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Impact of failure mode and effects analysis-based emergency management on the effectiveness of craniocerebral injury treatment 被引量:4
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作者 Xiao-Lan Shao Ya-Zhou Wang +1 位作者 Xiong-Hui Chen Wen-Juan Ding 《World Journal of Clinical Cases》 SCIE 2022年第2期554-562,共9页
BACKGROUND Craniocerebral injuries encompass brain injuries,skull fractures,cranial soft tissue injuries,and similar injuries.Recently,the incidence of craniocerebral injuries has increased dramatically due to the inc... BACKGROUND Craniocerebral injuries encompass brain injuries,skull fractures,cranial soft tissue injuries,and similar injuries.Recently,the incidence of craniocerebral injuries has increased dramatically due to the increased numbers of traffic accidents and aerial work injuries,threatening the physical and mental health of patients.AIM To investigate the impact of failure modes and effects analysis(FMEA)-based emergency management on craniocerebral injury treatment effectiveness.METHODS Eighty-four patients with craniocerebral injuries,treated at our hospital from November 2019 to March 2021,were selected and assigned,using the random number table method,to study(n=42)and control(n=42)groups.Patients in the control group received conventional management while those in the study group received FMEA theory-based emergency management,based on the control group.Pre-and post-interventions,details regarding the emergency situation;levels of inflammatory stress indicators[Interleukin-6(IL-6),C-reactive protein(CRP),and procalcitonin(PCT)];incidence of complications;prognoses;and satisfaction regarding patient care were evaluated for both groups.RESULTS For the study group,the assessed parameters[pre-hospital emergency response time(9.13±2.37 min),time to receive a consultation(2.39±0.44 min),time needed to report imaging findings(1.15±4.44 min),and test reporting time(32.19±6.23 min)]were shorter than those for the control group(12.78±4.06 min,3.58±0.71 min,33.49±5.51 min,50.41±11.45 min,respectively;P<0.05).Pre-intervention serum levels of IL-6(78.71±27.59 pg/mL),CRP(19.80±6.77 mg/L),and PCT(3.66±1.82 ng/mL)in the study group patients were not significantly different from those in the control group patients(81.31±32.11 pg/mL,21.29±8.02 mg/L,and 3.95±2.11 ng/mL respectively;P>0.05);post-intervention serum indicator levels were lower in both groups than pre-intervention levels.Further,serum levels of IL-6(17.35±5.33 pg/mL),CRP(2.27±0.56 mg/L),and PCT(0.22±0.07 ng/mL)were lower in the study group than in the control group(30.15±12.38 pg/mL,3.13±0.77 mg/L,0.38±0.12 ng/mL,respectively;P<0.05).The complication rate observed in the study group(9.52%)was lower than that in the control group(26.19%,P<0.05).The prognoses for the study group patients were better than those for the control patients(P<0.05).Patient care satisfaction was higher in the study group(95.24%)than in the control group(78.57%,P<0.05).CONCLUSION FMEA-based craniocerebral injury management effectively shortens the time spent on emergency care,reduces inflammatory stress and complication risk levels,and helps improve patient prognoses,while achieving high patient care satisfaction levels. 展开更多
关键词 Craniocerebral injury failure modes and effects analysis theory Emergency management Treatment effect
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Comprehensive Reliability Allocation Method for CNC Lathes Based on Cubic Transformed Functions of Failure Mode and Effects Analysis 被引量:8
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作者 YANG Zhou ZHU Yunpeng +1 位作者 REN Hongrui ZHANG Yimin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第2期315-324,共10页
Reliability allocation of computerized numerical controlled(CNC)lathes is very important in industry.Traditional allocation methods only focus on high-failure rate components rather than moderate failure rate compon... Reliability allocation of computerized numerical controlled(CNC)lathes is very important in industry.Traditional allocation methods only focus on high-failure rate components rather than moderate failure rate components,which is not applicable in some conditions.Aiming at solving the problem of CNC lathes reliability allocating,a comprehensive reliability allocation method based on cubic transformed functions of failure modes and effects analysis(FMEA)is presented.Firstly,conventional reliability allocation methods are introduced.Then the limitations of direct combination of comprehensive allocation method with the exponential transformed FMEA method are investigated.Subsequently,a cubic transformed function is established in order to overcome these limitations.Properties of the new transformed functions are discussed by considering the failure severity and the failure occurrence.Designers can choose appropriate transform amplitudes according to their requirements.Finally,a CNC lathe and a spindle system are used as an example to verify the new allocation method.Seven criteria are considered to compare the results of the new method with traditional methods.The allocation results indicate that the new method is more flexible than traditional methods.By employing the new cubic transformed function,the method covers a wider range of problems in CNC reliability allocation without losing the advantages of traditional methods. 展开更多
