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1 FP-p65 knock-in cells NF-kappaB behaves as a damped oscillator able to synchronize to a variety of pe
2 hannel centreline, effectively behaving as a damped oscillator.
3 averaged in each group were well fitted by a damped oscillator function (r > or = 0.9, P < 0.00001).
4 ve advantage to cavefish at the expense of a damped circadian oscillator.
5 umulation of cortical actin reminiscent of a damped oscillation.
6 o well-described statistically in terms of a damped random walk model.
7                           Bipolar NEFO was a damped sine wave with 140 ns first phase duration at 50%
8                                            A damping factor of 0.145 A(-1) is derived for the former
9 structure with vertical symmetry breaking, a damping-like SOT can deterministically switch a perpendi
10 set of net tissue contraction, followed by a damping of fluctuation amplitude.
11 ably, the Co25Fe75 epitaxial films exhibit a damping constant <1.4 x 10(-3), which is comparable to t
12 e atomic dynamics and allows us to extract a damping rate for the external degree of freedom of the a
13 ted by encapsulating the ring resonator in a damping medium.
14     We propose that the negative system is a damping system that modulates the amount of transcriptio
15              As a result, the pillars show a damping figure of merit that is substantially higher tha
16  any previous dog studied, this one showed a damping of the nystagmus within the first 4 weeks after
17 ws an exponential distance dependence with a damping coefficient alpha = 0.36 A(-1), which agrees wit
18           The antenna response drives active damping with a shorter delay (~20 ms) to stabilize this
19 -associated retinal lesions and can actually damp shockwaves significantly.
20 tical cooling of the mechanics without added damping, an effect that has no optical analog.
21                                     Although damping suppresses these excitations, it can be compensa
22 re affected by the white noise and amplitude damping.
23 s evolving under the action of the amplitude damping noisy channel.
24 th variations and the rate of wave amplitude damping.
25 sues persisted but became desynchronized and damped in constant darkness.
26 y describes the frequencies, amplitudes, and damping of the oscillations.
27 ng state-dependent changes in compliance and damping of thoraco-abdominal tissues.
28 relatively large spin-mixing conductance and damping-like SOT through spin Hall magnetoresistance and
29  including the effective spring constant and damping coefficient of bending.
30 he body; the body has inertial, elastic, and damping properties that may aid or oppose the muscle for
31 r variations in the amplitude, frequency and damping of the oscillations.
32 lso show micromagnetically that the IDMI and damping also combine to modify the domain wall velocity
33 etry, showing in general both field-like and damping-like torques are generated.
34 k to extract the whisker Young's modulus and damping coefficient.
35 ss, storage modulus, shear loss modulus, and damping ratio were calculated for all animals.
36  of the BEC, which show pronounced peaks and damping around the quantum critical point.
37 ls significant bandwidth renormalization and damping effects due to the strong correlation among Mn 3
38 se of resonance frequency analysis (RFA) and damping capacity analysis (DCA).
39 ts of large planets (Jupiter and Saturn) and damping mechanisms, such as gas drag, are included.
40               Conclusion Liver stiffness and damping ratio measurements can extend hepatic MR elastog
41 n mechanical properties (local stiffness and damping) extracted using dynamic and quasi-static force
42 tive contributions of field-like torques and damping-like torques to the magnetization switching indu
43 es for the high-frequency sound velocity and damping coefficients, which we find to be a sensitive pr
44                      We observe a large anti-damping torque in the YIG/Pt system, revealing its promi
45 e full natural p53 network, these pulses are damped in individual cells, with amplitude that depends
46 ered as fully coherent plasmons and they are damped even in the optical limit, i.e. for small momenta
47 s and Ca(2+) oscillations, "vasomotion," are damped due to neural induced astrocytic signaling.
48 nd 2.92 +/- 0.06 GHz are resolved, which are damped on a time scale of 20 ns.
