钙显像
帧速率
树突棘
神经科学家
分辨率(逻辑)
光学
亮度
显微镜
双光子激发显微术
时间分辨率
显微镜
神经科学
钙
材料科学
物理
人工智能
计算机科学
生物
髓鞘
冶金
海马结构
中枢神经系统
荧光
少突胶质细胞
作者
Rongwen Lu,Wenzhi Sun,Yajie Liang,Aaron Kerlin,Jens Bierfeld,Johannes D. Seelig,Daniel E. Wilson,Benjamin Scholl,Boaz Mohar,Masashi Tanimoto,Minoru Koyama,David Fitzpatrick,Michael B. Orger,Na Ji
摘要
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the calcium transients associated with their activity requires volume imaging methods with subsecond temporal resolution. Such speed is a challenge for conventional two-photon laser-scanning microscopy, because it depends on serial focal scanning in 3D and indicators with limited brightness. Here we present an optical module that is easily integrated into standard two-photon laser-scanning microscopes to generate an axially elongated Bessel focus, which when scanned in 2D turns frame rate into volume rate. We demonstrated the power of this approach in enabling discoveries for neurobiology by imaging the calcium dynamics of volumes of neurons and synapses in fruit flies, zebrafish larvae, mice and ferrets in vivo. Calcium signals in objects as small as dendritic spines could be resolved at video rates, provided that the samples were sparsely labeled to limit overlap in their axially projected images.
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