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Wide-field in vivo neocortical calcium dye imaging using a convection-enhanced loading technique combined with simultaneous multiwavelength imaging of voltage-sensitive dyes and hemodynamic signals

机译:使用对流增强加载技术结合电压敏感染料和血液动力学信号的同时多波长成像的宽视场体内新皮质钙染料成像

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摘要

Abstract. In vivo calcium imaging is an incredibly powerful technique that provides simultaneous information on fast neuronal events, such as action potentials and subthreshold synaptic activity, as well as slower events that occur in the glia and surrounding neuropil. Bulk-loading methods that involve multiple injections can be used for single-cell as well as wide-field imaging studies. However, multiple injections result in inhomogeneous loading as well as multiple sites of potential cortical injury. We used convection-enhanced delivery to create smooth, continuous loading of a large area of the cortical surface through a solitary injection site and demonstrated the efficacy of the technique using confocal microscopy imaging of single cells and physiological responses to single-trial events of spontaneous activity, somatosensory-evoked potentials, and epileptiform events. Combinations of calcium imaging with voltage-sensitive dye and intrinsic signal imaging demonstrate the utility of this technique in neurovascular coupling investigations. Convection-enhanced loading of calcium dyes may be a useful technique to advance the study of cortical processing when widespread loading of a wide-field imaging is required.
机译:抽象。体内钙成像技术是一种非常强大的技术,可提供有关快速神经元事件(例如动作电位和阈下突触活性)以及神经胶质细胞和周围神经纤维丛中发生的较慢事件的同步信息。涉及多次进样的批量加载方法可用于单细胞以及宽视野成像研究。然而,多次注射导致不均匀的负载以及潜在的皮质损伤的多个部位。我们使用对流增强的递送,通过一个单独的注射部位,使大面积的皮层表面光滑,连续地加载,并使用共聚焦显微镜对单个细胞成像以及对自发活动的单次事件的生理反应证明了该技术的有效性,体感诱发电位和癫痫样事件。钙成像与压敏染料和固有信号成像的结合证明了该技术在神经血管耦合研究中的实用性。当需要广谱成像的广泛负载时,对流增强的钙染料负载量可能是一种有用的技术,可以促进对皮层处理的研究。

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