Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Cells Coordinate Growth and Proliferation02:36

Cells Coordinate Growth and Proliferation

4.6K
Cell size is a significant factor impacting cellular design, function, and fitness. There exists some internal coordination by which cells double their masses before division, thus, achieving homeostasis. Coordination between cell growth and proliferation depends on the checkpoints in between cell cycle phases. Loss of coordination or failure in the checkpoint mechanism can drive the cell to uncontrolled growth and loss of cellular function. Like dividing cells that coordinate cellular growth,...
4.6K
What is the Cell Cycle?01:04

What is the Cell Cycle?

203.9K
The cell cycle refers to the sequence of events occurring throughout a typical cell’s life. In eukaryotic cells, the somatic cell cycle has two stages: interphase and the mitotic phase. During interphase, the cell grows, performs its basic metabolic functions, copies its DNA, and prepares for mitotic cell division. Then, during mitosis and cytokinesis, the cell divides its nuclear and cytoplasmic materials, respectively. This generates two daughter cells that are identical to the original...
203.9K
The Cell Cycle Control System01:28

The Cell Cycle Control System

3.5K
The cell cycle regulation directs how a cell proceeds from one phase to the next and begins mitosis. The cell cycle control system includes intracellular regulatory molecules and external triggers. They provide "stop" or "advance" signals and operate at specific cell cycle stages termed checkpoints to ensure that a particular process is completed before the cell advances to the next phase.
Cyclins and cyclin-dependent kinases (Cdks) are the primary cell cycle regulators and...
3.5K
Molecular Factors Affecting Cell Division01:27

Molecular Factors Affecting Cell Division

3.3K
Several external and internal factors influence the initiation and inhibition of cell division. For instance, the death of nearby cells or the release of human growth hormone (hGH) promotes cell division. In contrast, lack of hGH or crowding of cells can inhibit cell division.
Several proteins function as internal regulators to ensure each cell cycle stage is completed faithfully before proceeding to the next. Regulator molecules may act directly or influence the activity or production of other...
3.3K
Cell Size01:22

Cell Size

118.3K
Cell sizes vary widely among and within organisms. Bacterial cells range between 1-10 micrometers (μm)and are considerably smaller than most eukaryotic cells. The smallest bacteria are 0.1 μm in diameter—about a thousand times smaller than eukaryotic cells, which typically range from 10-100 μm.
Surface Area
Cells can take in nutrients and water via diffusion through the plasma membrane itself or through specific channels in the membrane. The area of the membrane surrounding...
118.3K

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Inference of elevated mutation rates and variant effects using 700k exomes.

bioRxiv : the preprint server for biology·2026
Same author

Cell Growth and Division Shape mRNA-Protein Correlations.

bioRxiv : the preprint server for biology·2026
Same author

Extremal events dictate population growth rate inference.

PLoS computational biology·2026
Same author

Integrating 730,947 exome sequences with clinical literature improves gene discovery.

medRxiv : the preprint server for health sciences·2026
Same author

Stochasticity in mammalian cell growth rates drives cell-to-cell variability independently of cell size and divisions.

Proceedings of the National Academy of Sciences of the United States of America·2026
Same author

Hotspots of human mutation point to clonal expansions in spermatogonia.

Nature·2025

相关实验视频

Updated: Sep 16, 2025

Lens-free Video Microscopy for the Dynamic and Quantitative Analysis of Adherent Cell Culture
09:04

Lens-free Video Microscopy for the Dynamic and Quantitative Analysis of Adherent Cell Culture

Published on: February 23, 2018

9.6K

在细胞周期分析中,细胞长度和体积是可互换的吗?

Prathitha Kar1, Ariel Amir2

  • 1Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts; School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts.

Biophysical journal
|July 7, 2025
PubMed
概括

细胞长度可以在细胞周期研究中可靠地表明细胞大小,因为体积控制遵循添加模型. 测量噪声也显著影响实验数据中观察到的半径变化.

科学领域:

  • 细胞生物学 细胞生物学
  • 微生物学 微生物学
  • 定量生物学的定量生物学.

背景情况:

  • 细胞长度通常用作细胞周期建模中细胞大小的代理值.
  • 以前的研究质疑了这一假设,强调了由于细胞宽度变化而导致长度和体积相关性之间的差异.

研究的目的:

  • 在细胞周期研究中,研究使用细胞长度作为细胞大小的代理值的有效性.
  • 为了确定底层细胞体积控制机制.
  • 评估测量噪声对实验数据的影响.

主要方法:

  • 利用条件相关性分析,特别是对半径变量的长度变量进行条件化.
  • 将这种方法应用于记录细胞长度 (出生和分裂) 和半径的母机数据集.
  • 分析相关性以推断细胞体积控制策略.

主要成果:

  • 发现细胞体积控制策略与添加器模型一致.
  • 条件相关性分析显示,测量噪声对半径变化有显著的贡献.
  • 尽管有潜在的宽度波动,但细胞长度和体积往往可以互换使用.

结论:

更多相关视频

Author Spotlight: Alignment of Synchronized Time-Series Data Using the Characterizing Loss of Cell Cycle Synchrony Model for Cross-Experiment Comparisons
07:59

Author Spotlight: Alignment of Synchronized Time-Series Data Using the Characterizing Loss of Cell Cycle Synchrony Model for Cross-Experiment Comparisons

Published on: June 9, 2023

1.5K
Temporal Tracking of Cell Cycle Progression Using Flow Cytometry without the Need for Synchronization
08:52

Temporal Tracking of Cell Cycle Progression Using Flow Cytometry without the Need for Synchronization

Published on: August 16, 2015

19.5K

相关实验视频

Last Updated: Sep 16, 2025

Lens-free Video Microscopy for the Dynamic and Quantitative Analysis of Adherent Cell Culture
09:04

Lens-free Video Microscopy for the Dynamic and Quantitative Analysis of Adherent Cell Culture

Published on: February 23, 2018

9.6K
Author Spotlight: Alignment of Synchronized Time-Series Data Using the Characterizing Loss of Cell Cycle Synchrony Model for Cross-Experiment Comparisons
07:59

Author Spotlight: Alignment of Synchronized Time-Series Data Using the Characterizing Loss of Cell Cycle Synchrony Model for Cross-Experiment Comparisons

Published on: June 9, 2023

1.5K
Temporal Tracking of Cell Cycle Progression Using Flow Cytometry without the Need for Synchronization
08:52

Temporal Tracking of Cell Cycle Progression Using Flow Cytometry without the Need for Synchronization

Published on: August 16, 2015

19.5K
  • 添加器模型准确地描述了细胞体积控制机制.
  • 测量噪声是实验半径数据中的一个重要因素.
  • 在许多细胞周期建模上下文中,细胞长度仍然是细胞大小的可行代理.