Miniaturized head-mounted microscope for whole-cortex mesoscale imaging in freely behaving mice

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作者
Mathew L. Rynes
Daniel A. Surinach
Samantha Linn
Michael Laroque
Vijay Rajendran
Judith Dominguez
Orestes Hadjistamoulou
Zahra S. Navabi
Leila Ghanbari
Gregory W. Johnson
Mojtaba Nazari
Majid H. Mohajerani
Suhasa B. Kodandaramaiah
机构
[1] University of Minnesota,Department of Biomedical Engineering
[2] Twin Cities,Department of Mechanical Engineering
[3] University of Minnesota,Schools of Medicine
[4] Twin Cities,Department of Neuroscience, Canadian Centre for Behavioural Neuroscience
[5] University of Minnesota Medical School,Department of Neuroscience
[6] University of Lethbridge,undefined
[7] University of Minnesota,undefined
[8] Twin Cities,undefined
来源
Nature Methods | 2021年 / 18卷
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摘要
The advent of genetically encoded calcium indicators, along with surgical preparations such as thinned skulls or refractive-index-matched skulls, has enabled mesoscale cortical activity imaging in head-fixed mice. However, neural activity during unrestrained behavior substantially differs from neural activity in head-fixed animals. For whole-cortex imaging in freely behaving mice, we present the ‘mini-mScope’, a widefield, miniaturized, head-mounted fluorescence microscope that is compatible with transparent polymer skull preparations. With a field of view of 8 × 10 mm2 and weighing less than 4 g, the mini-mScope can image most of the mouse dorsal cortex with resolutions ranging from 39 to 56 µm. We used the mini-mScope to record mesoscale calcium activity across the dorsal cortex during sensory-evoked stimuli, open field behaviors, social interactions and transitions from wakefulness to sleep.
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页码:417 / 425
页数:8
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