期刊文献+
共找到113,546篇文章
< 1 2 250 >
每页显示 20 50 100
Visual Detection of Shrimp Freshness via Colorimetric Sensors
1
作者 SONG Guangjie WANG Lei TIAN Yanqing 《高等学校化学学报》 北大核心 2026年第1期198-204,共7页
Monitoring biogenic amines,which are metabolic byproducts of shrimp spoilage,is crucial for assessing food quality.Currently,most detection methods for biogenic amines suffer from limitations such as time-consuming pr... Monitoring biogenic amines,which are metabolic byproducts of shrimp spoilage,is crucial for assessing food quality.Currently,most detection methods for biogenic amines suffer from limitations such as time-consuming procedures,complex operations,and delayed results.Colorimetric analysis techniques have gained attention in recent years due to their advantages of short analysis time,simple operation,and suitability for on-site testing.This study successfully developed a series of colorimetric sensor platforms for biogenic amines by loading the natural active ingredient curcumin(CUR)and its derivative of Boron complex BFCUR onto filter paper and electrospun nanofibre films(ENFs),respectively.By analyzing the color response differences of these sensors upon contact with biogenic amines,the colorimetric sensors with superior detection performance were selected and further applied to the visual monitoring and indication of shrimp spoilage processes. 展开更多
关键词 Shrimp freshness Colorimetric analysis Biogenic amine sensor
在线阅读 下载PDF
Thermally Drawn Flexible Fiber Sensors:Principles,Materials,Structures,and Applications
2
作者 ZhaoLun Zhang Yuchang Xue +7 位作者 Pengyu Zhang Xiao Yang Xishun Wang Chunyang Wang Haisheng Chen Xinghua Zheng Xin Yin Ting Zhang 《Nano-Micro Letters》 2026年第1期95-129,共35页
Flexible fiber sensors,However,traditional methods face challenges in fabricating low-cost,large-scale fiber sensors.In recent years,the thermal drawing process has rapidly advanced,offering a novel approach to flexib... Flexible fiber sensors,However,traditional methods face challenges in fabricating low-cost,large-scale fiber sensors.In recent years,the thermal drawing process has rapidly advanced,offering a novel approach to flexible fiber sensors.Through the preform-tofiber manufacturing technique,a variety of fiber sensors with complex functionalities spanning from the nanoscale to kilometer scale can be automated in a short time.Examples include temperature,acoustic,mechanical,chemical,biological,optoelectronic,and multifunctional sensors,which operate on diverse sensing principles such as resistance,capacitance,piezoelectricity,triboelectricity,photoelectricity,and thermoelectricity.This review outlines the principles of the thermal drawing process and provides a detailed overview of the latest advancements in various thermally drawn fiber sensors.Finally,the future developments of thermally drawn fiber sensors are discussed. 展开更多
关键词 Thermally drawn fiber sensors Sensing principles Temperature sensors Mechanical sensors Multifunctional sensors
在线阅读 下载PDF
Cavity ring-down spectroscopy CO gas sensor integrating principal component analysis with savitzky-golay filtering
3
作者 GUO Zi-long SHI Cheng-rui +4 位作者 DONG Yuan-yuan ZHANG Lei SUN Xiao-yuan SUN Jing-jing ZHOU Sheng 《中国光学(中英文)》 北大核心 2026年第1期179-189,共11页
The Savitzky-Golay(SG)filter,which employs polynomial least-squares approximations to smooth data and estimate derivatives,is widely used for processing noisy data.However,noise suppression by the SG filter is recogni... The Savitzky-Golay(SG)filter,which employs polynomial least-squares approximations to smooth data and estimate derivatives,is widely used for processing noisy data.However,noise suppression by the SG filter is recognized to be limited at data boundaries and high frequencies,which can significantly reduce the signal-to-noise ratio(SNR).To solve this problem,a novel method synergistically integrating Principal Component Analysis(PCA)with SG filtering is proposed in this paper.This approach avoids the is-sue of excessive smoothing associated with larger window sizes.The proposed PCA-SG filtering algorithm was applied to a CO gas sensing system based on Cavity Ring-Down Spectroscopy(CRDS).The perform-ance of the PCA-SG filtering algorithm is demonstrated through comparison with Moving Average Filtering(MAF),Wavelet Transformation(WT),Kalman Filtering(KF),and the SG filter.The results demonstrate that the proposed algorithm exhibits superior noise reduction capabilities compared to the other algorithms evaluated.The SNR of the ring-down signal was improved from 11.8612 dB to 29.0913 dB,and the stand-ard deviation of the extracted ring-down time constant was reduced from 0.037μs to 0.018μs.These results confirm that the proposed PCA-SG filtering algorithm effectively improves the smoothness of the ring-down curve data,demonstrating its feasibility. 展开更多