关键词 CNC lathes reliability failure modes and effects analysis(FMEA) cubic transformed function comprehensive allocation
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Risk Evaluation in Blood Donation Using Failure Mode and Effective Analysis 被引量:1
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作者 Razaz M. Salih Eltahir M. Husein Elias Hassan 《Journal of Biomedical Science and Engineering》 2021年第4期177-184,共8页
The recognition and management of risk in donation process and blood product is critical to ensure donor and patient safety. To achieve this goal, the failure mode and effects analysis (FMEA) is a convenient method;mo... The recognition and management of risk in donation process and blood product is critical to ensure donor and patient safety. To achieve this goal, the failure mode and effects analysis (FMEA) is a convenient method;moreover it was used to prevent the occurrence of adverse events and look at what could go strong at each step. This study aimed to utilize FMEA in central blood bank in Khartoum to evaluate the potential risk and adverse event that may occur during the donation process. According to the severity, occurrence and the detection of each failure mode, the risk priority number (RPN) was calculated to determine which of the failures should take priority to find a solution and applying corrective action to reduce the failure risk. The statistical package for social sciences (SPSS) version 11 was used as descriptive and analytical statistics tool. The FMEA technique provides a systematic method for finding vulnerabilities in a process before they result in an error, and in this study a satisfactory outcome was reached. 展开更多
关键词 DONATION Blood Product DONOR failure mode and effective analysis Adverse Event Risk Priority Number
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Application of Fuzzy Decision-Making Theory and Conflict-Resolution Method to Failure Mode and Effect Analysis of Industrial Valve
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作者 吴世青 沈斌 +3 位作者 王家海 郑大腾 KUNZE Markus FLEISCHER Juergen 《Journal of Donghua University(English Edition)》 EI CAS 2017年第2期184-188,共5页
It is not objective to rate the decision-making factors in the traditional failure mode and effect analysis,so fuzzy semantic theory is used in this paper.Six fuzzy semantic scales and their corresponding semantics ar... It is not objective to rate the decision-making factors in the traditional failure mode and effect analysis,so fuzzy semantic theory is used in this paper.Six fuzzy semantic scales and their corresponding semantics are summarized,and a defuzzification method is studied to obtain the fuzzy value table of the six fuzzy semantic scales.For the conflicts between experts in the traditional failure mode and effects analysis,a conflict-resolution algorithm is studied to obtain the failure risk order.Finally,a certain type of industrial valve is used as an example to prove the validity of the theory proposed in this paper. 展开更多
关键词 failure mode and effect analysis fuzzy semantic multiobject decision-making conflict-resolution
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Failure Mode Effects and Criticality Analysis Method of Armored Equipment Based on Testability Growth
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作者 曹艳华 郭金茂 吕会强 《Journal of Donghua University(English Edition)》 EI CAS 2018年第3期252-255,共4页
In view of the low level testability of armored equipment,the important significance of armored equipment testability growth is discussed in this paper.The failure mode effects and criticality analysis( FMECA) method ... In view of the low level testability of armored equipment,the important significance of armored equipment testability growth is discussed in this paper.The failure mode effects and criticality analysis( FMECA) method to realize testability growth is introduced.Centering on the testability growth demands of new armored equipment,the deficiencies of traditional FMECA are analyzed.And an enhanced FMECA( EFMECA) method is proposed.The method increases the analysis contents,combines the information before the failure occurrence and impending failure modes together organically.Then the failure symptoms is analyzed,the failure modes and effects is determined,and the state development trend is predicted.Finally,the application of EFMECA method is illustrated by the example of the failure mode of typical armored equipment engine. 展开更多