49 es in forcing, and other parameters, such as damping and inverse modelling directly without the need
50 irected motion is a result of the asymmetric damping due to the size difference in the filling grains
51 resonance (FTICR) line width with background damping gas pressure, under conditions where the length
52 he observed energy transfer while NSET-based damping models provided better fits but could not reprod
53                    The faster motion must be damped with the sterol present.
54 ales up to several tens of nanometers before damping.
55 have reported a positive association between damp housing conditions and asthma, but little is known
56    These data suggest an association between damp housing conditions and childhood eczema symptoms, w
57 ics, from the edge of the transition between damped to sustained oscillations during wakefulness, to
58                 Of particular interest, bulk damping decreases monotonically as the temperature decre
59  Gilbert damping are identified, namely bulk damping and surface damping.
60 s, and the only one to consistently classify damped signals as highly periodic.
61  of guest ions or molecules plays a critical damping effect on transverse vibrations, thus inhibiting
62 a quantum critical point results in critical damping of the emergent heavy excitation of our Kondo la
63 small scales and simultaneously strong cubic damping.
64 ent FeNi nanowire may have less eddy current damping, which could make it an alternative candidate fo
65 The introduction of Bt maize explained cycle damping when the adoption of the crop was high (Minnesot
66 count, either through a local size-dependent damping model or through the Generalized Nonlocal Optica
67       Depending on the strength of diffusive damping, the model exhibits complex growth patterns such
68              This implies that the effective damping and the thermal stability of a nanomagnet can be
69 switching requires controlling the effective damping in magnetic nanoparticles.
70 er molecules and mobile ions may effectively damp the possible periodic distortions in Coulombic inte
71 heterogeneity and not from strong electronic damping associated with lossy plasmonic materials.
72 t defects are promising materials for energy damping applications.
73 that include high energy output, high energy damping, and high-temperature usage.
74 ts; and acoustic, vibration, or shock energy damping.
75 ts; and acoustic, vibration, or shock energy damping.
76  amide methylation confers stability to ETP, damping the spontaneous formation of tri- and tetrasulfi
77 -exist, others where the populations exhibit damped oscillations, and still others where one populati
78 xtures undergo osmotic relaxation exhibiting damped oscillations in phase behavior, which is synchron
79                           The model exhibits damped, as well as stable oscillations in a range of par
80  accounting for both intrinsic and extrinsic damping sources.
81 strained film structure suppresses extrinsic damping, enables soft magnetic behavior, and generates l
82 r noise at the single-cell results in faster damping at the population level.
83  well fitted by a model that includes finite damping at zero temperature.
84  edge, showed similar timings of fluctuation damping to the wild type, suggesting that damping is an
85  date been limited by the considerable fluid damping and the resulting low quality factors (Q factors
86  the superfluid density and the normal fluid damping.
87                              To reduce fluid damping in liquids and to improve the detection limit fo
88  a bulk material, making them attractive for damping applications in nanoscale and microscale devices
89                       In this work, a forced damped oscillation framework is applied to a chain-link
90                                      Gilbert damping increases approximately linearly with increasing
91 ental study of temperature-dependent Gilbert damping in permalloy (Py) thin films of varying thicknes
92 ite thin films with an unusually low Gilbert damping parameter (<3 x 10(-3) ), as well as strong magn
93 ng against the equilibrium-restoring Gilbert damping of the magnetization dynamics.
94 two independent contributions to the Gilbert damping are identified, namely bulk damping and surface
95                            While the Gilbert damping constant can reach 10(-4) to 10(-5) in some insu
96 nsight to the physical origin of the Gilbert damping in ultrathin magnetic films.
97                                  The Gilbert damping is found to be almost independent of the MgO thi
98 rstanding the physical origin of the Gilbert damping is highly relevant to developing future fast swi
99                                  The Gilbert damping of ferromagnetic materials is arguably the most
100 -mode damped sinusoid to extract the Gilbert damping parameter.
101 e first show how the increase of the Gilbert damping, caused by the inclusion rare-earth dopants such
102 aused by the Pinatubo 1991 eruption may have damped the observed decreasing trend of the AMOC in the
103 n the magnetically ordered phase and heavily damped electromagnons in the paramagnetic phase of LiCrO
104 s likely to cause phonon modes to be heavily damped and localized.