关键词 cavity ring-down spectroscopy CO gas sensor principal component analysis Savitzky-Golay filter
在线阅读 下载PDF
A Reconfigurable Omnidirectional Triboelectric Whisker Sensor Array for Versatile Human–Machine–Environment Interaction
4
作者 Weichen Wang Jiaqi Zhu +9 位作者 Hongfa Zhao Fei Yao Yuzhu Zhang Xiankuan Qian Mingrui Shu Zhigang Wu Minyi Xu Hongya Geng Wenbo Ding Juntian Qu 《Nano-Micro Letters》 2026年第3期121-140,共20页
Developing effective,versatile,and high-precision sensing interfaces remains a crucial challenge in human-machine-environment interaction applications.Despite progress in interaction-oriented sensing skins,limitations... Developing effective,versatile,and high-precision sensing interfaces remains a crucial challenge in human-machine-environment interaction applications.Despite progress in interaction-oriented sensing skins,limitations remain in unit-level reconfiguration,multiaxial force and motion sensing,and robust operation across dynamically changing or irregular surfaces.Herein,we develop a reconfigurable omnidirectional triboelectric whisker sensor array(RO-TWSA)comprising multiple sensing units that integrate a triboelectric whisker structure(TWS)with an untethered hydro-sealing vacuum sucker(UHSVS),enabling reversibly portable deployment and omnidirectional perception across diverse surfaces.Using a simple dual-triangular electrode layout paired with MXene/silicone nanocomposite dielectric layer,the sensor unit achieves precise omnidirectional force and motion sensing with a detection threshold as low as 0.024 N and an angular resolution of 5°,while the UHSVS provides reliable and reversible multi-surface anchoring for the sensor units by involving a newly designed hydrogel combining high mechanical robustness and superior water absorption.Extensive experiments demonstrate the effectiveness of RO-TWSA across various interactive scenarios,including teleoperation,tactile diagnostics,and robotic autonomous exploration.Overall,RO-TWSA presents a versatile and high-resolution tactile interface,offering new avenues for intelligent perception and interaction in complex real-world environments. 展开更多
关键词 Reconfigurable sensor array Interaction interface Tactile perception Omnidirectional sensor Reversible anchoring
在线阅读 下载PDF
Deep Learning-Assisted Organogel Pressure Sensor for Alphabet Recognition and Bio-Mechanical Motion Monitoring
5
作者 Kusum Sharma Kousik Bhunia +5 位作者 Subhajit Chatterjee Muthukumar Perumalsamy Anandhan Ayyappan Saj Theophilus Bhatti Yung‑Cheol Byun Sang-Jae Kim 《Nano-Micro Letters》 2026年第2期644-663,共20页
Wearable sensors integrated with deep learning techniques have the potential to revolutionize seamless human-machine interfaces for real-time health monitoring,clinical diagnosis,and robotic applications.Nevertheless,... Wearable sensors integrated with deep learning techniques have the potential to revolutionize seamless human-machine interfaces for real-time health monitoring,clinical diagnosis,and robotic applications.Nevertheless,it remains a critical challenge to simultaneously achieve desirable mechanical and electrical performance along with biocompatibility,adhesion,self-healing,and environmental robustness with excellent sensing metrics.Herein,we report a multifunctional,anti-freezing,selfadhesive,and self-healable organogel pressure sensor composed of cobalt nanoparticle encapsulated nitrogen-doped carbon nanotubes(CoN CNT)embedded in a polyvinyl alcohol-gelatin(PVA/GLE)matrix.Fabricated using a binary solvent system of water and ethylene glycol(EG),the CoN CNT/PVA/GLE organogel exhibits excellent flexibility,biocompatibility,and temperature tolerance with remarkable environmental stability.Electrochemical impedance spectroscopy confirms near-stable performance across a broad humidity range(40%-95%RH).Freeze-tolerant conductivity under sub-zero conditions(-20℃)is attributed to the synergistic role of CoN CNT and EG,preserving mobility and network integrity.The Co N CNT/PVA/GLE organogel sensor exhibits high sensitivity of 5.75 k Pa^(-1)in the detection range from 0 to 20 k Pa,ideal for subtle biomechanical motion detection.A smart human-machine interface for English letter recognition using deep learning achieved 98%accuracy.The organogel sensor utility was extended to detect human gestures like finger bending,wrist motion,and throat vibration during speech. 展开更多
