Literature DB >> 31798848

MATRIEX imaging: multiarea two-photon real-time in vivo explorer.

Mengke Yang1,2,3, Zhenqiao Zhou3, Jianxiong Zhang4, Shanshan Jia4, Tong Li4, Jiangheng Guan4, Xiang Liao5, Bing Leng3, Jing Lyu3, Kuan Zhang4, Min Li3, Yan Gong3, Zhiming Zhu6, Junan Yan7, Yi Zhou7, Jian K Liu8, Zsuzsanna Varga9, Arthur Konnerth9, Yuguo Tang3, Jinsong Gao1, Xiaowei Chen4, Hongbo Jia3,9.   

Abstract

Two-photon laser scanning microscopy has been extensively applied to study in vivo neuronal activity at cellular and subcellular resolutions in mammalian brains. However, the extent of such studies is typically confined to a single functional region of the brain. Here, we demonstrate a novel technique, termed the multiarea two-photon real-time in vivo explorer (MATRIEX), that allows the user to target multiple functional brain regions distributed within a zone of up to 12 mm in diameter, each with a field of view (FOV) of ~200 μm in diameter, thus performing two-photon Ca2+ imaging with single-cell resolution in all of the regions simultaneously. For example, we demonstrate real-time functional imaging of single-neuron activities in the primary visual cortex, primary motor cortex and hippocampal CA1 region of mice in both anesthetized and awake states. A unique advantage of the MATRIEX technique is the configuration of multiple microscopic FOVs that are distributed in three-dimensional space over macroscopic distances (>1 mm) both laterally and axially but that are imaged by a single conventional laser scanning device. In particular, the MATRIEX technique can be effectively implemented as an add-on optical module for an existing conventional single-beam-scanning two-photon microscope without requiring any modification to the microscope itself. Thus, the MATRIEX technique can be readily applied to substantially facilitate the exploration of multiarea neuronal activity in vivo for studies of brain-wide neural circuit function with single-cell resolution.
© The Author(s) 2019.

Entities:  

Keywords:  Ca2+ imaging; Multiphoton microscopy

Year:  2019        PMID: 31798848      PMCID: PMC6881438          DOI: 10.1038/s41377-019-0219-x

Source DB:  PubMed          Journal:  Light Sci Appl        ISSN: 2047-7538            Impact factor:   17.782


  38 in total

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Journal:  Nat Methods       Date:  2012-01-08       Impact factor: 28.547

2.  In vivo two-photon imaging of sensory-evoked dendritic calcium signals in cortical neurons.

Authors:  Hongbo Jia; Nathalie L Rochefort; Xiaowei Chen; Arthur Konnerth
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3.  Ultra-large field-of-view two-photon microscopy.

Authors:  Philbert S Tsai; Celine Mateo; Jeffrey J Field; Chris B Schaffer; Matthew E Anderson; David Kleinfeld
Journal:  Opt Express       Date:  2015-06-01       Impact factor: 3.894

4.  Primary Auditory Cortex is Required for Anticipatory Motor Response.

Authors:  Jingcheng Li; Xiang Liao; Jianxiong Zhang; Meng Wang; Nian Yang; Jun Zhang; Guanghui Lv; Haohong Li; Jian Lu; Ran Ding; Xingyi Li; Yu Guang; Zhiqi Yang; Han Qin; Wenjun Jin; Kuan Zhang; Chao He; Hongbo Jia; Shaoqun Zeng; Zhian Hu; Israel Nelken; Xiaowei Chen
Journal:  Cereb Cortex       Date:  2017-06-01       Impact factor: 5.357

5.  NeuroSeg: automated cell detection and segmentation for in vivo two-photon Ca2+ imaging data.

Authors:  Jiangheng Guan; Jingcheng Li; Shanshan Liang; Ruijie Li; Xingyi Li; Xiaozhe Shi; Ciyu Huang; Jianxiong Zhang; Junxia Pan; Hongbo Jia; Le Zhang; Xiaowei Chen; Xiang Liao
Journal:  Brain Struct Funct       Date:  2017-11-09       Impact factor: 3.270