105 rporating a catalytically active but heavily damped metal, Pd, sustain multiple size-dependent locali
106                         However, the heavily damped plasmon resonances of many catalytically active m
107  single-crystalline nanowires exhibit a high damping merit index, suggesting that crystalline nanowir
108 t a unique combination of stiffness and high damping capacity (60-70%), the latter exceeding that of
109            Numerical simulations in the high damping 'quasi-static' and low damping 'dynamic' regimes
110                             Because the high damping of the material removes all other linear, small-
111       Light pulses caused intense and highly damped mechanical responses followed by traveling waves
112                                   The highly damped volume fluctuations and their low temperature sen
113                     The inferred homogeneous damping is due to the combination of damping intrinsic t
114 nificant extents of the magneto-hydrodynamic damping (MHD)-dependent solute build-up at the interface
115 ecruitment of cell types; and (iii) 10-20 Hz damped oscillations across retinal layers.
116  mice implicates a cholesterol derivative in damping down the inflammatory response mediated by inter
117 location rates can underlie the diversity in damping characteristics of calcium oscillations among ce
118 dwich composites boast a 250% improvement in damping performance, providing increased durability and
119 g layers, predominantly through variation in damping impedance, the combination of which determines t
120         Crucially, dopamine acts to increase damping and thereby limit resonance in this basal gangli
121                                The increased damping would tend to limit resonance, as confirmed in s
122 brissa that includes the effects of inertia, damping, and collisions.
123 e, we show that the effects of inhomogeneous damping can be reduced by using bipyramidal gold nanopar
124 tion, is dominated by the enhanced intrinsic damping contribution as a function of the Pt capping lay
125 his exceptional combination of low intrinsic damping and substantial magnetostriction arises from the
126 0.0036 +/- 0.0003 at 310 K for the intrinsic damping parameter.
127 a short-wavelength ion acoustic mode that is damped by electrons and reexcites small-scale Langmuir w
128  needs of harvesters, even if variability is damped in the archaeological record.
129 des exhibit an oscillatory behavior which is damped at high mass values.
130                                          Its damping effects were confirmed when applied externally.
131                    These waves, then, Landau damp on electrons accelerating them in the process.
132  optimal when the wave growth and the Landau damping times are comparable and are both very short com
133 asurements are rarely observed due to Landau damping by the single-particle continua.
134 lectron and hole carriers excited via Landau damping (during the plasmon decay) are responsible for t
135 achieved by elastic metamaterials with large damping.
136  metallic ferromagnets generally have larger damping due to magnon scattering by conduction electrons
137  two stable real poles, and two very lightly damped and nearly unstable complex poles describing a de
138                                 Ohmic losses damp the tidal motions and produce detectable signatures
139 multimode optomechanical system, where a low damping mechanical mode in the unresolved-sideband regim
140 s in the high damping 'quasi-static' and low damping 'dynamic' regimes are compared and show clear di
141                              This record low damping for metallic ferromagnets offers new opportuniti
142 ugh all of these great prospects require low damping, thus far strong plasmon damping has been observ
143 s ultrastrong field confinement and very low damping, enabling new classes of devices for deep-subwav
144                                          Low-damping magnetic materials have been widely used in micr
145 scillations.Owing to their conductivity, low-damping metallic ferromagnets are preferred to insulatin
146                               Meanwhile, low-damping metallic ferromagnets are desired for charge-bas
147                      So far, the lack of low-damping, magnetostrictive ferrite films has hindered the
148    This can be explained in terms of a lower damping of Fano resonance on obliquely deposited sample
149 mission profile is consistent with a Lyalpha damping wing, suggesting that the neutral fraction of th
150 om temperature and anomalously high magnetic damping at low temperatures.
151        Here the authors achieve low magnetic damping in CoFe epitaxial films which is comparable to c
152 devices, but it also has the lowest magnetic damping of any known material.