关键词 Wearable ORGANOGEL Deep learning Pressure sensor Bio-mechanical motion
在线阅读 下载PDF
Two-Dimensional MXene-Based Advanced Sensors for Neuromorphic Computing Intelligent Application
6
作者 Lin Lu Bo Sun +2 位作者 Zheng Wang Jialin Meng Tianyu Wang 《Nano-Micro Letters》 2026年第2期664-691,共28页
As emerging two-dimensional(2D)materials,carbides and nitrides(MXenes)could be solid solutions or organized structures made up of multi-atomic layers.With remarkable and adjustable electrical,optical,mechanical,and el... As emerging two-dimensional(2D)materials,carbides and nitrides(MXenes)could be solid solutions or organized structures made up of multi-atomic layers.With remarkable and adjustable electrical,optical,mechanical,and electrochemical characteristics,MXenes have shown great potential in brain-inspired neuromorphic computing electronics,including neuromorphic gas sensors,pressure sensors and photodetectors.This paper provides a forward-looking review of the research progress regarding MXenes in the neuromorphic sensing domain and discussed the critical challenges that need to be resolved.Key bottlenecks such as insufficient long-term stability under environmental exposure,high costs,scalability limitations in large-scale production,and mechanical mismatch in wearable integration hinder their practical deployment.Furthermore,unresolved issues like interfacial compatibility in heterostructures and energy inefficiency in neu-romorphic signal conversion demand urgent attention.The review offers insights into future research directions enhance the fundamental understanding of MXene properties and promote further integration into neuromorphic computing applications through the convergence with various emerging technologies. 展开更多
关键词 TWO-DIMENSIONAL MXenes sensor Neuromorphic computing Multimodal intelligent system Wearable electronics
在线阅读 下载PDF
Chemically Engineered Hydroxyl-terminated Polybutadiene Yields Stable and High-strain Intrinsically Conductive Polyurethane Piezoresistive Sensors
7
作者 Li Zhou Guo-Xuan Ma +6 位作者 Wen-Xue Tian Wen-Cong Sun Shu-Miao Li Xiao-Ru Wang Wen-Chao Ji Yin-Yong Sun Chun-Xiang Li 《Chinese Journal of Polymer Science》 2026年第1期100-115,I0011,共17页
The development of intrinsically conductive piezoresistive sensors with high strain tolerance has garnered significant interest.While elastomeric polymers exhibit excellent strain capabilities,their utility in sensing... The development of intrinsically conductive piezoresistive sensors with high strain tolerance has garnered significant interest.While elastomeric polymers exhibit excellent strain capabilities,their utility in sensing applications has been limited by inherent challenges such as high electrical resistivity,poor aging resistance,and interfacial incompatibility.To address these limitations,hydroxyl-terminated polybutadiene(HTPB)-based polyurethane was chemically modified with acetylferrocene-polyaniline conductive moieties to enhance charge transport properties.Remarkably,this covalent functionalization endowed the resulting ferrocene-polyaniline hybrid polyurethane(FPHP)with a conductivity of2.33 n A at 1 V bias while preserving piezoresistive functionality.The FPHP demonstrated exceptional mechanical-electrical performance,achieving 254% elongation at break with strain-dependent gauge factors of 7.28(0%-12.5% strain,R^(2)=0.9504)and 19.66(12.5%-35.0% strain,R^(2)=0.9929).Further characterization revealed a rapid 0.60 s response time and stability over 3500 strain-release cycles at compression strain,underscoring its durability under repetitive loading.The FPHP sensor was capable of monitoring various human movements and recognizing writing signals.These advances establish a materials design paradigm for fabricating flexible sensors that synergistically integrate high deformability,tunable sensitivity,and robust operational stability,positioning FPHP as a promising candidate for next-generation wearable electronics and soft robotics. 展开更多
关键词 Piezoresistive sensor Chemical modification Intrinsically conducting polyurethane Hydroxyl-terminated polybutadiene
原文传递
Dual-Mode Sensor with Saturated Mechanochromic Structural Color Enhanced by Black Conductive Hydrogel for Interactive Rehabilitation Monitoring
