Neural Networks and Rules-based Systems used to Find Rational and Scientific Correlations between being Here and Now with Afterlife Conditions
Neural Networks and Rules-based Systems used to Find Rational and
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The aim is to study the features of histological and morphometric changes of skin scars in different variants of soft tissue wound closure. Materials and methods: 60 Wistar rats, divided into 5 groups, were operated on: control group and 4 experimental ones: interrupted (loop) sutures, subcuticular suture, adhesion with dermal glue “Dermabond”, interconnection with high freaquency electrocoagulator – HFEW. Skin regeneration and scar formation were studied with histological and morphometric methods on 7th and 14th day. Results: On the day 7 after the closure of the wound defect, the thickness of the perifocal epidermis was significantly increased by 1.5-2.4 times due to reepithelialization and the formation of granulation tissue. No morphological differences in skin regeneration after interrupted and subcuticular sutures were found. Application of “Dermabond” and HFEW caused progressive increase thickness of the epithelium.
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Nataliia Lytovchenko. 2026. \u201cHistological Features of Scar Tissue Formation in Different Methods of Postoperative Wound Closure\u201d. Global Journal of Medical Research - K: Interdisciplinary GJMR-K Volume 23 (GJMR Volume 23 Issue K3): .
Crossref Journal DOI 10.17406/gjmra
Print ISSN 0975-5888
e-ISSN 2249-4618
The methods for personal identification and authentication are no exception.
Total Score: 104
Country: Ukraine
Subject: Global Journal of Medical Research - K: Interdisciplinary
Authors: Nataliia Lytovchenko, Zhurakovska Galina, Savosko Serhii, Nataliia Lytovchenko (PhD/Dr. count: 0)
View Count (all-time): 143
Total Views (Real + Logic): 1073
Total Downloads (simulated): 20
Publish Date: 2026 01, Fri
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The aim is to study the features of histological and morphometric changes of skin scars in different variants of soft tissue wound closure. Materials and methods: 60 Wistar rats, divided into 5 groups, were operated on: control group and 4 experimental ones: interrupted (loop) sutures, subcuticular suture, adhesion with dermal glue “Dermabond”, interconnection with high freaquency electrocoagulator – HFEW. Skin regeneration and scar formation were studied with histological and morphometric methods on 7th and 14th day. Results: On the day 7 after the closure of the wound defect, the thickness of the perifocal epidermis was significantly increased by 1.5-2.4 times due to reepithelialization and the formation of granulation tissue. No morphological differences in skin regeneration after interrupted and subcuticular sutures were found. Application of “Dermabond” and HFEW caused progressive increase thickness of the epithelium.
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