Growth Pouches

Growth pouches are sterile, transparent culture systems that support seed germination and plant growth under controlled laboratory conditions while keeping developing roots visible. Seeds are placed between moist paper or other supporting layers, allowing water, nutrients, and microbial inocula to reach the roots as they grow along the pouch surface. This arrangement enables researchers to monitor root development, collect root or exudate samples, and examine interactions between plants and beneficial or pathogenic microorganisms. In immunology and infection research, growth pouches provide a practical model for studying root colonization, host defense responses, and factors that influence plant susceptibility or resistance to infection.

Growth Pouches - Related Videos

Research

JoVE EoE - Neuropathology

Developing an Experimental Aneurysm Model in a Rabbit Using an Elastase-Treated Vessel Pouch

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2025

Source: Wanderer, S., et al. Arterial Pouch Microsurgical Bifurcation Aneurysm Model in the Rabbit. J. Vis. Exp. (2020)This video demonstrates the creation of an experimental aneurysm model in a rabbit using an elastase-treated vessel pouch. After excising a segment of the right CCA, the pouch is treated with elastase, then sutured to the left CCA to restore blood flow. The resulting stress on the weakened pouch walls induces aneurysm formation.

An Air Pouch Mouse Model for Lipopolysaccharide-Induced Inflammatory Exudate Collection

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2025

This video describes the procedure for generating an air pouch in the subcutaneous tissue of mice and collecting inflammatory exudates in response to lipopolysaccharide administration in vivo. This video also covers the analysis of the neutrophil infiltration in the air pouch.

Microsurgical Venous Pouch Arterial-Bifurcation Aneurysms in the Rabbit Model: Technical Aspects

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Cited by 11 •

2011

An optimized technique for the microsurgical creation of arterial bifurcation aneurysms mimicking bifurcation human cerebral aneurysms is described. A venous pouch is sutured into an artificially created true bifurcation of both common carotid arteries. Facilitated microsurgical techniques and aggressive postoperative anticoagulation and analgesia lead to minimized morbidity rates and high aneurysm patency rates.

Research

JoVE Journal - Neuroscience
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In Situ Visualization of Axon Growth and Growth Cone Dynamics in Acute Ex Vivo Embryonic Brain Slice Cultures

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Cited by 4 •

2021

This protocol demonstrates a straightforward and robust method to study in situ axon growth and growth cone dynamics. It describes how to prepare ex vivo physiologically relevant acute brain slices and provides a user-friendly analysis pipeline.

Decellularization of Whole Human Heart Inside a Pressurized Pouch in an Inverted Orientation

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Cited by 22 •

2018

This method enables decellularization of a complex solid organ using a simple protocol based on osmotic shock and perfusion of ionic detergent with minimal organ matrix disruption. It comprises a novel decellularization technique for human hearts inside a pressurized pouch with real-time monitoring of flow dynamics and cellular debris outflow.

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