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Lake distribution stretches from shrub-tundra overlying discontinuous permafrost in the north to spruce-lichen woodland with sporadic permafrost in the south.
Previous studies have focused mainly on glacial lake distribution and evolution, the triggering factors and probability estimation of glacial lake outburst, and the estimation and simulation/prediction of the maximum discharge.
The spatial data selected for this study consisted of land use datasets (on a scale of 1 50,000) in the year of 1996, 2000 and 2004, transportation network maps, river system and lake distribution maps, and administrative borderline maps (including the city center, towns, and residential blocks).
Global maps of the lake distribution on Titan's surface revealed that there is not enough surface methane to account for its continued presence in its atmosphere, and thus that a significant portion must be added through volcanic processes.
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We could observe on the OCT images two distinct lake distributions, the first one including densely disposed thin wide lakes, and the second one with less extended thicker lakes, less numerous and sparsely distributed, as shown previously in Fig. 6.
Therefore two general lake distributions were visible depending on the graft studied: wide lamellar interspaces (over 100 µm in a plan parallel to the surface of the cornea) with an important density, or limited-sized lakes (up to 50 µm) sparsely disposed (Fig. 6 ).
We then tried to evaluate the influence of the lakes' distribution in the stroma.
To take into account the lakes' distribution only, we used a binary representation of the stroma, assuming a refractive index of 1.33 for the lakes, and 1.376 for the surrounding matrix.
The fish tagged comprised of 61% females and 39% males with an overall average size of 659 ± 115 (SD) mm, and lake-age distribution 5% (lake age = 1), 22% (2), 40% (3), 21% (4), 10% (5), and the remaining 2% for older age groups.
Our results highlighted the importance of environmental variables including vegetation density (for food and nesting) and water resource (streams, rivers, and lakes) in distribution of the nutria.
D. galeata and D. dentifera are also ecologically distinct in the range of vertical habitat use within lakes and habitat distribution among lakes of different sizes [ 22].
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