6.  A Dedicated Population for Reward Coding in the Hippocampus.

Authors:  Jeffrey L Gauthier; David W Tank
Journal:  Neuron       Date:  2018-06-28       Impact factor: 17.173

7.  Simultaneous two-photon calcium imaging at different depths with spatiotemporal multiplexing.

Authors:  Adrian Cheng; J Tiago Gonçalves; Peyman Golshani; Katsushi Arisaka; Carlos Portera-Cailliau
Journal:  Nat Methods       Date:  2011-01-09       Impact factor: 28.547

8.  Super-wide-field two-photon imaging with a micro-optical device moving in post-objective space.

Authors:  Shin-Ichiro Terada; Kenta Kobayashi; Masamichi Ohkura; Junichi Nakai; Masanori Matsuzaki
Journal:  Nat Commun       Date:  2018-09-03       Impact factor: 14.919

9.  Wide field-of-view, multi-region, two-photon imaging of neuronal activity in the mammalian brain.

Authors:  Jeffrey N Stirman; Ikuko T Smith; Michael W Kudenov; Spencer L Smith
Journal:  Nat Biotechnol       Date:  2016-06-27       Impact factor: 54.908

10.  Three-photon imaging of mouse brain structure and function through the intact skull.

Authors:  Tianyu Wang; Dimitre G Ouzounov; Chunyan Wu; Nicholas G Horton; Bin Zhang; Cheng-Hsun Wu; Yanping Zhang; Mark J Schnitzer; Chris Xu
Journal:  Nat Methods       Date:  2018-09-10       Impact factor: 28.547

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Authors:  Ahmed S Abdelfattah; Sapna Ahuja; Taner Akkin; Srinivasa Rao Allu; Joshua Brake; David A Boas; Erin M Buckley; Robert E Campbell; Anderson I Chen; Xiaojun Cheng; Tomáš Čižmár; Irene Costantini; Massimo De Vittorio; Anna Devor; Patrick R Doran; Mirna El Khatib; Valentina Emiliani; Natalie Fomin-Thunemann; Yeshaiahu Fainman; Tomas Fernandez-Alfonso; Christopher G L Ferri; Ariel Gilad; Xue Han; Andrew Harris; Elizabeth M C Hillman; Ute Hochgeschwender; Matthew G Holt; Na Ji; Kıvılcım Kılıç; Evelyn M R Lake; Lei Li; Tianqi Li; Philipp Mächler; Evan W Miller; Rickson C Mesquita; K M Naga Srinivas Nadella; U Valentin Nägerl; Yusuke Nasu; Axel Nimmerjahn; Petra Ondráčková; Francesco S Pavone; Citlali Perez Campos; Darcy S Peterka; Filippo Pisano; Ferruccio Pisanello; Francesca Puppo; Bernardo L Sabatini; Sanaz Sadegh; Sava Sakadzic; Shy Shoham; Sanaya N Shroff; R Angus Silver; Ruth R Sims; Spencer L Smith; Vivek J Srinivasan; Martin Thunemann; Lei Tian; Lin Tian; Thomas Troxler; Antoine Valera; Alipasha Vaziri; Sergei A Vinogradov; Flavia Vitale; Lihong V Wang; Hana Uhlířová; Chris Xu; Changhuei Yang; Mu-Han Yang; Gary Yellen; Ofer Yizhar; Yongxin Zhao
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4.  Restoration of Two-Photon Ca2+ Imaging Data Through Model Blind Spatiotemporal Filtering.

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Review 7.  Marmosets: a promising model for probing the neural mechanisms underlying complex visual networks such as the frontal-parietal network.

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9.  Simultaneous Observation of Mouse Cortical and Hippocampal Neural Dynamics under Anesthesia through a Cranial Microprism Window.

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10.  Head-mounted microendoscopic calcium imaging in dorsal premotor cortex of behaving rhesus macaque.

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  10 in total

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