Cad Fabrication

CAD fabrication is the use of computer-aided design (CAD) to create precise digital models and convert them into physical components, enabling reproducible construction of research tools and devices. A design is built from geometric dimensions in software, then translated into manufacturing instructions for processes such as 3D printing, laser cutting, or computer numerical control machining; material choice and fabrication resolution determine the final form and function. In neuroscience, this workflow supports custom electrode holders, brain-computer interface components, microfluidic platforms, and experimental apparatus, allowing researchers to prototype rapidly, standardize equipment, and adapt designs to anatomical or behavioral studies.

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Research

JoVE Journal - Engineering

Indirect Fabrication of Lattice Metals with Thin Sections Using Centrifugal Casting

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Cited by 8 •

2016

An indirect additive manufacturing method combining a 3D printing of polymers with a centrifugal casting is outlined for manufacturing 3D octet truss metals (Al and Cu alloys) having a unit cell length of 5 mm with a wall thickness of 0.5 mm.

Fabricating Nanogaps by Nanoskiving

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Cited by 3 •

2013

The fabrication of electrically addressable, high-aspect-ratio (> 1000:1) metal nanowires separated by gaps of single nanometers using either sacrificial layers of aluminum and silver or self-assembled monolayers as templates is described. These nanogap structures are fabricated without a clean room or any photo- or electron-beam lithographic processes by a form of edge lithography known as nanoskiving.

Fabrication and Operation of a Nano-Optical Conveyor Belt

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2015

The scalability and resolution of conventional optical manipulation techniques are limited by diffraction. We circumvent the diffraction limit and describe a method of optically transporting nanoparticles across a chip using a gold surface patterned with a path of closely spaced C-shaped plasmonic resonators.

Fabrication of High Contact-Density, Flat-Interface Nerve Electrodes for Recording and Stimulation Applications

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Cited by 24 •

2016

This article provides a detailed description on the fabrication process of a high contact-density flat interface nerve electrode (FINE). This electrode is optimized for recording and stimulating neural activity selectively within peripheral nerves.

Synthetic, Multi-Layer, Self-Oscillating Vocal Fold Model Fabrication

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Cited by 49 •

2011

The methodology for fabricating synthetic vocal fold models is described. The models are life-sized and mimic the multi-layer structure of the human vocal folds. Results show the models to self-oscillate at pressures comparable to lung pressure and demonstrate flow-induced vibratory responses that are similar to those of human vocal folds.

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