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基于WBS-RBS-BN的装配式绿色农房项目风险评估
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作者 汤青慧 吴明月 +2 位作者 李晓冬 李美华 万里洋 《混凝土》 北大核心 2026年第1期133-139,144,共8页
农房和村庄建设现代化是实现乡村振兴,满足人民群众对美好生活向往的重要内容。装配式绿色农房项目风险评估是防范和控制项目风险、提升项目管理效率的关键。首先采用WBS-RBS方法识别装配式绿色农房风险因素清单。其次,基于专家调查法... 农房和村庄建设现代化是实现乡村振兴,满足人民群众对美好生活向往的重要内容。装配式绿色农房项目风险评估是防范和控制项目风险、提升项目管理效率的关键。首先采用WBS-RBS方法识别装配式绿色农房风险因素清单。其次,基于专家调查法完成风险发生概率和损失程度评估,利用风险矩阵法对风险等级进行规范化处理。最后,使用贝叶斯网络法对项目风险进行评估,测度装配式绿色农房项目整体风险水平,通过敏感性分析得出各风险源的关键风险因素。选取长丰县吴山镇官府社区装配式绿色农房项目为例进行验证,研究结果表明,装配式绿色农房项目分为5大风险源、23项风险因素;项目整体风险值为1.704,处于中等风险水平,关键风险因素为激励政策和宣传力度、设计变更和施工技术、信息匮乏和农户需求不足、专业人才缺乏和农房维护不到位、原材料成本和农户出资意愿。研究结果可为装配式绿色农房项目风险防范和控制提供科学决策依据,进一步提升项目管理效率和水平。 展开更多
关键词 风险评估 装配式绿色农房 贝叶斯网络 wbs-rbs
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基于WBS-RBS-GRA的水利工程施工进度风险识别方法
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作者 程翠竹 《水利技术监督》 2026年第1期34-37,46,共5页
为提升水利工程施工进度管理水平,提出基于WBS-RBS-GRA的水利工程施工进度风险识别方法。以G水电站为研究对象,采用WBS-RBS法完成项目和风险分解,采用GRA法计算各子工作风险指标权重,基于风险度理论确定各子工作风险度,并找到对施工进... 为提升水利工程施工进度管理水平,提出基于WBS-RBS-GRA的水利工程施工进度风险识别方法。以G水电站为研究对象,采用WBS-RBS法完成项目和风险分解,采用GRA法计算各子工作风险指标权重,基于风险度理论确定各子工作风险度,并找到对施工进度影响大的子工作及风险因素,实现施工进度风险识别。结果表明:该方法能确定影响G工程施工进度的关键子工作及其风险因素,并降低施工进度风险。研究结果可以为水利工程施工进度风险动态管控提供科学支撑。 展开更多
关键词 水利工程施工进度 风险评价 wbs-rbs GRA
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基于WBS-RBS和BWM-熵权-VIKOR的高原高寒山区钢管混凝土拱桥施工安全风险评估研究
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作者 袁海粟 邢瑞 +3 位作者 赵丹 佟铭玉 陈昌浩 周凡 《工业安全与环保》 2026年第1期39-44,共6页
针对目前高原高寒山区钢管混凝土拱桥施工安全风险评价存在的不足,首先提出4M理论和WBS-RBS法相结合进行风险因素识别,构建以BWM法确定准则层主观权重和熵权法确定指标层客观权重相结合的组合赋权方法,建立基于考虑正、负理想解的改进B... 针对目前高原高寒山区钢管混凝土拱桥施工安全风险评价存在的不足,首先提出4M理论和WBS-RBS法相结合进行风险因素识别,构建以BWM法确定准则层主观权重和熵权法确定指标层客观权重相结合的组合赋权方法,建立基于考虑正、负理想解的改进BWM-熵权-VIKOR安全风险评价模型,最后以钢管混凝土拱桥施工桥台承台施工阶段为例建立评价指标体系并进行评估,结果表明,高原高寒气候下混凝土裂缝风险和承台基坑上边坡支护强度风险的综合风险值最高。 展开更多
关键词 wbs-rbs 钢管混凝土拱桥 改进BWM-熵权-VIKOR法 高原高寒山区
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WBS-RBS技术在档案数字化安全风险识别中的应用
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作者 施晴 《信息与电脑》 2025年第7期109-111,共3页
随着信息技术发展,档案数字化成为提升管理效率与资源共享的重要方式。但在数字化进程中,数据丢失、篡改、泄露等安全风险凸显。传统风险评估方法依赖规则检测与人工审查,在复杂的数字化环境下存在局限。文章应用WBS-RBS技术,融合工作... 随着信息技术发展,档案数字化成为提升管理效率与资源共享的重要方式。但在数字化进程中,数据丢失、篡改、泄露等安全风险凸显。传统风险评估方法依赖规则检测与人工审查,在复杂的数字化环境下存在局限。文章应用WBS-RBS技术,融合工作分解结构(Work Breakdown Structure,WBS)与风险分解结构(Risk Breakdown Structure,RBS),实现档案数字化安全风险的系统识别与量化评估。实验表明,该技术比传统方法风险评估更精准,为应对措施制定提供依据,显著提升了档案数字化安全性。 展开更多
关键词 档案数字化 安全风险识别 wbs-rbs技术
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基于WBS-RBS的高校体育课风险识别研究
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作者 刘春梅 《广东职业技术教育与研究》 2025年第1期90-93,105,共5页
高校体育课教学过程中风险事件时常发生,影响学生的身心健康。为规避体育教学风险,减少意外伤害事故,有必要对高校体育课风险进行识别研究。高校体育活动开展是一个动态过程,高校体育课堂运动发展与风险并存,运用WBS-RBS分析法,将高校... 高校体育课教学过程中风险事件时常发生,影响学生的身心健康。为规避体育教学风险,减少意外伤害事故,有必要对高校体育课风险进行识别研究。高校体育活动开展是一个动态过程,高校体育课堂运动发展与风险并存,运用WBS-RBS分析法,将高校体育课运动过程分解为高校体育课堂进行前、课堂进行中、课堂结束后三个阶段,并对可能带来的风险进行识别。风险分解结构识别出,环境风险源R1:天气风险、流感危险、场馆风险;场地风险源R2:场地设施缺陷风险、器材损坏风险、非运动装备风险;运动风险源R3:运动负荷风险、运动损伤风险、先天体质风险,并根据不同风险源提出相应对策,旨在降低高校体育课风险,保障高校体育课安全有序地进行。 展开更多
关键词 wbs-rbs 高校体育 风险 识别
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基于WBS-RBS的110kV电缆线路施工风险因素分析
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作者 张锦圣 《中国设备工程》 2025年第6期121-123,共3页
随着电力系统的不断发展,110kV电缆线路施工项目日益增多。为了确保施工的安全与质量,对施工风险因素的分析至关重要。文章将工作分解结构(WBS)与风险分解结构(RBS)结合起来,识别出各工序中的潜在风险因素,旨在为施工风险管理提供有力依... 随着电力系统的不断发展,110kV电缆线路施工项目日益增多。为了确保施工的安全与质量,对施工风险因素的分析至关重要。文章将工作分解结构(WBS)与风险分解结构(RBS)结合起来,识别出各工序中的潜在风险因素,旨在为施工风险管理提供有力依据,确保电缆线路施工项目的安全、高效进行。 展开更多
关键词 电缆线路 wbs-rbs 风险因素 应对措施
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基于WBS-RBS和AHP法的装配式建筑施工安全评价研究
