Nanoscale Distribution

Nanoscale distribution describes how molecules, complexes, and chemical signals are spatially arranged over distances of a few to hundreds of nanometers, a scale that strongly influences biochemical function. Diffusion, molecular crowding, electrostatic interactions, binding, and compartmentalization determine where proteins, lipids, nucleic acids, and metabolites accumulate or separate within cells and biomolecular assemblies. Measuring these patterns with approaches such as super-resolution microscopy, single-molecule analysis, or nanoscale mapping can reveal how enzyme organization, membrane signaling, and molecular transport are regulated. Understanding nanoscale distribution therefore connects molecular structure to cellular behavior and supports research in disease mechanisms, biomaterials, and targeted therapeutic design.

Nanoscale Distribution - Related Videos

Research

JoVE Journal - Engineering
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A Novel Method for In Situ Electromechanical Characterization of Nanoscale Specimens

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Cited by 2 •

2017

Isolating electrical and thermal effects on electrically assisted deformation (EAD) is very difficult using macroscopic samples. Metallic sample micro- and nanostructures together with a custom test procedure have been developed to evaluate the impact of applied current on the formation without joule heating and evolution of dislocations on these samples.

Rapid Mix Preparation of Bioinspired Nanoscale Hydroxyapatite for Biomedical Applications

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Cited by 18 •

2017

This paper describes a novel method for the rapid manufacture of high quality bioinspired nanoscale hydroxyapatite. This biomaterial is of great significance in the manufacture of a wide range of innovative medical devices for clinical applications in orthopedics, craniofacial surgery and dentistry.

High-throughput Detection of Respiratory Pathogens in Animal Specimens by Nanoscale PCR

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Cited by 11 •

2016

High-throughput testing of DNA and RNA based pathogens by nanoscale PCR is described using a syndromic canine and equine respiratory PCR panel.

Research

JoVE Journal - Engineering

Fabrication of Uniform Nanoscale Cavities via Silicon Direct Wafer Bonding

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Cited by 2 •

2014

A method for permanently bonding two silicon wafers so as to realize a uniform enclosure is described. This includes wafer preparation, cleaning, RT bonding, and annealing processes. The resulting bonded wafers (cells) have uniformity of enclosure ~1%1,2. The resulting geometry allows for measurements of confined liquids and gasses.

Education

JoVE Core - Statistics

F Distribution

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2023

The F distribution was named after Sir Ronald Fisher, an English statistician. The F statistic is a ratio (a fraction) with two sets of degrees of freedom; one for the numerator and one for the denominator. The F distribution is derived from the Student's t distribution. The values of the F distribution are squares of the corresponding values of the t distribution. One-Way ANOVA expands the t test for comparing more than two groups. The scope of that derivation is beyond the level of this...

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