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1  a recovery of chloride secretion and apical membrane conductance.
2 y (HEK 293) cells and significantly increase membrane conductance.
3 ited spike firing through activation of K(+) membrane conductance.
4 the status of a voltage-dependent, intrinsic membrane conductance.
5  +/- S.E.M.), without appreciable effects on membrane conductance.
6 IL-2 (0.01-500 ng/ml) alone had no effect on membrane conductance.
7  rebound and regular spikes and an increased membrane conductance.
8 mbrane potential and an increase in apparent membrane conductance.
9 solved monitoring (</=30 ms) of IC-modulated membrane conductance.
10 ed by a decrease or no significant change in membrane conductance.
11 ude, accompanied by a pronounced increase in membrane conductance.
12 fect was not associated with changes in cell membrane conductance.
13 iated with either an increase or decrease in membrane conductance.
14  by cellular hyperpolarization and increased membrane conductance.
15  was typically associated with a decrease in membrane conductance.
16 urrent (Iacpd) associated with a decrease of membrane conductance.
17 d a reversible voltage-dependent decrease in membrane conductance.
18 esence of the appropriate mRNA, protein, and membrane conductance.
19 m changes in neurotransmitter release and/or membrane conductance.
20 sed to measure the voltage dependency of the membrane conductance.
21 econds to seconds, depending on the level of membrane conductance.
22 ontacts with vestibular afferent nerves, and membrane conductance.
23 tral and its activation had little effect on membrane conductance.
24 ) channels and the Abeta-induced increase in membrane conductance.
25 at include a substantial increase in overall membrane conductance.
26 l dendrites and contributed substantially to membrane conductance.
27  (P)10 because of a maturational increase in membrane conductance.
28 ate, whereas serotonin decreases the overall membrane conductance.
29 ng substantial (21 nS on average) changes in membrane conductance.
30 , on deoxygenation, showed a further rise in membrane conductance.
31  IL-2 (0.01-10 ng/ml) alone had no effect on membrane conductance.
32 everalfold increase in the rate of change of membrane conductance.
33 pette seal that is in parallel with the true membrane conductance.
34 y, followed by exponentiation through active membrane conductances.
35 etween excitatory and inhibitory neurons and membrane conductances.
36 ad effects on cells including alterations in membrane conductances.
37 lex neurons, together with voltage-dependent membrane conductances.
38 annels involved in the control of background membrane conductances.
39 ses the activation of at least two different membrane conductances.
40 ities, the effective reversal potentials and membrane conductances.
41 imescale dynamics that arise from correlated membrane conductances.
42 ent sets of synaptic strengths and intrinsic membrane conductances.
43  may develop slowly by continuous changes in membrane conductances, a discontinuous change in axonal
44 ent processing of these OFF inputs by active membrane conductances allows the neuron to discriminate
45 th pentobarbitone and propofol increased the membrane conductance, although the benzodiazepine ligand
46 trations of toxin resulted in an increase of membrane conductance and a decrease in membrane stabilit
47         Lc/+ Purkinje cells have a very high membrane conductance and a depolarized resting potential
48 ward current, associated with an increase in membrane conductance and a reversal potential of ~+30 mV
49  AHP that was associated with an increase in membrane conductance and a rightward shift in the discha
50 this mechanism may contribute to the resting membrane conductance and basal Ca2+ influx in this parti
51 hannels are thought to contribute to resting membrane conductance and basal Ca2+ influx in vascular m
52 f the physiological state of a cell, such as membrane conductance and capacitance, as well as cytopla
53 siological setup allowed for measurements of membrane conductance and capacitance.
54 lls and arrested the maturational changes in membrane conductance and coupling coefficients.
55 t human RBCs display circadian regulation of membrane conductance and cytoplasmic conductivity that d
56 It was not accompanied by evident changes in membrane conductance and had a decay time constant simil
57 ged inositol 1,4,5-triphosphate (InsP(3)) on membrane conductance and intracellular Ca(2+) concentrat
58 eters (e.g., channel properties and density, membrane conductance and leak) and will apply to most sp
59 urrent; this change was due to a decrease in membrane conductance and may reflect the suppression of
60 he mutants' altered function with respect to membrane conductance and Na(+) sensitivity.
61 s characterized by a significant decrease in membrane conductance and reversed at a potential close t
62 g current was associated with a reduction in membrane conductance and reversed near Ek.
