Power Rory M, Schlaeppi Anjalie, Huisken Jan
Morgridge Institute for Research, 330 N Orchard St, Madison, WI 53715, USA.
EMBL Imaging Centre EMBL Heidelberg, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Biomed Opt Express. 2023 Mar 7;14(4):1445-1459. doi: 10.1364/BOE.476217. eCollection 2023 Apr 1.
We present an elegant scheme for providing multi-directional illumination in selective plane illumination microscopy (SPIM). Light sheets can be delivered from one of two opposed directions at a time and pivoted about their center for efficient stripe artifact suppression using only a single galvanometric scanning mirror to perform both functions. The scheme results in a much smaller instrument footprint and allows multi-directional illumination with reduced expense compared with comparable schemes. Switching between the illumination paths is near instantaneous and the whole-plane illumination scheme of SPIM maintains the lowest rates of photodamage, which is often sacrificed by other recently reported destriping strategies. The ease of synchronization allows this scheme to be used at higher speeds than resonant mirrors typically used in this regard. We provide validation of this approach in the dynamic environment of the zebrafish beating heart, where imaging at up to 800 frames per second is demonstrated alongside efficient suppression of artifacts.
我们提出了一种用于选择性平面照明显微镜(SPIM)中提供多向照明的精巧方案。光片每次可从两个相对方向之一输送,并围绕其中心枢转,仅使用一个振镜扫描镜来执行这两种功能,以有效抑制条纹伪影。与同类方案相比,该方案使仪器占地面积小得多,并能以更低成本实现多向照明。照明路径之间的切换近乎即时,并且SPIM的全平面照明方案保持了最低的光损伤率,而这一点常常被其他最近报道的去条纹策略所牺牲。易于同步使得该方案能够以比通常用于此的共振镜更高的速度使用。我们在斑马鱼跳动心脏的动态环境中对这种方法进行了验证,展示了每秒高达800帧的成像以及对伪影的有效抑制。