利用高分辨率超声波成像对豚鼠皮肤组织辐射损伤中的急性伤口愈合进行非侵入性表征

Q3 Health Professions Frontiers in Biomedical Technologies Pub Date : 2023-12-26 DOI:10.18502/fbt.v11i1.14517
Z. Hormozi-Moghaddam, M. Mokhtari-Dizaji, Mohammad Ali Nilforoshzade, Mohsen Bakhshande, Sona Zare
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引用次数: 0

摘要

目的:高分辨率超声成像是一种非侵入性的客观评价方法。超声成像可对辐射引起的皮肤损伤进行目标评估和随访。 本研究旨在利用高频超声成像技术研究细胞治疗后皮肤组织辐射损伤急性伤口愈合的完整解剖和结构变化。 材料与方法雌性豚鼠(250 克)分为 3 组:(a) 对照组,包括未接受治疗的豚鼠;(b) 接受辐射治疗的豚鼠;(c) 接受脂肪间充质干细胞治疗的豚鼠。对腹部皮肤组织进行单次60Gy X射线照射,照射面积为3.0×3.0厘米,在100厘米的SSD上注射1.3厘米的栓剂。通过处理频率为 40-MHz 和 75-MHz 的超声波图像,对皮肤组织愈合的深度和质量进行超声波成像。 结果显示在 60 Gy 照射后的第 10 天,治疗组和对照组的皮肤厚度差异显著(P<0.05)。照射组皮肤厚度最高,干细胞治疗组皮肤厚度最低。 结论评估皮肤厚度、伤口深度和疤痕形成,对干细胞治疗辐射引起的皮肤损伤时正确评估和管理伤口愈合非常重要。40兆赫和75兆赫频率的高分辨率超声波是一种主要的非侵入性方法,为确定皮肤特征,特别是伤口愈合提供了前所未有的洞察力。
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High-Resolution Ultrasound Imaging for Non-Invasive Characterization of Acute Wound Healing in Radiation Injury on Guinea Pig Skin Tissue
Purpose: High-resolution ultrasound imaging is a non-invasive and objective appraisal. Ultrasound imaging accomplishes the target assessment and follow-up of radiation-induced skin injury. The study aimed to investigate the complete anatomical and structural alternations of acute wound healing in skin tissue radiation injury after cell therapy with high-frequency ultrasound imaging techniques. Materials and Methods: Female guinea pigs (250 g) were divided into 3 groups: (a) controls, consisting of non-treated guinea pigs; (b) radiation-treated; (c) radiation-treated receiving adipose-derived mesenchymal stem cells. Acute radiation-induced skin injury was induced by a single fraction of X-ray irradiation of 60Gy to a 3.0×3.0-cm area with a 1.3-cm bolus on 100-cm SSD in the abdominal skin tissue. Ultrasonic imaging of the depth and quality of healing in the skin tissue was performed by processing ultrasound images at 40-MHz and 75-MHz frequencies. Results: Skin thickness indicated a significant difference between the treatment and control groups on Day 10 after 60 Gy irradiation (P<0.05). The highest skin thickness was observed in the irradiated group, and the lowest skin thickness was found in the stem cell treatment group. Conclusion: Evaluation of skin thickness, wound depth, and scar formation is important for the proper assessment and management of wound healing in stem cell therapy of radiation-induced skin damage. High-resolution ultrasound at 40- and 75-MHz frequencies is a major non-invasive method providing unprecedented insight into determining the characterization of the skin, particularly in the context of wound healing.
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来源期刊
Frontiers in Biomedical Technologies
Frontiers in Biomedical Technologies Health Professions-Medical Laboratory Technology
CiteScore
0.80
自引率
0.00%
发文量
34
审稿时长
12 weeks
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