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作者 朱株 《陶瓷》 2025年第2期153-158,共6页
建筑业作为我国的支柱产业,在新的经济形势下,建筑业转型升级以及装配式建筑成为建筑行业发展新趋势,且在建筑行业中占据重要地位,但是装配式建筑在我国发展时间较短,施工过程存在一定的安全隐患。笔者结合WBS-RBS和AHP相结合的装配式... 建筑业作为我国的支柱产业,在新的经济形势下,建筑业转型升级以及装配式建筑成为建筑行业发展新趋势,且在建筑行业中占据重要地位,但是装配式建筑在我国发展时间较短,施工过程存在一定的安全隐患。笔者结合WBS-RBS和AHP相结合的装配式建筑施工风险识别方法,从人员、机械设备、技术、管理和环境5个方面选择15个施工风险指标,建立装配式建筑施工安全风险评价指标体系,评估权重。其结果表明:人员、管理、环境因素在装配式建筑施工风险中占有重要地位。 展开更多
关键词 装配式建筑 wbs-rbs AHP法
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基于WBS-RBS-4M和改进AHP-EWM-TOPSIS的高原高寒山区钢管混凝土拱桥施工风险评价研究
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作者 钟雨荷 佟铭玉 邢瑞 《中国水运》 2025年第22期116-118,共3页
针对目前高原高寒山区钢管混凝土拱桥施工安全风险评价存在的不足,首先提出4M理论和WBS-RBS工作风险分解法相结合进行风险因素识别,以钢管混凝土拱桥钢管拱现浇阶段施工为例建立了相应的评价指标体系,确定以AHP法确定准则层主观权重和EW... 针对目前高原高寒山区钢管混凝土拱桥施工安全风险评价存在的不足,首先提出4M理论和WBS-RBS工作风险分解法相结合进行风险因素识别,以钢管混凝土拱桥钢管拱现浇阶段施工为例建立了相应的评价指标体系,确定以AHP法确定准则层主观权重和EWM法确定指标层客观权重相结合的耦合赋权方法,最后针对传统TOPSIS法(优劣解距离法)建立加权决策矩阵易产生逆序等问题提出建立加权欧式距离算法更科学,并对给出的风险因素进行风险相对贴进度排序,得出基于改进AHP-EWM-TOPSIS的安全风险评价模型,为项目管理者提供一种针对桥梁施工风险因素精确排序的综合评价方法。 展开更多
关键词 wbs-rbs 4M理论 AHP-EWM 改进TOPSIS法 钢管混凝土拱桥施工
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A New Inversion-free Iterative Method for Solving the Nonlinear Matrix Equation and Its Application in Optimal Control
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作者 GAO Xiangyu XIE Weiwei ZHANG Lina 《应用数学》 北大核心 2026年第1期143-150,共8页
In this paper,we consider the maximal positive definite solution of the nonlinear matrix equation.By using the idea of Algorithm 2.1 in ZHANG(2013),a new inversion-free method with a stepsize parameter is proposed to ... In this paper,we consider the maximal positive definite solution of the nonlinear matrix equation.By using the idea of Algorithm 2.1 in ZHANG(2013),a new inversion-free method with a stepsize parameter is proposed to obtain the maximal positive definite solution of nonlinear matrix equation X+A^(*)X|^(-α)A=Q with the case 0<α≤1.Based on this method,a new iterative algorithm is developed,and its convergence proof is given.Finally,two numerical examples are provided to show the effectiveness of the proposed method. 展开更多
关键词 Nonlinear matrix equation Maximal positive definite solution Inversion-free iterative method Optimal control
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A New Image Encryption Algorithm Based on Cantor Diagonal Matrix and Chaotic Fractal Matrix
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作者 Hongyu Zhao Shengsheng Wang 《Computers, Materials & Continua》 2026年第1期636-660,共25页
Driven by advancements in mobile internet technology,images have become a crucial data medium.Ensuring the security of image information during transmission has thus emerged as an urgent challenge.This study proposes ... Driven by advancements in mobile internet technology,images have become a crucial data medium.Ensuring the security of image information during transmission has thus emerged as an urgent challenge.This study proposes a novel image encryption algorithm specifically designed for grayscale image security.This research introduces a new Cantor diagonal matrix permutation method.The proposed permutation method uses row and column index sequences to control the Cantor diagonal matrix,where the row and column index sequences are generated by a spatiotemporal chaotic system named coupled map lattice(CML).The high initial value sensitivity of the CML system makes the permutation method highly sensitive and secure.Additionally,leveraging fractal theory,this study introduces a chaotic fractal matrix and applies this matrix in the diffusion process.This chaotic fractal matrix exhibits