63 ons is associated with reductions in passive membrane conductance and the amplitude of the slow after
64 and ROS) and a specific effect on the plasma membrane conductance and the reduced ascorbate.
65 (K1), at hyperpolarized potentials decreases membrane conductance and thereby potentiates the ability
66 n of potassium channels increased the cell's membrane conductance and thus had a shunting effect on G
67 uce membrane thinning and defects, and alter membrane conductance and viscoelastic properties.
68  not associated with a significant change in membrane conductance and was relatively independent of m
69 s current was associated with an increase in membrane conductance and was still seen in the presence
70 h other, were associated with an increase in membrane conductance and were attenuated by the applicat
71 I(K-LVA) contributed strongly to the resting membrane conductance and, during trains of simulated EPS
72 s both to their own intrinsic pacemaker-like membrane conductances and excitatory synaptic inputs.
73  mechanisms involving direct control of both membrane conductances and gene expression in the MC4R PV
74 f halothane, isoflurane and enflurane on the membrane conductances and ion channels of cultured corti
75 gical processes by modulating both intrinsic membrane conductances and synaptic transmission.
76 otoreceptor neurotransmitter expression, and membrane conductances and synaptic vesicle release prope
77  clear separation of changes in capacitance, membrane conductance, and access resistance.
78 o produces an inward current, an increase in membrane conductance, and an elevation of [Ca2+]i.
79 /44 neurones) associated with an increase in membrane conductance, and an inward current (I5-HT,inwar
80 arrages (namely, depolarization, increase in membrane conductance, and increase in membrane potential
81 ization of the membrane potential, decreased membrane conductance, and increased discharge of action
82 ctivity (by depolarizing neurons, increasing membrane conductance, and introducing fluctuations) stro
83 onic', synaptic input, which increases their membrane conductance, and so modifies the spatial and te
84 gest that neurons experience periods of high membrane conductance, and that action potentials are oft
85 depolarization was associated with decreased membrane conductance, and this current had a reversal po
86                              Their intrinsic membrane conductances, and their remaining excitatory sy
87 Small hyperpolarizing pulses used to measure membrane conductances appeared not to disturb major ioni
88  conductance of the channels and the overall membrane conductance are directly related to the overall
89 bilayer, characteristic spikelike changes in membrane conductance are observed.
90   Insulin also caused a parallel increase in membrane conductance as measured by whole-cell patch cla
91 stitution and channel blockers to reduce the membrane conductance as much as possible.
92 confirms activity-dependent co-regulation of membrane conductances as a mechanism underlying homeosta
93 ls (3 of 77) demonstrated clear increases in membrane conductance, associated with the activation of
94                   HCN1 channels dominate the membrane conductance at rest, are not required for theta
95  hyperpolarization associated with decreased membrane conductance attributable to blockade of an inwa
96                                              Membrane conductance before electroporation was measurab
97                                              Membrane conductance behavior can, in principle, be used
98                                              Membrane conductance between -50 and -60 mV was signific
99 nt clamp, GIRK activation increased the cell membrane conductance by 1- to 2-fold, hyperpolarized the
100 rial depolarization preceded changes in cell membrane conductance by 3-4 s.
101 wo other articles report magnetic control of membrane conductance by attaching ferritin to an ion cha
102 02 models that had varying densities of nine membrane conductances centered on a hand-tuned model tha
103 r metabotropic receptor-mediated currents or membrane conductance changes.
104 tial at -93 mV associated with a decrease of membrane conductance, closely resembling the effect of 1
105 ring and are distinguished by a lower "leak" membrane conductance compared with adjacent nonbursting
106              When inhibition was strong, the membrane conductance could be doubled or tripled.
107                                              Membrane conductance decreased by approximately 50% when
108 rane depolarization that were accompanied by membrane conductance decreases.
109                      Although E(m) and total membrane conductance did not differ between MCF-7 and MC
110 LCO and its subdivisions, alveolar-capillary membrane conductance (DM) and pulmonary capillary blood
111 on UCPs is overlaid by increased nonspecific membrane conductance due to the formation of protein-gen
112        Functionally, the IPSC could increase membrane conductance during the decay of binaural glutam
113                    A consistent reduction in membrane conductance during the IDAP was observed in all
114                                   How active membrane conductance dynamics tunes neurons for specific
115 pyramid-like arrangement enabled sampling of membrane conductance every 30 ms.
