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Translation of two-photon microscopy to the clinic: multimodal multiphoton CARS tomography of in vivo human skin

机译:双光子显微镜到临床的翻译:体内人体皮肤的多峰多光子CARS层析成像

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摘要

Two-photon microscopes have been successfully translated into clinical imaging tools to obtain high-resolution optical biopsies for histology. We report on clinical multiphoton coherent anti-Stokes Raman spectroscopy (CARS) tomography based on two tunable ultrashort near-infrared laser beams for label-free multimodal skin imaging. The multiphoton biopsies were obtained with the compact tomograph “MPTflex-CARS” using a photonic crystal fiber, an optomechanical articulated arm, and a four-detector-360 deg measurement head. The multiphoton tomograph has been employed to patients in a hospital with diseased skin. The clinical study involved 16 subjects, 8 patients with atopic dermatitis, 4 patients with psoriasis vulgaris, and 4 volunteers served as control. Two-photon cellular autofluorescence lifetime, second harmonic generation (SHG) of collagen, and CARS of intratissue lipids/proteins have been detected with single-photon sensitivity, submicron spatial resolution, and picosecond temporal resolution. The most important signal was the autofluorescence from nicotinamide adenine dinucleotide [NAD(P)H]. The SHG signal from collagen was mainly used to detect the epidermal–dermal junction and to calculate the ratio elastin/collagen. The CARS/Raman signal provided add-on information. Based on this view on the disease-affected skin on a subcellular level, skin areas affected by dermatitis and by psoriasis could be clearly identified. Multimodal multiphoton tomographs may become important label-free clinical high-resolution imaging tools for skin histology to realize rapid early diagnosis as well as treatment control.
机译:两光子显微镜已成功地转换为临床成像工具,以获得用于组织学的高分辨率光学活检。我们报告基于两个可调超短近红外激光束的无标签多模式皮肤成像的临床多光子相干抗斯托克斯拉曼光谱(CARS)层析成像。使用紧凑型断层扫描仪“ MPTflex-CARS”,使用光子晶体光纤,光机械铰接臂和四探测器360度测量头获得多光子活组织检查。多光子断层扫描仪已被用于皮肤病医院的患者。临床研究包括16名受试者,8名特应性皮炎患者,4名寻常型牛皮癣患者和4名志愿者作为对照。具有单光子灵敏度,亚微米空间分辨率和皮秒时间分辨率的双光子细胞自发荧光寿命,胶原蛋白的二次谐波生成(SHG)和组织内脂质/蛋白质的CARS已被检测到。最重要的信号是烟酰胺腺嘌呤二核苷酸[NAD(P)H]的自发荧光。胶原蛋白产生的SHG信号主要用于检测表皮与真皮的连接并计算弹性蛋白/胶原蛋白的比率。 CARS /拉曼信号提供了附加信息。基于这种在亚细胞水平上受疾病影响的皮肤的观点,可以清楚地确定受皮炎和牛皮癣影响的皮肤区域。多峰多光子断层扫描仪可能成为重要的无标签临床高分辨率成像工具,用于皮肤组织学,以实现快速的早期诊断和治疗控制。

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