selfsimilarity and irregularity.Using the Cantor diagonal matrix and chaotic fractal matrix,this paper introduces a fast image encryption algorithm involving two diffusion steps and one permutation step.Moreover,the algorithm achieves robust security with only a single encryption round,ensuring high operational efficiency.Experimental results show that the proposed algorithm features an expansive key space,robust security,high sensitivity,high efficiency,and superior statistical properties for the ciphered images.Thus,the proposed algorithm not only provides a practical solution for secure image transmission but also bridges fractal theory with image encryption techniques,thereby opening new research avenues in chaotic cryptography and advancing the development of information security technology. 展开更多
关键词 Image encryption spatiotemporal chaotic system chaotic fractal matrix cantor diagonal matrix
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Cancer cell-dependent increase in senescence-like populationsfollowing exosome treatment:The role of extracellular matrix andcellular glycocalyx
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作者 Ilya D Klabukov Anastas Kisel +2 位作者 Elena Yatsenko Yana Sulina Denis S Baranovskii 《World Journal of Stem Cells》 2026年第1期108-111,共4页
We read with the great interest the study by Ababneh et al in which inducedmesenchymal stem cell-derived exosomes were shown to exhibit a stronger andmore sustained anti-proliferative effect by inducing a senescence-l... We read with the great interest the study by Ababneh et al in which inducedmesenchymal stem cell-derived exosomes were shown to exhibit a stronger andmore sustained anti-proliferative effect by inducing a senescence-like state withoutapoptosis.The results obtained by the authors highlight the features of theeffects of senescent drift induction in surrounding tissues.In the light of thesefindings,the role of the properties of extracellular matrix and cellular glycocalyxin responses of human tumors to therapy remain uninvestigated.These extracellularbarriers appear to be significant obstacles to effective cancer therapy,especiallyin relation to the use of unique properties of tumor microenvironment forthe immunotherapy-resistant cancer treatment. 展开更多
关键词 Cancer Extracellular matrix GLYCOCALYX EXOSOMES Extracellular vesicles Tumor microenvironment
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Matrix effect of hydroxycinnamic acids on chromatic properties and phenolic profile of Cabernet Sauvignon dry red wine
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作者 Lulu Wu Yu Zhang +5 位作者 Mario Prejanò Tiziana Marino Nino Russo Guojie Jin Yongsheng Tao Yunkui Li 《Journal of Integrative Agriculture》 2026年第1期339-351,共13页
The effect of adding hydroxycinnamic acids(caffeic acid,sinapic acid,p-coumaric acid and chlorogenic acid)in Cabernet Sauvignon dry red wine before and after fermentation was investigated,taking into account the color... The effect of adding hydroxycinnamic acids(caffeic acid,sinapic acid,p-coumaric acid and chlorogenic acid)in Cabernet Sauvignon dry red wine before and after fermentation was investigated,taking into account the color parameters,anthocyanin content,and overall polyphenol levels in the wine samples.The copigmentation effect of malvidin-3-Oglucoside and sinapic acid was further explored in model solution and through theoretical calculations.The results indicated that the addition of hydroxycinnamic acids significantly enhanced the wine's color with sinapic acid(before the fermentation)showing the most pronounced color protection effect.Compared to control samples,the addition of hydroxycinnamic acids resulted in a 36%increase in total phenolic content and a 28% increase in total anthocyanin content.Thermodynamic analysis revealed that the interaction between sinapic acid and malvidin-3-O-glucoside was spontaneous and exothermic.Theoretical studies identified hydrogen bonding(HB)and dispersion forces as the main primary stabilizing forces,with the carboxyl group of sinapic acid playing a critical role while the anthocyanin backbone also influenced the interaction. 展开更多