关键词 testability growth armored equipment the failure mode effects and criticality analysis(FMECA) design of testability
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Effect of Healthcare Failure Mode and Effect Analysis on Reducing Error Risk of Neonatal Parenteral Nutrition Solution Dispensing
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作者 Xinhong ZHAO Zhenhua LIU +3 位作者 Chao SUN Xu XIAO Lixue ZHAO Chunhua CAI 《Medicinal Plant》 CAS 2022年第2期63-69,共7页
[Objectives]To investigate the effect of healthcare failure mode and effect analysis(HFMEA)on reducing error risk of neonatal parenteral nutrition solution dispensing.[Methods]A research team was established to identi... [Objectives]To investigate the effect of healthcare failure mode and effect analysis(HFMEA)on reducing error risk of neonatal parenteral nutrition solution dispensing.[Methods]A research team was established to identify the failure mode(FM)in each link of the formulation process of neonatal parenteral nutrition solution by HFMEA,quantify the severity(S),occurrence(O)and detection(D)of FM,and evaluate FM by risk priority number(RPN).For FM with the values of RPN>16,failure cause analysis was conducted,and corresponding improvement measures were formulated.The weight coefficient and random consistency ratio(CR)of deployment process were calculated in Matlab R2018a by compiling the Analytic Hierarchy Process(AHP)program.Six months after the implementation of improvement measures,the implementation effect was evaluated by comparing the changes of the values of RPN which was evaluated comprehensively and the rate of dispensing errors before and after the implementation of HFMEA.[Results]In the preparation process of neonatal parenteral nutrition solution,a total of 13 FMs with medium and above risk were found,the weight coefficient of medical order review,dosing and mixing was 0.2703,the weight coefficient of drug dispensing check and review was 0.1432,the weight coefficient of print label was 0.1015,the weight coefficient of distribution was 0.0716,and CR=0.0491<0.1.After six months of intervention,the total RPN value decreased by 64.81%from 127.8 to 45.0.The deployment error rates were significantly lower after the implementation,and the difference was statistically significant(P<0.05).[Conclusions]HFMEA can effectively reduce the error risk in preparation of neonatal parenteral nutrition solution,improve the quality of dispensing and promote the safety of neonatal medication. 展开更多
关键词 Healthcare failure mode and effect analysis(HFMEA) Neonatal parenteral nutrition solution Dispensing errors Risk management Analytic hierarchy process(AHP)
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Failure Mode and Effects Analysis (FMEA) by Fuzzy Data Envelop Analysis (Fuzzy-DEA)
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作者 Hamed Rahmani Milad Jasemi 《Journal of Mathematics and System Science》 2014年第3期173-179,共7页
Failure mode and effects analysis (FMEA) offers a quick and easy way for identifying ranking-order for all failure modes in a system or a product. In FMEA the ranking methods is so called risk priority number (RPN... Failure mode and effects analysis (FMEA) offers a quick and easy way for identifying ranking-order for all failure modes in a system or a product. In FMEA the ranking methods is so called risk priority number (RPN), which is a mathematical product of severity (S), occurrence (0), and detection (D). One of major disadvantages of this ranking-order is that the failure mode with different combination of SODs may generate same RPN resulting in difficult decision-making. Another shortfall of FMEA is lacking of discerning contribution factors, which lead to insufficient information about scaling of improving effort. Through data envelopment analysis (DEA) technique and its extension, the proposed approach evolves the current rankings for failure modes by exclusively investigating SOD in lieu of RPN and to furnish with improving sca.les for SOD. The purpose of present study is to propose a state-of-the-art new approach to enhance assessment capabilities of failure mode and effects analysis (FMEA). The paper proposes a state-of-the-art new approach, robust, structured and useful in practice, for failure analysis. 展开更多
关键词 failure mode and effects analysis (FMEA) data envelopment analysis (DEA) risk priority number (RPN).
