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1 gesting that recycling pool vesicles move by simple diffusion.
2 es in the IS and that its movement occurs by simple diffusion.
3 sion and increases the proportion exhibiting simple diffusion.
4 esting that nuclear entry does not occur via simple diffusion.
5 obility was not directed but was governed by simple diffusion.
6 cur in a non-targeted fashion as a result of simple diffusion.
7 ggest that anandamide uptake is a process of simple diffusion.
8 tes, cross the intact blood-brain barrier by simple diffusion.
9 n, and from the theoretical distribution for simple diffusion.
10 1, suggesting that import does not occur via simple diffusion.
11 mum, owing mainly to directional movement or simple diffusion.
12 xtended further than might be predicted from simple diffusion.
13 ds of times faster than what is expected for simple diffusion.
14  barriers, and membrane rafts also occurs by simple diffusion and does not require facilitation by me
15 ly unlike the familiar spreading patterns of simple diffusion, as the kinetics of response are surpri
16 exceeded the expected transit times assuming simple diffusion by orders of magnitude.
17 ding of Ca2+ to the regulatory site is not a simple diffusion-controlled reaction.
18 ith a model in which AEA uptake is driven by simple diffusion coupled to FAAH metabolism.
19 rane (<4 microm), the ISMs pose a barrier to simple diffusion, creating an ion trap.
20                                These include simple diffusion, "cytonemes", filopodia, "argosomes", a
21 m of the Bicoid profile is consistent with a simple diffusion/degradation model, the observed length
22                                            A simple diffusion/extraction steady state model is propos
23 l-molecule inhibitors, including delivery by simple diffusion in the growth medium and concentration-
24                                              Simple diffusion is sufficient to deliver signals from c
25               Many peptides cross the BBB by simple diffusion, mainly explained by their lipophilicit
26     Taken together, our results suggest that simple diffusion may account for the nuclear export obse
27 t of endocrine cells is not always through a simple diffusion mechanism as presently thought, but ins
28 minute in a manner that is consistent with a simple diffusion mechanism.
29                                            A simple diffusion model can describe mobility of lipid mo
30                 These data are fit well by a simple diffusion model in which the rate and variability
31                                            A simple diffusion model indicated that such gradients req
32                                            A simple diffusion model indicates that such [Na](SL) depl
33 luble recombinant Shh (ShhN)) to support the simple diffusion model of long-range Shh signalling, the
34                                            A simple diffusion model predicts that the time course of
35                                   Based on a simple diffusion model, we estimate that this MR imaging
36                                            A simple diffusion model, where the measured diffusion coe
37 , whose frequency could be predicted using a simple diffusion model.
38 3 orders of magnitude less than expected for simple diffusion models, and the binding progress curves
39  Concerning flux across the plasma membrane, simple diffusion of ascorbic acid plays only a small or
40 s can be shaped by mechanisms other than the simple diffusion of RA from a localized posterior source
41 o account for the long-range effects of Shh: simple diffusion of Shh, a relay mechanism in which Shh
42 probably different mechanisms and not due to simple diffusion of the protein in a lipid bilayer.
43 erns with a mathematical model that combines simple diffusion of the signal with logistic growth of t
44 g chain acyl-CoA synthesis (LACS) occurs via simple diffusion or a more complex mechanism.
45 a localized site, but whether this occurs by simple diffusion or by more elaborate mechanisms is uncl
46 wer in vivo than compared to in vitro, and a simple diffusion process describes the autocorrelation f
47                                            A simple diffusion resistance model is shown to be suffici
48                                We review how simple diffusion through solution may be unable to accou
49  molecules (<10 kDa) permeate the nucleus by simple diffusion through the pore, but molecules larger
50 .8 nm) is representative of native vWF after simple diffusion to the hydrophobic surface, followed by
51 hough many membrane proteins pass the NPC by simple diffusion, two yeast proteins, ScSrc1/ScHeh1 and
52                                   Apart from simple diffusion, various modes of signal transfer have
53                The passive processes include simple diffusion via the aqueous phase and facilitated d
54 , but they are not trapped and can escape by simple diffusion, which may be slow, fast, or directed.
55 toplasm and nucleoplasm cannot be modeled by simple diffusion with a unique diffusion constant.

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