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Enhancing In Vivo Data for Skeletal Muscle Regeneration Evaluation: Utilizing Short-Wave Infrared (SWIR) Fluorescence Imaging Method and M2Mø Transplantation| Abstract
ISSN: 2165-7025

Journal of Novel Physiotherapies
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  • Mini Review   
  • J Nov Physiother , Vol 13(6): 598
  • DOI: 10.4172/2165-7025.1000598

Enhancing In Vivo Data for Skeletal Muscle Regeneration Evaluation: Utilizing Short-Wave Infrared (SWIR) Fluorescence Imaging Method and M2M� Transplantation

Adeniyi Obi*
Department of Physiotherapy, University of Santa Paula, Costa Rica
*Corresponding Author : Adeniyi Obi, Department of Physiotherapy, University of Santa Paula, Costa Rica, Email: AdeniyiObi@gmail.com

Received Date: Jun 01, 2023 / Published Date: Jun 30, 2023

Abstract

Skeletal muscle has a sturdy regeneration potential that is impaired via extreme injury, disease, and aging, ensuing in a decline in skeletal muscle function. Therefore, enhancing skeletal muscle regeneration is a key undertaking in treating skeletal muscle-related disorders. Owing to their substantial position in tissue regeneration, implantation of M2 macrophages (M2Mø) has top notch doable for enhancing skeletal muscle regeneration. Here, we existing a shortwave infrared (SWIR) fluorescence imaging method to attain greater in vivo statistics for an in-depth comparison of the skeletal muscle regeneration impact after M2Mø transplantation. SWIR fluorescence imaging was once employed to music implanted M2Mø in the injured skeletal muscle of mouse models.

Citation: Obi A (2023) Enhancing In Vivo Data for Skeletal Muscle Regeneration Evaluation: Utilizing Short-Wave Infrared (SWIR) Fluorescence Imaging Method and M2Mø Transplantation. J Nov Physiother 13: 598. Doi: 10.4172/2165-7025.1000598

Copyright: © 2023 Obi A. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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