A Low-Power and Wide Dynamic Range Digital Pixel Sensor for Intrinsic Optical Imaging in Image-Guided Neurosurgery and Neocortical Epilepsy

Q3 Health Professions
Yasin Salehifar, A. Ayatollahi, Mohammad Azim Karami, Mahzad Pirghayesh Ghurshagh
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引用次数: 0

Abstract

Purpose: Determining the borders of brain tumors, seizure foci, and their elimination in patients with brain tumors is very important in preventing cancer recurrence. Multispectral Optical Intrinsic Signal Imaging (MS-OISI) image-guided neurosurgery using visible-Near-Infrared (NIR) wavelengths have shown great potential for image-guided neurosurgery. One of the main challenges is the need for low-power consumption, high-speed and above 100dB dynamic range to capture both visible and NIR photons. The overarching goal of this work is to create a Digital Pixel Sensor (DPS) as a Complementary Metal-Oxide-Semiconductor (CMOS) camera for MS-OISI of the brain in image-guided neurosurgery that has a wide dynamic range, low power consumption, and high speed. Materials and Methods: The general view of neurosurgical system, DPS, and circuit operation of conventional Pulsed Frequency Modulation (PFM) DPS are given first. The proposed PFM DPS and circuit implementation are shown, as well as simulation results obtained using a circuit simulator. Finally, a comparison with other similar works is given. Results: The proposed pixel simulation results show that the performance parameters such as dynamic range and power consumption has improved in comparison to similar works. However, due to its complicated circuitry, it has a low spatial resolution, which can be compensated. Conclusion: The image sensor is post-layout simulated in 0.18μm CMOS technology with a 1.3V supply voltage, resulting in 140dB dynamic range and 7.69μW power dissipation with a 11% fill factor. The key novelty for the proposed PFM DPS is: in-pixel Analog-to-Digital Conversion (ADC), using a low voltage and high-speed dynamic comparator. Furthermore, this work uses a self-reset mechanism, which eliminates the need for an external pulse source, as well as variable reference voltage, which eliminates the necessity for a global constant reference voltage. All of these features demonstrate the excellent potential of the proposed pixel for MS-OISI image-guided neurosurgery.
用于图像引导神经外科和新皮质癫痫的内禀光学成像的低功耗和宽动态范围数字像素传感器
目的:确定脑肿瘤患者的肿瘤边界、癫痫病灶及其消除对预防肿瘤复发具有重要意义。利用可见-近红外(NIR)波长的多光谱光学固有信号成像(MS-OISI)图像引导神经外科在图像引导神经外科中显示出巨大的潜力。主要挑战之一是需要低功耗,高速和100dB以上的动态范围来捕获可见光和近红外光子。这项工作的总体目标是创建一个数字像素传感器(DPS)作为互补金属氧化物半导体(CMOS)相机,用于图像引导神经外科中大脑的MS-OISI,具有宽动态范围,低功耗和高速度。材料与方法:首先介绍了神经外科系统、脉冲频率调制(PFM) DPS的概况,以及常规脉冲频率调制DPS的电路操作。给出了所提出的PFM DPS和电路实现,并利用电路模拟器获得了仿真结果。最后,与其他同类作品进行了比较。结果:所提出的像素仿真结果表明,动态范围和功耗等性能参数与同类作品相比有所提高。但由于其电路复杂,空间分辨率较低,可以进行补偿。结论:该图像传感器采用0.18μm CMOS工艺,在1.3V电源电压下进行后置仿真,动态范围为140dB,功耗为7.69μW,填充系数为11%。提出的PFM DPS的关键新颖之处在于:像素内模数转换(ADC),使用低电压和高速动态比较器。此外,这项工作使用了自复位机制,从而消除了对外部脉冲源的需求,以及可变参考电压,从而消除了对全局恒定参考电压的需求。所有这些特征都证明了所提出的像素在MS-OISI图像引导神经外科手术中的良好潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Biomedical Technologies
Frontiers in Biomedical Technologies Health Professions-Medical Laboratory Technology
CiteScore
0.80
自引率
0.00%
发文量
34
审稿时长
12 weeks
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