153 f a ferromagnet can act as negative magnetic damping and thereby excite self-oscillations of its magn
154        The intrinsic zero-temperature magnon damping in quantum spin systems can be driven by the int
155                                     The main damping channels are attributed to intrinsic thermal pho
156 inding that, in contrast, they are maximally damped.
157 ectable necroinflammation and fibrosis (mean damping ratio at 80 Hz and 20-week feeding, 0.044 +/- 0.
158             Additionally, using the measured damping rate of a levitated nanoparticle at a given pres
159 gy, making these alloys effective mechanical damping materials.
160 erials are being investigated for mechanical damping applications.
161 th, good superelasticity and high mechanical damping, and remarkable functional properties of high el
162 ustic measurements of the magneto-mechanical damping by domain walls.
163  to giant enhancement of both the mechanical damping and the spring stiffness, facilitating low-power
164 inflammation through promoting IgG1-mediated damping of the FcepsilonRI-dependent acute-phase reactio
165 ion precession was fitted with a single-mode damped sinusoid to extract the Gilbert damping parameter
166                       We used breathing mode damping to measure the shear viscosity at low temperatur
167 latory activity (as measured by the modelled damping factor) in both patient groups (P < or = 0.001).
168  temperature examined are 1.6-2.2 times more damped than those found in DPPC LUVs.
169                                    Moreover, damping intracellular Ca2+ oscillations with exogenous b
170              CaM dissociation from bound MVI damps filament rotational dynamics (i.e., increases the
171 hat cochlear amplification produces negative damping that counters the viscous drag impeding travelin
172 k shows that the power gain, or the negative damping, diminishes with intensity, we show explicitly b
173 ymmetric line shape that suggests weak or no damping of the plasmon by ionized impurities.
174 ystemic relevance, imperfections like noise, damping, and trending, or limited sampling density.
175 ter part of the oscillation that is normally damped; when this enhancement crosses perceptual thresho
176         The plasmon frequencies that are not damped by single-particle excitations do reach the near-
177 find a surface plasmon-polariton that is not damped by particle-hole excitations or the bulk modes an
178  Under optimum conditions (pH = 2; amount of damped MHAMS-MIONPs = 90 mg; eluent solvent volume = 2.6
179 e deviations of protein domains in regime of damped forced vibrations caused by critical level of inv
180 larly magnetized materials in the absence of damping.
181  during the excitation, and proper choice of damping gas (Xe is superior to He).
182 geneous damping is due to the combination of damping intrinsic to the nanoparticles and the surroundi
183                                The effect of damping on the asymmetric wave transmission is further d
184 g in granular materials and the interplay of damping, weakening and inertial effects in bulk metallic
185 solation of ions, the pulsed introduction of damping gas to a constant pressure using a pulsed leak v
186 dynamics--amplitude, period, and the rate of damping--can be controlled by manipulating stimulus leve
187  peaks may have contributed to saturation of damping effects via nonlinear particle trapping.
188                         Exposure to moldy or damp indoor environments is associated with allergic dis
189 eedback loops producing either monophasic or damped oscillatory nucleo-cytoplasmic dynamics.
190 e effect on a property is of an enhancing or damping nature.
191 ange of oscillatory phenotypes: sustained or damping oscillations, or arrhythmic patterns.
192 e of the system exhibits purely oscillatory, damped oscillatory or monotic behaviour under certain pa
193                                     The over-damped relaxation of elastic networks constructed by con
194 six quanta, respectively), indicates partial damping of the nascent product vibrational motion by the
195  the background signal, while only partially damping the signal in the presence of a catalyst.
196 Lyman alpha emission line (the Gunn-Peterson damping wing), as would be expected if a significant amo
197 finite energy, changing the anomalous phonon damping into an anomaly in the dispersion.
198 nt, and mutations that block phosphorylation damp kinetochore oscillations.
