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Fiber-optic implant for simultaneous fluorescence-based calcium recordings and BOLD fMRI in mice

机译:用于同时荧光的钙录制和小鼠大胆FMRI的纤维 - 光学植入物

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摘要

Despite the growing popularity of blood oxygen level-dependent (BOLD) functional MRI (fMRI), understanding of its underlying principles is still limited. This protocol describes a technique for simultaneous measurement of neural activity using fluorescent calcium indicators together with the corresponding hemodynamic BOLD fMRI response in the mouse brain. Our early work using small-molecule fluorophores in rats gave encouraging results but was limited to acute measurements using synthetic dyes. Our latest procedure combines fMRI with optical detection of cell-type-specific virally delivered GCaMP6, a genetically encoded calcium indicator (GECI). GCaMP6 fluorescence, which increases upon calcium binding, is collected by a chronically implanted optical fiber, allowing longitudinal studies in mice. The chronic implant, placed horizontally on the skull, has an angulated tip that reflects light into the brain and is connected via fiber optics to a remote optical setup. The technique allows access to the neocortex and does not require adaptations of commercial MRI hardware. The hybrid approach permits fiber-optic calcium recordings with simultaneous artifact-free BOLD fMRI with full brain coverage and 1-s temporal resolution using standard gradient-echo echo-planar imaging (GE-EPI) sequences. The method provides robust, cell-type-specific readouts to link neural activity to BOLD signals, as emonstrated for task-free ('resting-state') conditions and in response to hind-paw stimulation. These results highlight the power of fiber photometry combined with fMRI, which we aim to further advance in this protocol. The approach can be easily adapted to study other molecular processes using suitable fluorescent indicators.
机译:尽管血氧水平越来越普及(粗体)功能MRI(FMRI),但仍然有限地了解其潜在原则。该方案描述了一种用荧光钙指标同时测量神经活性,以及​​小鼠脑中的相应血流动力学大胆FMRI响应。我们在大鼠中使用小分子荧光团的早期作品给出了令人鼓舞的结果,但仅限于使用合成染料的急性测量。我们的最新过程将FMRI与光学检测结合了细胞类型特异性病毒传递GCAMP6,遗传编码的钙指示器(GECI)。通过慢性植入的光纤收集在钙结合时增加的GCAMP6荧光,允许小鼠纵向研究。慢性植入物水平放置在颅骨上,具有角度尖端,其将光反射到大脑中并通过光纤连接到远程光学设置。该技术允许访问Neocortex,不需要对商业MRI硬件的调整。混合方法允许使用标准梯度回波平面成像(GE-EPI)序列的具有全脑覆盖和1秒的无脑覆盖和1秒时间分辨率的纤维光学钙记录。该方法提供了鲁棒,细胞类型特定读数,以将神经活动链接到粗体信号,例如为无任务('休息状态')条件和响应后爪刺激而产生的粗体活动。这些结果突出了光纤光度法与FMRI相结合的功率,我们的目标是进一步进一步推进本协议。该方法可以容易地适于使用合适的荧光指示剂研究其他分子过程。

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