116  the complementarity of native MS, FPOP, and membrane conductance experiments to shed light on how an
117 and diverse, and that the range of intrinsic membrane conductances expressed endow AD-SPN with the ab
118 teady-state inward current and instantaneous membrane conductance (fast current).
119 noceptors depolarize VMN neurons by reducing membrane conductance for K(+).
120 O-(3-thiotriphosphate) (GTPgammaS) increased membrane conductance from 10 to 260 picosiemens/picofara
121                     Anoxia decreased resting membrane conductance from 322 to 131 pS.
122 ent, voltage-gated Na(+) conductance to leak membrane conductance (g(Na,P)/g(leak)) compared with adj
123                       In contrast, the total membrane conductance (G(tot)) was well constrained, and
124 d ionic current (I(BK)) with two distinctive membrane conductances (g(m)).
125 disulfonic acid (DNDS)-sensitive basolateral membrane conductance (GDS) of cells expressing pNBC1, bu
126 n potentials causes changes in fibre resting membrane conductance (Gm) that reflect regulation of ClC
127 technique that permits measurement of plasma membrane conductance (Gm), membrane potential (Vm) and j
128 evidence that these differences are due to a membrane conductance gradient mediated by HCN and leak p
129                                         Each membrane conductance has a different characteristic temp
130         The curly bipolar cells had a higher membrane conductance, holding current and hyperpolarizat
131 nhancement of the widely expressed intrinsic membrane conductance Ih converts the potentiated synapti
132 amyloidogenic proteins and peptides increase membrane conductance in a conformation-specific fashion
133 find that one of the largest contributors to membrane conductance in both conduit and resistance ASMs
134  unknown because of the inability to measure membrane conductance in human sperm.
135 de channel ClC-1 is the major contributor of membrane conductance in skeletal muscle and has been ass
136 ch markedly blunted calcium oscillations and membrane conductance in spike-expressing cells by suppre
137 om, 24-30 h), a synthetic glucocorticoid, on membrane conductance in the human airway epithelial cell
138 onicity (25 %) failed to evoke any change in membrane conductance in the majority of defolliculated o
139 eronism underscores the importance of plasma membrane conductances in determining the activation stat
140                    In most cells the resting membrane conductances, including the H conductances, wer
141 ntegrity marker dye YO-PRO-1 (YP) and by the membrane conductance increase measured by patch clamp.
142 ), the membrane potential hyperpolarized and membrane conductance increased.
143 uced membrane depolarizations accompanied by membrane conductance increases.
144                                      Rather, membrane conductance induced by sPB1-F2 fluctuated and v
145 nt-voltage (I-V) relationship (passive) K(+) membrane conductance is a hallmark of mature hippocampal
146                                              Membrane conductance is also increased during shunting i
147                  Impaired alveolar-capillary membrane conductance is the major cause for the reductio
148  the loss of gap junctions including reduced membrane conductance, largely reduced sensitivity to the
149 short-term plasticity, how is the balance of membrane conductances maintained over long-term timescal
150 l produced pronounced suppression of resting membrane conductance measured with whole-cell recording
151                                              Membrane conductance (measured 200 microseconds after th
152           U-tube experiments and black lipid membrane conductance measurements establish that the tra
153 PC1 and TRPC4 are essential for an intrinsic membrane conductance mediating the plateau potential in
154 hough immature AIIs lacked the complement of membrane conductances necessary to generate bursting, ph
155                              The increase in membrane conductance occurs without any evidence of disc
156           This yielded a lower limit for the membrane conductance of 158 pS.
157                                          The membrane conductance of a pyramidal neuron in vivo is su
158 als, temperature-sensitive TRP channels make membrane conductance of cells extremely temperature depe
159 be excluded that the changes observed in the membrane conductance of cortical astrocytes disturb the
160                                          The membrane conductance of every T. arvense leaf cell was d
161                      In the face of the high membrane conductance of octopus cells, sodium and calciu
162 smembrane chloride movements via the lateral membrane conductance of the cell, GmetL, could serve to
163           However, factors other than active membrane conductances of AD-SPN must ultimately regulate
164 ng membrane potentials and voltage-activated membrane conductances of type B cells, but not type A ce
165  The high power dependence (up to 10) of the membrane conductance on the avicin concentration indicat
166 , each of which confers a distinctive plasma membrane conductance on transfected 293 cells.
