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A 32-channel frequency-domain fNIRS system based on silicon photomultiplier receivers

机译:基于硅光电倍增器接收器的32通道频域FNIRS系统

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Frequency-domain (FD) fNIRS is attractive for non-invasive brain imaging because phase-sensitive detection leads to increased resolution and may exhibit improved robustness to motion artifacts. We present an FD-fNIRS system with silicon photomultiplier (SiPM) receivers, where the sensitivity and dynamic range approach those of a first-class continuous-wave (CW-) fNIRS system. This represents a significant step toward fully exploiting the phase degree of freedom provided by FD-fNIRS. The transmitter subsystem includes 32 channels and each supplies 12.5 mW of coherent light at both 690 and 852 nm. A dedicated radio circuit intensity-modulates each laser, and they are independently configured to operate at frequencies up to 400 MHz. The transmitters are on-off-keyed according to a user-specified pattern to mitigate shot noise and maximize dynamic range. The receiver subsystem also includes 32 channels. Each consists of a large-area (2.16-mm diameter), high-NA (0.66) fiber bundle, which carries light to a custom photo-receiver. A three-lens assembly enhances coupling between the fiber-bundle and the SiPM, and the SiPM (ON Semiconductor MICRORB-10020) converts the signal to the electrical domain. The electrical signal is amplified and down-converted to the audio spectrum, and a transformer balances the signal and provides galvanic isolation. Each of the 32 audio waveforms is digitized at 192 kS/s in a bank of commercial audio digitizers. Using a modulation frequency of 211 MHz, swept-power measurements demonstrate that the average noise-equivalent power of the SiPM photo-receivers is 20.5 fW per square root Hz, with about 6 decades of optical dynamic range. This work was funded by a research contract under Facebook's Sponsored Academic Research Agreement.
机译:频域(FD)Fnirs对于非侵入性脑成像是有吸引力的,因为相敏检测导致分辨率的增加,并且可能表现出改善的运动伪影鲁棒性。我们介绍了一种具有硅光电倍增器(SIPM)接收器的FD-FNIR系统,其中灵敏度和动态范围接近一流的连续波(CW-)FNIR系统。这代表了充分利用FD-FNIR提供的自由度的重要步骤。发射器子系统包括32个通道,并且每个供应12.5mW的690和852nm。专用的无线电电路强度 - 调制每个激光器,它们独立地配置成在高达400 MHz的频率下操作。根据用户指定的模式,发射器是开关键控的,以减轻射击噪声并最大化动态范围。接收器子系统还包括32个通道。每个都包括大面积(直径为2.16毫米),高NA(0.66)纤维束,其向自定义照片接收器带来光线。三透镜组件增强了光纤束和SIPM之间的耦合,并且SIPM(在半导体微率-10020上)将信号转换为电域。电信号被放大和向下转换为音频频谱,变压器平衡信号并提供电流隔离。 32个音频波形中的每一个都在商业音频数字化器中的192 ks / s数字化。使用211 MHz的调制频率,扫描功率测量表明,SIPM光电接收器的平均噪声等效电源为每平方根Hz 20.5 FW,具有大约6数十年的光学动态范围。这项工作由Facebook赞助的学术研究协议下的研究合同提供资金。

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