarkable structure stability,excellent kinetic behaviors and ion-storage mechanism together enable the MVOH to demonstrate satisfactory specific capacity of 450 mA h g^(−1)at 0.2 A g^(−1),excellent rate performance of 288.8 mA h g^(−1)at 10 A g^(−1)and long cycle life over 20,000 cycles at 5 A g^(−1).This work provides a practical cathode material,and contributes to the understanding of the ion-intercalation mechanism and structural evolution of the vanadium-based cathode for AZIBs. 展开更多
关键词 Zn-ion batteries vanadium oxide Pre-intercalation Lattice water Manganese ion
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Bioleaching of vanadium from stone coal vanadium ore by Bacillus mucilaginosus:Influencing factors and mechanism
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作者 Yingbo Dong Jinyu Zan Hai Lin 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第8期1828-1838,共11页
Vanadium and its derivatives are used in various industries,including steel,metallurgy,pharmaceuticals,and aerospace engineering.Although China has massive reserves of stone coal resources,these resources have low gra... Vanadium and its derivatives are used in various industries,including steel,metallurgy,pharmaceuticals,and aerospace engineering.Although China has massive reserves of stone coal resources,these resources have low grades.Therefore,the effective extraction and recovery of metallic vanadium from stone coal is an important way to realize the efficient resource utilization of stone coal vanadium ore.Herein,Bacillus mucilaginosus was selected as the leaching strain.The vanadium leaching rate reached 35.5%after 20 d of bioleaching under optimal operating conditions.The cumulative vanadium leaching rate in the contact group reached 35.5%,which was higher than that in the noncontact group(9.3%).The metabolites of B.mucilaginosus,such as oxalic,tartaric,citric,and malic acids,dominated in bioleaching,accounting for 73.8%of the vanadium leaching rate.Interestingly,during leaching,the presence of stone coal stimulated the expression of carbonic anhydrase in bacterial cells,and enzyme activity increased by 1.335-1.905 U.Enzyme activity positively promoted the production of metabolite organic acids,and total organic acid content increased by 39.31 mg·L^(-1),resulting in a reduction of 2.51 in the pH of the leaching system with stone coal.This effect favored the leaching of vanadium from stone coal.Atomic force microscopy illustrated that bacterial leaching exacerbated corrosion on the surface of stone coal beyond 10 nm.Our study provides a clear and promising strategy for exploring the bioleaching mechanism from the perspective of microbial enzyme activity and metabolites. 展开更多
关键词 Bacillus mucilaginosus stone coal vanadium ore BIOLEACHING carbonic anhydrase organic acids
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Unraveling high efficiency multi-step sodium storage and bidirectional redox kinetics synergy mechanism of cobalt-doping vanadium disulfide anode
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作者 Enzhi Li Mingshan Wang +10 位作者 Yuanlong Feng Lin Yang Qian Li Zhenliang Yang Junchen Chen Bo Yu Bingshu Guo Zhiyuan Ma Yun Huang Jiangtao Liu Xing Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期148-157,共10页
Sodium-based storage devices based on conversion-type metal sulfide anodes have attracted great atten-tion due to their multivalent ion redox reaction ability.However,they also suffer from sodium polysul-fides(NaPSs)s... Sodium-based storage devices based on conversion-type metal sulfide anodes have attracted great atten-tion due to their multivalent ion redox reaction ability.However,they also suffer from sodium polysul-fides(NaPSs)shuttling problems during the sluggish Na^(+) redox process,leading to"voltage failure"and rapid capacity decay.Herein,a metal cobalt-doping vanadium disulfide(Co-VS_(2))is proposed to simulta-neously accelerate the electrochemical reaction of VS_(2) and enhance the bidirectional redox of soluble NaPSs.It is found that the strong adsorption of NaPSs by V-Co alloy nanoparticles formed in situ during the conversion reaction of Co-VS_(2) can effectively inhibit the dissolution and shuttle of NaPSs,and ther-modynamically reduce the formation energy barrier of the reaction path to effectively drive the complete conversion reaction,while the metal transition of Co elements enhances reconversion kinetics to achieve high reversibility.Moreover,Co-VS_(2) also produce abundant sulfur vacancies and unsaturated sulfur edge defects,significantly improve ionic/electron diffusion kinetics.Therefore,the Co-VS_(2) anode exhibits ultrahigh rate capability(562 mA h g^(-1) at 5 A g^(-1)),high initial coulombic efficiency(~90%)and 12,000 ultralong cycle life with capacity retention of 90%in sodium-ion batteries(SIBs),as well as impressive energy/power density(118 Wh kg^(-1)/31,250 W kg^(-1))and over 10.000 stable cycles in sodium-ion hybrid capacitors(SIHCs).Moreover,the pouch cell-type SIHC displays a high-energy density of 102 Wh kg^(-1) and exceed 600 stable cycles.This work deepens the understanding of the electrochemical reaction mechanism of conversion-type metal sulfide anodes and provides a valuable solution to the shuttlingofNaPSs inSIBsandSIHCs. 展开更多
