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Growth model of the reared sea urchin Paracentrotus ... - SciViews

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List <strong>of</strong> figures<br />

Figure 28. A. Histograms <strong>of</strong> size distributions <strong>of</strong> a cohort <strong>of</strong> <strong>reared</strong> P.<br />

lividus with time. Top <strong>of</strong> <strong>the</strong> box: a projection <strong>of</strong> three<br />

quantiles (0.025, 0.5 and 0.075) issued from those size<br />

distributions and also presented in B. Page 143.<br />

Figure 29. Survival with time <strong>of</strong> <strong>the</strong> same <strong>reared</strong> cohort <strong>of</strong> P. lividus as<br />

in Fig. 28A. Page 143.<br />

Figure 30. Construction <strong>of</strong> <strong>the</strong> fuzzy growth <strong>model</strong>. Page 150.<br />

Figure 31. First step <strong>of</strong> constraining parameters <strong>of</strong> <strong>the</strong> new growth <strong>model</strong><br />

(origin forced to {t0, D0}). Page 157.<br />

Figure 32. A. Variation <strong>of</strong> l as a function <strong>of</strong> 1-τ for several quantile<br />

regressions. B. Variation <strong>of</strong> k1 (black squares) and k2 (white<br />

triangles) as functions <strong>of</strong> 1-τ. Page 159.<br />

Figure 33. Envelope <strong>model</strong> fitted (upper surface) to <strong>the</strong> whole dataset<br />

(lower surface). Page 162.<br />

Figure 34. Diagnostic <strong>of</strong> <strong>the</strong> envelope <strong>model</strong> fitted in Fig. 33. A.<br />

Contour plot <strong>of</strong> <strong>the</strong> residuals. B. Three "slices" cut in <strong>the</strong> 3Dsurfaces<br />

<strong>of</strong> Fig. 33 at t' = 300 (1), 600 (2) and 1800 (3) days.<br />

Page 163.<br />

Figure 35. A classification <strong>of</strong> growth <strong>model</strong>s based on <strong>the</strong>ir functional<br />

features. Page 184.<br />

15

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