Related Experiment Video
Updated: Jan 19, 2026

11:25
Preparation of a Blood Culture Pellet for Rapid Bacterial Identification and Antibiotic Susceptibility Testing
Published on: October 15, 2014
36.5K
Antibiotics and the Yield of Blood Cultures: Sequence Matters
Jacqueline H Geer1, Mark D Siegel1
1Yale School of Medicine, New Haven, Connecticut (J.H.G., M.D.S.).
Annals of Internal Medicine
|September 17, 2019
Abstract
No abstract available in PubMed .
Related Concept Videos
11:25Preparation of a Blood Culture Pellet for Rapid Bacterial Identification and Antibiotic Susceptibility Testing
36.5K
A rapid bacterial pellet preparation from a positive blood culture can be used as a sample for applications such as identification by MALDI-TOF, Gram staining, antibiotic susceptibility testing and PCR-based test. The results can be rapidly communicated to clinicians to improve the outcome of patients suffering from bloodstream...
36.5K
11:26Sequencing of mRNA from Whole Blood using Nanopore Sequencing
14.6K
Nanopore sequencing is a novel technology that allows cost-effective sequencing in remote locations and resource-poor settings. Here, we present a protocol for sequencing of mRNAs from whole blood that is compatible with such...
14.6K
Antibiotic Selection
59.5K
Overview
59.5K
11:36A RAPID Method for Blood Processing to Increase the Yield of Plasma Peptide Levels in Human Blood
9.7K
The RAPID blood processing method can be used in humans and yields higher peptide levels as well as allows for assessment of the correct molecular form. Therefore, this method will be a valuable tool in peptide...
9.7K
Classifying Matter by State
102.5K
Chemistry is the study of matter and the changes it undergoes. Matter is anything that has mass and occupies space. Matter is all around us; the air, water, soil, mountains, even our bodies are all examples of matter. Matter is divided into three states — solid, liquid, and gas — that are commonly found on earth. The fourth state of matter, plasma, occurs naturally in the interiors of stars.
102.5K
ATP Yield
78.3K
Cellular respiration produces 30 - 32 ATP per glucose molecule. Although most of the ATP results from oxidative phosphorylation and the electron transport chain (ETC), 4 ATP are gained beforehand (2 from glycolysis and 2 from the citric acid cycle).
The ETC is embedded in the inner mitochondrial membrane and is comprised of four main protein complexes and an ATP synthase. NADH and FADH2 pass electrons to these complexes, which pump protons into the intermembrane space. This distribution of...
The ETC is embedded in the inner mitochondrial membrane and is comprised of four main protein complexes and an ATP synthase. NADH and FADH2 pass electrons to these complexes, which pump protons into the intermembrane space. This distribution of...
78.3K