关键词 matrix effect dry red wine POLYPHENOL hydroxycinnamic acids anthocyanins
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A Kind of Fast Iterative Methods With the Application Based on Diagonal Matrix Splitting
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作者 XU Qiuyan 《宁夏大学学报(自然科学版中英文)》 2026年第1期1-13,共13页
The fast solution of linear equations has always been one of the hot spots in scientific computing.A kind of the diagonal matrix splitting iteration methods are provided,which is different from the classical matrix sp... The fast solution of linear equations has always been one of the hot spots in scientific computing.A kind of the diagonal matrix splitting iteration methods are provided,which is different from the classical matrix splitting methods.Taking the decomposition of the diagonal elements for coefficient matrix as the key point,some new preconditioners are constructed.Taking the tri-diagonal coefficient matrix as an example,the convergence domains and optimal relaxation factor of the new method are analyzed theoretically.The presented new iteration methods are applied to solve linear algebraic equations,even 2D and 3D diffusion problems with the fully implicit discretization.The results of numerical experiments are matched with the theoretical analysis,and show that the iteration numbers are reduced greatly.The superiorities of presented iteration methods exceed some classical iteration methods dramatically. 展开更多
关键词 ITERATION matrix splitting diffusion equation CONVERGENCE optimal relaxation factor
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Adversarial robustness evaluation based on classification confidence-based confusion matrix
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作者 YAO Xuemei SUN Jianbin +1 位作者 LI Zituo YANG Kewei 《Journal of Systems Engineering and Electronics》 2026年第1期184-196,共13页
Evaluating the adversarial robustness of classification algorithms in machine learning is a crucial domain.However,current methods lack measurable and interpretable metrics.To address this issue,this paper introduces ... Evaluating the adversarial robustness of classification algorithms in machine learning is a crucial domain.However,current methods lack measurable and interpretable metrics.To address this issue,this paper introduces a visual evaluation index named confidence centroid skewing quadrilateral,which is based on a classification confidence-based confusion matrix,offering a quantitative and visual comparison of the adversarial robustness among different classification algorithms,and enhances intuitiveness and interpretability of attack impacts.We first conduct a validity test and sensitive analysis of the method.Then,prove its effectiveness through the experiments of five classification algorithms including artificial neural network(ANN),logistic regression(LR),support vector machine(SVM),convolutional neural network(CNN)and transformer against three adversarial attacks such as fast gradient sign method(FGSM),DeepFool,and projected gradient descent(PGD)attack. 展开更多
