Literature DB >> 20718728

Imaging calcium signals in vivo: a powerful tool in physiology and pharmacology.

James T Russell1.   

Abstract

The design and engineering of organic fluorescent Ca(2+) indicators approximately 30 years ago opened the door for imaging cellular Ca(2+) signals with a high degree of temporal and spatial resolution. Over this time, Ca(2+) imaging has revolutionized our approaches for tissue-level spatiotemporal analysis of functional organization and has matured into a powerful tool for in situ imaging of cellular activity in the living animal. In vivo Ca(2+) imaging with temporal resolution at the millisecond range and spatial resolution at micrometer range has been achieved through novel designs of Ca(2+) sensors, development of modern microscopes and powerful imaging techniques such as two-photon microscopy. Imaging Ca(2+) signals in ensembles of cells within tissue in 3D allows for analysis of integrated cellular function, which, in the case of the brain, enables recording activity patterns in local circuits. The recent development of miniaturized compact, fibre-optic-based, mechanically flexible microendoscopes capable of two-photon microscopy opens the door for imaging activity in awake, behaving animals. This development is poised to open a new chapter in physiological experiments and for pharmacological approaches in the development of novel therapies. British Journal of Pharmacology
© 2011 The British Pharmacological Society. Published 2011. This article is a U.S. Government work and is in the public domain in the USA.

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Year:  2011        PMID: 20718728      PMCID: PMC3166690          DOI: 10.1111/j.1476-5381.2010.00988.x

Source DB:  PubMed          Journal:  Br J Pharmacol        ISSN: 0007-1188            Impact factor:   8.739


  153 in total

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4.  Improved calcium imaging in transgenic mice expressing a troponin C-based biosensor.

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Journal:  Nat Methods       Date:  2007-01-28       Impact factor: 28.547

5.  In vivo dendritic calcium imaging with a fiberoptic periscope system.

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Journal:  Nat Protoc       Date:  2009-10-01       Impact factor: 13.491

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7.  Imaging cellular signals in the heart in vivo: Cardiac expression of the high-signal Ca2+ indicator GCaMP2.

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8.  Imaging large-scale neural activity with cellular resolution in awake, mobile mice.

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  46 in total

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5.  In Vivo Calcium Imaging of Lateral-line Hair Cells in Larval Zebrafish.

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6.  Spatiotemporal dynamic monitoring of fatty acid-receptor interaction on single living cells by multiplexed Raman imaging.

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7.  Diffraction-based technology for the monitoring of contraction dynamics in 3D and 2D tissue models.

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8.  Biocompatibility of a genetically encoded calcium indicator in a transgenic mouse model.

Authors:  Stephan Direnberger; Marsilius Mues; Vincenzo Micale; Carsten T Wotjak; Steffen Dietzel; Michael Schubert; Andreas Scharr; Sami Hassan; Christian Wahl-Schott; Martin Biel; Gurumoorthy Krishnamoorthy; Oliver Griesbeck
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9.  Adapting techniques for calcium imaging in muscles of adult Brugia malayi.

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10.  Manganese-enhanced magnetic resonance imaging (MEMRI) reveals brain circuitry involved in responding to an acute novel stress in rats with a history of repeated social stress.

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