8
作者 Zhiyuan Sun Binhong Yu +10 位作者 Chao Dong Chengjun Yu Lianghe Sheng Zhe Cui Yaming Liu Zhenni Lu Bingda Chen Daixi Xie Zhandong Huang Songshan Zeng Qingdong Ou 《Nano-Micro Letters》 2026年第4期153-171,共19页
Flexible and wearable sensors offer immense potential for rehabilitation medicine,but most rely solely on electrical signals,lacking real-time visual feedback and limiting trainee's interactivity.Inspired by the s... Flexible and wearable sensors offer immense potential for rehabilitation medicine,but most rely solely on electrical signals,lacking real-time visual feedback and limiting trainee's interactivity.Inspired by the structural coloration of Cyanocitta stelleri feathers,we developed a dual-mode sensor by utilizing black conductive polymer hydrogel(CPH)-enhanced structural color strategy.This sensor integrates a hydroxypropyl cellulose(HPC)-based structural color interface with a designed CPH sensing component.Highly visible light-absorbing CPH(absorption rate>88%)serves as the critical substrate for enhancing structural color performance.By absorbing incoherent scattered light and suppressing background interference,it significantly enhances the saturation of structural color,thereby achieving a high contrast index of 4.92.Unlike the faint and hardly visible structural colors on non-black substrates,the HPC on CPH displays vivid,highly perceptible colors and desirable mechanochromic behavior.Moreover,the CPH acts as a flexible sensing element,fortified by hydrogen and coordination bond networks,and exhibits exceptional electromechanical properties,including 867.1 kPa tensile strength,strain sensitivity(gauge factor of 4.24),and outstanding durability(over 4400 cycles).Compared to traditional single-mode sensors,the integrated sensor provides real-time visual and digital dual feedback,enhancing the accuracy and interactivity of rehabilitation assessments.This technology holds promise for advancing next-generation rehabilitation medicine. 展开更多
关键词 Conductive hydrogel Structural color Hydroxypropyl cellulose Dual-mode sensor Rehabilitation monitoring
在线阅读 下载PDF
Noninvasive On-Skin Biosensors for Monitoring Diabetes Mellitus
9
作者 Ali Sedighi Tianyu Kou +1 位作者 Hui Huang Yi Li 《Nano-Micro Letters》 2026年第1期375-437,共63页
Diabetes mellitus represents a major global health issue,driving the need for noninvasive alternatives to traditional blood glucose monitoring methods.Recent advancements in wearable technology have introduced skin-in... Diabetes mellitus represents a major global health issue,driving the need for noninvasive alternatives to traditional blood glucose monitoring methods.Recent advancements in wearable technology have introduced skin-interfaced biosensors capable of analyzing sweat and skin biomarkers,providing innovative solutions for diabetes diagnosis and monitoring.This review comprehensively discusses the current developments in noninvasive wearable biosensors,emphasizing simultaneous detection of biochemical biomarkers(such as glucose,cortisol,lactate,branched-chain amino acids,and cytokines)and physiological signals(including heart rate,blood pressure,and sweat rate)for accurate,personalized diabetes management.We explore innovations in multimodal sensor design,materials science,biorecognition elements,and integration techniques,highlighting the importance of advanced data analytics,artificial intelligence-driven predictive algorithms,and closed-loop therapeutic systems.Additionally,the review addresses ongoing challenges in biomarker validation,sensor stability,user compliance,data privacy,and regulatory considerations.A holistic,multimodal approach enabled by these next-generation wearable biosensors holds significant potential for improving patient outcomes and facilitating proactive healthcare interventions in diabetes management. 展开更多
关键词 Wearable biosensors Multimodal sensors Diabetes monitoring Sweat biomarkers Glucose biosensors
在线阅读 下载PDF
Ultrathin Gallium Nitride Quantum-Disk-in-Nanowire-Enabled Reconfigurable Bioinspired Sensor for High-Accuracy Human Action Recognition
10
作者 Zhixiang Gao Xin Ju +10 位作者 Huabin Yu Wei Chen Xin Liu Yuanmin Luo Yang Kang Dongyang Luo JiKai Yao Wengang Gu Muhammad Hunain Memon Yong Yan Haiding Sun 《Nano-Micro Letters》 2026年第2期439-453,共15页
