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1 smallest grains, probably contribute to the steepness.
2 tion and is accompanied by a decrease in its steepness.
4 kscatter relates to the reduction in corneal steepness after cross-linking and may become a relevant
5 ion flow rates, and optimization of gradient steepness allowed a detection limit of 4 amol, correspon
9 um cells to exponential gradients of varying steepness and local concentration of the chemoattractant
10 nction to obtain maximum conductance (gmax), steepness and midpoint potential for the voltage depende
11 ments in right eyes differed slightly in rim steepness and rim volume from those in left eyes (P < .0
12 ides a simple model that can account for the steepness and shape of F-pCa relations that other models
13 es of optic nerve head shape (cup depth, rim steepness, and cup size) as input into a relevance vecto
14 ates internal waves of similar amplitude and steepness as internal waves from tide-topography interac
15 rm of fura-2 to report [Ca2+]i, and that the steepness decreases as myofilament overlap decreases.
17 ak capacity and an optimum range of gradient steepness exists in which the peak capacity is maximized
18 owever, both the total charge (Qmax) and the steepness factor (k) remained conserved at values consis
19 age, V* approximately equal to -40 to-50 mV; steepness factor, k approximately equal to 6-9 mV; holdi
20 erwise conserved maximum charge, Q(max), and steepness factor, k, in parallel with previously reporte
21 e, Qmax, the transition voltage, V*, and the steepness factor, k, of the steady-state charge-voltage
22 charge, Q(max), transition voltage, V*, and steepness factor, k, that were consistent with a persist
23 seen only under conditions of high gradient steepness (>10% across a typical cell length of 50 mum)
25 increased by 0.3+/-0.1% (ca. 1 K), while the steepness increased by 0.9+/-0.3% per hour of 1x10(6) cm
26 reasing chemotactic response as the gradient steepness increased from 0 to 5, 0 to 10, and 0 to 25 ng
27 s age, which, traced back to the temperature steepness index of the viscosity, tears down one of the
30 erved both the maximum charge, Qmax, and the steepness, k, of the steady-state Q(V) relationships.
33 The Hill coefficient, nH, which measures the steepness of a dose-response relationship, may be a usef
35 imal effect on channel activation, a reduced steepness of Ca(2+) dose-dependent curve, altered Ca(2+)
37 e fast and slow gates characterizing 1), the steepness of each gate's open probability on VG; 2), the
38 to 10, and 0 to 25 ng/ml, demonstrating that steepness of gradient is a major determinant of the rela
39 Recently, we identified a dichotomy in the steepness of length-tension relationships in mammalian c
40 nse times were inversely proportional to the steepness of Rac inducer gradient in agreement with a ma
45 e isosteric heat of adsorption (Qst) and the steepness of the adsorption isotherm in the low-pressure
47 n coefficient, leading to an increase in the steepness of the concentration gradient across the skin.
48 in a microfluidic gradient device where the steepness of the CXCL8 chemokine gradient was varied fro
52 flux pattern became more uniform, i.e., the steepness of the flux gradients across the olfactory sur
53 was accompanied by a marked reduction in the steepness of the force-pCa relationship for forces less
54 We find that the cells are sensitive to the steepness of the gradient as well as to the local concen
55 switching response is sensitive both to the steepness of the gradient experienced and to background
57 n the absolute CCL21 concentration and local steepness of the gradient, consistent with a scenario wh
58 rmotaxis in the classical sense, because the steepness of the gradients applied is below the sensing
59 gas consumed (oxygen or carbon dioxide), the steepness of the gradients for gas and vapor, and the tr
60 the number of interactions recorded and the steepness of the hierarchy affect the performance of fiv
63 o experimental data, we are able to link the steepness of the interionic repulsion to the Thomas-Ferm
64 alternans cannot be explained solely by the steepness of the load-release function, but that changes
66 restored the steady-state qgamma charge, the steepness of the overall Q(V) function and the appearanc
67 potential, which can be determined from the steepness of the pair distribution function near the har
68 icant changes in the voltage distribution or steepness of the Q-V or [Ca(2+)]-V relationship were fou
69 icant changes in the voltage distribution or steepness of the Q-V or [Ca(2+)]-V relationship were fou
70 retch also occurs in intact fibres, that the steepness of the relation between tension and [Ca2+]i in
71 At 10 microM ACh there was a decrease in the steepness of the relationship between [Ca2+]i and exocyt
72 hibition, and Hill coefficient that captures steepness of the relationships between the concentration
74 ased RyR inactivation which led to increased steepness of the sarcoplasmic reticulum (SR) Ca2+ releas
77 s: (1) the Hill-exponent, which reflects the steepness of the stimulus-response curve; and (2) the lo
80 es between the 2 groups were observed in the steepness of the tension-pCa relationship or in the maxi
82 sity within each class of liquid-both in the steepness of the viscosity-temperature profile, and in t
87 the fundamental thermionic limitation of the steepness of turn-on characteristics, or subthreshold sw
88 ed with healthy controls (mean [SD] decision steepness parameter beta: ADHD, 4.83 [2.97]; controls, 6
89 was proportional to the reduction in corneal steepness (R = -0.45 and -0.56 for CXL and CRXL, respect
90 (winners and losers) in scenarios of varying steepness (the probability that a dominant defeats a sub
91 lore how robustness ratio (RR) as the gap or steepness versus averaged variations or roughness of the
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