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Long-working-distance high-collection-efficiency three-photon microscopy for in vivo long-term imaging of zebrafish and organoids.


ABSTRACT: Zebrafish and organoids, crucial for complex biological studies, necessitate an imaging system with deep tissue penetration, sample protection from environmental interference, and ample operational space. Traditional three-photon microscopy is constrained by short-working-distance objectives and falls short. Our long-working-distance high-collection-efficiency three-photon microscopy (LH-3PM) addresses these challenges, achieving a 58% fluorescence collection efficiency at a 20 mm working distance. LH-3PM significantly outperforms existing three-photon systems equipped with the same long working distance objective, enhancing fluorescence collection and dramatically reducing phototoxicity and photobleaching. These improvements facilitate accurate capture of neuronal activity and an enhanced detection of activity spikes, which are vital for comprehensive, long-term imaging. LH-3PM's imaging of epileptic zebrafish not only showed sustained neuron activity over an hour but also highlighted increased neural synchronization and spike numbers, marking a notable shift in neural coding mechanisms. This breakthrough paves the way for new explorations of biological phenomena in small model organisms.

SUBMITTER: Deng P 

PROVIDER: S-EPMC11342284 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Long-working-distance high-collection-efficiency three-photon microscopy for <i>in vivo</i> long-term imaging of zebrafish and organoids.

Deng Peng P   Liu Shoupei S   Zhao Yaoguang Y   Zhang Xinxin X   Kong Yufei Y   Liu Linlin L   Xiao Yujie Y   Yang Shasha S   Hu Jiahao J   Su Jixiong J   Xuan Ang A   Xu Jinhong J   Li Huijuan H   Su Xiaoman X   Wu Jingchuan J   Jiang Yuli Y   Mu Yu Y   Shao Zhicheng Z   Kong Cihang C   Li Bo B  

iScience 20240719 8


Zebrafish and organoids, crucial for complex biological studies, necessitate an imaging system with deep tissue penetration, sample protection from environmental interference, and ample operational space. Traditional three-photon microscopy is constrained by short-working-distance objectives and falls short. Our long-working-distance high-collection-efficiency three-photon microscopy (LH-3PM) addresses these challenges, achieving a 58% fluorescence collection efficiency at a 20 mm working distan  ...[more]

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