Tuberculin Syringe

A tuberculin syringe is a small, finely graduated syringe designed to measure and deliver very small liquid volumes accurately, making it useful when precise dosing matters in biology and healthcare. Its plunger creates pressure that draws fluid through a needle into the barrel and then expels it, while graduations commonly support measurements in fractions of a milliliter. Researchers and clinicians use tuberculin syringes for intradermal or subcutaneous injections, administering vaccines, test substances, and other laboratory or clinical materials. Their narrow barrel and clear scale help minimize measurement errors during experimental procedures and biological assessments.

Tuberculin Syringe - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

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.

Research

JoVE Journal - Bioengineering
Free Sample

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.

Modeling the Effects of Hemodynamic Stress on Circulating Tumor Cells using a Syringe and Needle

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Cited by 2 •

2021

Here we demonstrate a method to apply fluid shear stress to cancer cells in suspension to model the effects of hemodynamic stress on circulating tumor cells.

Three-dimensional Printing of Thermoplastic Materials to Create Automated Syringe Pumps with Feedback Control for Microfluidic Applications

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Cited by 3 •

2018

Here we present a protocol to construct a pressure-controlled syringe pump to be used in microfluidic applications. This syringe pump is made from an additively manufactured body, off-the-shelf hardware, and open-source electronics. The resulting system is low-cost, straightforward to build, and delivers well-regulated fluid flow to enable rapid microfluidic research.

Education

JoVE Lab Manual - Biology

Cellular Respiration - Instructor Prep

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2019

Quantifying Respiration using Microrespirometers ExpandTo assemble the microrespirometers needed for the lab, first plug in the hot glue gun to preheat it. Push the plunger of a tuberculin syringe all the way in and then cut the end off of the syringe. Next, insert a capillary tube into the empty needle end of the syringe. Push the capillary tube in until it touches the tip of the plunger. Use the hot glue gun to create an airtight seal between the capillary tube and the tuberculin syringe.

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