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Effects of comprehensive nursing with cognitive behavioral therapy in orthodontic osteodilated arch treatment
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作者 Xin Yang Zeng-Xiang Wang +3 位作者 Yu-Xing Tian Chao Peng Hui-Ning Yang Ying Wu 《World Journal of Clinical Cases》 SCIE 2024年第22期5051-5058,共8页
BACKGROUND This work explored the effects of cognitive behavior therapy(CBT)-based comprehensive nursing intervention(CNI)mode in arch expansion to treat patients with orthodontic osteodilated arch(OOA).AIM To explore... BACKGROUND This work explored the effects of cognitive behavior therapy(CBT)-based comprehensive nursing intervention(CNI)mode in arch expansion to treat patients with orthodontic osteodilated arch(OOA).AIM To explore the application effect of CBT-based CNI model in orthodontic expansion arch treatment.METHODS Using convenient sampling method,81 patients with OOA were selected and rolled into a control group(Ctrl group,40 cases)and an observation group(Obs group,41 cases).During the treatment,patients in the Ctrl group received routine nursing intervention mode,and the those in the Obs group received CBT mode on the basis of this.Before and after intervention,the incidence of oral mucositis,the mastery rate of correct arch expansion method,self-rating anxiety scale score,soft scale index,and plaque index were compared for patients in different groups.In addition,satisfaction and complications were comparatively analyzed.RESULTS Incidence of oral mucositis in the Obs group was lower(14.6%vs 38.5%),and the mastery rate of correct arch expansion method was obviously higher(90.2%vs 55.0%)was obviously higher(all P<0.05).Meanwhile,the soft scale index and plaque index in the Obs group were much lower(P<0.05).The compliance(90.24%)and satisfaction(95.12%)in the Obs group were greatly higher(P<0.05).CONCLUSION The CBT-based CNI mode greatly improved the mastery rate of correct arch expansion method during arch expansion in treating patients with OOA and enhanced the therapeutic effect of arch expansion and the oral health of patients,improving the patient compliance. 展开更多
关键词 Orthodontic osteodilated arch Cognitive behavior therapy Comprehensive nursing intervention mode nursing effect Pain management Oral care
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Analysis of Potential Failure Modes in an Assembly Line by Fuzzy Expert Systems
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作者 Mehdi Piltan Reza Ghodsi +1 位作者 Foad Quarashi Mehrdad Azizian 《Journal of Mechanics Engineering and Automation》 2011年第6期445-449,共5页
The failure modes and effects analysis (FMEA) is widely applied in manufacturing industries in various phases of the product life cycle to evaluate the system, its design and processes for failures that can occur. T... The failure modes and effects analysis (FMEA) is widely applied in manufacturing industries in various phases of the product life cycle to evaluate the system, its design and processes for failures that can occur. The FMEA team often demonstrates different opinions and these different types of opinions are very difficult to incorporate into the FMEA by the traditional risk priority number model. In this paper, for each of the Occurrence, Severity and Detectivity parameters a fuzzy set is defined and the opinion of each FMEA team members is considered. These opinions are considered simultaneously with weights that are given to each individual based on their skills and experience levels. In addition, the opinion of the costumer is considered for each of the FMEA parameters. Then, the Risk Priority Numbers (RPN) is calculated using a Multi Input Single Output (MISO) fuzzy expert system. The proposed model is applied for prioritizing the failures of Peugeot 206 Engine assembly line in IKCo (Iran Khodro Company). 展开更多
关键词 FMEA failure modes and effects analysis fuzzy expert systems engine assembly line.
