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1 lopment are dependent on tight regulation of water movement.
2 cell-containing neuromasts that detect local water movement.
3 pret as the surface expression of subglacial water movement.
4 r role in trans-cellular and transepithelial water movement.
5 helial cells is the rate-limiting barrier to water movement.
6 t this domain to facilitate transbasolateral water movement.
7 , shows that local osmosis best accounts for water movement.
8 or the animal's ability to sense directional water movements.
9 all living cells, coordination of solute and water movement across cell membranes is of critical impo
11 and to determine the contribution of AQP1 to water movement across cultured RPE cells isolated from h
12 ovide a major pathway for osmotically driven water movement across epithelial and microvascular barri
16 y described aquaporin that facilitates rapid water movement across the cytoplasmic membrane is repres
17 ese results provide functional evidence that water movement across the distal airway epithelium is me
18 ;1 is a key participant in the regulation of water movement across the membranes of cells expressing
20 channel proteins are important pathways for water movements across cell membranes, including those i
21 er-conducting channels that facilitate rapid water movements across the plasma membrane of Escherichi
30 sturbing a stratigraphic barrier to vertical water movement, and indirectly by increasing mineral wea
31 location of this aquaporin and the resulting water movement are responsible for the volume reversal n
35 ction (through restriction of transcutaneous water movement) could regulate the formation of the epid
38 on conductance mechanism and its relation to water movement for the NavMs channel pore and to make re
41 he hypothesis that secretin promotes osmotic water movement in cholangiocytes by inducing the exocyti
42 sole factor responsible for the blockage of water movement in grapevines (Vitis vinifera) affected b
50 at osmotically driven and agonist-stimulated water movement into (secretion) and out of (absorption)
52 eduction of luminal areas as a reflection of water movement into and out of IBDUs prepared from liver
53 ses, glia limitans and ependyma, facilitates water movement into and out of the brain, accelerates as
54 pace with cell impermeant molecules prevents water movement into the cell by passive biophysical osmo
55 junctiva--the relevant parameters describing water movement into the hyperosmolar tear film in vivo--
56 en LT and ST are both present, they increase water movement into the intestinal lumen over and above
58 e; furthermore, we hypothesize that salt and water movement into vesicles may regulate vesicle volume
59 s of genes induced by hypobaria confirm that water movement is a paramount issue at low atmospheric p
62 nt volume marker, fluorescein sulfonate; net water movement (J(v)) and osmotic water permeability (P(
63 span and the dispersive effects of constant water movements on all spatial scales, however there are
64 e PSP that was produced in a motor neuron by water-movement stimulation of the siphon, which does not
66 esses as diverse as transepithelial salt and water movement, taste perception, volume regulation, noc
67 d by the imposition of Deltapi suggests that water movement through the channel is also an important
71 tic gradients were established across IBDUs, water movement was observed from bath to lumen (i.e., se
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