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1 d mode, on pipette potential, and on pipette ionic composition.
2 tion at the interface that changes the local ionic composition.
3  resuspended in solutions of unphysiological ionic composition.
4 dal stability in media with different pH and ionic composition.
5           Competition studies indicated that ionic composition affected Ca2+-dependent receptor activ
6 thelia and determine bodily fluid volume and ionic composition, among other things.
7 t function of glia is the maintenance of the ionic composition and pH of the synaptic microenvironmen
8                               The effects of ionic composition and strength on rabbit skeletal muscle
9 te the original measurement conditions (e.g. ionic composition and temperature).
10 s represent the first direct measurements of ionic composition and viscosity in uncontaminated human
11 uorescence method was applied to measure the ionic composition and viscosity of freshly secreted flui
12                                 Control over ionic composition and volume of the inner ear luminal fl
13  relationship in solutions of various pH and ionic composition, and 3) the flux of 86Rb.
14  be sensitive to resting membrane potential, ionic composition, and degree of channel inactivation, a
15 ease should not be directed at modulation of ionic composition, but rather at restoring volume (salt
16  As deviations between the molecular and the ionic composition can appear due to chemical influences
17    Geochemical reconstruction shows that the ionic composition conducive to the origin of cells could
18 tion to an environment with a very different ionic composition from that of its extracellular habitat
19                           We measured pH and ionic composition in apical surface liquid (ASL) on pola
20 bathing medium that mimics the extracellular ionic composition in situ.
21 r has fluid-filled compartments of different ionic compositions, including the endolymphatic and peri
22 when it approaches an active site, where the ionic composition is different to that in bulk solution,
23                      Our work shows that the ionic composition of a solution not only influences the
24 the region of the cochlea that maintains the ionic composition of endolymph.
25 he role of the solvent and the effect of the ionic composition of RTILs.
26  membrane which determines the flow rate and ionic composition of secreted saliva.
27                                              Ionic composition of the binding buffer also influences
28 ventricle; hence, it can directly access the ionic composition of the CSF.
29 ctric field by explicitly accounting for the ionic composition of the electroporation current.
30 dh23 may also be involved in maintaining the ionic composition of the endolymph.
31 ociation rate constant was influenced by the ionic composition of the extracellular solution whereas
32  factors such as changes in the V(m) and the ionic composition of the extracellular solution.
33 code membrane transporters that regulate the ionic composition of the fluid bathing the inner ear.
34 n-restrictive barrier to maintain the proper ionic composition of the fluid surrounding the basolater
35 tinal pigment epithelium (RPE) regulates the ionic composition of the fluid surrounding the photorece
36  strains are found to strongly depend on the ionic composition of the growth medium.
37                               By varying the ionic composition of the imaging environment, it was pos
38  transport reversal, relies primarily on the ionic composition of the intra- and extracellular milieu
39 ntified as playing a role in controlling the ionic composition of the lumenal fluid.
40                  Cycloheximide, brefeldin A, ionic composition of the medium, and exogenous PtdSer di
41 e-dependent conductance which depends on the ionic composition of the medium.
42 latively unaffected by changes in the pH and ionic composition of the medium.
43  depend on light intensity, voltage, and the ionic composition of the medium.
44                               Changes in the ionic composition of the mother liquor allowed for the o
45 essure due to light-dependent changes in the ionic composition of the subretinal space and because RP
46 operties of the concentric membranes and the ionic composition of the volumes between the membranes.
47 cells and the subsequent modification of the ionic composition of this fluid by the ducts are unclear
48 by regulating blood flow, yet the volume and ionic compositions of in vivo stimulated saliva from wil
49                    The effects of the medium ionic composition on the apparent equilibrium associatio
50  reagents, changes in sample pH, and altered ionic composition result in decreased recoveries and mis
51 sed to hypertonic Ringer solutions of normal ionic composition showed no such E(m) shifts, suggesting
52 oxidation in simulated body fluid (SBF) with ionic composition similar to human blood plasma.
53 asured in extracellular solutions of various ionic composition to determine relative permeability of
54 an intracellular phosphate buffer matched in ionic composition to the intracellular fluid of growth p
55 ing intracellular solutions of physiological ionic composition, we isolated individual components of
56 he regulation of airway surface liquid (ASL) ionic composition, we measured ASL composition using the
57        Endothelial cell viability and buffer ionic composition were unaltered after the superfusion p
58                   Our findings show that the ionic composition within bacterial cells varies with the

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