Strontium Acsf Application

Strontium ACSF application is the use of artificial cerebrospinal fluid (ACSF) containing strontium ions to manipulate synaptic signaling in ex vivo neuroscience preparations. In this approach, Sr2+ partially replaces extracellular Ca2+; because strontium supports calcium-channel entry but activates vesicle-fusion sensors less efficiently and with slower kinetics, neurotransmitter release becomes dispersed over time rather than tightly synchronized to an action potential. This altered release pattern helps researchers isolate quantal synaptic events, assess presynaptic release properties, and distinguish asynchronous from synchronous transmission in brain slices or cultured neurons. The method provides a controlled way to investigate synaptic mechanisms and circuit function.

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JoVE Journal - Engineering

Spark Plasma Sintering Apparatus Used for the Formation of Strontium Titanate Bicrystals

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Cited by 5 •

2017

A viable technique for the formation of strontium titanate bicrystals at high pressure and fast heating rate via the spark plasma sintering apparatus is developed.

Epitaxial Growth of Perovskite Strontium Titanate on Germanium via Atomic Layer Deposition

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Cited by 3 •

2016

This work details the procedures for the growth and characterization of crystalline SrTiO3 directly on germanium substrates by atomic layer deposition. The procedure illustrates the ability of an all-chemical growth method to integrate oxides monolithically onto semiconductors for metal-oxide semiconductor devices.

Research

JoVE Journal - Chemistry
Free Sample

Phase-Dependent Control of Trap Depth and Persistent Luminescence in Strontium Aluminate Phosphors

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2025

This study investigates the standard optical measurements of two persistent luminescent ceramics: SAO-B (blue) and SAO-G (green), such as thermoluminescence (TL) and persistent luminescence (PersL). By controlling electron trap depth, this work innovates 'temperature-resolved' and 'time-resolved' dynamic anti-counterfeiting methods.

Microfluidic Applications for Disposable Diagnostics

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Cited by 1 •

2008

In this interview, Dr. Klapperich discusses the fabrication of thermoplastic microfluidic devices and their application for development of new diagnostics.

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