关键词 adversarial robustness evaluation visual evaluation classification confidence-based confusion matrix centroid SKEWING
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Anisotropic thermal conductivity of aluminum matrix composites reinforced by graphene nanoplates and ZrB_(2) nanoparticles
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作者 Chuang Guan Xizhou Kai +3 位作者 Wei Qian Ran Tao Gang Chen Yutao Zhao 《International Journal of Minerals,Metallurgy and Materials》 2026年第2期636-646,共11页
This study investigates the anisotropic thermal conductivity of aluminum matrix composites reinforced with graphene nano-plates(GNPs)and in situ ZrB_(2) nanoparticles,while simultaneously maintaining high strength and... This study investigates the anisotropic thermal conductivity of aluminum matrix composites reinforced with graphene nano-plates(GNPs)and in situ ZrB_(2) nanoparticles,while simultaneously maintaining high strength and toughness.A discontinuous layered GNPs-ZrB_(2)/AA6111 composite was prepared using in situ melt reactions and semi-solid stirring casting technology,combined with hot rolling deformation processing.Microstructural analysis revealed that the GNPs were aligned parallel to the rolling direction-transverse direction(RD-TD)plane,whereas the ZrB_(2) nanoparticles aggregated into cluster strips,collectively forming a discontinuous layered structure.This multilayer arrangement maximized the in-plane thermal conductivity of the GNPs.The tightly bonded GNP/Al interfaces with the locking of CuAl_(2) nanoparticles ensured that the GNPs fully exploited their high thermal conductivity.Therefore,the GNPs-ZrB_(2)/AA6111 composite achieved high in-plane thermal conductivity(230 W/(m·K)),which is higher than that of the matrix(206 W/(m·K)).The improved in-plane thermal conductivity is primarily attributed to the exceptionally high intrinsic in-plane thermal conductivity of the GNPs and their two-dimensional layered structure.However,the composite exhibited pronounced thermal conductivity anisotropy in the in-plane and through-plane directions.The reduced through-plane thermal conductivity is predominantly caused by the intrinsically low through-plane thermal conductivity of the GNPs and the increased interfacial thermal resistance from the additional grain boundaries. 展开更多
关键词 aluminum matrix composites graphene nanoplates microstructure anisotropic thermal conductivity heat transport mechanisms
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Tailoring Dielectric Properties of Polymer Matrix Composites for High-performance Flexible Sensors
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作者 Jun Li Kit-Ming Ma +1 位作者 Li-Sha Zhang Xiao-Ming Tao 《Chinese Journal of Polymer Science》 2026年第1期116-126,I0012,共12页
Polymer matrix composites with high dielectric constants and low dielectric losses are in high demand for flexible electronics.However,simultaneously satisfying these requirements poses a significant scientific challe... Polymer matrix composites with high dielectric constants and low dielectric losses are in high demand for flexible electronics.However,simultaneously satisfying these requirements poses a significant scientific challenge owing to the intrinsic trade-off relationship.Herein,we utilized the in situ controllable reduction of graphene oxide(GO)within a poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene)(P(VDF-Tr FE-CFE))matrix to regulate the dielectric properties.The as-obtained composite exhibited a high relative dielectric constant of 1415coupled with a low loss tangent of 0.380 at 100 Hz.Experimental and theoretical studies indicate that the increased degree of