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Previously, it had been shown that exposure to 20 mM NaN3 or less during 60 min [55], ∼30 mM NaN3 for 20 min [56] or 50 mM NaN3 for 5 min [57] can induce evident physiological changes in the worm.
To understand how changes in the worm's shape determines its motion, we first characterize the motion itself.
1, 2, 18– 22, 32, 33 PZQ sublethal effects may also elicit changes in the worm upper lipid bilayer, facilitating ARA action.
To confirm which neurons control particular behavioral responses, Laurent, Soltesz et al. measured changes in the worm's behavior after destroying or altering specific cells, or while they used light-based techniques to artificially excite or inhibit specific neurons.
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After removal of dichlorvos from the medium, the gene expression changes seen in the worms appear to return to baseline levels rather rapidly, and those observed at the first harvest after the washout simply appear to be residual effects of ongoing biological processes resulting from the exposure.
Monitoring gene expression in the worms revealed that specific oxygen-sensing neurons help generate the widespread changes that occur in the worm's body.
In addition to the morphological modifications present in single-sex females, separation of female worms leads to a large variety of changes in the physiology of the worm, culminating in the atrophy of the ovary and vitelline gland [ 5].
The changes in the mobility of worms are represented in Table 1.
This is probably due to the non-linearity of the mortality mechanism and the accumulation of effects over time due to changes in the age structure of the worm population.
As in mammals, exposure to 6-OHDA causes specific degeneration of DAergic neurons in C. elegans, as revealed by the dose-dependent decrease in the fluorescence signal in the Pdat-1 GFP Pdat-1 GFPalstrainthe observandon of palsological changes in TEM worm sections (Nass et al. 2002).
We suggest that temperature (and/or pressure) above normal could induce strong changes in the membrane composition of the worms and therefore increase interactions between secreted nidogen domain protein, collagen and other membrane protein in order to readjust porosity/permeability.
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CEO of Professional Science Editing for Scientists @ prosciediting.com