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Determination of optical properties using improved frequency-resolved spectroscopy

机译:使用改进的频率分辨光谱法测定光学性质

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Abstract: Recently, much efforts and progress have been made in using steady state, time-domain and frequency-domain NIR technique to obtain tissue optical properties. We have developed a novel PMS system which can efficiently eliminate the phase-amplitude cross-talk along with a new algorithm to calculate $mu$-a$/ and $mu$-s$/$PRM of strong scattering media we measured. The PMS system consists of two master oscillators separated by a frequency at 25 khz. The two laser diodes (780 and 816 nm) are time shared by a small mirror excited by a 60 Hz chopper so that the phase detector can alternatively detects the response of the object in two wavelength. The output from phase meter is selected by an electronic switch, then filtered, amplified and sent to a computer. In order to eliminate phase-amplitude cross-talk, we designed a dynode feedback control circuit. Its purpose is to keep the amplitude signal from PMT to be constant so that the amplitude has less contribute to the phase shift. At the same time, phase output is corrected using a linear compensation circuit to eliminate the phase shift caused by the high voltage change. The optical bench tests showed the phase-amplitude cross-talk has been reduced to be very small. We did a series model experiments including ink, Introlipid and blood model to test the system. The results show very reasonable $mu$-a$/ and $mu$-s$/$PRM based on photon diffusion equations and algorithm. Next work is to apply it in clinic and measure the hemoglobin saturation change in tissues. !6
机译:【摘要】近年来,在利用稳态,时域和频域NIR技术获得组织光学特性方面已经取得了很大的努力和进展。我们已经开发了一种新颖的PMS系统,该系统可以有效消除相位振幅串扰,并提供了一种新算法来计算我们测得的强散射介质的μμ-a$ /和μμ-s$ / $ PRM。 PMS系统由两个主振荡器组成,它们之间的频率间隔为25 khz。两个激光二极管(780和816 nm)由60 Hz斩波器激发的小镜分时共享,因此相位检测器可以选择检测两个波长下物体的响应。相位计的输出由电子开关选择,然后进行滤波,放大并发送到计算机。为了消除相幅串扰,我们设计了倍增极反馈控制电路。其目的是使来自PMT的幅度信号保持恒定,以使幅度对相移的贡献较小。同时,使用线性补偿电路校正相位输出,以消除由高电压变化引起的相移。光具座测试表明,相振幅串扰已减小到很小。我们进行了一系列的模型实验,包括墨水,内脂和血液模型,以测试系统。结果表明,根据光子扩散方程和算法,非常合理的$ mu $ -a $ /和$ mu $ -s $ / $ PRM。下一步工作是将其应用于临床并测量组织中的血红蛋白饱和度变化。 !6

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