Automated Pattern Fabrication

Automated pattern fabrication is the computer-controlled creation of precisely arranged features on a material, enabling consistent control over geometry, spacing, and composition. In bioengineering, digital designs guide processes such as material deposition, printing, or selective removal, while programmed motion and process parameters reproduce patterns with minimal manual intervention. These patterns can regulate cell positioning, organization, adhesion, and interactions with biomaterials, making the approach valuable for tissue engineering, biosensors, microfluidic devices, and in vitro models. By improving fabrication repeatability and design flexibility, automated pattern fabrication supports systematic studies of cell behavior and the development of engineered biological systems.

Automated Pattern Fabrication - Related Videos

Research

JoVE Journal - Engineering

Patterning via Optical Saturable Transitions - Fabrication and Characterization

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Cited by 1 •

2014

We report that the diffraction limit of conventional optical lithography can be overcome by exploiting the transitions of organic photochromic derivatives induced by their photoisomerization at low light intensities.1-3 This paper outlines our fabrication technique and two locking mechanisms, namely: dissolution of one photoisomer and electrochemical oxidation.

Flow-pattern Guided Fabrication of High-density Barcode Antibody Microarray

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Cited by 5 •

2016

This protocol outlines the fabrication of a large-scale, multiplexed two-dimensional DNA or antibody array, with potential applications in cell signaling studies and biomarker detection.

Fabrication of Micro-Patterned Chip with Controlled Thickness for High-Throughput Cryogenic Electron Microscopy

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2022

A newly developed micro-patterned chip with graphene oxide windows is fabricated by applying microelectromechanical system techniques, enabling efficient and high-throughput cryogenic electron microscopy imaging of various biomolecules and nanomaterials.

Atomically Traceable Nanostructure Fabrication

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Cited by 4 •

2015

We report a protocol for combining the atomic metrology of the Scanning Tunneling Microscope for surface patterning with selective Atomic Layer Deposition and Reactive Ion Etching. Using a robust process involving numerous atmospheric exposures and transport, 3D nanostructures with atomic metrology are fabricated.

Research

JoVE Journal - Chemistry
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Origami Inspired Self-assembly of Patterned and Reconfigurable Particles

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Cited by 25 •

2013

We describe experimental details of the synthesis of patterned and reconfigurable particles from two dimensional (2D) precursors. This methodology can be used to create particles in a variety of shapes including polyhedra and grasping devices at length scales ranging from the micro to centimeter scale.

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