Ferocino Edoardo, Martinenghi Edoardo, Dalla Mora Alberto, Pifferi Antonio, Cubeddu Rinaldo, Taroni Paola
Politecnico di Milano, Department of Physics, Piazza Leonardo da Vinci, 32, 20133, Milan, Italy.
CNR-Istituto di Fotonica e Nanotecnologie, Piazza Leonardo da Vinci, 32, 20133, Milan, Italy.
Biomed Opt Express. 2018 Jan 23;9(2):755-770. doi: 10.1364/BOE.9.000755. eCollection 2018 Feb 1.
A novel detection chain, based on 8 Silicon Photomultipliers (forming a wide-area custom-made detection probe) and on a time-to-digital converter, was developed to improve the signal level in multi-wavelength (635-1060 nm) time domain optical mammography. The performances of individual components and of the overall chain were assessed using established protocols (BIP and MEDPHOT). The photon detection efficiency was improved by up to 3 orders of magnitude, and the maximum count rate level was increased by a factor of 10 when compared to the previous system, based on photomultiplier tubes and conventional time-correlated single-photon counting boards. In the estimate of optical parameters, the novel detection chain provides performances comparable to the previous system, widely validated in clinics, but with higher signal level, higher robustness, and at a lower price per channel, thus targeting important requirements for clinical applications.
为了提高多波长(635 - 1060纳米)时域光学乳腺成像中的信号水平,开发了一种基于8个硅光电倍增管(形成一个定制的大面积探测探头)和一个时间数字转换器的新型探测链。使用既定协议(BIP和MEDPHOT)评估了各个组件以及整个探测链的性能。与基于光电倍增管和传统时间相关单光子计数板的先前系统相比,光子探测效率提高了多达3个数量级,最大计数率水平提高了10倍。在光学参数估计方面,新型探测链提供的性能与先前在临床上广泛验证的系统相当,但具有更高的信号水平、更高的稳健性,且每通道价格更低,从而满足了临床应用的重要要求。