Mechanical Injection

Mechanical injection is the delivery of a liquid, suspension, or other injectable material into the body by applying mechanical force, typically with a syringe, needle, or automated injector. Pressure generated by a plunger or powered device drives the formulation through a narrow needle and into selected tissue, while needle gauge, injection rate, depth, and volume influence dispersion, discomfort, and dosing accuracy. In medicine, mechanical injection supports vaccination, drug administration, local anesthesia, contrast-enhanced imaging, and targeted delivery procedures. Understanding its mechanics helps clinicians select suitable devices, reduce tissue injury and leakage, and improve reliable treatment delivery across patient populations.

Mechanical Injection - Related Videos

Research

JoVE Journal - Bioengineering
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The Quantification of Injectability by Mechanical Testing

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Cited by 16 •

2020

Presented here is a protocol for quantitatively evaluating the injectability of a material through a syringe-needle system using a standard mechanical testing rig.

Research

JoVE Journal - Medicine

Mechanical and Controlled PRP Injections in Patients Affected by Androgenetic Alopecia

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Cited by 54 •

2018

This paper aims to describe the interfollicular autologous platelet-rich plasma injections (0.20 mL x cm2) in the scalp of 23 patients affected by androgenetic alopecia at a depth of 5 mm using a medical injector gun equipped with a 30 gauge needle, in three sessions.

Mechanical Stimulation of Chondrocyte-agarose Hydrogels

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Cited by 29 •

2012

The biosynthesis of cartilaginous extracellular matrix by chondrocytes can be affected by application of mechanical stimuli. This method describes the technique of applying dynamic compressive strains to chondrocytes encapsulated in 3D constructs and the evaluation of induced changes in chondrocyte metabolism.

An Injectable and Drug-loaded Supramolecular Hydrogel for Local Catheter Injection into the Pig Heart

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Cited by 21 •

2015

Supramolecular hydrogelators based on ureido-pyrimidinones allow full control over the macroscopic gel properties and the sol–gel switching behavior using pH. Here, we present a protocol for formulating and injecting such a supramolecular hydrogelator via a catheter delivery system for local delivery directly in relevant areas in the pig heart.

Microfabricated Platforms for Mechanically Dynamic Cell Culture

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Cited by 3 •

2010

In this protocol, we demonstrate the fabrication of a microactuator array of vertically displaced posts on which the technology is based, and how this base technology can be modified to conduct high-throughput mechanically dynamic cell culture in both two-dimensional and three-dimensional culture paradigms.

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