关键词 Sodium-ionbatteries Sodium-ion hybrid capacitors Pouch cells vanadium disulfide Shuttle effect
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Multiple-dimensioned defect engineering for graphite felt electrode of vanadium redox flow battery
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作者 Yingqiao Jiang Yinhui Wang +7 位作者 Gang Cheng Yuehua Li Lei Dai Jing Zhu Wei Meng Jingyu Xi Ling Wang Zhangxing He 《Carbon Energy》 SCIE EI CAS CSCD 2024年第2期143-153,共11页
The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledim... The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledimensioned defect,including nano-scale etching and atomic-scale N,O codoping,was used to modify GF by the molten salt system.NH_(4)Cl and KClO_(3) were added simultaneously to the system to obtain porous N/O co-doped electrode(GF/ON),where KClO_(3) was used to ultra-homogeneously etch,and O-functionalize electrode,and NH4Cl was used as N dopant,respectively.GF/ON presents better electrochemical catalysis for VO_(2)+/VO_(2)+ and V3+/V2+ reactions than only O-functionalized electrodes(GF/O)and GF.The enhanced electrochemical properties are attributed to an increase in active sites,surface area,and wettability,as well as the synergistic effect of N and O,which is also supported by the density functional theory calculations.Further,the cell using GF/ON shows higher discharge capacity,energy efficiency,and stability for cycling performance than the pristine cell at 140 mA cm^(−2) for 200 cycles.Moreover,the energy efficiency of the modified cell is increased by 9.7% from 55.2% for the pristine cell at 260 mA cm^(−2).Such an ultra-homogeneous etching with N and O co-doping through“boiling”molten salt medium provides an effective and practical application potential way to prepare superior electrodes for VRFB. 展开更多
关键词 graphite felt molten salt N O co-doping ultra-homogeneous etching vanadium redox flow battery
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Vanadium oxide nanospheres encapsulated in N-doped carbon nanofibers with morphology and defect dual-engineering toward advanced aqueous zinc-ion batteries
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作者 Yunfei Song Laiying Jing +3 位作者 Rutian Wang Jiaxi Cui Mei Li Yunqiang Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期599-609,I0013,共12页
Vanadium-based electrodes are regarded as attractive cathode materials in aqueous zinc ion batteries(ZIBs)caused by their high capacity and unique layered structure.However,it is extremely challenging to acquire high ... Vanadium-based electrodes are regarded as attractive cathode materials in aqueous zinc ion batteries(ZIBs)caused by their high capacity and unique layered structure.However,it is extremely challenging to acquire high electrochemical performance owing to the limited electronic conductivity,sluggish ion kinetics,and severe volume expansion during the insertion/extraction process of Zn^(2+).Herein,a series of V_(2)O_(3)nanospheres embedded N-doped carbon nanofiber structures with various V_(2)O_(3)spherical morphologies(solid,core-shell,hollow)have been designed for the first time by an electrospinning technique followed thermal treatments.The N-doped carbon nanofibers not only improve the electrical conductivity and the structural stability,but also provides encapsulating shells to prevent the vanadium dissolution and aggregation of V_(2)O_(3)particles.Furthermore,the varied morphological structures of V_(2)O_(3)with abundant oxygen vacancies can alleviate the volume change and increase the Zn^(2+)pathway.Besides,the phase transition between V_(2)O_(3)and Zn_XV_(2)O_(5-m)·n H_(2)O in the cycling was also certified.As a result,the as-obtained composite delivers excellent long-term cycle stability and enhanced rate performance for coin cells,which is also confirmed through density functional theory(DFT)calculations.Even assembled into flexible ZIBs,the sample still exhibits superior electrochemical performance,which may afford new design concept for flexible cathode materials of ZIBs. 展开更多
