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相关概念视频

Tonicity in Animals01:16

Tonicity in Animals

3.1K
Tonicity describes the amount of solute in a solution. The measure of the tonicity of a solution, or the total amount of solutes dissolved in a specific amount of solution, is called its osmolarity. Three terms—hypotonic, isotonic, and hypertonic—are used to relate the osmolarity of a cell to the osmolarity of the extracellular fluid that contains the cells. In a hypotonic solution, such as tap water, the extracellular fluid has a lower concentration of solutes than the fluid inside...
3.1K
Tonicity in Plants01:20

Tonicity in Plants

30.6K
Plant cells maintain appropriate osmotic balance in extreme conditions. For instance, plants in dry environments store water in vacuoles, limit the opening of their stoma, and have thick, waxy cuticles to prevent unnecessary water loss. Some species of plants that live in salty environments store salt in their roots. As a result, water osmosis occurs in the root from the surrounding soil.
Tonicity
Tonicity describes the capacity of a cell to lose or gain water depending on the solute...
30.6K
Osmosis and Osmotic Pressure of Solutions02:40

Osmosis and Osmotic Pressure of Solutions

39.9K
A number of natural and synthetic materials exhibit selective permeation, meaning that only molecules or ions of a certain size, shape, polarity, charge, and so forth, are capable of passing through (permeating) the material. Biological cell membranes provide elegant examples of selective permeation in nature, while dialysis tubing used to remove metabolic wastes from blood is a more simplistic technological example. Regardless of how they may be fabricated, these materials are generally...
39.9K
Common Ion Effect03:24

Common Ion Effect

41.6K
Compared with pure water, the solubility of an ionic compound is less in aqueous solutions containing a common ion (one also produced by dissolution of the ionic compound). This is an example of a phenomenon known as the common ion effect, which is a consequence of the law of mass action that may be explained using Le Châtelier’s principle. Consider the dissolution of silver iodide:
41.6K
Ionic Strength: Effects on Chemical Equilibria01:19

Ionic Strength: Effects on Chemical Equilibria

1.5K
The addition of an inert ionic compound increases the solubility of a sparingly soluble salt. For example, adding potassium nitrate to a saturated solution of calcium sulfate significantly enhances the solubility of calcium sulfate. Le Châtelier's principle cannot predict this shift in the equilibrium. Instead, this could be explained in terms of changes in the effective concentration of the ions in solution in the presence of added inert salt.
In this solution, the primary...
1.5K
Feedback Regulation of Calcium Concentration01:27

Feedback Regulation of Calcium Concentration

3.4K
Calcium is an essential signaling molecule required for various cellular functions. Calcium pumps and ion channels on cell and organellar membranes, such as those on the endoplasmic reticulum (ER), regulate calcium concentrations inside the cell. They remain closed, keeping the cytosolic calcium levels low at a resting state.
Various transmembrane receptors, such as G protein-coupled receptors (GPCRs), elicit a response to extracellular signals by increasing cytosolic calcium. Activated GPCRs...
3.4K

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相关实验视频

Updated: Jun 30, 2025

Concentration of Virus Particles from Environmental Water and Wastewater Samples Using Skimmed Milk Flocculation and Ultrafiltration
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Concentration of Virus Particles from Environmental Water and Wastewater Samples Using Skimmed Milk Flocculation and Ultrafiltration

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隔离措施对流行病传播的有力作用

Alexis Erich S Almocera1, Alejandro H González2, Esteban A Hernandez-Vargas3,4

  • 1Department of Mathematics, Physics and Computer Science, College of Science and Mathematics, University of the Philippines Mindanao, Davao City, Philippines.

Journal of mathematical biology
|March 23, 2024
PubMed
概括

隔离性强度 (Confinement tonicity) 是一种由透启发的新指标,它测量了隔离和非隔离群体之间的人口流动. 这种工具有助于预测感染浪潮,并有效地管理解除隔离措施的策略.

关键词:
封闭式的封闭方式这是一场流行性流行病.流行病的最终尺寸稳定的稳定性 稳定的稳定性

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Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone
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Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone

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Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures
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Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures

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科学领域:

  • 流行病学 流行病学
  • 数学建模的数学建模
  • 公共卫生 公共卫生

背景情况:

  • 新兴和重新出现的病原体对全球健康构成重大风险.
  • COVID-19强调了社会隔离 (隔离) 在控制疾病传播方面的关键作用.
  • 突如其来的解除禁令可能会导致再次出现的感染浪潮和增加的死亡率.

研究的目的:

  • 为量化人口流动引入一种新型指标,即限制性强度 (containment tonicity).
  • 为评估与缓解隔离限制相关的风险提供一个独立的测量.
  • 提供关于在禁闭过渡期间敏感人群的动态的见解.

主要方法:

  • 用一种与透原理的类比来定义封闭性强度.
  • 使用数学建模来模拟人口动态.
  • 为了分析缓解隔离措施的影响,生成了数值结果.

主要成果:

  • 限制性强度量化了受限区和非受限区之间的人口净流动.
  • 该指标提供了对新感染浪潮的潜在洞察力.
  • 模拟显示了不同程度的隔离缓解的影响.

结论:

  • 隔离的强度为公共卫生决策提供了有价值的工具.
  • 这一指标有助于平衡疾病控制与封闭的社会经济影响.
  • 了解人口流动对于管理未来的流行病反应至关重要.