Human action recognition(HAR)is crucial for the development of efficient computer vision,where bioinspired neuromorphic perception visual systems have emerged as a vital solution to address transmission bottlenecks ac... Human action recognition(HAR)is crucial for the development of efficient computer vision,where bioinspired neuromorphic perception visual systems have emerged as a vital solution to address transmission bottlenecks across sensor-processor interfaces.However,the absence of interactions among versatile biomimicking functionalities within a single device,which was developed for specific vision tasks,restricts the computational capacity,practicality,and scalability of in-sensor vision computing.Here,we propose a bioinspired vision sensor composed of a Ga N/Al N-based ultrathin quantum-disks-in-nanowires(QD-NWs)array to mimic not only Parvo cells for high-contrast vision and Magno cells for dynamic vision in the human retina but also the synergistic activity between the two cells for in-sensor vision computing.By simply tuning the applied bias voltage on each QD-NW-array-based pixel,we achieve two biosimilar photoresponse characteristics with slow and fast reactions to light stimuli that enhance the in-sensor image quality and HAR efficiency,respectively.Strikingly,the interplay and synergistic interaction of the two photoresponse modes within a single device markedly increased the HAR recognition accuracy from 51.4%to 81.4%owing to the integrated artificial vision system.The demonstration of an intelligent vision sensor offers a promising device platform for the development of highly efficient HAR systems and future smart optoelectronics. 展开更多
关键词 GaN nanowire Quantum-confined Stark effect Voltage-tunable photoresponse Bioinspired sensor Artificial vision system
在线阅读 下载PDF
Skin-Inspired Ultra-Linear Flexible Iontronic Pressure Sensors for Wearable Musculoskeletal Monitoring
11
作者 Pei Li Shipan Lang +6 位作者 Lei Xie Yong Zhang Xin Gou Chao Zhang Chenhui Dong Chunbao Li Jun Yang 《Nano-Micro Letters》 2026年第2期454-470,共17页
The growing prevalence of exercise-induced tibial stress fractures demands wearable sensors capable of monitoring dynamic musculoskeletal loads with medical-grade precision.While flexible pressure-sensing insoles show... The growing prevalence of exercise-induced tibial stress fractures demands wearable sensors capable of monitoring dynamic musculoskeletal loads with medical-grade precision.While flexible pressure-sensing insoles show clinical potential,their development has been hindered by the intrinsic trade-off between high sensitivity and full-range linearity(R^(2)>0.99 up to 1 MPa)in conventional designs.Inspired by the tactile sensing mechanism of human skin,where dermal stratification enables wide-range pressure adaptation and ion-channelregulated signaling maintains linear electrical responses,we developed a dual-mechanism flexible iontronic pressure sensor(FIPS).This innovative design synergistically combines two bioinspired components:interdigitated fabric microstructures enabling pressure-proportional contact area expansion(αP1/3)and iontronic film facilitating self-adaptive ion concentration modulation(αP^(2/3)),which together generate a linear capacitance-pressure response(CαP).The FIPS achieves breakthrough performance:242 kPa^(-1)sensitivity with 0.997linearity across 0-1 MPa,yielding a record linear sensing factor(LSF=242,000).The design is validated across various substrates and ionic materials,demonstrating its versatility.Finally,the FIPS-driven design enables a smart insole demonstrating 1.8%error in tibial load assessment during gait analysis,outperforming nonlinear counterparts(6.5%error)in early fracture-risk prediction.The biomimetic design framework establishes a universal approach for developing high-performance linear sensors,establishing generalized principles for medical-grade wearable devices. 展开更多
关键词 Iontronic sensor Skin-inspired design Linear range Linear sensing factor Biomechanical monitoring
在线阅读 下载PDF
Tailoring Dielectric Properties of Polymer Matrix Composites for High-performance Flexible Sensors
12
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
原文传递
Grey Wolf Optimizer for Cluster-Based Routing in Wireless Sensor Networks:A Methodological Survey
13
作者 Mohammad Shokouhifar Fakhrosadat Fanian +4 位作者 Mehdi Hosseinzadeh Aseel Smerat Kamal M.Othman Abdulfattah Noorwali Esam Y.O.Zafar 《Computer Modeling in Engineering & Sciences》 2026年第1期191-255,共65页
