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相关概念视频

The Wave Nature of Light02:12

The Wave Nature of Light

The nature of light has been a subject of inquiry since antiquity. In the seventeenth century, Isaac Newton performed experiments with lenses and prisms and was able to demonstrate that white light consists of the individual colors of the rainbow combined together. Newton explained his optics findings in terms of a "corpuscular" view of light, in which light was composed of streams of extremely tiny particles traveling at high speeds according to Newton's laws of motion.
Interference and Diffraction02:18

Interference and Diffraction

Interference is a characteristic phenomenon exhibited by waves. When two electromagnetic waves interact with their peaks and troughs coinciding, a resulting wave with enhanced amplitude is produced. This is known as constructive interference. In this case, the two waves interacting are in phase with each other.
The de Broglie Wavelength02:32

The de Broglie Wavelength

In the macroscopic world, objects that are large enough to be seen by the naked eye follow the rules of classical physics. A billiard ball moving on a table will behave like a particle; it will continue traveling in a straight line unless it collides with another ball, or it is acted on by some other force, such as friction. The ball has a well-defined position and velocity or well-defined momentum, p = mv, which is defined by mass m and velocity v at any given moment. This is the typical...
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Dissolution, the process by which drug particles dissolve in a solvent, is explained by the diffusion layer model, a theoretical framework that simulates the absorption of oral drugs and allows us to analyze experimental data.
This process starts with a thin layer, saturated with the drug, forming at the interface between the solid and liquid. The solute then diffuses from this layer into the main solution. The Noyes-Whitney equation suggests that the rate of dissolution relies on the diffusion...

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微气泡和微波消光之间的相互作用:一个幻影和子模型.

Xinyu Zhong1, Xinghao Zhang1, Yuting Cao2

  • 1Department of Ultrasound, The Third Xiangya Hospital, Central South University, Changsha, China.

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PubMed
概括
此摘要是机器生成的。

微泡不会显著影响微波除 (MWA) 结果或温度升高. 然而,MWA以取决于温度的方式破坏微泡,限制其用于实时监控.

关键词:
与对比度增强的超声波.图像监控 监控 监控 监控这些微小气泡是微型气泡.微波除是微波除的一种方法.幽灵是什么意思 幽灵是什么意思超声波超声波是指超声波的使用.

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科学领域:

  • 医学成像和干预性放射学
  • 超声波和热除的生物物理学

背景情况:

  • 微波除 (MWA) 是一种微侵袭的热除技术.
  • 微气泡被用作超声成像中的对比剂,包括对比增强超声 (CEUS).
  • 了解微泡和MWA之间的相互作用对于潜在的实时监控应用至关重要.

研究的目的:

  • 为了研究微泡和微波除 (MWA) 之间的相互作用.
  • 评估微气泡对MWA参数和结果的影响.
  • 评估使用微泡来实时监测MWA的可行性.

主要方法:

  • 在体外研究中使用定制的幽灵,在体内研究中使用子肝.
  • 在幽灵和子肝中使用或不使用微气泡 (SonoVue) 进行MWA.
  • 使用K型热电偶探头的温度监测和使用CEUS的微气泡信号强度分析.

主要成果:

  • 微气泡并没有显著改变MWA诱导的幽灵或子肝脏的温度升高或废弃范围.
  • MWA导致微泡缺陷区域的形成,随着切除时间的推移而扩大.
  • 温度升高导致微气泡以温度依赖的方式被破坏.

结论:

  • 微泡不会显著影响MWA的疗效.
  • 由MWA对微泡的温度依赖的破坏对使用CEUS进行实时除监测提出了限制.
  • 微泡的不良耐热性是它们与MWA一起应用的一个关键考虑因素.