关键词 Aqueous zinc ion batteries vanadium trioxide Oxygen vacancy Structure evolution Phase optimization
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Revealing the role of calcium ion intercalation of hydrated vanadium oxides for aqueous zinc-ion batteries
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作者 Tao Zhou Xuan Du Guo Gao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期9-19,I0001,共12页
Exploring suitable high-capacity V_(2)O_(5)-based cathode materials is essential for the rapid advancement of aqueous zinc ion batteries(ZIBs).However,the typical problem of slow Zn^(2+)diffusion kinetics has severely... Exploring suitable high-capacity V_(2)O_(5)-based cathode materials is essential for the rapid advancement of aqueous zinc ion batteries(ZIBs).However,the typical problem of slow Zn^(2+)diffusion kinetics has severely limited the feasibility of such materials.In this work,unique hydrated vanadates(CaVO,BaVO)were obtained by intercalation of Ca^(2+)or Ba^(2+)into hydrated vanadium pentoxide.In the CaVO//Zn and BaVO//Zn batteries systems,the former delivered up to a 489.8 mAh g^(-1)discharge specific capacity at 0.1 A g^(-1).Moreover,the remarkable energy density of 370.07 Wh kg^(-1)and favorable cycling stability yard outperform BaVO,pure V_(2)O_(5),and many reported cathodes of similar ionic intercalation compounds.In addition,pseudocapacitance analysis,galvanostatic intermittent titration(GITT)tests,and Trasatti analysis revealed the high capacitance contribution and Zn^(2+)diffusion coefficient of CaVO,while an in-depth investigation based on EIS elucidated the reasons for the better electrochemical performance of CaVO.Notably,ex-situ XRD,XPS,and TEM tests further demonstrated the Zn^(2+)insertion/extraction and Zn-storage mechanism that occurred during the cycle in the CaVO//Zn battery system.This work provides new insights into the intercalation of similar divalent cations in vanadium oxides and offers new solutions for designing cathodes for high-capacity aqueous ZIBs. 展开更多
关键词 Aqueous zinc ion batteries Cathode materials Ion pre-intercalation vanadium oxides Energy storage mechanism
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Insights into the hydrogen evolution reaction in vanadium redox flow batteries:A synchrotron radiation based X-ray imaging study
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作者 Kerstin Köble Alexey Ershov +7 位作者 Kangjun Duan Monja Schilling Alexander Rampf Angelica Cecilia TomášFaragó Marcus Zuber Tilo Baumbach Roswitha Zeis 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期132-144,共13页
The parasitic hydrogen evolution reaction(HER)in the negative half-cell of vanadium redox flow batteries(VRFBs)causes severe efficiency losses.Thus,a deeper understanding of this process and the accompanying bubble fo... The parasitic hydrogen evolution reaction(HER)in the negative half-cell of vanadium redox flow batteries(VRFBs)causes severe efficiency losses.Thus,a deeper understanding of this process and the accompanying bubble formation is crucial.This benchmarking study locally analyzes the bubble distribution in thick,porous electrodes for the first time using deep learning-based image segmentation of synchrotron X-ray micro-tomograms.Each large three-dimensional data set was processed precisely in less than one minute while minimizing human errors and pointing out areas of increased HER activity in VRFBs.The study systematically varies the electrode potential and material,concluding that more negative electrode potentials of-200 m V vs.reversible hydrogen electrode(RHE)and lower cause more substantial bubble formation,resulting in bubble fractions of around 15%–20%in carbon felt electrodes.Contrarily,the bubble fractions stay only around 2%in an electrode combining carbon felt and carbon paper.The detected areas with high HER activity,such as the border subregion with more than 30%bubble fraction in carbon felt electrodes,the cutting edges,and preferential spots in the electrode bulk,are potential-independent and suggest that larger electrodes with a higher bulk-to-border ratio might reduce HER-related performance losses.The described combination of electrochemical measurements,local X-ray microtomography,AI-based segmentation,and 3D morphometric analysis is a powerful and novel approach for local bubble analysis in three-dimensional porous electrodes,providing an essential toolkit for a broad community working on bubble-generating electrochemical systems. 展开更多
关键词 vanadium redox flow battery Synchrotron X-ray imaging Tomography Hydrogen evolution reaction Gas bubbles Deep learning
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