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一种用于最小约束三维功能神经成像的宽视野、模块化、高密度扩散光学层析成像系统。

A wide field-of-view, modular, high-density diffuse optical tomography system for minimally constrained three-dimensional functional neuroimaging.

作者信息

Zhao Hubin, Brigadoi Sabrina, Chitnis Danial, Vita Enrico De, Castellaro Marco, Powell Samuel, Everdell Nicholas L, Cooper Robert J

机构信息

DOT-HUB, Biomedical Optics Research Laboratory, Department of Medical Physics and Biomedical Engineering, University College London, London, WC1E 6BT, UK.

Department of Developmental and Social Psychology, University of Padova, Padova, Italy.

出版信息

Biomed Opt Express. 2020 Jul 9;11(8):4110-4129. doi: 10.1364/BOE.394914. eCollection 2020 Aug 1.

Abstract

The ability to produce high-quality images of human brain function in any environment and during unconstrained movement of the subject has long been a goal of neuroimaging research. Diffuse optical tomography, which uses the intensity of back-scattered near-infrared light from multiple source-detector pairs to image changes in haemoglobin concentrations in the brain, is uniquely placed to achieve this goal. Here, we describe a new generation of modular, fibre-less, high-density diffuse optical tomography technology that provides exceptional sensitivity, a large dynamic range, a field-of-view sufficient to cover approximately one-third of the adult scalp, and also incorporates dedicated motion sensing into each module. Using in-vivo measures, we demonstrate a noise-equivalent power of 318 fW, and an effective dynamic range of 142 dB. We describe the application of this system to a novel somatomotor neuroimaging paradigm that involves subjects walking and texting on a smartphone. Our results demonstrate that wearable high-density diffuse optical tomography permits three-dimensional imaging of the human brain function during overt movement of the subject; images of somatomotor cortical activation can be obtained while subjects move in a relatively unconstrained manner, and these images are in good agreement with those obtained while the subjects remain stationary. The scalable nature of the technology we described here paves the way for the routine acquisition of high-quality, three-dimensional, whole-cortex diffuse optical tomography images of cerebral haemodynamics, both inside and outside of the laboratory environment, which has profound implications for neuroscience.

摘要

在任何环境下以及在受试者无约束运动期间生成高质量人脑功能图像的能力,长期以来一直是神经成像研究的目标。扩散光学断层扫描利用多个源探测器对的后向散射近红外光强度来成像大脑中血红蛋白浓度的变化,在实现这一目标方面具有独特优势。在此,我们描述了一种新一代的模块化、无光纤、高密度扩散光学断层扫描技术,该技术具有卓越的灵敏度、大动态范围、足以覆盖约三分之一成人头皮的视野,并且在每个模块中还集成了专用的运动传感功能。通过体内测量,我们展示了318飞瓦的噪声等效功率和142分贝的有效动态范围。我们描述了该系统在一种新型躯体运动神经成像范式中的应用,该范式涉及受试者在智能手机上行走和发短信。我们的结果表明,可穿戴高密度扩散光学断层扫描能够在受试者明显运动期间对人脑功能进行三维成像;在受试者以相对无约束的方式移动时,可以获得躯体运动皮层激活的图像,并且这些图像与受试者静止时获得的图像高度一致。我们在此描述的技术的可扩展性为在实验室环境内外常规获取高质量、三维、全皮层脑血流动力学扩散光学断层扫描图像铺平了道路,这对神经科学具有深远意义。

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