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Laser Doppler Blood Flow Imaging Using a CMOS Imaging Sensor with On-Chip Signal Processing

机译:使用具有片上信号处理功能的CMOS成像传感器进行激光多普勒血流成像

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The first fully integrated 2D CMOS imaging sensor with on-chip signal processing for applications in laser Doppler blood flow (LDBF) imaging has been designed and tested. To obtain a space efficient design over 64 × 64 pixels means that standard processing electronics used off-chip cannot be implemented. Therefore the analog signal processing at each pixel is a tailored design for LDBF signals with balanced optimization for signal-to-noise ratio and silicon area. This custom made sensor offers key advantages over conventional sensors, viz. the analog signal processing at the pixel level carries out signal normalization; the AC amplification in combination with an anti-aliasing filter allows analog-to-digital conversion with a low number of bits; low resource implementation of the digital processor enables on-chip processing and the data bottleneck that exists between the detector and processing electronics has been overcome. The sensor demonstrates good agreement with simulation at each design stage. The measured optical performance of the sensor is demonstrated using modulated light signals and in vivo blood flow experiments. Images showing blood flow changes with arterial occlusion and an inflammatory response to a histamine skin-prick demonstrate that the sensor array is capable of detecting blood flow signals from tissue.
机译:设计并测试了首个完全集成的2D CMOS成像传感器,该芯片具有片上信号处理功能,可用于激光多普勒血流(LDBF)成像。要获得超过64×64像素的节省空间的设计,就意味着无法实现片外使用的标准处理电子设备。因此,每个像素的模拟信号处理都是针对LDBF信号量身定制的设计,并针对信噪比和硅面积进行了平衡优化。与常规传感器相比,这种定制传感器具有关键优势。像素级的模拟信号处理进行信号归一化。交流放大与抗混叠滤波器相结合,可实现低位数的模数转换;数字处理器的低资源实现实现了片上处理,并且克服了检测器与处理电子设备之间存在的数据瓶颈。该传感器在每个设计阶段均与仿真显示出良好的一致性。使用调制的光信号和体内血流实验证明了传感器的光学性能。图像显示动脉阻塞引起的血流变化以及对组胺皮肤刺的炎症反应表明该传感器阵列能够检测来自组织的血流信号。

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