Grafting Device

A grafting device is a tool designed to join two living plant tissues, typically a scion and a rootstock, so they can grow as a single organism. It works by producing complementary cuts that align the vascular regions of the tissues, while the device helps maintain close contact during healing and union formation. In biology, grafting devices support reliable plant propagation, especially when manual cutting is difficult or inconsistent. They are useful in horticultural research, crop improvement, and the study of tissue compatibility, allowing researchers to evaluate how root systems influence the growth and traits of grafted shoots.

Grafting Device - Related Videos

Research

JoVE Journal - Bioengineering

Artificial Lung Device Priming for In Situ Fiber Bundle Surface Grafting

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2025

This study investigated the antifouling activity of artificial lung hollow fibers coated by priming the lung device. While this surface modification of fibers approach is practical, the effectiveness of the coating process depends on the graft coverage across fiber mat layers within the bundle.

Thermal Measurement Techniques in Analytical Microfluidic Devices

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Cited by 6 •

2015

Here, we present three protocols for thermal measurements in microfluidic devices.

Mouse Models for Graft Arteriosclerosis

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Cited by 17 •

2013

We describe protocols for our mouse graft arteriosclerois (GA) models which involve interposition of a mouse vessel segment into a recipient of the same inbred strain. By backcrossing additional genetic changes into the vessel donor, the model can assess the effect of specific genes on GA.

A Technique for Human Skin Grafting in a Mouse Model

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2025

This video demonstrates a method for grafting human skin onto an immunodeficient mouse with a suppressed neutrophil response. The method involves applying human split-thickness skin to the mouse's graft bed, sealing it, and covering it for recovery. Eventually, the human skin adheres to the mouse's skin, establishing vascularization and circulation, resulting in a successful skin xenograft.

Fabrication of Small Caliber Stent-grafts Using Electrospinning and Balloon Expandable Bare Metal Stents

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Cited by 10 •

2016

In the protocol, we present a method to manufacture a small caliber stent-graft by sandwiching a balloon expandable stent between two electrospun nanofibrous polyurethane layers.

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