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Related Concept Videos

Adherens Junctions01:24

Adherens Junctions

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Strong contact points between adjacent cells anchor them to each other, forming tissues. Such anchoring junctions are of two types –  adherens junctions and desmosomes. Adherens junctions are abundant in tissues such as  epithelium and endothelium, forming a continuous zone of adhesion called the adhesion belt. In other tissues, such as  heart muscle, they appear as clusters, linking the cells to produce coordinated heart muscle contraction.
Adherens Junctions are Dynamic
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Anchoring Junctions01:03

Anchoring Junctions

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Anchoring junctions are multiprotein complexes that help cells connect to other cells and the extracellular matrix. Anchoring junctions are present on the lateral and basal surfaces of cells, providing strong and flexible connections. Focal adhesions are often formed due to cell interactions with the ECM substrata, which initiate signal transduction via kinase cascades and other mechanisms. Together, they provide stability and tissue integrity. There are three types of anchoring junctions:...
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Bonding and Strength of Aggregate01:12

Bonding and Strength of Aggregate

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The bond between aggregate particles and the cement matrix is significantly influenced by the shape and surface texture of the aggregates. High-strength concretes benefit from a rougher texture, which leads to stronger bonding due to greater adhesion. Angular aggregates with larger surface areas also enhance this bond. The bonding quality, however, is complex to assess as no universally accepted test exists. Good bonding is indicated when a crushed concrete specimen shows some aggregate...
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Reinforced Brick Masonry01:15

Reinforced Brick Masonry

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Reinforced brick masonry is an advanced construction technique that enhances the structural integrity of brick walls by incorporating steel reinforcements. These reinforcements are either placed within the hollow cores of bricks or sandwiched between two layers of masonry, known as wythes, and are then secured in place with grout. Grout is a fluid mixture composed of Portland cement, aggregate, and water, providing the necessary bonding agent for the steel and brick.
To fortify brick walls...
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Ferrocement01:30

Ferrocement

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Ferro-cement is a distinctive construction material that represents an innovative variant of reinforced concrete, characterized by its unique composition and the method by which it is formed. Unlike standard reinforced concrete, which relies on larger steel bars for reinforcement, ferro-cement utilizes densely packed layers of mesh or fine rods, fully encased in cement mortar. This composition allows for the creation of structures that are significantly thinner and more flexible than their...
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Types of Cement II01:22

Types of Cement II

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Portland blast-furnace cement is made by blending Portland cement clinker with granulated blast-furnace slag, which accounts for 25 to 65 percent of the cement's weight. Despite its similarities to ordinary Portland (Type I) cement in terms of fineness and setting times, its early strength is lower, though it achieves comparable strength later on. It's particularly suited for mass concrete structures and marine environments due to its lower heat of hydration and superior sulfate...
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Related Experiment Video

Updated: Jun 5, 2025

Application of Light-cured Dental Adhesive Resin for Mounting Electrodes or Microdialysis Probes in Chronic Experiments
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[Cementation of adhesive bridges].

A M O Dal Piva, J Muris, A J Feilzer

    Nederlands Tijdschrift Voor Tandheelkunde
    |December 10, 2024
    PubMed
    Summary

    Proper cementation is crucial for durable adhesive bridges. This guide details material selection, tooth prep, and techniques for successful, long-lasting dental restorations.

    Area of Science:

    • Restorative Dentistry
    • Dental Materials Science

    Background:

    • Adhesive bridges are key in modern dentistry for durable, aesthetic, and functional restorations.
    • Successful outcomes heavily rely on the quality of the cementation process.

    Purpose of the Study:

    • To provide a comprehensive overview of the cementation protocol for adhesive bridges.
    • To address material selection, tooth preparation, and cementation techniques.
    • To discuss factors influencing longevity and stability.

    Main Methods:

    • Review of current literature and clinical best practices for adhesive bridge cementation.
    • Analysis of different restorative materials used in adhesive bridges.
    • Discussion of essential steps in the cementation protocol.

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    Main Results:

    • Cementation quality is paramount for adhesive bridge success.
    • A detailed protocol covers material choice, surface prep, and application techniques.
    • Post-cementation care and maintenance are vital for long-term stability.

    Conclusions:

    • Adhering to an appropriate cementation protocol ensures predictable and satisfactory results.
    • Proper technique and maintenance are essential for the longevity of adhesive bridges.
    • This overview serves as a guide for clinicians to achieve optimal outcomes.