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相关概念视频

Pharmacodynamic Models: Additive and Proportional Drug Effect Model01:09

Pharmacodynamic Models: Additive and Proportional Drug Effect Model

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Drug response models describe how pharmacological agents interact with biological systems to produce measurable effects. Baseline responses are inherent physiological activities without a drug significantly influencing the observed pharmacological outcomes. Depending on the drug response model employed, these baseline responses may combine with the drug's effect in either an additive or proportional manner.Additive Drug Response ModelIn the additive model, the drug effect is independent of the...
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Pharmacodynamic Models: Emax Drug–Concentration Effect Model01:18

Pharmacodynamic Models: Emax Drug–Concentration Effect Model

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The Emax drug-concentration effect model is central to pharmacodynamics in drug discovery and development. This model is predicated on the receptor occupancy theory, which posits that the effect of a drug is directly related to the number of receptors occupied by the drug and the resultant complex formation.The model describes the reversible interaction between a drug (C) and a receptor (R) to form a drug-receptor complex (RC). The kinetics of this interaction are quantified by an equation that...
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Substance Use Disorders Affecting Sleep01:24

Substance Use Disorders Affecting Sleep

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Substance use disorders involve a pattern of using drugs more extensively than intended and continuing use despite harmful consequences. This includes legal substances like alcohol and nicotine, as well as illegal drugs. These disorders often involve both physical and psychological dependence, reflecting compulsive use of substances that significantly alter thoughts, feelings, and behaviors, contributing to a major public health issue.
Understanding the concepts of physical dependence,...
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Pharmacodynamic Models: Linear Concentration–Effect Model01:15

Pharmacodynamic Models: Linear Concentration–Effect Model

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The linear concentration–effect model, underpinned by the principle that pharmacological effect (E) is directly proportional to plasma drug concentration (C), emerges as a pivotal simplification of the Emax model for conditions where C is significantly less than EC50. This model portrays a linear trajectory of the concentration–effect relationship when drug levels are markedly below the EC50 threshold.Despite its inherent assumption of continuous effect augmentation with increasing...
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Modeling with Differential Equations01:25

Modeling with Differential Equations

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Population dynamics can be described mathematically by considering the population size P(t) as a function of time. The rate of change of the population is then represented by the derivative of P(t). A simple assumption is that the rate of growth is proportional to the size of the population itself. This leads to an exponential growth model, where the population increases rapidly without bound. While this is a useful first approximation, it does not reflect realistic long-term...
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Compartment Models: Single-Compartment Model01:14

Compartment Models: Single-Compartment Model

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The single-compartment model serves as a simplified representation of the human body. This model assumes that the body functions as a single, well-mixed open compartment. When a drug is administered intravenously, it enters the body and quickly distributes uniformly. The drug then undergoes biotransformation and elimination, ultimately leaving the body. The volume of this compartment is referred to as the apparent volume of distribution into which the drug can uniformly distribute. In this...
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相关实验视频

Updated: Feb 26, 2026

Development of a Preclinical Inhalation Model to Test Vaporized Cannabis Distillates
06:09

Development of a Preclinical Inhalation Model to Test Vaporized Cannabis Distillates

Published on: May 30, 2025

839

总消费模式是否适用于大麻使用?

Thor Norström1, Håkan Leifman2

  • 1Swedish Institute for Social Research, Stockholm University, Stockholm, Sweden.

Addiction (Abingdon, England)
|February 24, 2026
PubMed
概括

瑞典青少年大麻使用与总消费模式保持一致. 尽管平均使用率波动,但频率分布保持稳定,平均使用率增加与更多高频用户相关.

科学领域:

  • 药物使用研究研究 药物使用研究
  • 青少年健康 青少年健康
  • 消费社会学 消费社会学

背景情况:

  • 总消费模型 (TCM) 和集体理论为理解物质使用模式提供了框架.
  • 之前的研究并没有在青少年大麻使用的背景下广泛测试这些模型.

研究的目的:

  • 评估TCM和集体理论对瑞典青少年大麻消费的适用性.
  • 分析大麻使用频率分布的稳定性.
  • 检查平均大麻使用量与青少年中高频使用者的患病率之间的关系.

主要方法:

  • 一项重复的横截面研究,利用瑞典9年级和高中学生 (1990-2023) 的年度调查数据.
  • 分析涉及洛伦茨曲线和吉尼系数用于分布稳定性评估.
  • 常规最小平方 (OLS) 回归被用来确定平均使用和量子特异性使用之间的弹性.

主要成果:

  • 大麻使用频率显示了9年级学生平均使用率的统计学上显著波动,但在调查年中,整体分布保持稳定.
  • 在各种量度 (25th-95th) 中使用的平均频率与整体平均频率积极相关,表明同步变化.
  • 平均大麻使用量的增加与更高频率使用者的更高流行率有显著的联系.
关键词:
瑞典 瑞典 瑞典 瑞典青少年 青少年 青少年大麻大麻大麻大麻大麻大麻大麻大麻分销 销售 分销 销售 销售 分销集体性的理论集体性的理论.总消费模式 总消费模式

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结论:

  • 瑞典青少年大麻使用支持总消费模式和集体理论的预测.
  • 这些发现表明,青少年平均大麻使用的变化反映在不同用户群体中,并与大量使用的增加有关.