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利用混合宽带(600 - 1200纳米)漫射光学和相关光谱技术对人体骨骼进行体内无创表征

In Vivo, Non-Invasive Characterization of Human Bone by Hybrid Broadband (600-1200 nm) Diffuse Optical and Correlation Spectroscopies.

作者信息

Konugolu Venkata Sekar Sanathana, Pagliazzi Marco, Negredo Eugènia, Martelli Fabrizio, Farina Andrea, Dalla Mora Alberto, Lindner Claus, Farzam Parisa, Pérez-Álvarez Núria, Puig Jordi, Taroni Paola, Pifferi Antonio, Durduran Turgut

机构信息

Dipartimento di Fisica, Politecnico di Milano, Milano, Italy.

ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, Castelldefels, Barcelona, Spain.

出版信息

PLoS One. 2016 Dec 20;11(12):e0168426. doi: 10.1371/journal.pone.0168426. eCollection 2016.

Abstract

Non-invasive in vivo diffuse optical characterization of human bone opens a new possibility of diagnosing bone related pathologies. We present an in vivo characterization performed on seventeen healthy subjects at six different superficial bone locations: radius distal, radius proximal, ulna distal, ulna proximal, trochanter and calcaneus. A tailored diffuse optical protocol for high penetration depth combined with the rather superficial nature of considered tissues ensured the effective probing of the bone tissue. Measurements were performed using a broadband system for Time-Resolved Diffuse Optical Spectroscopy (TRS) to assess mean absorption and reduced scattering spectra in the 600-1200 nm range and Diffuse Correlation Spectroscopy (DCS) to monitor microvascular blood flow. Significant variations among tissue constituents were found between different locations; with radius distal rich of collagen, suggesting it as a prominent location for bone related measurements, and calcaneus bone having highest blood flow among the body locations being considered. By using TRS and DCS together, we are able to probe the perfusion and oxygen consumption of the tissue without any contrast agents. Therefore, we predict that these methods will be able to evaluate the impairment of the oxygen metabolism of the bone at the point-of-care.

摘要

人体骨骼的无创体内漫射光学特性分析为诊断与骨骼相关的病症开辟了新的可能性。我们对17名健康受试者的六个不同浅表骨骼部位进行了体内特性分析,这些部位包括:桡骨远端、桡骨近端、尺骨远端、尺骨近端、转子和跟骨。针对高穿透深度定制的漫射光学方案,结合所考虑组织相对浅表的特性,确保了对骨组织的有效探测。测量使用宽带时间分辨漫射光学光谱(TRS)系统进行,以评估600 - 1200纳米范围内的平均吸收光谱和约化散射光谱,并使用漫射相关光谱(DCS)监测微血管血流。在不同部位之间发现了组织成分的显著差异;桡骨远端富含胶原蛋白,表明它是进行骨骼相关测量的一个突出部位,而在所考虑的身体部位中,跟骨的血流最高。通过同时使用TRS和DCS,我们能够在不使用任何造影剂的情况下探测组织的灌注和氧消耗。因此,我们预测这些方法将能够在护理点评估骨骼氧代谢的损伤情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dcf/5172608/6c6e3d57480c/pone.0168426.g002.jpg

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