Boston University, Department of Biomedical Engineering, Boston, Massachusetts, United States.
J Biomed Opt. 2017 Mar 1;22(3):36009. doi: 10.1117/1.JBO.22.3.036009.
Frequency-domain diffuse optical spectroscopy (FD-DOS) utilizes intensity-modulated light to characterize optical scattering and absorption in thick tissue. Previous FD-DOS systems have been limited by large device footprints, complex electronics, high costs, and limited acquisition speeds, all of which complicate access to patients in the clinical setting. We have developed a new digital DOS (dDOS) system, which is relatively compact and inexpensive, allowing for simplified clinical use, while providing unprecedented measurement speeds. The dDOS system utilizes hardware-integrated custom board-level direct digital synthesizers and an analog-to-digital converter to generate frequency sweeps and directly measure signals utilizing undersampling at six wavelengths modulated at discrete frequencies from 50 to 400 MHz. Wavelength multiplexing is utilized to achieve broadband frequency sweep measurements acquired at over 97 Hz. When compared to a gold-standard DOS system, the accuracy of optical properties recovered with the dDOS system was within 5.3% and 5.5% for absorption and reduced scattering coefficient extractions, respectively. When tested in vivo, the dDOS system was able to detect physiological changes throughout the cardiac cycle. The new FD-dDOS system is fast, inexpensive, and compact without compromising measurement quality.
频域漫射光学光谱(FD-DOS)利用强度调制光来描述厚组织中的光散射和吸收。以前的 FD-DOS 系统受到设备占地面积大、电子设备复杂、成本高和采集速度有限等因素的限制,所有这些都使得在临床环境中为患者提供服务变得复杂。我们开发了一种新的数字 DOS(dDOS)系统,它相对紧凑且价格低廉,允许简化临床使用,同时提供前所未有的测量速度。dDOS 系统利用硬件集成的定制电路板级直接数字合成器和模数转换器来生成频率扫描,并直接利用离散频率从 50MHz 到 400MHz 调制的六个波长的欠采样来测量信号。利用波长复用实现了在 97Hz 以上的宽带频率扫描测量。与金标准 DOS 系统相比,dDOS 系统恢复的光特性的准确性在吸收和散射系数提取方面分别在 5.3%和 5.5%以内。在体内测试时,dDOS 系统能够检测到整个心动周期的生理变化。新的 FD-DOS 系统快速、廉价且紧凑,而不会降低测量质量。