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Time-gated in vivo autofluorescence imaging of dental caries.

机译:龋齿的时间门控体内自体荧光成像。

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Laser-induced time-resolved autofluorescence from carious lesions of human teeth was studied by means of ultrashort pulsed laser systems, time-correlated single photon counting and time-gated imaging. Carious regions exhibited a slower fluorescence decay with a main 17 ns fluorescence lifetime than healthy hard dental tissue. The long-lived fluorophore present in carious lesions only emits in the red spectral region. Fluorescence decay time and spectral characteristics are typical of fluorescent metal-free porphyrin monomers. The spatial distribution of the long-lived endogenous porphyrin fluorophore within the tooth material was detected by time-gated nanosecond autofluorescence imaging. In particular, high contrast video images were obtained with an appropriate time delay of 15 ns to 25 ns between excitation and detection due to the suppression of short-lived autofluorescence of healthy tissue. First in vivo applications are reported indicating the potential of time-resolved fluorescence diagnostics for early caries- and dental plaque detection.
机译:利用超短脉冲激光系统,时间相关的单光子计数和时间门控成像技术研究了激光诱导的人牙龋齿的时间分辨自发荧光。与健康的硬牙组织相比,龋齿区域的荧光衰减较慢,主要荧光寿命为17 ns。龋齿病变中存在的长寿命荧光团仅在红色光谱区域内发射。不含荧光金属的卟啉单体的典型荧光衰减时间和光谱特性。通过时间门控纳秒自发荧光成像检测牙齿材料中长寿命内源性卟啉荧光团的空间分布。特别地,由于抑制了健康组织的短时自发荧光,因此在激发和检测之间具有15 ns到25 ns的适当时间延迟的情况下获得了高对比度的视频图像。据报道,首次在体内的应用表明时间分辨荧光诊断技术可用于早期龋齿和牙菌斑检测。

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