Water Retention

Water retention is the capacity of a material, structure, or engineered system to hold water and limit its movement or loss. It results from mechanisms such as pore structure, surface tension, capillary forces, adsorption, and, in some systems, physical barriers that slow drainage or evaporation. In engineering, water retention principles guide the design of soils, reservoirs, drainage layers, green roofs, irrigation systems, and moisture-control materials. Managing retained water can improve resource efficiency, reduce runoff and erosion, support plant growth, and enhance the stability and performance of infrastructure under changing environmental conditions.

Water Retention - Related Videos

Research

JoVE EoE - Assay Techniques

Soil Core Sample Collection for Water Retention Property Analysis

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2026

Source:Alessia J. Marchesan1, Guillermo Hernandez Ramirez11Renewable Resources, University of Alberta. This video demonstrates the technique for collecting a soil sample for hydraulic property analysis. The sampling area is cleared, and the top crust is evacuated. The sampling ring is then placed into the soil to collect the sample. The ring with the sample is then cleaned, labeled, packed, and transferred undisturbed for analysis.

Immobilization of Live Caenorhabditis elegans Individuals Using an Ultra-thin Polydimethylsiloxane Microfluidic Chip with Water Retention

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Cited by 15 •

2019

A series of immobilization methods has been established to allow the targeted irradiation of live Caenorhabditis elegans individuals using a recently developed ultra-thin polydimethylsiloxane microfluidic chip with water retention. This novel on-chip immobilization is also adequate for imaging observations. The detailed treatment and application examples of the chip are explained.

Determination of the Calcium Retention Capacity of Isolated Mitochondria

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2025

This video demonstrates the procedure to assess mitochondrial calcium retention capacity by monitoring real-time changes in fluorescence as mitochondria uptake calcium. This assay is useful for studying mitochondrial function and calcium-related processes, including apoptosis and neurodegenerative diseases.

Ferromagnetic Bare Metal Stent for Endothelial Cell Capture and Retention

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Cited by 12 •

2015

Our goals were to design, manufacture and test ferromagnetic stents for endothelial cell capture. Ten stents were tested for fracture and 10 more stents were tested for retained magnetism. Finally, 10 stents were tested in-vitro and 8 more stents were implanted in 4 pigs to show cell capture and retention.

Mitochondrial Ca2+ Retention Capacity Assay and Ca2+-triggered Mitochondrial Swelling Assay

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Cited by 11 •

2018

This protocol aims to describe a method to examine the Ca2+ retention capacity and Ca2+- triggered mitochondrial swelling of isolated mitochondria of SH-SY5Y cells step-by-step.

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