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  • GCaMP imaging
  • GCaMP imaging data and list of reference papers

Sample Data

In Vivo GCaMP Imaging (MiCAM02-HR)

GCaMP Imaging

Fast scanning high optical invariant two-photon microscopy for monitoring a large neural network activity with cellular resolution.

Keisuke Ota, Yasuhiro Oisi, Takayuki Suzuki, Muneki Ikeda, Yoshiki Ito, Tsubasa Ito, Kenta Kobayashi, Midori Kobayashi, Maya Odagawa, Chie Matsubara, Yoshinori Kuroiwa, Masaru Horikoshi, Junya Matsushita, Hiroyuki Hioki, Masamichi Ohkura, Junichi Nakai, Masafumi Oizumi, Atsushi Miyawaki, Toru Aonishi, Takahiro Ode, Masanori Murayama

bioRxiv 2020.07.14.201699.

MiCAM ULTIMAIn VivoGCaMP

Astrocytes Modulate Baroreflex Sensitivity at the Level of the Nucleus of the Solitary Tract.

Svetlana Mastitskaya, Egor Turovsky, Nephtali Marina, Shefeeq M. Theparambil, Anna Hadjihambi, Sergey Kasparov, Anja G. Teschemacher, Andrew G. Ramage, Alexander V. Gourine and Patrick S. Hosford

J Neurosci. 2020 Apr 8; 40(15): 3052-3062.

MiCAM02-HRIn VivoGCaMP

Detecting mTBI by Learning Spatio-temporal Characteristics of Widefield Calcium Imaging Data Using Deep Learning.

Fatemeh Koochaki, Foroogh Shamsi, Laleh Najafizadeh

2020 42nd Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC).

MiCAM ULTIMAIn VivoGCaMP

Distinct Contributions of Whisker Sensory Cortex and Tongue-Jaw Motor Cortex in a Goal-Directed Sensorimotor Transformation.

Johannes M. Mayrhofer, Sami El-Boustani, Georgios Foustoukos, Matthieu Auffret, Keita Tamura, Carl C.H.Petersen

Volume 103, Issue 6, 25 September 2019, Pages 1034-1043.e5

MiCAM ULTIMAIn VivoGCaMP

Decoding cortical brain states from widefield calcium imaging data using visibility graph.

Li Zhu, Christian R. Lee, David J. Margolis and Laleh Najafizadeh

Biomed Opt Express. 2018 Jul 1; 9(7): 3017-3036.

MiCAM ULTIMAIn VivoGCaMP

Odor representations in the olfactory bulb evolve after the first breath and persist as an odor afterimage.

Michael Andrew Patterson, Samuel Lagier and Alan Carleton

Proc Natl Acad Sci U S A. 2013 Aug 27;110(35):E3340-9. doi: 10.1073/pnas.1303873110. Epub 2013 Aug 5.

MiCAM ULTIMAIn VivoGCaMP

FRET Imaging

Chronic imaging of cortical sensory map dynamics using a genetically encoded calcium indicator.

Matthias Minderer, Wenrui Liu, Lazar T. Sumanovski, Sebastian Kügler, Fritjof Helmchen and David J. Margolis

J Physiol. 2012 Jan 1;590(Pt 1):99-107.

MiCAM ULTIMADual CameraIn Vivo

Expanded dynamic range of fluorescent indicators for Ca(2+) by circularly permuted yellow fluorescent proteins.

Takeharu Nagai, Shuichi Yamada, Takashi Tominaga, Michinori Ichikawa and Atsushi Miyawaki

Proc Natl Acad Sci U S A. 2004 Jul 20;101(29):10554-9.

MiCAM01Brain Slice

Product suitable for this kind of application

  • Fluorescence Mesoscope
  • THT Series
THT Mesoscope

THT Mesoscope

The THT is a fluorescence widefield mesoscope developed for detecting low light fluorescence that is emitted from biological sample at a low magnicifation. This mesoscope has a very simple optical path combining two large-diameter objective lenses and a custom-made large fluorescent filter

  • High Speed Imaging System
  • MiCAM03-N256
MiCAM03-N256
BV Workbench

MiCAM03-N256 is a high-speed imaging system that captures and visualizes small changes in fluorescence intensity from biological samples stained with fluorescent probes, such as voltage sensitive dyes and calcium dyes.

Spatial Resolution : 
128x128 - 256x256 pixles
(32x32 pixels - 256x256 pixles with option)
Maximum Frame Rate : 
1,000fps
(20,000 fps available with option)
Up to 2 camera heads can be used with completely synchronization.
Applications
  • Voltage Imaging
  • Calcium Imaging
  • GCaMP Imaging
  • Intrinsic Signal Imaging

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