electron conjugation and conductivity of the reduced GO(RGO)are responsible for the high-k.The constrained reduction degree of GO,combined with its homogeneous dispersion in the polymer matrix,effectively suppresses long-range charge carrier migration,thereby minimizing dielectric loss.This novel strategy could be successfully applied to both organic and aqueous systems.Furthermore,a high-performance flexible capacitive proximity sensor was exemplified by the optimization of both the dielectric layer and electrode pattern,exhibiting excellent sensitivity and stability.The fundamental mechanisms elucidated in this study provide crucial design principles for developing dielectric PMCs with tailored properties,thereby opening new avenues for advanced flexible electronic applications. 展开更多
关键词 Dielectric property regulation HIGH-K Polymer matrix composites(PMCs) Capacitive proximity sensor
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Porcine decellularized nerve matrix hydrogel attenuates neuroinflammation after peripheral nerve injury by inhibiting the TLR4/MyD88/NF-κB axis
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作者 Rui Li Jianquan Liu +7 位作者 Liuxun Li Guotian Luo Xinrong Yuan Shichao Shen Yongpeng Shi Jianlong Wu Bin Yan Lei Yang 《Neural Regeneration Research》 2026年第3期1222-1235,共14页
Peripheral nerve injury causes severe neuroinflammation and has become a global medical challenge.Previous research has demonstrated that porcine decellularized nerve matrix hydrogel exhibits excellent biological prop... Peripheral nerve injury causes severe neuroinflammation and has become a global medical challenge.Previous research has demonstrated that porcine decellularized nerve matrix hydrogel exhibits excellent biological properties and tissue specificity,highlighting its potential as a biomedical material for the repair of severe peripheral nerve injury;however,its role in modulating neuroinflammation post-peripheral nerve injury remains unknown.Here,we aimed to characterize the anti-inflammatory properties of porcine decellularized nerve matrix hydrogel and their underlying molecular mechanisms.Using peripheral nerve injury model rats treated with porcine decellularized nerve matrix hydrogel,we evaluated structural and functional recovery,macrophage phenotype alteration,specific cytokine expression,and changes in related signaling molecules in vivo.Similar parameters were evaluated in vitro using monocyte/macrophage cell lines stimulated with lipopolysaccharide and cultured on porcine decellularized nerve matrix hydrogel-coated plates in complete medium.These comprehensive analyses revealed that porcine decellularized nerve matrix hydrogel attenuated the activation of excessive inflammation at the early stage of peripheral nerve injury and increased the proportion of the M2 subtype in monocytes/macrophages.Additionally,porcine decellularized nerve matrix hydrogel negatively regulated the Toll-like receptor 4/myeloid differentiation factor 88/nuclear factor-κB axis both in vivo and in vitro.Our findings suggest that the efficacious anti-inflammatory properties of porcine decellularized nerve matrix hydrogel induce M2 macrophage polarization via suppression of the Toll-like receptor 4/myeloid differentiation factor 88/nuclear factor-κB pathway,providing new insights into the therapeutic mechanism of porcine decellularized nerve matrix hydrogel in peripheral nerve injury. 展开更多
关键词 anti-inflammatory reaction macrophage polarization NEUROINFLAMMATION peripheral nerve injury porcine decellularized nerve matrix hydrogel
