首页> 美国卫生研究院文献>Biomedical Optics Express >The value of ultrahigh resolution OCT in dermatology - delineating the dermo-epidermal junction capillaries in the dermal papillae and vellus hairs
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The value of ultrahigh resolution OCT in dermatology - delineating the dermo-epidermal junction capillaries in the dermal papillae and vellus hairs

机译:超高分辨率OCT在皮肤病学中的价值-描绘真皮-表皮交界处真皮乳头中的毛细血管和绒毛

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摘要

Optical coherence tomography (OCT) imaging of the skin is gaining recognition and is increasingly applied to dermatological research. A key dermatological parameter inferred from an OCT image is the epidermal (Ep) thickness as a thickened Ep can be an indicator of a skin disease. Agreement in the literature on the signal characters of Ep and the subjacent skin layer, the dermis (D), is evident. Ambiguities of the OCT signal interpretation in the literature is however seen for the transition region between the Ep and D, which from histology is known as the dermo-epidermal junction (DEJ); a distinct junction comprised of the lower surface of a single cell layer in epidermis (the stratum basale) connected to an even thinner membrane (the basement membrane). The basement membrane is attached to the underlying dermis.In this work we investigate the impact of an improved axial and lateral resolution on the applicability of OCT for imaging of the skin. To this goal, OCT images are compared produced by a commercial OCT system (Vivosight from Michaelson Diagnostics) and by an in-house built ultrahigh resolution (UHR-) OCT system for dermatology.In 11 healthy volunteers, we investigate the DEJ signal characteristics. We perform a detailed analysis of the dark (low) signal band clearly seen for UHR-OCT in the DEJ region where we, by using a transition function, find the signal transition of axial sub-resolution character, which can be directly attributed to the exact location of DEJ, both in normal (thin/hairy) and glabrous (thick) skin. To our knowledge no detailed delineating of the DEJ in the UHR-OCT image has previously been reported, despite many publications within this field.For selected healthy volunteers, we investigate the dermal papillae and the vellus hairs and identify distinct features that only UHR-OCT can resolve. Differences are seen in tracing hairs of diameter below 20 μm, and in imaging the dermal papillae where, when utilising the UHR-OCT, capillary structures are identified in the hand palm, not previously reported in OCT studies and specifically for glabrous skin not reported in any other in vivo optical imaging studies.
机译:皮肤的光学相干断层扫描(OCT)成像已获得认可,并越来越多地应用于皮肤病学研究。从OCT图像推断出的关键皮肤病学参数是表皮(Ep)厚度,因为增厚的Ep可以指示皮肤疾病。在文献中,关于Ep和下面的皮肤层真皮(D)的信号特征的一致性是显而易见的。然而,在文献中可以看到,在Ep和D之间的过渡区域,OCT信号解释存在歧义,从组织学的角度来说,这是真皮-表皮交界处(DEJ)。一个明显的连接点,由表皮中的单个细胞层(基底层)的下表面组成,连接至甚至更薄的膜(基底膜)。基底膜附着在下面的真皮上。在这项工作中,我们研究了改善的轴向和横向分辨率对OCT在皮肤成像中的适用性的影响。为了达到这个目标,比较了商用OCT系统(来自Michaelson Diagnostics的Vivosight)和内部用于皮肤科的超高分辨率(UHR-)OCT系统产生的OCT图像。在11名健康志愿者中,我们研究了DEJ信号特征。我们对DEJ区域中UHR-OCT清晰可见的暗(低)信号带进行了详细分析,在该区域中,我们使用过渡函数找到了轴向亚分辨率特征的信号过渡,这可以直接归因于正常(薄/毛)和无毛(厚)皮肤中DEJ的确切位置。据我们所知,尽管在该领域有许多出版物,但以前尚未报道过在UHR-OCT图像中详细描述DEJ的情况。对于选定的健康志愿者,我们调查了真皮乳头和绒毛,并确定了仅UHR-OCT的独特特征可以解决。在描画直径小于20μm的头发以及对真皮乳头进行成像时会发现差异,在使用UHR-OCT时,在手掌中识别出毛细血管结构,OCT研究以前未曾报道过,特别是在UCT研究中未曾报道过任何其他体内光学成像研究。

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