4.6 Article

In vivo two-photon laser-scanning microscopy of Ca2+ dynamics in visual motion-sensitive neurons

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ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2004.02.047

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calcium; fluo-4; fluorescence imaging; fly; motion vision; neuronal processing; synapse; tangential cell; two-photon microscopy

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We applied two-photon laser-scanning microscopy (TPLSM) to motion-sensitive visual interneurons of the fly to study Ca2+ dynamics in vivo at a higher spatial and temporal resolution than possible with conventional fluorescence microscopy. Based on a custom-built two-photon microscope, we performed line scans to measure changes in presynaptic Ca2+ concentrations elicited by visual stimulation. We used a fast avalanche photodiode (APD) with a high quantum efficiency to detect even low levels of emitted fluorescence. Our experiments show that our in vivo preparation is amenable to TPLSM: with excitation intensities low enough not to cause photodamage, activity-dependent fluorescence changes of Ca2+-sensitive dyes can be detected in small neuronal branches. The performance of two-photon and conventional Ca2+ imaging carried out consecutively at the same neuron is compared and it is demonstrated that two-photon imaging allows us to detect differences in Ca2+ dynamics between individual neurites. (C) 2004 Elsevier Inc. All rights reserved.

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