1 Ml Syringe

A 1 mL syringe is a small, graduated device for accurately measuring and transferring up to one milliliter of liquid, making it useful when biological samples or reagents are available only in limited volumes. It works by moving a plunger within a sealed barrel: withdrawing the plunger creates reduced pressure that draws liquid through the tip, while pressing it expels a measured volume; fine graduations support precise delivery. In biology laboratories, 1 mL syringes assist with preparing solutions, dispensing reagents, loading samples, and handling small-volume materials. Their compact capacity helps reduce waste and improves control in microscale procedures.

1 Ml 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
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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.

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.

Growing Magnetotactic Bacteria of the Genus Magnetospirillum: Strains MSR-1, AMB-1 and MS-1

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Cited by 17 •

2018

We present a procedure for growing several strains of Magnetospirillum in two different types of growth media. Magnetospirillum gryphiswaldense strain MSR-1 is grown in both liquid and O2 concentration gradient semi-solid media while M. magneticum strain AMB-1 and M. magnetotacticum strain MS-1 are grown in liquid medium.

Cardiac Muscle-cell Based Actuator and Self-stabilizing Biorobot - PART 1

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Cited by 3 •

2017

In this two-part study, a biological actuator was developed using highly flexible polydimethylsiloxane (PDMS) cantilevers and living muscle cells (cardiomyocytes), and characterized. The biological actuator was incorporated with a base made of modified PDMS materials to build a self-stabilizing, swimming biorobot.

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