167                 We observed no activation of membrane conductance or Cx43-mediated dye uptake in astr
168 ole, cocaine or amphetamine were observed on membrane conductance or holding current (at holding pote
169                                    Increased membrane conductance, or shunting, does not simply reduc
170 EFO caused a 1.5-2 times greater increase in membrane conductance (p<0.05) than bipolar NEFO, along w
171 shown that a small and transient increase of membrane conductance parallels NP crossing of plasma mem
172 nous expression of GRA17 or GRA23 alters the membrane conductance properties of Xenopus oocytes in a
173 ic vesicle release pathways and postsynaptic membrane conductances provide nuanced control over NTS a
174 ultiple factors such as firing frequency and membrane conductance, raising doubts about their effecti
175                      We find that increasing membrane conductance reduces the gain of the steady-stat
176 hat the active form of cystic fibrosis trans-membrane conductance regulator (CFTR) Cl(-) channel is a
177 6 with a cysteine in position 35 exhibited a membrane conductance sensitive to the thiol reagent male
178 perpolarized, and analyses of the underlying membrane conductance showed a significant increase in K(
179 on, by way of effects of GABAergic events on membrane conductance ('shunting' inhibition) and membran
180 tant for understanding how the properties of membrane conductances, synapses, dendrites, and the anat
181 membrane voltage in resting neurons with low membrane conductances than in active neurons with high c
182 t one mechanism for mediating the changes in membrane conductance that are essential for the cellular
183           Removal of external Ca2+ induced a membrane conductance that differed from MG channels in i
184 ivation of a rather large increase of apical membrane conductance that preceded significant activatio
185 arge non-selective (PK /PCl approximately 1) membrane conductance that was not blocked by 100 microM
186                                   Changes of membrane conductance through synaptic input or spiking a
187 73 mV through a relatively small increase in membrane conductance to Cl(-).
188 eceptors, relying on metabolically expensive membrane conductances to boost performance.
189                            Poorly rectifying membrane conductances to K+ were consistently observed i
190 oupling synergically interacts with specific membrane conductances to promote synchronization of thes
191  Oxygenated normal red blood cells had a low membrane conductance, unaffected by deoxygenation.
192 lance of spinal a-motoneuron (aMN) intrinsic membrane conductances underlies the neural output of the
193 cells as a model system, we investigated the membrane conductance underlying these oscillations.
194 ndentation failed to activate an increase in membrane conductance up to the point of causing visible
195           Here we show that, under increased membrane conductance, voltage fluctuations restore Na(+)
196                                   Fiber cell membrane conductance was a factor of 2.7 times larger in
197 ed to current in a nearly linear manner, and membrane conductance was found to be increased in the Up
198                               Higher resting membrane conductance was identified suggesting increased
199 ar application of MBB to intact oocytes, the membrane conductance was unaffected.
200 w IPSPs were reduced without any increase of membrane conductance, we conclude that 5-HT has in addit
201                        The effects of VIP on membrane conductance were abolished by the hyperpolariza
202 Iacpd and the 1S,3R-ACPD-induced decrease of membrane conductance were diminished.
203       Gap junctional conductance (G(j)), and membrane conductance were evaluated by using frequency d
204  effects of insulin on membrane turnover and membrane conductance were inhibited by blockers of phosp
205 y at pH 6.5, only occasional fluctuations of membrane conductance were observed at pH 7.5.
206  Ca2+-signalling pathways and the associated membrane conductances were distinguished kinetically and
207                                              Membrane conductances were measured by frequency domain
208 by GABA or bicuculline; however, the resting membrane conductances were reduced by picrotoxin, zinc,
209 embrane potentials associated with increased membrane conductance when pulse widths are microseconds
210 ction of an inward current and a decrease in membrane conductance, whereas activation of group-II or
211 l produced a decrease in outward current and membrane conductance, whereas NaCl, KCl, NH(4)Cl, and HC
212 ses, such as modulation of voltage-dependent membrane conductances, which are expressed as changes in
213 altered by 25-fold by either manipulation of membrane conductance with optogenetic methods or generat
214 increased in the Up state, attributable to a membrane conductance with the same reversal potential as
215 selectivity through interaction of intrinsic membrane conductances with the activation sequence of cl

 
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