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System failure analysis based on DEMATEL–ISM and FMECA 被引量:2
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作者 申桂香 孙曙光 +3 位作者 张英芝 王志琼 陈炳锟 马闯 《Journal of Central South University》 SCIE EI CAS 2014年第12期4518-4525,共8页
A new method of system failure analysis was proposed. First, considering the relationships between the failure subsystems,the decision making trial and evaluation laboratory(DEMATEL) method was used to calculate the d... A new method of system failure analysis was proposed. First, considering the relationships between the failure subsystems,the decision making trial and evaluation laboratory(DEMATEL) method was used to calculate the degree of correlation between the failure subsystems, analyze the combined effect of related failures, and obtain the degree of correlation by using the directed graph and matrix operations. Then, the interpretative structural modeling(ISM) method was combined to intuitively show the logical relationship of many failure subsystems and their influences on each other by using multilevel hierarchical structure model and obtaining the critical subsystems. Finally, failure mode effects and criticality analysis(FMECA) was used to perform a qualitative hazard analysis of critical subsystems, determine the critical failure mode, and clarify the direction of reliability improvement.Through an example, the result demonstrates that the proposed method can be efficiently applied to system failure analysis problems. 展开更多
关键词 system failure analysis related failure decision making and evaluation laboratory-interpretative structural modeling(DEMATEL-ISM) failure mode effects and criticality analysis(FMECA)
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Failure Modes of Machining Center in Test Run
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作者 郝思文 丛明 +2 位作者 韩玉婷 李泳耀 张建荣 《Journal of Donghua University(English Edition)》 EI CAS 2014年第6期835-838,共4页
To analysis the early failures of machining centers,the failure mode effect and criticality analysis( FMECA) method was used. Based on the failure data collected from production lines in test run,all the failure modes... To analysis the early failures of machining centers,the failure mode effect and criticality analysis( FMECA) method was used. Based on the failure data collected from production lines in test run,all the failure modes of machining centers were summarized and criticality of all subsystems is figured out. And the process of FMECA was improved. The most critical subsystem was manipulator subsystem. The most critical failure mode was impacted manipulator. Reasons and effect of some important failure modes were analyzed. And some suggestions to solve failures were given. 展开更多
关键词 failure mode effect and criticality analysis(FMECA) machining center failure mode
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Numerical analysis of pile–slope stability and the soil arching around two adjacent piles
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作者 Chien-Yuan CHEN Chun-Kai CHANG Yu-Shan LIN 《Journal of Mountain Science》 SCIE CSCD 2022年第11期3270-3285,共16页
Seismic pile–slope stability analysis and the formation mechanism of soil arching have not been well studied. This study used a threedimensional(3D) finite difference to determine soil and pile parameter changes in t... Seismic pile–slope stability analysis and the formation mechanism of soil arching have not been well studied. This study used a threedimensional(3D) finite difference to determine soil and pile parameter changes in the static and seismic stability of the pile–slope caused by the interaction between stabilizing piles. Pile–slope stability analysis was performed to determine the optimal design of piles along a slope and the