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相关概念视频

First Pass Effect01:12

First Pass Effect

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Presystemic elimination, or the first-pass effect, is the metabolism of drugs that reduces their effective concentration at the site of action. Apart from the first-pass effect, the systemic bioavailability of the drug is also reduced by other factors, including incomplete absorption or chemical degradation of drugs.
Depending on the route of administration, drugs can be metabolized in the liver, intestine, lungs, and vasculature. Orally administered drugs are first absorbed through the...
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Passive Diffusion: Overview and Kinetics01:17

Passive Diffusion: Overview and Kinetics

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Passive diffusion is a critical process that allows small lipophilic drugs to cross the cell membrane along a concentration gradient. This mechanism's efficiency depends on four primary factors: the membrane's surface area, the drug's lipid-water partition coefficient, the concentration gradient, and the membrane's thickness.
When administered orally, drugs establish a substantial concentration gradient between the gastrointestinal (GI) lumen and the bloodstream, expediting...
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Instantaneous Velocity - I01:15

Instantaneous Velocity - I

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The average velocity during a time interval cannot tell us how fast or in what direction a particle is moving at any given time during the interval. To calculate this, it is important to know the instantaneous velocity, which is the velocity at a specific instant of time or at a specific point along the path. Instantaneous velocity is the quantity that measures how fast an object is moving along its path. In other words, the instantaneous velocity vx of an object is the limit of the average...
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Facilitated Transport01:19

Facilitated Transport

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The chemical and physical properties of plasma membranes cause them to be selectively permeable. Since plasma membranes have both hydrophobic and hydrophilic regions, substances need to be able to transverse both regions. The hydrophobic area of membranes repels substances such as charged ions. Therefore, such substances need special membrane proteins to cross a membrane successfully. In  facilitated transport, also known as facilitated diffusion, molecules and ions travel across a...
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Facilitated Transport01:19

Facilitated Transport

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The chemical and physical properties of plasma membranes cause them to be selectively permeable. Since plasma membranes have both hydrophobic and hydrophilic regions, substances need to be able to transverse both regions. The hydrophobic area of membranes repels substances such as charged ions. Therefore, such substances need special membrane proteins to cross a membrane successfully. In  facilitated transport, also known as facilitated diffusion, molecules and ions travel across a...
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Instantaneous Velocity - II01:10

Instantaneous Velocity - II

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Instantaneous velocity is the quantity that measures how fast an object is moving along its path. In other words, the instantaneous velocity of an object is the limit of the average velocity as the elapsed time approaches zero, or the derivative of displacement with respect to time. Like average velocity, the instantaneous velocity is a vector with the dimensions of length per unit time. Instantaneous velocity can have both positive and negative values. The instantaneous velocity can be...
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相关实验视频

Updated: Jan 6, 2026

Evidence-based Knowledge Synthesis and Hypothesis Validation: Navigating Biomedical Knowledge Bases via Explainable AI and Agentic Systems
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信息引擎由第一通道时间为燃料.

Aubin Archambault1, Caroline Crauste-Thibierge1, Alberto Imparato2,3

  • 1Laboratoire de Physique, ENS de Lyon, CNRS, F-69342 Lyon, France.

Physical review letters
|October 19, 2025
PubMed
概括

这项研究探讨了一种信息引擎,它利用机械悬臂和静电反将热波动转化为工作. 研究人员得出并验证了波动定理,确定了发动机工作输出的边界.

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科学领域:

  • 热力学是一种热力学.
  • 统计力学 统计力学
  • 纳米技术 纳米技术

背景情况:

  • 信息引擎利用热波动进行工作.
  • 反控制对于发动机运行至关重要.
  • 第一次通道时间分布是系统动态的特征.

研究的目的:

  • 研究信息引擎的热力学特性.
  • 导出和实验验证信息引擎的波动定理.
  • 确定从热波动中提取工作的边界.

主要方法:

  • 使用了一种机械悬臂,带有静电反控制.
  • 采用快速采样和基于值的反触发.
  • 来自第一次通道时间分布的计算信息 (ΔI).

主要成果:

  • 导出并通过实验验证了两个涉及信息 (ΔI) 的波动定理.
  • 在信息引擎产生的工作上建立了严格的界限.
  • 证明了适用于特定实验设置之外的一般框架.

结论:

  • 这项研究为波动定理和工作边界提供了一个强大的框架.
  • 结果是可概括的,依赖于协议的概率分布.
  • 提高了对热力学系统中信息转化为工作的理解.