Flagellar Movement Suppression

Flagellar movement suppression is the reduction or cessation of flagellum-driven motion, a biological process that affects how cells or microorganisms swim and interact with their surroundings. It occurs when the coordinated beating of the flagellum is disrupted, limiting the bending and propulsion produced by its internal motility machinery. Studying this process helps researchers examine flagellar structure, cellular signaling, and the relationship between motility and behavior. In biology, controlled suppression can also support investigations of microbial movement, host-cell interactions, developmental processes, and disorders associated with impaired ciliary or flagellar function.

Flagellar Movement Suppression - Related Videos

Research

JoVE Journal - Biology

Biophysical Characterization of Flagellar Motor Functions

0 Views •

Cited by 8 •

2017

Recent findings suggest that bacterial flagellar motors sense a variety of environmental signals and remodel in response. The bead-assays discussed here are expected to help explain the role of remodeling in cellular adaptation to environmental stressors.

Research

JoVE Journal - Medicine
Free Sample

The Measurement and Treatment of Suppression in Amblyopia

0 Views •

Cited by 54 •

2012

Amblyopia is a developmental disorder of the visual cortex that is often accompanied by strong suppression of one eye. We present a new technique for measuring and treating interocular suppression in patients with amblyopia that can be deployed using virtual reality goggles or a portable iPod Touch device.

Visualizing Transcriptional Suppression in Virus-Infected Cells

0 Views •

2026

Source: Kalveram, B. et al. Using Click Chemistry to Measure the Effect of Viral Infection on Host-Cell RNA Synthesis. J. Vis. Exp. (2013)This video demonstrates the use of click chemistry and fluorescence microscopy to visualize nascent RNA transcription in mammalian cells. It highlights how viral infection suppresses host transcription by comparing fluorescent signals between infected and control cells.

Eye Movement Monitoring of Memory

0 Views •

Cited by 10 •

2010

Eye movement monitoring (or eye tracking) reveals where in space the eyes linger, when and for how long. Here, we demonstrate how eye tracking can be used to investigate the integrity of memory in multiple participant populations, without requiring verbal, or otherwise explicit, reports.

Human In Vitro Suppression as Screening Tool for the Recognition of an Early State of Immune Imbalance

0 Views •

2011

Tregs are potent suppressors of the immune system. There is a lack of unique surface markers to define them, hence, definitions of Tregs are primarily functional. Here we describe an optimized in vitro assay capable of identifying immune imbalance in subjects at risk to develop T1D.

View All Results

FAQs

Related Topics