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体外人体组织学的 CO 扫描仪分段处理:在深度瘢痕上的潜在应用。

Ex Vivo Human Histology Fractional Treatment with a New CO Scanner: A Potential Application on Deep Scarring.

机构信息

Laser Cutaneous Cosmetic and Plastic Surgery Unit, Villa Donatello Clinic, 50019 Florence, Italy.

El.En. Group, 50041 Calenzano, Italy.

出版信息

Medicina (Kaunas). 2023 Jun 9;59(6):1117. doi: 10.3390/medicina59061117.

Abstract

: For many years, fully ablative laser treatments, particularly those performed with a carbon dioxide (CO) laser, were regarded as the gold standard for resurfacing. This study's goal is to assess the depth that can be reached by a new CO scanner system, through a skin model with greater dermal thickness, to use in the treatment of deep scarring. : Male human skin tissue was laser-treated using a CO fractional laser and a new scanning system, and all samples were fixed in 10% neutral buffered formalin, dehydrated using a series of crescent alcohol, embedded in paraffin, sectioned in series (4-5 µm thick), stained with haematoxylin and eosin (H&E), and then analysed under an optical microscope. : From the epidermis through the underlying papillary and reticular dermis to various depths of the dermis, microablation columns of damage and coagulated microcolumns of collagen were observed. The reticular dermis was fully penetrated up to 6 mm at higher energy levels (210 mJ/DOT), resulting in deeper tissue injury. Although the laser might penetrate further, the skin stops there, leaving just the fat and muscular tissue. : The deep layers of the dermis can be penetrated by the CO laser system throughout the entire dermal thickness when using the new scanning system, suggesting that this laser's potential impact, at the selected settings, covers all skin targets required to perform superficial or deep treatments on any dermatological issue. Finally, patients who have problems, such as morbid scar-deep complications, which affect their quality of life, are more likely to profit from this innovative technique.

摘要

多年来,完全消融性激光治疗,特别是使用二氧化碳(CO)激光进行的治疗,被视为换肤的金标准。本研究旨在评估一种新的 CO 扫描系统在治疗深层瘢痕时,通过具有更大真皮厚度的皮肤模型可以达到的深度。

使用 CO 分数激光和新的扫描系统对男性人体皮肤组织进行激光处理,所有样本均用 10%中性缓冲福尔马林固定,用一系列 crescent alcohol 进行脱水,嵌入石蜡,连续切片(4-5 µm 厚),用苏木精和伊红(H&E)染色,然后在光学显微镜下进行分析。

从表皮到下伏的乳头层和网状真皮,到真皮的不同深度,都观察到微损伤柱和凝固的胶原微柱。在较高能量水平(210 mJ/DOT)下,网状真皮完全穿透 6mm,导致更深的组织损伤。尽管激光可能穿透得更深,但皮肤会在那里停止,只留下脂肪和肌肉组织。

当使用新的扫描系统时,CO 激光系统可以穿透整个真皮厚度的真皮深层,这表明在选定的设置下,这种激光的潜在影响涵盖了执行任何皮肤问题的浅层或深层治疗所需的所有皮肤靶标。最后,患有病态瘢痕深层并发症等问题的患者,这些问题影响他们的生活质量,更有可能受益于这项创新技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6eaf/10301559/d3c06fdc345b/medicina-59-01117-g001.jpg

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