Reproducibility

Reproducibility is the ability to obtain consistent results when an experiment is repeated using the same methods, materials, and analysis, making it central to trustworthy science. In chemistry, researchers support reproducibility by documenting reagent identity and purity, concentrations, reaction conditions, instrument settings, sample preparation, and data-processing steps so others can repeat the work and compare outcomes. Replicated measurements, appropriate controls, standardized protocols, and transparent reporting help distinguish robust chemical behavior from results caused by contamination, variability, or undocumented decisions. Strong reproducibility improves confidence in published findings, supports method validation and scale-up, and enables reliable progress across analytical, synthetic, and materials chemistry.

Reproducibility - Related Videos

Research

JoVE Journal - Bioengineering

Refinement of OnePot PURE and Crude Ribosome Production for Reproducible Cell-free Protein Synthesis

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2025

We present an updated protocol for the production of the OnePot 'Protein synthesis Using Recombinant Elements' (PURE) system and crude ribosomes for cell-free protein synthesis, focusing on controlling cell growth to minimize batch-to-batch variations.

Reproducible Arterial Denudation Injury by Infrarenal Abdominal Aortic Clamping in a Murine Model

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Cited by 5 •

2016

Understanding the cellular and molecular mechanisms of re-endothelialization following arterial denudation injury is of paramount importance in preventing thrombosis and restenosis of arteries. Here we describe a protocol for reproducible arterial denudation injury of the infrarenal abdominal aorta. The procedure was developed to investigate the underlying mechanisms that regulate endothelial regeneration using mouse models.

A Reproducible Computerized Method for Quantitation of Capillary Density using Nailfold Capillaroscopy

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Cited by 17 •

2015

Capillaroscopy is a non-invasive, efficient, relatively inexpensive and easy-to-learn methodology for directly visualizing capillaries in the microcirculation. However, only one publication to date describes the reliability of a complex software program available for quantitating capillaroscopy data. Here, we present a simple, reliable protocol for quantitating capillaries using a standardized algorithm.

An Objective and Reproducible Test of Olfactory Learning and Discrimination in Mice

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Cited by 7 •

2018

Here, we train mice on an associative learning task to test odor discrimination. This protocol also allows for studies on learning-induced structural changes in the brain.

Reproducible Mouse Sciatic Nerve Crush and Subsequent Assessment of Regeneration by Whole Mount Muscle Analysis

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Cited by 59 •

2012

In this report we describe a method to crush mouse sciatic nerve. This method uses readily available hemostatic forceps and easily and reproducibly produces complete sciatic nerve crush. In addition, we describe a method to prepare muscle whole mounts suitable for analysis of nerve regeneration after sciatic nerve crush.

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