Titanium Cage Implantation

Titanium cage implantation is a surgical technique that places a porous or mesh titanium device within a damaged or surgically prepared skeletal space to provide structural support and promote bone healing. In spinal procedures, the cage is inserted between vertebrae after disc removal, where it restores disc-space height, helps realign the spine, and stabilizes the segment while bone grows through or around the implant to achieve fusion. Surgeons may fill the cage with bone graft or a graft substitute to support new bone formation. This approach is used to treat spinal instability, degenerative disc disease, fractures, deformity, and selected tumor-related defects, while titanium’s strength and biocompatibility support long-term reconstruction.

Titanium Cage Implantation - Related Videos

Research

JoVE Journal - Bioengineering

Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant

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Cited by 6 •

2016

Here we present a fluorophore based imaging technique to detect cell viability on a non-transparent titanium scaffold as well as to detect glimpses of the scaffold impurities. This protocol troubleshoots the drawback of imaging cell-cell or cell-metal interactions on non-transparent scaffolds.

In Vitro Evaluation of The Effects Of Er,Cr:YSGG and Diode Lasers Used on Titanium Cylinder

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2025

In this study, Er,Cr:YSGG and diode lasers applied separately to the flat surface of a total of 96 specially designed titanium cylinders. A thermocouple placed on the other surface and the temperature was measured. Surface roughness analyzed by profilometer, SEM and AFM.

Subdural Implantation of a Soft Electrocorticography Array for Cortical Electrophysiology Recording in Minipigs

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2025

This video demonstrates the implantation of a soft electrocorticography array and the long-term cortical recordings in a minipig. It outlines the steps involved in surgically implanting the array over the minipig's auditory cortex and recording both baseline and sound stimulus-evoked neuronal action potentials.

Research

JoVE Journal - Engineering
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Digital Printing of Titanium Dioxide for Dye Sensitized Solar Cells

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Cited by 7 •

2016

This paper investigates the suitability of inkjet printing for the manufacturing of dye-sensitized solar cells. A binder-free TiO2 nanoparticle ink was formulated and printed onto a FTO glass substrate. The printed layer was fabricated into a cell with an active area of 0.25 cm2 and an efficiency of 3.5%.

Animal Model of Implant-Associated Infections in Mice

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2025

The present protocol describes a mouse model employing subcutaneous dorsal implantation to investigate implant-associated infections, enabling comprehensive investigation of pathophysiological mechanisms and supporting the development of diagnostic criteria with targeted therapeutic strategies.

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