Wireless Sensor Networks(WSNs)have become foundational in numerous real-world applications,ranging from environmental monitoring and industrial automation to healthcare systems and smart city development.As these netw... Wireless Sensor Networks(WSNs)have become foundational in numerous real-world applications,ranging from environmental monitoring and industrial automation to healthcare systems and smart city development.As these networks continue to grow in scale and complexity,the need for energy-efficient,scalable,and robust communication protocols becomes more critical than ever.Metaheuristic algorithms have shown significant promise in addressing these challenges,offering flexible and effective solutions for optimizing WSN performance.Among them,the Grey Wolf Optimizer(GWO)algorithm has attracted growing attention due to its simplicity,fast convergence,and strong global search capabilities.Accordingly,this survey provides an in-depth review of the applications of GWO and its variants for clustering,multi-hop routing,and hybrid cluster-based routing in WSNs.We categorize and analyze the existing GWO-based approaches across these key network optimization tasks,discussing the different problem formulations,decision variables,objective functions,and performance metrics used.In doing so,we examine standard GWO,multi-objective GWO,and hybrid GWO models that incorporate other computational intelligence techniques.Each method is evaluated based on how effectively it addresses the core constraints of WSNs,including energy consumption,communication overhead,and network lifetime.Finally,this survey outlines existing gaps in the literature and proposes potential future research directions aimed at enhancing the effectiveness and real-world applicability of GWO-based techniques for WSN clustering and routing.Our goal is to provide researchers and practitioners with a clear,structured understanding of the current state of GWO in WSNs and inspire further innovation in this evolving field. 展开更多
关键词 Wireless sensor networks data transmission energy efficiency LIFETIME CLUSTERING ROUTING optimization metaheuristic algorithms grey wolf optimizer
在线阅读 下载PDF
不同抗血小板聚集治疗方案对颅内破裂宽颈动脉瘤急性期行LVIS支架辅助弹簧圈栓塞患者的临床疗效分析 被引量:1
14
作者 李文帅 赵亚运 +5 位作者 郭震 张海兵 王奉淼 张信芳 张全忠 李庆民 《中国脑血管病杂志》 北大核心 2025年第5期302-309,共8页
目的比较术中静脉应用替罗非班与术前负荷量双联抗血小板聚集治疗在颅内破裂宽颈动脉瘤急性期行LVIS支架辅助弹簧圈栓塞患者中的临床疗效。方法回顾性连续纳入2017年1月至2023年6月菏泽市立医院神经外科收治的颅内破裂宽颈动脉瘤急性期... 目的比较术中静脉应用替罗非班与术前负荷量双联抗血小板聚集治疗在颅内破裂宽颈动脉瘤急性期行LVIS支架辅助弹簧圈栓塞患者中的临床疗效。方法回顾性连续纳入2017年1月至2023年6月菏泽市立医院神经外科收治的颅内破裂宽颈动脉瘤急性期应用LVIS支架辅助弹簧圈栓塞治疗的患者。根据《颅内动脉瘤抗血小板治疗中国专家共识》指导下患者实际接受的抗血小板聚集治疗方案将所有患者分为负荷量双抗组和替罗非班组。收集并比较两组患者的基线及临床资料,包括年龄、性别、高血压病、糖尿病、冠心病、既往脑出血、术前Hunt-Hess分级、动脉瘤最大径、瘤颈宽度及动脉瘤部位。收集并比较两组患者围手术期缺血性与出血性并发症发生情况。围手术期缺血性并发症包括术中支架内血栓形成(定义为术中载瘤动脉内充盈缺损,载瘤动脉或支架覆盖分支血管闭塞)及术后24 h内症状性脑梗死。围手术期出血性并发症包括术中责任动脉瘤破裂出血和术后24 h内颅内出血(CT发现新的或恶化的蛛网膜下腔出血或脑实质内出血)。采用改良Rankin量表(mRS)电话或门诊随访评估患者术后90 d预后情况,mRS评分0~2分为预后良好,3~6分为预后不良。术后6个月行影像学随访,将与术后即刻栓塞结果相比的随访结果分为4类:(1)完全闭塞,即动脉瘤腔内对比剂填充完全消失;(2)改善,即动脉瘤腔内对比剂填充减少;(3)稳定,即动脉瘤腔内对比剂填充保持不变;(4)复发,即动脉瘤腔内对比剂填充增加。结果共纳入颅内破裂宽颈动脉瘤急性期行LVIS支架辅助弹簧圈栓塞患者108例,男30例,女78例,年龄32~75岁,中位年龄63(50,66)岁;其中负荷量双抗组55例,替罗非班组53例。(1)替罗非班组与负荷量双抗组各基线及临床资料差异均无统计学意义(均P>0.05)。(2)所有患者均成功实施LVIS支架辅助弹簧圈栓塞治疗,技术成功率为100%。总体围手术期缺血性并发症发生率为12.0%(13/108),其中术中支架内血栓形成发生率为4.6%(5/108),术后24 h内症状性脑梗死发生率为7.4%(8/108);总体围手术期出血性并发症发生率为1.9%(2/108),包括1例术中责任动脉瘤破裂出血和1例术后24 h内颅内出血。92.6%(100/108)的患者术后90 d随访预后良好,7.4%(8/108)的患者预后不良。78.7%(85/108)的患者完成术后6个月影像学随访,其中完全闭塞率为94.1%(80/85),复发率为2.4%(2/85)。(3)替罗非班组和负荷量双抗组患者围手术期缺血性并发症总体发生率分别为13.2%(7/53)和10.9%(6/55),组间差异无统计学意义(P=0.720)。负荷量双抗组术中支架内血栓形成发生率高于替罗非班组[9.1%(5/55)比0,P=0.025],术后24 h内症状性脑梗死发生率低于替罗非班组[1.8%(1/55)比13.2%(7/53),P=0.028]。负荷量双抗组围手术期出血性并发症总体发生率为3.6%(2/55),替罗非班组未发生围手术期出血性并发症。术后90 d随访结果显示,替罗非班组和负荷量双抗组良好预后比例分别为94.3%(50/53)和90.9%(50/55),组间差异无统计学意义(P=0.754)。结论术中静脉应用替罗非班与术前负荷量双抗两种方案对颅内破裂宽颈动脉瘤急性期行LVIS支架辅助弹簧圈栓塞患者均具有一定的安全性和良好的临床效果。本研究结果尚需大型前瞻性研究验证。 展开更多
关键词 颅内动脉瘤 动脉瘤 破裂 替罗非班 双重抗血小板聚集治疗 lvis支架
暂未订购
LVIS支架辅助弹簧圈栓塞治疗破裂脑动脉瘤临床观察 被引量:2
15
作者 汪亮 杜进 +1 位作者 曹光东 周佳旺 《中国实用神经疾病杂志》 2025年第5期578-582,共5页
目的探讨LVIS支架辅助弹簧圈栓塞治疗脑动脉瘤破裂的临床疗效。方法回顾性分析2021-01—2024-03池州市人民医院收治的92例脑动脉瘤破裂患者的临床资料,其中单纯弹簧圈栓塞术治疗47例(对照组),LVIS支架辅助弹簧圈栓塞术治疗45例(观察组)... 目的探讨LVIS支架辅助弹簧圈栓塞治疗脑动脉瘤破裂的临床疗效。方法回顾性分析2021-01—2024-03池州市人民医院收治的92例脑动脉瘤破裂患者的临床资料,其中单纯弹簧圈栓塞术治疗47例(对照组),LVIS支架辅助弹簧圈栓塞术治疗45例(观察组)。治疗后比较2组患者临床疗效、改良Rankin量表(mRS)评分,分析典型病例影像学及并发症情况。结果观察组患者治疗有效率显著高于对照组(91.11%比74.47%,P<0.05)。术后1、2、3个月2组mRS评分均降低,观察组术后1、2、3个月mRS评分与对照组比较均有统计学差异(3.26±0.51比3.89±0.82、2.54±0.43比3.17±0.82、1.68±0.35比2.31±0.66,P<0.05)。治疗后2组患者并发症情况比较无统计学差异(χ^(2)=0.138,P>0.05)。结论LVIS支架辅助弹簧圈栓塞治疗脑动脉瘤破裂具有微创性、恢复快、安全性高等优点,临床效果显著。 展开更多
关键词 脑动脉瘤破裂 lvis支架 弹簧圈栓塞术 数字减影血管造影 血管内介入栓塞术