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Active-material microenvironment engineering by plasticine electrode matrix for shape-customizable Li-ion batteries
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作者 Ting Hu Zhongfeng Ji +7 位作者 Xuewei He Guojiang Wen Zhiwei Zhu Sifan Yang Li Wang Xuewei Fu Xiangming He Yu Wang 《Journal of Energy Chemistry》 2026年第1期645-655,I0014,共12页
The development of shape-customizable and bulk flexible electrochemical devices through processing technologies as versatile as those used for plastics promises to revolutionize the future of battery technology.Howeve... The development of shape-customizable and bulk flexible electrochemical devices through processing technologies as versatile as those used for plastics promises to revolutionize the future of battery technology.However,this pursuit has been fundamentally hindered by the absence of transformative battery materials capable of delivering the necessary electrochemical functions,robust interface adhesion,and,crucially,the suitable rheological properties required for on-demand shaping.In this work,we introduce a concept of a multifunctional plasticine electrode matrix(PEM)featuring nano-interpenetrating networks(nano-IPN)to address this challenge.Utilizing the nonflammable liquid-electrolyte hydration combined with conductive nanomaterials,we have realized a PEM in the form of a multifunctional nanocomposite that integrates ion and electron conduction,component binding,non-flammability,and plasticine-like moldability.With this PEM,we have successfully fabricated a variety of bulk-flexible electrodes with high mass loading of active material(AM)(>70 wt%)using industry-friendly extrusion and compression molding techniques.Moreover,these high AM-loading composite electrodes achieve an unparalleled bulk conformability and flexibility,remaining structurally intact even under severe mechanical stress.Ultimately,we have successfully produced shape-patternable and flexible batteries via extrusion molding.This study underscores the potential of the PEM to revolutionize battery microstructures,interfaces,manufacturing processes,and performance characteristics. 展开更多
关键词 Nano-interpenetrating networks Electrode matrix Flexible electrodes and batteries Electrode processing Solid-state lithium-ion battery
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TMF inhibits extracellular matrix degradation in osteoarthritis cartilage by regulating the Sirt1/STAT3 signaling pathway
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作者 CHENG Qilai JIAO Linhui WU Longhuo 《赣南医科大学学报》 2026年第1期7-15,共9页
Objective:Osteoarthritis(OA)is a degenerative joint disease characterized by extracellular matrix(ECM)degradation,chondrocyte apoptosis,and chronic inflammation.Cartilage destruction and ECM degeneration contribute to... Objective:Osteoarthritis(OA)is a degenerative joint disease characterized by extracellular matrix(ECM)degradation,chondrocyte apoptosis,and chronic inflammation.Cartilage destruction and ECM degeneration contribute to joint function loss and disability.Signal transducer and activator of transcription 3(STAT3)up-regulates the expression of MMP-13,which degrades collagen Ⅱ.Our previous study found that 5,7,3',4'-tetramethoxyflavone(TMF)exhibited protective effects on OA chondrocytes.This study aims to investigate the protective role of TMF in inhibiting ECM degradation by mediating the Sirt1/STAT3 signaling pathway.Methods:Rat OA models were established by the injection of monosodium iodoacetate(MIA).Hematoxylin&eosin(HE)staining and immunohistochemistry(IHC)analysis were performed.IL-1β stimulated C28/I2 cells were used as OA-like