Micro Syringe Injection

Microsyringe injection is a technique for delivering very small volumes of fluid to a defined location with high spatial control, making it useful when experimental effects must be localized. In neuroscience, a fine needle attached to a microsyringe can be positioned manually or with a stereotaxic apparatus, while controlled plunger movement dispenses drugs, tracers, or other reagents into brain tissue. This approach supports studies of neural circuits, neurotransmission, and behavior by enabling targeted manipulation or labeling of specific regions. Careful control of injection volume, rate, and site helps reduce unwanted spread, improve reproducibility, and strengthen experimental interpretation in basic and translational neuroscience.

Micro Syringe Injection - Related Videos

Research

JoVE Journal - Bioengineering
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Syringe-injectable Mesh Electronics for Stable Chronic Rodent Electrophysiology

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Cited by 31 •

2018

Mesh electronics probes seamlessly integrate and provide stable, long-term, single-neuron level recording within the brain. This protocol uses mesh electronics for in vivo experiments, involving the fabrication of mesh electronics, loading into needles, stereotaxic injection, input/output interfacing, recording experiments, and histology of tissue containing mesh probes.

Research

JoVE Journal - Neuroscience

Simultaneous Electrophysiological Recording and Micro-injections of Inhibitory Agents in the Rodent Brain

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Cited by 3 •

2015

Here, we craft a glass pipette with dual functions: inhibition of deep brain structures by microinjections of drugs and real-time monitoring of their effects through simultaneous electrophysiological recordings.

Micro-particle Image Velocimetry for Velocity Profile Measurements of Micro Blood Flows

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Cited by 12 •

2013

Micro-particle image velocimetry (μPIV) is used to visualize paired images of micro particles seeded in blood flows which are cross-correlated to give an accurate velocity profile. Shear rate, maximum velocity, velocity profile shape, and flow rate, each of which has clinical applications, can be derived from these measurements.

Chemotactic Response of Marine Micro-Organisms to Micro-Scale Nutrient Layers

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Cited by 4 •

2007

The fabrication of microfluidic channels and their implementation in experiments for studying the chemotactic foraging behaviour of marine microbes within a patchy nutrient seascape and the swimming behaviour of bacteria within shear flow are described.

Extraction of Apoplastic Bacteria Using a Syringe-Based Pressure Method

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2025

Source: Rufián, J. S., et al, Single-Cell Analysis of the Expression of Pseudomonas syringae Genes within the Plant Tissue. J. Vis. Exp. (2022)This video demonstrates a syringe-based pressure method for extracting apoplastic bacteria, which proliferate and form microcolonies within the apoplast, the intercellular space between plant cells. The method yields debris-free bacterial samples suitable for downstream single-cell analysis.

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