暂未订购
Smart Gas Sensors:Recent Developments and Future Prospective 被引量:3
16
作者 Boyang Zong Shufang Wu +3 位作者 Yuehong Yang Qiuju Li Tian Tao Shun Mao 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期55-86,共32页
Gas sensor is an indispensable part of modern society withwide applications in environmental monitoring,healthcare,food industry,public safety,etc.With the development of sensor technology,wireless communication,smart... Gas sensor is an indispensable part of modern society withwide applications in environmental monitoring,healthcare,food industry,public safety,etc.With the development of sensor technology,wireless communication,smart monitoring terminal,cloud storage/computing technology,and artificial intelligence,smart gas sensors represent the future of gassensing due to their merits of real-time multifunctional monitoring,earlywarning function,and intelligent and automated feature.Various electronicand optoelectronic gas sensors have been developed for high-performancesmart gas analysis.With the development of smart terminals and the maturityof integrated technology,flexible and wearable gas sensors play an increasingrole in gas analysis.This review highlights recent advances of smart gassensors in diverse applications.The structural components and fundamentalprinciples of electronic and optoelectronic gas sensors are described,andflexible and wearable gas sensor devices are highlighted.Moreover,sensorarray with artificial intelligence algorithms and smart gas sensors in“Internet of Things”paradigm are introduced.Finally,the challengesand perspectives of smart gas sensors are discussed regarding the future need of gas sensors for smart city and healthy living. 展开更多
关键词 Smart gas sensor Electronic sensor Optoelectronic sensor Flexible and wearable sensor Artificial intelligence
在线阅读 下载PDF
LVIS支架治疗症状性颅内动脉粥样硬化性狭窄术后复发的风险预警模型及防控措施
17
作者 李文燕 刘梓柠 +2 位作者 郭园园 李光辉 刘永贵 《河南医学研究》 2025年第7期1205-1211,共7页
目的分析LVIS支架治疗症状性颅内动脉粥样硬化性狭窄(sICAS)术后复发的危险因素,建立列线图风险预警模型,运用内部数据、外部数据加以验证,并探讨术后复发的防控措施。方法选取2020年4月至2024年1月郑州大学第一附属医院收治的297例sICA... 目的分析LVIS支架治疗症状性颅内动脉粥样硬化性狭窄(sICAS)术后复发的危险因素,建立列线图风险预警模型,运用内部数据、外部数据加以验证,并探讨术后复发的防控措施。方法选取2020年4月至2024年1月郑州大学第一附属医院收治的297例sICAS患者,均接受LVIS支架治疗。分析术后1 a内患者复发情况,根据术后是否复发分为复发组(40例)与未复发组(257例)。比较复发组、未复发组患者临床资料,通过单因素、多因素logistic回归分析LVIS支架治疗后复发的危险因素,构建列线图风险预警模型,并对模型预测价值加以验证。结果复发组年龄≥60岁占比、吸烟史占比、糖尿病占比、高血压占比、血脂异常占比、血管狭窄程度≥70%占比、支架长度≥30 mm占比、支架直径<4.5 mm占比、未规范用药占比及甘油三酯(TG)、超敏C反应蛋白(hs-CRP)、脂蛋白a[LP(a)]均高于未复发组,差异有统计学意义(P<0.05);经logistic回归分析发现,年龄≥60岁、糖尿病、高血压、血脂异常、支架长度≥30 mm、支架直径<4.5 mm、未规范用药、TG、LP(a)是LVIS支架治疗颅内前循环sICAS患者术后复发的危险因素;受试者工作特征(ROC)曲线分析显示,该模型的曲线下面积(AUC)为0.921(95%CI:0.875~0.968);校准曲线、决策曲线显示该模型预测效能、准确性较高。结论颅内前循环sICAS患者经LVIS支架治疗后复发的危险因素为年龄≥60岁、糖尿病、高血压、血脂异常、支架长度≥30 mm、支架直径<4.5 mm、未规范用药、TG、LP(a),基于上述危险因素构建的列线图风险预警模型预测效能、准确性较高,可据此针对性制定术后复发防控措施,以降低术后复发率。 展开更多
关键词 颅内动脉粥样硬化性狭窄 lvis支架置入术 术后复发 列线图预警模型 模型验证 防控措施
暂未订购
An Artificial Intelligence‑Assisted Flexible and Wearable Mechanoluminescent Strain Sensor System 被引量:1
18
作者 Yan Dong Wenzheng An +1 位作者 Zihu Wang Dongzhi Zhang 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期217-231,共15页
The complex wiring,bulky data collection devices,and difficulty in fast and on-site data interpretation significantly limit the practical application of flexible strain sensors as wearable devices.To tackle these chal... The complex wiring,bulky data collection devices,and difficulty in fast and on-site data interpretation significantly limit the practical application of flexible strain sensors as wearable devices.To tackle these challenges,this work develops an artificial intelligenceassisted,wireless,flexible,and wearable mechanoluminescent strain sensor system(AIFWMLS)by integration of deep learning neural network-based color data processing system(CDPS)with a sandwich-structured flexible mechanoluminescent sensor(SFLC)film.The SFLC film shows remarkable and robust mechanoluminescent performance with a simple structure for easy fabrication.The CDPS system can rapidly and accurately extract and interpret the color of the SFLC film to strain values with auto-correction of errors caused by the varying color temperature,which significantly improves the accuracy of the predicted strain.A smart glove mechanoluminescent sensor system demonstrates the great potential of the AIFWMLS system in human gesture recognition.Moreover,the versatile SFLC film can also serve as a encryption device.The integration of deep learning neural network-based artificial intelligence and SFLC film provides a promising strategy to break the“color to strain value”bottleneck that hinders the practical application of flexible colorimetric strain sensors,which could promote the development of wearable and flexible strain sensors from laboratory research to consumer markets. 展开更多
