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相关概念视频

Glycolysis: Pay-off Phase01:25

Glycolysis: Pay-off Phase

So far, glycolysis has cost the cell two ATP molecules and produced two small, three-carbon sugar molecules. These molecules will proceed through the second half of the pathway, and sufficient energy will be extracted to pay back the two ATP molecules used as an initial investment and produce a profit for the cell of two additional ATP molecules and two even higher-energy NADH molecules.
Step 1 - 5: Glycolysis Preparatory Phase
The first phase of glycolysis has 5 steps where the glucose is...
Cardiac Cycle01:29

Cardiac Cycle

The cardiac cycle refers to the sequence of events that occur in the heart from the beginning of one heartbeat to the next. It's characterized by alternating periods of contraction (systole) and relaxation (diastole) of the heart muscles.
During the cardiac cycle, blood flow through the heart is regulated entirely by changing pressure gradients. This sequence of events begins with the heart in a state of total relaxation, known as mid-to-late diastole, during which blood passively flows from...
Conservation of Mass in Finite Cotrol Volume01:16

Conservation of Mass in Finite Cotrol Volume

The principle of conservation of mass is a fundamental law in fluid mechanics and is applied using the continuity equation. We apply the concept to a finite control volume to derive the continuity equation.
A system is defined as a collection of unchanging contents, and the conservation of mass states that a system's mass is constant.
Steady, Laminar Flow in Circular Tubes01:23

Steady, Laminar Flow in Circular Tubes

Hagen-Poiseuille flow describes a viscous fluid's steady, incompressible flow through a cylindrical tube with a constant radius R. This flow profile is often applied to understand fluid transport in narrow channels, such as capillaries. It serves as a foundational example of laminar flow. In this model, cylindrical coordinates (r,θ,z) are used to describe the radial (r), angular (θ), and axial (z) dimensions within the tube. For Hagen-Poiseuille flow, the velocity profile is purely axial,...
Area Problem01:26

Area Problem

Determining the area of a region with straight edges is straightforward, as geometric formulas for rectangles, triangles, and polygons can be applied directly. However, traditional geometric methods are insufficient when a region has a curved boundary, such as the area under a function.fromThe area problem involves finding a systematic way to measure such regions. One approach to solving this problem is through approximation. Instead of attempting to compute the area exactly at the outset, the...
Green’s Theorem01:27

Green’s Theorem

Green’s Theorem establishes a relationship between a line integral around a closed plane curve and a double integral over the region enclosed by that curve. It applies to a vector field F(x, y) = 〈P(x, y), Q(x, y)〉, where P and Q have continuous first partial derivatives on an open set containing the region.Let C be a positively oriented, simple, closed, piecewise smooth curve, and let R be the plane region bounded by C. Green’s Theorem states that\begin{equation*}\oint_C P\,dx+Q\,dy =\iint_R...

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相关实验视频

Updated: Jul 17, 2026

Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180&#176; Curved Artery Test Section
11:00

Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section

Published on: July 19, 2016

循环节律:终于在循环中

Russell N Van Gelder1, Erik D Herzog, William J Schwartz

  • 1Department of Ophthalmology and Visual Sciences, Washington University, St. Louis, MO 63110, USA. vangelder@vision.wustl.edu

Science (New York, N.Y.)
|June 7, 2003
PubMed
概括

动物的昼夜时钟使用类似的分子反循环,但在哺乳动物和果中使用不同的基因. 这种比较突出了生物计时的保存原则和分离的分子参与者.

科学领域:

  • 时间生物学 时间生物学
  • 分子生物学分子生物学
  • 进行比较基因组学.

背景情况:

  • 昼夜振荡器是跨物种保存的基本生物过程.
  • 这些振荡器通常依赖于涉及时钟基因产品的负反循环.
  • 动物的昼夜时钟至少整合了两个相互作用的反循环,以实现强大的振荡.

研究的目的:

  • 为了比较和对比哺乳动物和Drosophila的昼夜钟的分子机制.
  • 为了阐明不同的分子参与者如何执行保存的昼夜调节脚本.
  • 为了突出进化的分歧和生物计时系统的融合.

主要方法:

  • 已知哺乳动物和Drosophila昼夜钟基因通路的比较分析.
  • 审查有关分子组件和相互作用的现有文献.
  • 利用来自科学信号传导知识环境的资源.

主要成果:

  • 哺乳动物和虫都使用振荡反循环来生成昼夜节律.
  • 尽管有共同的基本脚本,但不同的基因和蛋白质组在每个组中形成这些循环.
  • 在驱动负反机制的特定分子参与者中存在关键差异.

更多相关视频

Evolution of Staircase Structures in Diffusive Convection
07:28

Evolution of Staircase Structures in Diffusive Convection

Published on: September 5, 2018

Evaluation of an Exclusive Spur Dike U-Turn Design with Radar-Collected Data and Simulation
11:41

Evaluation of an Exclusive Spur Dike U-Turn Design with Radar-Collected Data and Simulation

Published on: February 1, 2020

相关实验视频

Last Updated: Jul 17, 2026

Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180&#176; Curved Artery Test Section
11:00

Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section

Published on: July 19, 2016

Evolution of Staircase Structures in Diffusive Convection
07:28

Evolution of Staircase Structures in Diffusive Convection

Published on: September 5, 2018

Evaluation of an Exclusive Spur Dike U-Turn Design with Radar-Collected Data and Simulation
11:41

Evaluation of an Exclusive Spur Dike U-Turn Design with Radar-Collected Data and Simulation

Published on: February 1, 2020

结论:

  • 昼夜计时的基本原则在不同的动物种群中得到了保护.
  • 进化已经形成了不同的分子解决方案来实现保存的昼夜功能.
  • 了解这些比较途径可以了解生物钟的强度和适应性.