3d Printed Base

A 3D printed base is a custom-fabricated support structure produced by depositing material layer by layer from a digital design, providing a stable foundation for biological experiments and devices. Its geometry is created through additive manufacturing, which builds the object sequentially and allows dimensions, openings, mounting features, and material use to be adjusted for a specific setup. In biology, 3D printed bases can support culture vessels, imaging components, sensors, or experimental assemblies while improving alignment and reproducibility. Their rapid, low-volume production also enables practical prototyping and adaptation of laboratory equipment for research, teaching, and specialized workflows.

3d Printed Base - Related Videos

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JoVE Journal - Engineering
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3D Printing of Biomolecular Models for Research and Pedagogy

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Cited by 29 •

2017

Physical models of biomolecules can facilitate an understanding of their structure-function for the researcher, aid in communication between researchers, and serve as an educational tool in pedagogical endeavors. Here, we provide detailed guidance for the 3D printing of accurate models of biomolecules using fused filament fabrication desktop 3D printers.

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JoVE Journal - Biology
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3D Printing of Preclinical X-ray Computed Tomographic Data Sets

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Cited by 16 •

2013

Using modern plastic extrusion and printing technologies, it is now possible to quickly and inexpensively produce physical models of X-ray CT data taken in a laboratory. The three -dimensional printing of tomographic data is a powerful visualization, research, and educational tool that may now be accessed by the preclinical imaging community.

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JoVE Journal - Neuroscience
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Personalized 3D-printed Headgear for Multi-electrode Transcranial Electrical Stimulation

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2025

Our patented, personalized 3D-printed headgear provides rapid and reliable delivery of in-office and remotely delivered multi-electrode transcranial electrical stimulation (ME-tES).

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JoVE Journal - Engineering
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3D Printing - Evaluating Particle Emissions of a 3D Printing Pen

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Cited by 20 •

2020

This protocol presents a method to analyze the emission of 3D printing pens. Particle concentration and particle size distribution of the released particle is measured. Released particles are further analyzed with transmission electron microscopy (TEM). Metal content in filaments is quantified by inductively coupled plasma mass spectrometry (ICP-MS).

Research

JoVE Journal - Bioengineering

Scaling of Engineered Vascular Grafts Using 3D Printed Guides and the Ring Stacking Method

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Cited by 6 •

2017

Scalable engineered blood vessels would improve clinical applicability. Using easily sizable 3D-printed guides, rings of vascular smooth muscle were created and stacked into a tubular form, forming a vascular graft. Grafts can be sized to meet the range of human coronary artery dimensions by simply changing the 3D-printed guide size.

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