首页> 外文期刊>Journal of Neuroscience Methods >Ultrafast random-access scanning in two-photon microscopy using acousto-optic deflectors.
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Ultrafast random-access scanning in two-photon microscopy using acousto-optic deflectors.

机译:使用声光偏转器在双光子显微镜中进行超快速随机访问扫描。

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Two-photon scanning microscopy (TPSM) is a powerful tool for imaging deep inside living tissues with sub-cellular resolution. The temporal resolution of TPSM is however strongly limited by the galvanometric mirrors used to steer the laser beam. Fast physiological events can therefore only be followed by scanning repeatedly a single line within the field of view. Because acousto-optic deflectors (AODs) are non-mechanical devices, they allow access at any point within the field of view on a microsecond time scale and are therefore excellent candidates to improve the temporal resolution of TPSM. However, the use of AOD-based scanners with femtosecond pulses raises several technical difficulties. In this paper, we describe an all-digital TPSM setup based on two crossed AODs. It includes in particular an acousto-optic modulator (AOM) placed at 45 degrees with respect to the AODs to pre-compensate for the large spatial distortions of femtosecond pulses occurring in the AODs, in order to optimize the spatial resolution and the fluorescence excitation. Our setup allows recording from freely selectable point-of-interest at high speed (1kHz). By maximizing the time spent on points of interest, random-access TPSM (RA-TPSM) constitutes a promising method for multiunit recordings with millisecond resolution in biological tissues.
机译:两光子扫描显微镜(TPSM)是一种功能强大的工具,可通过亚细胞分辨率对活组织的内部进行成像。但是,TPSM的时间分辨率受到用于操纵激光束的检流镜的强烈限制。因此,快速的生理事件只能通过在视野内重复扫描一条直线来进行。由于声光偏转器(AOD)是非机械设备,因此它们可以在微秒级的时间范围内在视场内的任何位置进行访问,因此是提高TPSM时间分辨率的极佳选择。但是,使用飞秒脉冲的基于AOD的扫描仪会带来一些技术难题。在本文中,我们描述了基于两个交叉AOD的全数字TPSM设置。它特别包括相对于AOD呈45度放置的声光调制器(AOM),以预先补偿AOD中出现的飞秒脉冲的大空间畸变,从而优化空间分辨率和荧光激发。我们的设置允许从自由选择的兴趣点以高速(1kHz)进行录制。通过最大化花费在兴趣点上的时间,随机访问TPSM(RA-TPSM)构成了一种在生物组织中以毫秒级分辨率进行多单元记录的有前途的方法。

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