corresponding failure mode involving the formation of soil arching around two adjacent piles. The Factor of Safety(FS) of the slope was evaluated using the shear strength reduction method for static and seismic analyses. The results of the analysis show that suitable pile spacing(S) and a suitable pile diameter(D) in the middle of a slope result in the maximum FS for the pile–slope system and the formation of soil arching around two adjacent piles. FS of the pile–slope increased negligibly in the seismic analysis of piles located at the slope crest and toe. An optimized pile diameter and installation location afforded the maximum FS for the slope that corresponded to a specified slope failure mode for different pile locations. A pile spacing S ≤ 2.5D for piles installed in the middle of the slope is suggested for increasing the static and seismic pile–slope stability. 展开更多
关键词 Numerical modeling Slope stability Stabilizing pile Arching effect Seismic analysis failure mode
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Critical review and functional safety of a battery management system for large‑scale lithium‑ion battery pack technologies
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作者 K.W.See Guofa Wang +7 位作者 Yong Zhang Yunpeng Wang Lingyu Meng Xinyu Gu Neng Zhang K.C.Lim L.Zhao Bin Xie 《International Journal of Coal Science & Technology》 EI CAS CSCD 2022年第3期1-17,共17页
The battery management system(BMS)is the main safeguard of a battery system for electric propulsion and machine electrifcation.It is tasked to ensure reliable and safe operation of battery cells connected to provide h... The battery management system(BMS)is the main safeguard of a battery system for electric propulsion and machine electrifcation.It is tasked to ensure reliable and safe operation of battery cells connected to provide high currents at high voltage levels.In addition to efectively monitoring all the electrical parameters of a battery pack system,such as the voltage,current,and temperature,the BMS is also used to improve the battery performance with proper safety measures within the system.With growing acceptance of lithium-ion batteries,major industry sectors such as the automotive,renewable energy,manufacturing,construction,and even some in the mining industry have brought forward the mass transition from fossil fuel dependency to electric powered machinery and redefned the world of energy storage.Hence,the functional safety considerations,which are those relating to automatic protection,in battery management for battery pack technologies are particularly important to ensure that the overall electrical system,regardless of whether it is for electric transportation or stationary energy storage,is in accordance with high standards of safety,reliability,and quality.If the system or product fails to meet functional and other safety requirements on account of faulty design or a sequence of failure events,then the environment,people,and property could be endangered.This paper analyzed the details of BMS for electric transportation and large-scale energy storage systems,particularly in areas concerned with hazardous environment.The analysis covers the aspect of functional safety that applies to BMS and is in accordance with the relevant industrial standards.A comprehensive evaluation of the components,architecture,risk reduction techniques,and failure mode analysis applicable to BMS operation was also presented.The article further provided recommendations on safety design and performance optimization in relation to the overall BMS integration. 展开更多
关键词 Battery management system Functional safety Hazardous area Lithium-ion batteries failure mode analysis Electric transportation Large-scale energy storage
