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Partial Differential Equations - Modelling and ... - ResearchGate

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Cell Adhesion <strong>and</strong> Detachment in Shear Flow 221<br />

(a)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

(b)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

(c)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

(d)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

(e)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

(f)<br />

10<br />

8<br />

6<br />

y<br />

4<br />

2<br />

0<br />

0 5 10 15 20<br />

x<br />

Fig. 6. Snapshots of 20 cells at t =0.0 s (a), 5.0 s (b), 5.35 s (c), 6.06 s (d), 9.49 s<br />

(e), <strong>and</strong> 10.0 s (f) (viscosity = 0.01 g/cm-s, shear rate = 30/s). The percentage of<br />

detached cells is 10% at t =10.0s.

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