Nanoscale Resolution Imaging

Nanoscale resolution imaging comprises techniques that visualize cellular structures and molecular organization at dimensions of a few to hundreds of nanometers, revealing details that conventional light microscopy cannot resolve. Depending on the method, images are produced by localizing individual fluorescent molecules, selectively illuminating nearby structures, or combining optical and computational strategies to overcome the diffraction limit. In neuroscience, these approaches map synaptic proteins, membrane domains, cytoskeletal elements, and organelles within neurons, helping researchers relate molecular architecture to neuronal signaling, connectivity, and disease. Such measurements support studies of brain development, plasticity, neurodegeneration, and the design of more precise experimental models.

Nanoscale Resolution Imaging - Related Videos

Research

JoVE Journal - Neuroscience

Stereocilia Bundle Imaging with Nanoscale Resolution in Live Mammalian Auditory Hair Cells

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Cited by 2 •

2021

Here we present a protocol for the Hopping Probe Ion Conductance Microscopy (HPICM), a non-contact scanning probe technique that allows nanoscale imaging of stereocilia bundles in live auditory hair cells.

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.

High-resolution Functional Magnetic Resonance Imaging Methods for Human Midbrain

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Cited by 8 •

2012

This article describes techniques to perform high-resolution functional magnetic resonance imaging with 1.2 mm sampling in human midbrain and subcortical structures using a 3T scanner. Use of these techniques to resolve topographic maps of visual stimulation in the human superior colliculus (SC) is given as an example.

Optimizing Magnetic Force Microscopy Resolution and Sensitivity to Visualize Nanoscale Magnetic Domains

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Cited by 2 •

2022

Magnetic force microscopy (MFM) employs a vertically magnetized atomic force microscopy probe to measure sample topography and local magnetic field strength with nanoscale resolution. Optimizing MFM spatial resolution and sensitivity requires balancing decreasing lift height against increasing drive (oscillation) amplitude, and benefits from operating in an inert atmosphere glovebox.

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.

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