chondrocyte cell model.Western blotting assays were used to determine the protein expression.Results:The expression of MMP-13 was upregulated while type Ⅱ collagen expression is downregulated,and the phosphorylation level of STAT3 is increased in rat OA models.TMF reverses the STAT3-mediated expression of MMP-13 and type v collagen.Activation of STAT3 or inhibition of Sirt1 function attenuates the inhibitory effect of TMF on ECM degradation.Conclusion:TMF can inhibit ECM degradation mediated by the STAT3 signal pathway by activating Sirt1 expression in OA cell and animal models. 展开更多
关键词 OSTEOARTHRITIS Extracellular matrix degradation CHONDROCYTES 5 7 3' 4'-tetramethoxyflavone Signal transduction and activator of transcription
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HE4 Might Participate in Extracellular Matrix Remodeling in Ovarian Cancer via Activation of Fibroblasts
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作者 Yimin Liu Bin Liu +8 位作者 Huabin Gao Jinlong Wang Jingya Duan Xiaolan Huang Yuexi Liu Ying Huang Wenjing Liao Ruonan Li Hua Linghu 《Oncology Research》 2026年第1期364-381,共18页
Objectives:High-grade serous ovarian cancer(HGSOC),the most common subtype of epithelial ovarian cancer(EOC),exhibits a mesenchymal phenotype characterized by fibrotic stroma and poor prognosis.Human epididymis protei... Objectives:High-grade serous ovarian cancer(HGSOC),the most common subtype of epithelial ovarian cancer(EOC),exhibits a mesenchymal phenotype characterized by fibrotic stroma and poor prognosis.Human epididymis protein 4(HE4),a key diagnostic biomarker for ovarian cancer,is involved in fibrotic processes in several non-malignant diseases.Given the clinical significance of stromal fibrosis in HGSOC and the potential link between HE4 and fibrosis,this study aimed to investigate the role of HE4 in the formation of stromal fibrosis in HGSOC.Methods:A total of 126 patients with gynecological conditions were included and divided into normal,benign,and EOC groups.Tissue stiffness was quantitatively measured and analyzed for its correlation with clinicopathological features.We further investigated the correlation between tumor stiffness and the expression levels of HE4 and fibroblast activation markers(α-smooth muscle actin(α-SMA)and fibroblast activation protein(FAP))in tumor tissues from 22 HGSOC patients.In vitro,primary fibroblasts were treated with recombinant HE4(rHE4)or conditioned media from HE4-knockdown ovarian cancer cells to assess fibroblasts activation and matrix contractility(Collagen gel contraction assays).In vivo,a subcutaneous xenograft model using HE4-knockdown cells was established to evaluate the effects of HE4 suppression on tumor growth and extensive extracellular matrix(ECM)remodeling.Results:Ovarian cancer tissues showed significantly increased stiffness compared to benign/normal groups,showing positive correlation with serum HE4 levels.High-stiffness HGSOC tumors exhibited upregulated expression of HE4,α-SMA,FAP,and collagen I.rHE4 stimulated fibroblast activation and enhanced matrix contractility,whereas HE4 knockdown in cancer cells abrogated these pro-fibrotic effects.In vivo,HE4-silenced xenografts displayed restricted tumor growth accompanied by reduced stromal expression ofα-SMA,FAP,and collagen I.Conclusion:Our findings suggest that HE4 may facilitate ECM remodeling in HGSOC through promoting fibroblast activation and increasing collagen deposition. 展开更多
关键词 Ovarian cancer extensive extracellular matrix(ECM) FIBROBLAST human epididymis protein 4(HE4) α-smooth muscle actin(α-SMA)
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