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Analysis of Computer Network Reliability and Criticality: Technique and Features
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作者 Iraj Elyasi-Komari Anatoliy Gorbenko +1 位作者 Vyacheclav Kharchenko Athanasios Mamalis 《International Journal of Communications, Network and System Sciences》 2011年第11期720-726,共7页
The paper describes modern technologies of Computer Network Reliability. Software tool is developed to estimate of the CCN critical failure probability (construction of a criticality matrix) by results of the FME(C)A-... The paper describes modern technologies of Computer Network Reliability. Software tool is developed to estimate of the CCN critical failure probability (construction of a criticality matrix) by results of the FME(C)A-technique. The internal information factors, such as collisions and congestion of switchboards, routers and servers, influence on a network reliability and safety (besides of hardware and software reliability and external extreme factors). The means and features of Failures Modes and Effects (Critical) Analysis (FME(C)A) for reliability and criticality analysis of corporate computer networks (CCN) are considered. The examples of FME(C)A-Technique for structured cable system (SCS) is given. We also discuss measures that can be used for criticality analysis and possible means of criticality reduction. Finally, we describe a technique and basic principles of dependable development and deployment of computer networks that are based on results of FMECA analysis and procedures of optimization choice of means for fault-tolerance ensuring. 展开更多
关键词 FME(C)A (failure modes and effects (Criticality) analysis) COMPUTER Network Reliability CRITICALITY CORPORATE COMPUTER Networks
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A Computer Aided System for URT Maintenance Optimization Based on a FMEA-fuzzy Model
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作者 ZHU Wei ZHENG Hong +3 位作者 LIN Shao-pei HU Hao LI Ye XU Wen-bin 《International Journal of Plant Engineering and Management》 2012年第4期193-207,共15页
In recent years, urban rail transit (URT) systems have rapidly developed in China, however, their existing strategies for vehicle maintenance are still based on experiential and qualitative methods which result in e... In recent years, urban rail transit (URT) systems have rapidly developed in China, however, their existing strategies for vehicle maintenance are still based on experiential and qualitative methods which result in either high cost or emergencies. In this paper, a tentative attempt at introducing the fuzzy set theory into quantitative analysis and assessment of URT trains' failures was presented. Based on the proposed FMEA-fuzzy model, a com- puter aided system for URT maintenance optimization was developed. The overall structure and procedure of the system were described in detail, and the important issues, including the development environment, improvement to FMEA table, acquisition of weight distribution matrix P, and setting of fuzzy vector R, were also discussed. Initial application into the vehicle maintenance of Shanghai Metro System shows, that the proposed model and computer aided system have a good performance and consequently are worth further development. 展开更多
关键词 urban rail transit maintenance fuzzy set failure mode and effects analysis (FMEA) computeraided system
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基于FMEA法的住院药房智能药柜用药安全研究 被引量:1
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作者 倪倩 方丽涌 +7 位作者 吴娜 王涛 王一淳 周莫菲 陈露露 姚晨蕊 谭玲 金鹏飞 《中国药业》 CAS 2024年第4期1-5,共5页
