Trunk Injection

Trunk injection is a targeted technique that delivers pesticides, nutrients, or therapeutic compounds directly into a tree’s vascular system, reducing reliance on broad environmental applications. A small opening in the trunk allows the substance to enter xylem tissues, where transpiration-driven movement distributes it upward through the canopy; successful uptake depends on tree physiology, formulation, and environmental conditions. In environmental management, trunk injection can help control insect pests and diseases while limiting spray drift, soil contamination, and exposure to non-target organisms. The method supports more precise urban forestry and landscape care, although it requires careful application to minimize tree injury.

Trunk Injection - Related Videos

Research

JoVE Journal - Neuroscience

Analysis of Trunk Neural Crest Cell Migration using a Modified Zigmond Chamber Assay

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Cited by 5 •

2012

An approach to analyze the migration of explanted cells (trunk neural crest cells) is described. This method is inexpensive, gentle, and capable of distinguishing chemotaxis from both chemokinesis and other influences on migratory polarity such as those derived from cell-cell interactions within the primary trunk neural crest cell culture.

Surgical Trunk Oriented Laparoscopic Right Hemicolectomy (ST-LRH) for Right-Sided Colon Cancer

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2025

This protocol describes Surgical Trunk-oriented Laparoscopic Right Hemicolectomy (ST-LRH), a modified laparoscopic right hemicolectomy designed to optimize vascular management and lymph node dissection, simplify surgical procedures, and improve surgical safety and efficiency.

Long-Term Catheterization of the Intestinal Lymph Trunk and Collection of Lymph in Neonatal Pigs

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Cited by 6 •

2016

We present a surgical procedure to catheterize the intestinal lymph trunk in neonatal pigs to collect large quantities of lipid metabolism components from efferent lymph.

RNAi Interference by dsRNA Injection into Drosophila Embryos

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Cited by 6 •

2011

RNA interference has been proven very effective to analyze gene function in Drosophila tracheal development. A detailed protocol used by Jiang lab to inject dsRNA into fly embryos to knockdown gene expression is illustrated. This technique has the potential for screening genes required for tissue and organ development in Drosophila.

A Pulmonary Trunk Banding Model of Pressure Overload Induced Right Ventricular Hypertrophy and Failure

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Cited by 23 •

2018

We present a surgical method to induce right ventricular hypertrophy and failure in rats.

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