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May 5, 2017 -.com/?article=obuchayushiy-videokurs-po-programme-uprza-ekolog-torrent. After 30 days of the mock flight the OL snails were centrifuged in individual counterbalanced containers using a Beckman Allegra X-15R (220 RPM, container radius 19.2 cm, 2 s on 10G in manual mode with slowest possible acceleration speed).

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1 *, 1, 1, Tatiana A. Korshunova 2, 1, Alena B. Zuzina 1, Victor N. Ierusalimsky 1, 1, 2, Ivan A.

Novikov 3, 1, 1, 1, 4, 4, Yekaterina Popova 5, 5 and 1 • 1Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow, Russia • 2Koltzov Institute of Developmental Biology, Moscow, Russia • 3Research Institute of Eye Diseases, Moscow, Russia • 4Vavilov Institute of General Genetics, Russia Academy of Sciences, Moscow, Russia • 5Space Biosciences Research of NASA Ames Research Center, Moffett Field, CA, United States The vestibular system receives a permanent influence from gravity and reflexively controls equilibrium. If we assume gravity has remained constant during the species' evolution, will its sensory system adapt to abrupt loss of that force? We address this question in the land snail Helix lucorum exposed to 30 days of near weightlessness aboard the Bion-M1 satellite, and studied geotactic behavior of postflight snails, differential gene expressions in statocyst transcriptome, and electrophysiological responses of mechanoreceptors to applied tilts. Each approach revealed plastic changes in the snail's vestibular system assumed in response to spaceflight.

Absence of light during the mission also affected statocyst physiology, as revealed by comparison to dark-conditioned control groups. Readaptation to normal tilt responses occurred at ~20 h following return to Earth. Despite the permanence of gravity, the snail responded in a compensatory manner to its loss and readapted once gravity was restored. Behavioral Studies Gravitaxis reaction to a 90° head down pitch from horizontal was tested in a previously described apparatus () following the same protocol, and full course of this stereotypical behavior was recorded for later analysis using a general purpose digital camera at 30 fps. To provide a double blind control analysis the filenames of the PF, ST, and NV groups were encrypted. Three of the authors (M. Z.) independently split video timelines for each snail to fit the gravitaxis phases as described in the previous report ().

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