Development of 3D combined tissue matries specific to the treatment of volume muscle tissue losses
2022
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Advisor: Prof. Dr. Kadriye Tuzlakoğlu
Abstract (EN)
DEVELOPMENT OF 3D COMBINED TISSUE MATRIES SPECIFIC TO THE TREATMENT OF VOLUME MUSCLE TISSUE LOSSES ABSTRACT Skeletal muscles are one of the basic elements of the human movement system. These muscles are the basic elements of the main element of vitality. This is due to a development that occurs in basic life, changes in life in life. Simple incidents of injury, sprain or sports accident; Purification is supported by physics and drugs. The more traumatic and injured deaths, traumatic and injury accidents are difficult, slow and immortal in reducing muscle wastage greatly large. This muscle teaching has the ability to be self-sufficient. This tip is a valuable prospective teacher as well as student-based experience for the muscle awards contenders. In contrast, this type involving only a single user is insufficient to repair complex textures. These technologies include FTIR-A drawing of 3 (3D) PCL/membrane in a chemical TR model of the membrane combined with lyophilized muscle-derived cell-free matrix of large size polycaprolactone/polyaniline (PCL/PANI) membrane for fast and efficient production of large muscle wasters and the structure of both components of the nanofiber membranes was confirmed. It was used to determine the double mean surface morphology and mean fiber diameters. In this image, it is observed that the PCL/PANI interview is effectively created for their interview. Results from in vitro degradation studies from physiological conditions , from approaches that appear to have a higher weight in the 90-day final 3D bonded matrix than in PCL/PANI nanofiber membranes. The electrical conductivity of the prepared PCL/PANI nanofiber membranes was measured between 3x10-9-2.5x10-9 S/cm. The results obtained from the structured are that the spirally made matrices are made of material suitable for the new skeletal muscle of each. Keywords: Tissue engineering, Skeletal muscle, 3D tissue matrix
Author
Dr. Edanur Ertürk
Institution

Yalova University
Polimer Mühendisliği Bilim Dalı
How to Cite
Edanur Ertürk (Master Thesis). Development of 3D combined tissue matries specific to the treatment of volume muscle tissue losses, 2022, Yalova University.
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