199 or-the eye muscles themselves-where physical damping of the oscillation offers an alternative approac
200      We determine the dispersion and plasmon damping in real space.
201          We find unprecedentedly low plasmon damping combined with strong field confinement and confi
202 on and in-depth understanding of low plasmon damping is the key to the development of graphene nanoph
203 show that a substantial reduction of plasmon damping can be achieved by placing a nanometric polymer
204 require low damping, thus far strong plasmon damping has been observed, with both impurity scattering
205 al gate below the graphene, and that plasmon damping at positive carrier densities is dominated by Co
206        Magnetization relaxation, precession, damping and the spatial coherence of magnetization dynam
207 sults is suppressing the effect of radiation damping in (1)H NMR which produces signal distortion and
208 city, the wave fluxes of heat, and radiative damping.
209 e attributed to changes in the non-radiative damping and energy transfer.
210 ack of the first kind involves the radiative damping of the vertically uniform temperature perturbati
211 he dissipative nature of the polymer readily damps linear waves, preventing propagation of any mechan
212 hat a translocation embedded motif regulates damping of G-protein-mediated calcium oscillations consi
213                               The remarkable damping performance of the hierarchically structured fib
214 including broadband measurements of resonant damping as a function of frequency, and measurements of
215 intracellular cAMP levels, but caused rhythm damping.
216 hat photonic sintering is an inherently self-damping process, i.e., the progress of densification red
217 ern level in the early Holocene and severely damped ~4000 to 5000 years ago.
218  may affect enzyme action due to significant damping in the enzyme fluctuations.
219 metrically scaled animals experience similar damping on a per-wingbeat time scale, resulting in simil
220                              Linker-specific damping of fluctuations provides evidence for the intrin
221 inaccessible combinations of high stiffness, damping and light weight that we achieve in these layer-
222  structure, in which we demonstrate a strong damping-like torque from the spin Hall effect and unmeas
223 his range inter-sub-band phonons show strong damping due to resonant scattering into an intermediate
224 which occur with high yield despite strongly damped and noisy environments.
225 esponse dynamics ranged from short, strongly damped responses to slowly decaying, weakly damped oscil
226 tips, in which the gold plasmon was strongly damped by cadmium selenide through interfacial electron
227 lter on variations in magma supply, strongly damping fluctuations shorter than about 100,000 years.
228 ime and frequency domains under a structural damping (power-law or fractional-derivative) model, but
229 lies to large birds benefit from substantial damping of angular velocity through a passive mechanism
230 computed dispersion relation leading to such damping was consistent with proposed continuum viscoelas
231  identified, namely bulk damping and surface damping.
232  as the temperature decreases, while surface damping shows an enhancement peak at the temperature of
233 y time scales suggests additional short-term damping of solute concentrations, potentially due to in-
234 ncert with other hypothesized processes that damp dynamic ruptures, and is consistent with the broad
235 e of these persisting motions indicates that damping and intermode coupling are weaker than previousl
236 on damping to the wild type, suggesting that damping is an autonomous property of the AS.
237 ry multistable dynamical systems such as the damped driven pendulum, a model of Amazonian rainforest
238 e of dielectric behavior is explained by the damped harmonic oscillator model with temperature depend
239                                       In the damped phase, the magnitude of the order parameter appro
240 ncy relative to the natural frequency of the damped oscillator is important for the emergent deformat
241                                          The damping rate of atomic motion (the analogue of electrica
242 tion of the perpendicular field-like and the damping-like SOTs, which exhibits deterministic switchin
243  the perpendicular field-like torque and the damping-like torque coexist, hence jointly affecting the
244 adapting biota we derive expressions for the damping rate of fluctuations, along with a threshold bey
245 put by treatment with levodopa increased the damping of oscillatory activity (as measured by the mode
246 hotoacoustic spectroscopy to investigate the damping of a single sub-terahertz coherent phonon mode b
247 ficance of the relative contributions of the damping and the IDMI from the heavy metal layer on the m
248                    A systematic study of the damping parameter and frequency as a function of irradia
249 g effects, thereby enabling tailoring of the damping processes and electromagnetic field couplings of
250 ng that originates from the variation of the damping rate and coupling coefficient of the resonance m
251 oriya interaction (IDMI), enhancement of the damping, via d-d hybridisation and spin-pumping across t
252      It is demonstrated that the role of the damping-like SOT in the deterministic switching is highl
253 dically driven optical cavity can reduce the damping of a mechanical resonator, leading to parametric
254 rate of a signaling protein can regulate the damping of system oscillation.
