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相关概念视频

Therapeutic Drug Monitoring: Overview and Classification01:16

Therapeutic Drug Monitoring: Overview and Classification

Therapeutic Drug Monitoring (TDM) is a clinical practice that measures specific drug levels in a patient's blood at designated intervals to ensure the drug concentration stays within a therapeutic range. This monitoring is crucial for optimizing individual dosage regimens, enhancing therapeutic efficacy, and minimizing drug-related toxicity. TDM is vital for drugs with narrow therapeutic windows, significant variability in pharmacokinetics, and a clear correlation between plasma levels and...
Therapeutic Drug Monitoring: Affecting Factors01:29

Therapeutic Drug Monitoring: Affecting Factors

Therapeutic Drug Monitoring (TDM) is the clinical practice of measuring specific drug levels in a patient's blood or body tissues to manage and optimize therapy. TDM is crucial for drugs with narrow therapeutic windows, like warfarin and phenytoin, where incorrect doses can lead to treatment failure or severe side effects. This monitoring ensures the dosage administered is within a safe and effective range. The factors affecting therapeutic drug monitoring include:Patient-Specific Factors:a.
Therapeutic Drug Monitoring: Drug Analysis Methods01:26

Therapeutic Drug Monitoring: Drug Analysis Methods

Therapeutic Drug Monitoring (TDM) is a clinical practice that measures specific drug levels in a patient's blood or body tissues to tailor drug therapy effectively. This monitoring is critical for managing drugs with narrow therapeutic indices like digoxin and phenytoin, ensuring they are both safe and effective. For instance, monitoring theophylline levels in asthma patients involves precision and sensitivity to adjust doses according to individual responses to therapy, ensuring efficacy and...
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Strategies of Self-Presentation III: Self-Monitoring

Self-monitoring is a central construct in understanding individual differences in self-presentation strategies across social contexts. It refers to how individuals observe, regulate, and control their expressive behavior and self-presentation following situational cues. Self-monitoring reflects a person's sensitivity to social appropriateness and willingness to adapt behavior to fit varying interpersonal demands.High vs. Low Self-Monitoring IndividualsIndividuals high in self-monitoring are...
Steps in Outbreak Investigation01:18

Steps in Outbreak Investigation

In the ever-evolving field of public health, statistical analysis serves as a cornerstone for understanding and managing disease outbreaks. By leveraging various statistical tools, health professionals can predict potential outbreaks, analyze ongoing situations, and devise effective responses to mitigate impact. For that to happen, there are a few possible stages of the analysis:
Pharmacovigilance01:19

Pharmacovigilance

Post-marketing surveillance is a critical component of pharmaceutical regulation, often uncovering unanticipated adverse drug reactions (ADRs) once a drug is widely used over an extended period.
This process, termed pharmacovigilance, aims to detect, evaluate, and minimize harmful effects related to medication use. The data collection for pharmacovigilance depends on spontaneous reporting systems, where healthcare professionals or patients voluntarily report suspected ADRs.
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相关实验视频

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提高监控性能:使用间软件技术和预测模型进行监控的微服务方法.

Anubis Graciela de Moraes Rossetto1, Darlan Noetzold1, Luis Augusto Silva2

  • 1Federal Institute of Education, Science and Technology Sul-Rio-Grandense, Passo Fundo 99.064-440, RS, Brazil.

Sensors (Basel, Switzerland)
|July 13, 2024
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概括

本研究介绍了一种微服务架构,用于监控员工计算机使用情况,以检测数据泄露和仇恨言论. 夸克斯显著优于Spring Boot,减少了内存和CPU使用量,提高了组织安全性.

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科学领域:

  • 计算机科学 计算机科学
  • 网络安全 网络安全
  • 软件工程 软件工程 软件工程

背景情况:

  • 组织面临着敏感数据泄露和仇恨言论的重大风险,导致财务,声誉和心理损害.
  • 有效监控计算机使用对于减轻这些威胁和确保安全的数字环境至关重要.

研究的目的:

  • 为监控组织计算机使用提供基于微服务的综合解决方案.
  • 为了比较 Spring Boot 和 Quarkus 在实施这样一个系统时的性能.
  • 评估系统在检测数据泄露,可疑行为和仇恨言论方面的有效性.

主要方法:

  • 开发一个微服务架构,结合间软件技术来捕获数据.
  • 实施一个用于警报管理和用于威胁检测的预测建模的Web应用程序.
  • 使用客观指标和对Spring Boot和Quarkus的基准进行比较性绩效分析.

主要成果:

  • 夸克斯表现出了与春季启动相比的显著性能改善.
  • 使用Quarkus,内存使用量减少了高达80%,CPU使用量减少了95%,系统正常运行时间减少了119%.
  • 该系统有效地检测数据泄露,可疑行为和仇恨言论.

结论:

  • 拟议的微服务解决方案为加强组织安全提供了一个强大的框架.
  • 对于开发此类安全监控系统,Quarkus比Spring Boot具有显著的性能优势.
  • 这些发现指导开发人员和建筑师在做出明智的技术选择,以提高安全性.