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采用 8 抽头 CMOS 图像传感器的抗运动三波长空间频域成像系统,具有环境光抑制功能。

Motion-resistant three-wavelength spatial frequency domain imaging system with ambient light suppression using an 8-tap CMOS image sensor.

机构信息

Shizuoka University, Graduate School of Integrated Science and Technology, Hamamatsu, Japan.

Shizuoka University, Research Institution of Electronics, Hamamatsu, Japan.

出版信息

J Biomed Opt. 2024 Jan;29(1):016006. doi: 10.1117/1.JBO.29.1.016006. Epub 2024 Jan 18.

Abstract

SIGNIFICANCE

We present a motion-resistant three-wavelength spatial frequency domain imaging (SFDI) system with ambient light suppression using an 8-tap complementary metal-oxide semiconductor (CMOS) image sensor (CIS) developed at Shizuoka University. The system addresses limitations in conventional SFDI systems, enabling reliable measurements in challenging imaging scenarios that are closer to real-world conditions.

AIM

Our study demonstrates a three-wavelength SFDI system based on an 8-tap CIS. We demonstrate and evaluate the system's capability of mitigating motion artifacts and ambient light bias through tissue phantom reflectance experiments and volar forearm experiments.

APPROACH

We incorporated the Hilbert transform to reduce the required number of projected patterns per wavelength from three to two per spatial frequency. The 8-tap image sensor has eight charge storage diodes per pixel; therefore, simultaneous image acquisition of eight images based on multi-exposure is possible. Taking advantage of this feature, the sensor simultaneously acquires images for planar illumination, sinusoidal pattern projection at three wavelengths, and ambient light. The ambient light bias is eliminated by subtracting the ambient light image from the others. Motion artifacts are suppressed by reducing the exposure and projection time for each pattern while maintaining sufficient signal levels by repeating the exposure. The system is compared to a conventional SFDI system in tissue phantom experiments and then measurements of human volar forearms.

RESULTS

The 8-tap image sensor-based SFDI system achieved an acquisition rate of 9.4 frame sets per second, with three repeated exposures during each accumulation period. The diffuse reflectance maps of three different tissue phantoms using the conventional SFDI system and the 8-tap image sensor-based SFDI system showed good agreement except for high scattering phantoms. For the volar forearm measurements, our system successfully measured total hemoglobin concentration, tissue oxygen saturation, and reduced scattering coefficient maps of the subject during motion (16.5 cm/s) and under ambient light (28.9 lx), exhibiting fewer motion artifacts compared with the conventional SFDI.

CONCLUSIONS

We demonstrated the potential for motion-resistant three-wavelength SFDI system with ambient light suppression using an 8-tap CIS.

摘要

意义

我们展示了一种使用 Shizuoka 大学开发的 8 抽头互补金属氧化物半导体(CMOS)图像传感器(CIS)的抗运动三波长空间频域成像(SFDI)系统,该系统具有环境光抑制功能。该系统解决了传统 SFDI 系统的局限性,使在更接近实际情况的挑战性成像场景中进行可靠测量成为可能。

目的

本研究展示了一种基于 8 抽头 CIS 的三波长 SFDI 系统。我们通过组织体模反射实验和掌侧前臂实验来演示和评估该系统减轻运动伪影和环境光偏差的能力。

方法

我们结合了希尔伯特变换,将每个空间频率的每个波长所需的投影图案数量从三个减少到两个。8 抽头图像传感器每个像素有 8 个电荷存储二极管;因此,基于多曝光,同时可以采集 8 个图像。利用这一特性,传感器同时采集平面照明图像、三个波长的正弦图案投影和环境光图像。通过从其他图像中减去环境光图像,可以消除环境光偏差。通过减少每个图案的曝光和投影时间,同时通过重复曝光来保持足够的信号水平,可以抑制运动伪影。在组织体模实验中对该系统进行了比较,然后对人体掌侧前臂进行了测量。

结果

基于 8 抽头图像传感器的 SFDI 系统实现了 9.4 帧/秒的采集速度,在每个累积周期中进行三次重复曝光。使用传统 SFDI 系统和基于 8 抽头图像传感器的 SFDI 系统对三个不同组织体模的漫反射图谱进行了测量,除了高散射体模外,结果吻合良好。对于掌侧前臂测量,我们的系统成功地在运动(16.5 cm/s)和环境光(28.9 lx)下测量了受试者的总血红蛋白浓度、组织氧饱和度和还原散射系数图谱,与传统 SFDI 相比,运动伪影较少。

结论

我们展示了一种使用 8 抽头 CIS 的抗运动三波长 SFDI 系统和环境光抑制的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de8a/10795502/227b62f81651/JBO-029-016006-g001.jpg

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