Ring Pattern Assay

The Ring Pattern Assay is a spatial assay that measures how cells, microorganisms, or biomaterials organize into concentric patterns, providing a simple readout of movement and pattern formation. In a controlled culture or substrate, radial growth, migration, aggregation, or diffusion produces a ring whose diameter, spacing, and intensity can be quantified over time. In bioengineering, this approach helps evaluate cellular motility, chemotactic responses, collective behavior, and the effects of material properties or biochemical signals on spatial organization. Because it converts complex behavior into measurable geometric features, the assay supports comparative studies of engineered tissues, microbial systems, and biomimetic environments.

Ring Pattern Assay - Related Videos

Research

JoVE Journal - Immunology and Infection
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Assay for Pathogen-Associated Molecular Pattern (PAMP)-Triggered Immunity (PTI) in Plants

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Cited by 23 •

2009

A cell death-based assay for PTI in Nicotiana benthamiana plants is described.

Research

JoVE Journal - Biology

Understanding Cerebellar Pattern Formation

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2007

Research

JoVE Journal - Neuroscience
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Cross-Modal Multivariate Pattern Analysis

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Cited by 5 •

2011

Classical multivariate pattern analysis predicts sensory stimuli a subject perceives from neural activity in the corresponding cortices (e.g. visual stimuli from activity in visual cortex). Here, we apply pattern analysis cross-modally and show that sound- and touch-implying visual stimuli can be predicted from activity in auditory and somatosensory cortices, respectively.

A Versatile Method of Patterning Proteins and Cells

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Cited by 10 •

2017

This report describes a simple, easy to perform technique, using low pressure vacuum, to fill microfluidic channels with cells and substrates for biological research.

Analysis of Cell Differentiation, Morphogenesis, and Patterning During Chicken Embryogenesis Using the Soaked-Bead Assay

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Cited by 1 •

2022

The soaked bead assay involves targeted delivery of test reagent at any developmental time point to study the regulation of cell differentiation and morphogenesis. A detailed protocol, applicable to any experimental animal model, for preparing three different types of soaked beads and implanting these in the interdigit of a chicken embryo is presented.

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