Virginia Tech, Mechanical Engineering, MC-0298 ICTAS Building, Stanger Street, Blacksburg, Virginia 24061, USA.
J Biomed Opt. 2009 Nov-Dec;14(6):064019. doi: 10.1117/1.3268441.
We report results of a study to evaluate effectiveness of a mechanical tissue optical clearing device (TOCD) using optical coherence tomography (OCT). The TOCD uses a pin array and vacuum pressure source to compress localized regions of the skin surface. OCT images (850 and 1310 nm) of in vivo human skin indicate application of the TOCD provides an up to threefold increased light penetration depth at spatial positions correlated with pin indentations. Increased contrast of the epidermal-dermal junction in OCT images spatially correlates with indented zones. OCT M-scans recorded while applying the TOCD indicate optical penetration depth monotonically increased, with most improvement at early times (5 to 10 s) of TOCD vacuum application. OCT M-scans of ex vivo porcine skin compressed using the TOCD suggest average group refractive index of the tissue increased, corresponding to a decrease in water concentration. Results of our study indicate that mechanical optical clearing of skin may provide an effective and efficient means to deliver increased light fluence to dermal and subdermal regions.
我们报告了一项使用光学相干断层扫描(OCT)评估机械组织光透明设备(TOCD)有效性的研究结果。TOCD 使用针阵列和真空压力源压缩皮肤表面的局部区域。体内人体皮肤的 OCT 图像(850nm 和 1310nm)表明,TOCD 的应用在与针压痕相关的空间位置提供了高达三倍的光穿透深度增加。OCT 图像中表皮-真皮交界处的对比度与压痕区域空间相关。在应用 TOCD 时记录的 OCT M 扫描表明,光学穿透深度单调增加,在 TOCD 真空应用的早期(5 到 10 秒)有最大的改善。使用 TOCD 压缩的离体猪皮的 OCT M 扫描表明,组织的平均群折射率增加,对应于水浓度的降低。我们的研究结果表明,皮肤的机械光学透明化可能提供一种有效和高效的手段,将增加的光通量输送到真皮和皮下区域。