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Related Concept Videos

Tissues01:18

Tissues

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Cells with similar structure and function are grouped into tissues. A group of tissues with a specialized function is called an organ. There are four main types of tissue in vertebrates: epithelial, connective, muscle, and nervous.
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Tissues01:25

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Tissues are a group of cells that share a common embryonic origin. Microscopic observation reveals that the cells in a tissue share morphological features and are arranged in an orderly pattern to perform specific functions. From an evolutionary perspective, tissues appear in more complex organisms. Although there are many types of cells in the human body, they are organized into four broad categories of tissues: epithelial, connective, muscle, and nervous. Each of these categories is...
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Plant tissues are collections of similar cells performing related functions. Different plant tissues will have their own specialized roles and can be combined with other tissues to form organs such as flowers, fruit, stem, and leaves. Two major types of plant tissue include meristematic and permanent tissue.
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Plant tissue culture is widely used in both primary and applied science. Applications range from plant development studies to functional gene studies, crop improvement, commercial micropropagation, virus elimination, and conservation of rare species.
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Tissue Membranes01:27

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A tissue membrane is a thin layer of cells that covers the outside of the body, the organs, internal passageways that lead to the exterior of the body, and the lining of the moveable joint cavities. There are two basic types of tissue membranes— connective tissue and epithelial membranes.
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Tissue transplantation is a significant medical procedure involving the transfer of cells, tissues, or organs from a donor to a recipient, with the primary aim of restoring lost functions. This procedure is crucial in treating a broad spectrum of diseases, including kidney diseases, liver failure, heart disease, and certain types of cancers.
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Related Experiment Video

Updated: Jan 22, 2026

Murine Model of Wound Healing
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Angiosome and Tissue Healing.

Miki Fujii1, Hiroto Terashi2

  • 1Department of Plastic and Reconstructive Surgery, Critical Limb Ischemia Center, Kitaharima Medical Center, Ono, Hyogo, Japan.

Annals of Vascular Diseases
|July 6, 2019
PubMed
Summary

The angiosome concept is crucial for treating critical limb ischemia (CLI) wounds. Applying this surgical approach preserves blood supply, aiding wound healing in CLI patients.

Keywords:
angiosomecritical limb ischemiafoot surgerywound healing

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Area of Science:

  • Vascular Surgery
  • Wound Healing
  • Ischemia Research

Background:

  • Critical limb ischemia (CLI) poses significant challenges for wound healing.
  • Revascularization and meticulous wound management are vital for CLI treatment.
  • The angiosome concept offers a framework for understanding tissue perfusion.

Purpose of the Study:

  • To elucidate the application of the angiosome concept in surgical CLI wound treatment.
  • To review essential literature supporting the angiosome concept in CLI.
  • To emphasize the importance of angiosome-guided surgery for preserving blood supply.

Main Methods:

  • Surgical treatment of CLI wounds guided by the angiosome concept.
  • Review of existing scientific reports and case studies on angiosome-based CLI treatment.
  • Intraoperative consideration of angiosomes to optimize revascularization.

Main Results:

  • The angiosome concept facilitates targeted revascularization in CLI.
  • Preservation of blood supply through angiosome-specific interventions is key.
  • Successful application of the concept contributes to improved wound healing outcomes.

Conclusions:

  • The angiosome concept is indispensable for effective surgical management of CLI wounds.
  • Surgeons must integrate the angiosome concept into their practice for optimal patient outcomes.
  • Combined revascularization and wound care, guided by angiosomes, are essential for limb salvage.