目的提高住院药房智能药柜(ADC)的用药安全管理。方法采用失效模型和效应分析(FMEA)法,经医院护士、药师等讨论后,从信息系统、人员操作、药品信息、硬件设备、管理方法5个方面建立20个失效模型(包括32个风险点),汇总为调查问卷,并通过... 目的提高住院药房智能药柜(ADC)的用药安全管理。方法采用失效模型和效应分析(FMEA)法,经医院护士、药师等讨论后,从信息系统、人员操作、药品信息、硬件设备、管理方法5个方面建立20个失效模型(包括32个风险点),汇总为调查问卷,并通过专家咨询和药师讨论后建立问卷评分标准。于干预前发放问卷进行调查,根据发现的风险对其中30个可操作的风险点设定干预措施,持续干预5个月后(干预后)再次进行问卷调查,比较干预前后的风险优先级数(RPN)。结果干预后,30个风险点的RPN值均不同程度降低,其中22个显著降低(P<0.05)。管理方法方面的全部风险点RPN值均显著降低(P<0.05);硬件设备方面的全部风险点RPN值均无显著改变(P>0.05)。结论FMEA法用于住院药房ADC的用药安全研究,可减少其用药风险,促进药护共同管理安全使用ADC规则的形成,尤其适用于麻醉药品等特殊药品的用药管理。 展开更多
关键词 智能药柜 用药安全 失效模式与效应分析 住院药房 药品管理
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失效模式和效应分析在降低PICC导管移位管理中的应用 被引量:1
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作者 张红 刘中秋 +3 位作者 万红燕 曹维庭 刘二琳 陆加慧 《循证护理》 2024年第9期1669-1672,共4页
目的:探讨失效模式和效应分析(FMEA)在降低经外周静脉置入中心静脉导管(PICC)导管移位管理中的应用效果。方法:选取2023年1月—3月PICC置管治疗的104例病人作为对照组,实施常规护理;选取2023年4月—6月采用PICC置管治疗的110例病人作为... 目的:探讨失效模式和效应分析(FMEA)在降低经外周静脉置入中心静脉导管(PICC)导管移位管理中的应用效果。方法:选取2023年1月—3月PICC置管治疗的104例病人作为对照组,实施常规护理;选取2023年4月—6月采用PICC置管治疗的110例病人作为观察组,实施FMEA管理模式,比较两组风险优先指数(RPN)、治疗间歇期导管移位率及护理满意度。结果:两组干预后5个失效模式的RPN值、PICC导管移位率、护理满意度比较,差异均有统计学意义(P<0.05)。结论:FMEA模式管理可以发现管理流程中潜在的问题和漏洞,降低PICC导管移位率,从而提高护理质量和护理满意度,保证病人安全。 展开更多
关键词 失效模式和效应分析 经外周静脉置入中心静脉导管 导管移位 风险管理 护理
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失效模式与效应分析在骨科机器人手术流程改善中的应用
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作者 黄素珍 洪亮 +7 位作者 高泽伟 谭志韵 陈卫珍 吴红玉 李宇麟 劳永锵 陈丽华 朱霭玲 《护理研究》 北大核心 2024年第18期3362-3366,共5页
目的:探究失效模式与效应分析(FMEA)在骨科机器人手术流程改善中的应用效果。方法:选取2021年1月—2022年12月在我院实施骨科机器人手术的病人为研究对象,将2021年1月—12月(流程改善前)的300例病人作为对照组,将2022年1月—12月(流程... 目的:探究失效模式与效应分析(FMEA)在骨科机器人手术流程改善中的应用效果。方法:选取2021年1月—2022年12月在我院实施骨科机器人手术的病人为研究对象,将2021年1月—12月(流程改善前)的300例病人作为对照组,将2022年1月—12月(流程改善后)的300例病人作为研究组。对照组实施常规骨科机器人手术流程,研究组实施采用FMEA改善后的骨科机器人手术流程。比较两组手术流程管理失效模式风险优先指数得分、手术时间、术中出血量、住院时间、并发症发生情况及病人满意度。结果:研究组手术流程管理失效模式风险优先指数得分低于对照组;研究组手术时间为(39.12±5.68)min,住院时间为(3.56±1.71)d,均短于对照组[手术时间为(48.31±6.71)min,住院时间为(5.12±1.98)d];研究组术中出血量为(65.23±8.36)mL,少于对照组(71.36±9.11)mL;研究组并发症发生率为3.33%,低于对照组(7.00%);研究组病人满意度为95.00%,高于对照组(89.67%),差异均有统计学意义(P<0.05)。结论:采用FMEA方法能够根据量化指标确定风险因素,从而制定针对性的预防措施,帮助临床医生改善骨科机器人手术流程,降低手术风险,提高手术质量。 展开更多
关键词 失效模式与效应分析 骨科 机器人手术 出血量 并发症 满意度 护理
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失效模式与效应分析在ICU经口气管插管病人口渴管理中的应用
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作者 李萍 李阳 +3 位作者 朱晓岩 姜艳 范丰艳 邱莹莹 《护理研究》 北大核心 2024年第22期3983-3989,共7页
目的:探讨失效模式与效应分析(FMEA)在重症监护室(ICU)经口气管插管病人口渴管理中的应用效果。方法:于2023年1月—10月选取我院ICU收治的经口气管插管病人203例作为研究对象,将2023年1月—5月我院ICU收治的经口气管插管病人104例作为... 目的:探讨失效模式与效应分析(FMEA)在重症监护室(ICU)经口气管插管病人口渴管理中的应用效果。方法:于2023年1月—10月选取我院ICU收治的经口气管插管病人203例作为研究对象,将2023年1月—5月我院ICU收治的经口气管插管病人104例作为对照组,2023年6月—10月我院ICU收治的经口气管插管病人99例作为干预组。对照组采用ICU病人常规护理措施进行护理,给予病人常规口渴干预措施;干预组在ICU病人常规护理措施基础上实施基于FMEA制订的管理和改进措施。比较两组病人口渴管理风险优先指数(RPN)值、口渴程度、唇舌口腔黏膜湿润度、谵妄发生率、非计划性拔管发生率。结果:干预后,干预组6个高危失效模式RPN值均为125以下;干预组病人口渴程度得分为(2.09±2.76)分、唇舌口腔黏膜湿润度得分(1.44±0.58)分,均低于干预前[口渴程度得分为(7.16±2.87)分、唇舌口腔黏膜湿润度得分(3.19±0.94)分]及同期对照组[口渴程度得分为(3.88±2.86)分、唇舌口腔黏膜湿润度得分(1.78±0.74)分];干预组谵妄发生率为21.21%,低于对照组(34.62%),差异均有统计学意义(P<0.05)。结论:实施基于FMEA制订的管理和改进措施有利于规范口渴管理流程,降低ICU经口气管插管病人口渴程度,提高病人唇舌口腔黏膜湿润度,降低并发症发生率。 展开更多
关键词 失效模式与效应分析(FMEA) 重症监护室(ICU) 经口气管插管 口渴 护理
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基于措施优先级的失效模式和效应分析在结直肠术手术部位感染防控中的应用
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作者 吴红曼 赖静敏 +7 位作者 陈乐陶 付陈超 汤紫媛 周凤 曾翠 曾烂漫 任南 黄勋 《中国感染控制杂志》 CAS CSCD 北大核心 2024年第7期881-888,共8页
目的评估结直肠手术后手术部位感染(SSI)防控措施执行的过程风险,探讨基于措施优先级的失效模式和效应分析(FMEA)的应用效果。方法应用基于措施优先级的FMEA评估结直肠手术后SSI防控措施执行的整个流程,对是否采取优化措施进行优先级排... 目的评估结直肠手术后手术部位感染(SSI)防控措施执行的过程风险,探讨基于措施优先级的失效模式和效应分析(FMEA)的应用效果。方法应用基于措施优先级的FMEA评估结直肠手术后SSI防控措施执行的整个流程,对是否采取优化措施进行优先级排序,比较FMEA实施前后结直肠手术SSI防控措施依从项达标率、SSI发病率。结果评估后SSI高优先级防控措施7项,中优先级22项,对中优先级措施加强控制,重点对高优先级措施制定进一步的预防和可探测措施。改进后再评价结果显示,7项高优先级措施降至中优先级;16项中优先级措施降至低优先级。SSI防控措施执行达标率由77.15%(2566/3326)提高至92.47%(3096/3348),SSI发病率由6.04%(58/960)降至2.54%(60/2364)。结论运用基于措施优先级的FMEA可对结直肠手术SSI防控过程进行有效风险评估,并结合现状针对性采用预防性风险控制措施,可降低结直肠手术SSI发病率。 展开更多
关键词 手术部位感染 感染预防与控制 措施优先级 失效模式和效应分析 风险管理
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