关键词 Mechanoluminescent Strain sensor FLEXIBLE Deep learning WIRELESS
在线阅读 下载PDF
Flexible Strain Sensors with Ultra‑High Sensitivity and Wide Range Enabled by Crack‑Modulated Electrical Pathways 被引量:1
19
作者 Yunzhao Bai Yunlei Zhou +6 位作者 Xuanyu Wu Mengfei Yin Liting Yin Shiyuan Qu Fan Zhang Kan Li YongAn Huang 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期246-264,共19页
This study presents a breakthrough in flexible strain sensor technology with the development of an ultrahigh sensitivity and wide-range sensor,addressing the critical challenge of reconciling sensitivity with measurem... This study presents a breakthrough in flexible strain sensor technology with the development of an ultrahigh sensitivity and wide-range sensor,addressing the critical challenge of reconciling sensitivity with measurement range.Inspired by the structure of bamboo slips,we introduce a novel approach that utilises liquid metal to modulate the electrical pathways within a cracked platinum fabric electrode.The resulting sensor demonstrates a gauge factor greater than 108 and a strain measurement capability exceeding 100%.The integration of patterned liquid metal enables customisable tuning of the sensor’s response,while the porous fabric structure ensures superior comfort and air permeability for the wearer.Our design not only optimises the sensor’s performance but also enhances the electrical stability that is essential for practical applications.Through systematic investigation,we reveal the intrinsic mechanisms governing the sensor’s response,offering valuable insights for the design of wearable strain sensors.The sensor’s exceptional performance across a spectrum of applications,from micro-strain to large-strain detection,highlights its potential for a wide range of real-world uses,demonstrating a significant advancement in the field of flexible electronics. 展开更多
关键词 Flexible strain sensor FABRIC CRACK Response regulation Epidermal device
在线阅读 下载PDF
Recent progress on artificial intelligence-enhanced multimodal sensors integrated devices and systems 被引量:2
20
作者 Haihua Wang Mingjian Zhou +5 位作者 Xiaolong Jia Hualong Wei Zhenjie Hu Wei Li Qiumeng Chen Lei Wang 《Journal of Semiconductors》 2025年第1期179-192,共14页
Multimodal sensor fusion can make full use of the advantages of various sensors,make up for the shortcomings of a single sensor,achieve information verification or information security through information redundancy,a... Multimodal sensor fusion can make full use of the advantages of various sensors,make up for the shortcomings of a single sensor,achieve information verification or information security through information redundancy,and improve the reliability and safety of the system.Artificial intelligence(AI),referring to the simulation of human intelligence in machines that are programmed to think and learn like humans,represents a pivotal frontier in modern scientific research.With the continuous development and promotion of AI technology in Sensor 4.0 age,multimodal sensor fusion is becoming more and more intelligent and automated,and is expected to go further in the future.With this context,this review article takes a comprehensive look at the recent progress on AI-enhanced multimodal sensors and their integrated devices and systems.Based on the concept and principle of sensor technologies and AI algorithms,the theoretical underpinnings,technological breakthroughs,and pragmatic applications of AI-enhanced multimodal sensors in various fields such as robotics,healthcare,and environmental monitoring are highlighted.Through a comparative study of the dual/tri-modal sensors with and without using AI technologies(especially machine learning and deep learning),AI-enhanced multimodal sensors highlight the potential of AI to improve sensor performance,data processing,and decision-making capabilities.Furthermore,the review analyzes the challenges and opportunities afforded by AI-enhanced multimodal sensors,and offers a prospective outlook on the forthcoming advancements. 展开更多
关键词 sensor multimodal sensors machine learning deep learning intelligent system
在线阅读 下载PDF
上一页 1 2 250 下一页 到第
使用帮助 返回顶部