255 deling framework that naturally stylizes the damping effect of borders.
256                       Next, we show that the damping rate of cultured cells can be changed in a dose-
257              In this study, we show that the damping rate of population-level bioluminescence recordi
258  colloids are usually disregarded due to the damping imposed by the surrounding fluid.
259  the domain wall velocity behaviour when the damping is larger.
260 ent becomes more important compared with the damping and coupling effects from the normal component.
261                            Compared with the damping of the homogeneous composition FeNi nanowire (a
262 walking motors is conspicuous, and therefore damps the active motor flux.
263 ic phonon scattering limits or thermoelastic damping limits.
264 similar elastic object with a shear-thinning damping term and a stiffness that becomes smaller as one
265 ance that was attributed to increased tissue damping and tissue elastance.
266 creases in neutrophilic infiltration, tissue damping, and elastance parameters, in association will l
267  airway hypersensitivity (resistance, tissue damping, and elastance), eosinophilic inflammation, and
268        The enhanced ability of MT bundles to damp buckling waves relative to individual MT filaments,
269                                  Exposure to damp indoor environments is associated with increased ri
270 rth magnet oculomotor prosthesis, powered to damp nystagmus without interfering with the larger force
271 e globe, action at a distance is required to damp the oscillation at the point of fixation, allowing
272 r interventions, it is shown successfully to damp pathologic eye oscillations while allowing normal s
273 fluxes on the equatorward side would tend to damp the SST front, here we present observational eviden
274 shape-agnostic manner and with resistance to damping.
275 es including stiffness, strength, toughness, damping, fatigue resistance, and self-healing ability is
276 owth dynamics, our model predicts transient (damped) oscillations.
277 d are non-stationary due to baseline trends, damping and drift in period length.
278 e system approaches equilibrium it undergoes damped oscillations with a ~3.6-picosecond time period.
279      For TNFalpha below this critical value, damped oscillations are observed.
280 echanism to design oscillations with varying damping patterns by using intracellular translocation of
281 theory (MKT), the influences of both viscous damping and solid-liquid retarding were analyzed in eval
282 lifying sound energy to overcome the viscous damping of the cochlear partition.
283 dissipation that originates from the viscous damping of the dithered cantilever.
284 l melts are stable at these depths in a warm damp mantle, we interpret the conductor to be a partiall
285 eptide or its receptor, mCry1 expression was damped and desynchronized between cells.
286 e, collective density excitations are weakly damped.
287  damped responses to slowly decaying, weakly damped oscillations.
288 crop was high (Minnesota); oscillations were damped but continued to persist when Bt maize was used l
289 tributed to electrosteric forces, which were damped at high ionic strength.
290 uations, along with a threshold beyond which damped oscillations occur.
291 erfluid component via mutual friction, which damps the motion of quantized vortex lines and eventuall
292 to lower the allergen burden associated with damp homes.
293 cies of microfungi typically associated with damp indoor environments.
294             Conversely, aberrant clocks with damped amplitude and/or abnormal period have been associ
295 uum, the aqueous environment associated with damping forces and thermally induced fluctuations (Brown
296 hibit exponential distance dependencies with damping coefficients of beta = 0.35 A(-1) and 0.34 A(-1)
297                  Founded upon diffusion with damping, ITM Probe is an application for modeling inform
298 length of the acceptor is investigated, with damping coefficients beta measured to be (0.24 +/- 0.025
299  a Gilbert type at the saturated state, with damping of 0.035 +/- 0.003.
300 er suppression and anomalous cooling without damping in an asymmetrically-pumped optomechanical syste

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