Ultra-thin Sections

Ultra-thin sections are highly refined slices of biological specimens, typically tens to hundreds of nanometers thick, prepared to reveal cellular structures at high resolution. In ultramicrotomy, tissue is preserved through fixation and embedding, then cut with a glass or diamond knife into thin ribbons; heavy-metal staining can increase contrast for transmission electron microscopy. This technique enables researchers to examine membranes, organelles, macromolecular assemblies, and tissue ultrastructure that remain indistinguishable in conventional sections. Ultra-thin sectioning supports cell biology, pathology, microbiology, and materials research by linking fine structural organization with cellular function and disease-related changes.

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Education

JoVE Core - Social Psychology

Cross-Sectional Research

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2020

In cross-sectional research, a researcher compares multiple segments of the population at the same time. If they were interested in people's dietary habits, the researcher might directly compare different groups of people by age. Instead of following a group of people for 20 years to see how their dietary habits changed from decade to decade, the researcher would study a group of 20-year-old individuals and compare them to a group of 30-year-old individuals and a group of 40-year-old...

Research

JoVE Journal - Engineering

Angle-resolved Photoemission Spectroscopy At Ultra-low Temperatures

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Cited by 8 •

2012

The overall goal of this method is to determine the low-energy electronic structure of solids at ultra-low temperatures using Angle-Resolved Photoemission Spectroscopy with synchrotron radiation.

Vibratome Sectioning of Whole Murine Kidney: A Technique to Generate Thin Sections of Murine Kidney

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2023

In this video, we demonstrate the vibratome sectioning of a whole mouse kidney to obtain thin slices. These sliced tissue sections can be stored at low temperatures until further downstream analysis.

Fabrication of Silica Ultra High Quality Factor Microresonators

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Cited by 22 •

2012

We describe the use of a carbon dioxide laser reflow technique to fabricate silica resonant cavities, including free-standing microspheres and on-chip microtoroids. The reflow method removes surface imperfections, allowing long photon lifetimes within both devices. The resulting devices have ultra high quality factors, enabling applications ranging from telecommunications to biodetection.

MALDI Sample Preparation: the Ultra Thin Layer Method

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Cited by 32 •

2007

This video demonstrates the preparation of an ultra-thin matrix/analyte layer for analyzing peptides and proteins by Matrix-Assisted Laser Desorption Ionization Mass Spectrometry (MALDI-MS).

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