Ion Activity Monitoring

Ion activity monitoring is the measurement of the effective concentration of specific ions in a solution, a property that reflects their chemical availability and interactions more accurately than concentration alone. In bioengineering, ion-selective sensors or electrodes detect an ion-dependent electrochemical potential, which can be related to activity through the Nernst equation under defined conditions. Monitoring ions such as sodium, potassium, calcium, chloride, or hydrogen ions helps characterize physiological fluids, cell culture environments, and engineered biological systems. These measurements support process control, metabolic studies, biomaterial evaluation, and the design of diagnostic or implantable devices where ionic balance influences biological function.

Ion Activity Monitoring - Related Videos

Research

JoVE Journal - Chemistry

Activating Molecules, Ions, and Solid Particles with Acoustic Cavitation

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Cited by 6 •

2014

Acoustic cavitation in liquids submitted to power ultrasound creates transient extreme conditions inside the collapsing bubbles, which are the origin of unusual chemical reactivity and light emission, known as sonoluminescence. In the presence of noble gases, nonequilibrium plasma is formed. The "hot" particles and the photons generated by collapsing bubbles are able to excite species in solution.

Measurement of Larval Activity in the Drosophila Activity Monitor

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Cited by 10 •

2015

This report describes a method for measuring Drosophila larval activity using the TriKinetics Drosophila Activity Monitor. The device employs infrared beams to detect movements of up to 16 individual animals. Data can be analyzed to represent motion parameters including rates and the positions of the animals within the assay chambers.

Monitoring B Cell Activation with Antigenic Liposomes using a Calcium-Flux Assay

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2025

This video showcases the assessment of B cell activation through the utilization of antigenic liposomes. B cells treated with calcium-sensitive Indo-1 dye are distinguished using flow cytometry, and their violet-to-blue fluorescence ratio is analyzed. As the cells encounter antigenic liposomes, it triggers B cell activation through calcium influx, progressively enhancing the violet-to-blue fluorescence signal ratio over time.

Drosophila Activity Monitor (DAM): A Method to Measure Locomotor Activity in Flies

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2023

This video describes the Drosophila activity monitor (DAM) system used to track locomotor activity. Researchers use activity data collected from the DAM to study circadian rhythms in fruit flies. The featured protocol clip shows how to load flies in the device and record activity data for circadian experiments.

Monitoring Changes in Membrane Polarity, Membrane Integrity, and Intracellular Ion Concentrations in Streptococcus pneumoniae Using Fluorescent Dyes

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Cited by 44 •

2014

Unlike that seen for eukaryotes, there is a paucity of studies that detail membrane depolarization and ion concentration changes in bacteria, primarily as their small size makes conventional methods of measurement difficult. Here, we detail protocols for monitoring such events in the significant Gram-positive pathogen Streptococcus pneumoniae utilizing fluorescence techniques.

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