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1  good ductility that are tolerant of complex deformation.
2 rces required to overcome soil resistance to deformation.
3 in jerky flow and the onset of inhomogeneous deformation.
4 t locally measures electromechanical surface deformation.
5  electrodeposition, nucleation, and membrane deformation.
6 f disordered colloidal solids during plastic deformation.
7 ompanied by an axon injury response and axon deformation.
8 this, in turn, changes the nature of further deformation.
9  accommodate stress and strain mismatch with deformation.
10 nes processes of hard-bedded sliding and bed deformation.
11 t of a coupling between light absorption and deformation.
12 te phase-dependent transient elastic lattice deformation.
13 with widely used models to interpret volcano deformation.
14 odes (stretch, bend, or press) of mechanical deformation.
15  as increased material stiffness and plastic deformation.
16 metry during a single phase of 3-dimensional deformation.
17 ses in terms of invariants of shear and area deformation.
18 and use it to identify the area of strongest deformation.
19 from solid to fluid under sufficient load or deformation.
20  the complex boundary conditions of their co-deformation.
21  mechanosensing mechanism involving receptor deformation.
22 ling of damage caused by repeated mechanical deformation.
23  combination of flank slip and visco-elastic deformation.
24  to maintain genome integrity in response to deformation.
25 uction from large-scale image distortion and deformation.
26 d by weak bonds usually exhibit more plastic deformation.
27 nting for 25% to 35% of regional variance in deformation.
28 eptibility to fractures with or without bone deformation.
29 gia to a childhood blinding disorder to bone deformations.
30 s, associated with basal soft sediment micro-deformations.
31 ers that change their color under mechanical deformations.
32 ies and by the lack of controlled multishape deformations.
33 g and analyzing information-rich 3D material deformations.
34 oid contractility and the surrounding matrix deformations.
35 tretchable conductors under large mechanical deformations.
36 posits, namely the basal soft sediment micro-deformations.
37 ustering in the relaxation of large membrane deformations.
38 ue to their ability to rapidly undergo large deformations.
39 e believed to kill bacteria through physical deformation, a mechanism that has immense potential agai
40                      Instead, nondevelopable deformation about pillar tips is more likely to create a
41 zes polyethersulfone (PES) membranes against deformation above the polymers' glass transition tempera
42 transduction, whereby force-induced membrane deformation activates integrins by disrupting the associ
43  the parasite at the RBC membrane, while RBC deformation aids in the establishment of apex-membrane c
44 as the large magnetic field-induced membrane deformation allowing to determine the membrane bending e
45 ical energy associated with high-strain rate deformation alone can induce tau mislocalization to dend
46 eight arms were capable of all four types of deformation along their lengths and in all directions.
47 smonic platform, the analyte-induced nanoMIP-deformations amplified the resonance shift, enabling to
48 BD using partial least squares between brain deformation and 27 clinical variables.
49        Manipulation of the dynamic ejection, deformation and assembly of charged droplets by control
50 radient, which leads to compression-dominant deformation and asymmetric wall fracture, accomplishing
51 he potential that combined satellite surface deformation and edifice-scale surface warming time serie
52 mbrane cargo on the membrane induce membrane deformation and facilitate ILV formation: Upstream ESCRT
53 d in cargo sorting and ESCRT-III in membrane deformation and fission.
54 I needle insertion reduced both local tissue deformation and global prostate displacement because of
55                             The local tissue deformation and global prostate displacement during the
56 lity to convert light energy into mechanical deformation and locomotion.
57                       The nanopillars induce deformation and penetration of the Gram-positive and Gra
58 hrombus microstructure and properties on its deformation and possible release of emboli under differe
59 aminar schisis may be a sign of glaucomatous deformation and reflect ongoing pathophysiological damag
60 Earth's crustal stress field controls active deformation and reflects the processes driving plate tec
61 lood (thrombus) are crucial in dictating the deformation and remodeling of a thrombus after its forma
62 ric synthetic aperture radar (InSAR) surface deformation and satellite thermal infrared edifice-scale
63 ype and spacing of FCC/BCC interfaces on the deformation and spall behavior.
64 ivities are associated with large mechanical deformation and strain.
65  in iRBD, combining cortical and subcortical deformation and subarachnoid/ventricular expansion to co
66        The artery has an imposed peristaltic deformation and the deformable brain tissue is modeled b
67                                 We find that deformation and warming are highly correlated, and depen
68  shape of specific isomers through geometric deformation and/or the rotation of fluorine atoms in ani
69             It is capable of producing large deformations and holding them with no additional power,
70 culties in precise spatiotemporal control of deformations and inefficient underwater actuation of exi
71 evaluate the feasibility of left atrial (LA) deformations and its prognostic values of ischemic strok
72 -temporal distribution of slow earth surface deformations and the results used for checking the compl
73 l correlations between midlevel visual (oral deformations) and auditory speech features (frequency mo
74 ell and quantified cell stiffness, chromatin deformation, and DHFR (dihydrofolate reductase) gene tra
75 asticity, toughness improvement during large deformation, and even photoinduced reversal of the effec
76 yosin II decreases cell stiffness, chromatin deformation, and gene upregulation.
77 nd cement, including density changes, sample deformation, and mineral precipitation and dissolution.
78  oscillatory shear near the onset of plastic deformation, and of the period bifurcation cascade near
79  a variety of ways such as interpenetration, deformation, and shrinking.
80 etric kerogenous lamellae, plastic tube-wall deformation, and tube-wall delamination.
81 apes due to surface tension, fluidity due to deformations, and fast internal molecular rearrangements
82 s at the heart of biology, and major protein deformations are correlated to specific functions.
83  for generation of axis stress and resultant deformations are discussed.
84                                Specifically, deformations are measured at the adventitial surface by
85                  Thus, irreversible junction deformations are regulated by RhoA-mediated contractilit
86                            Note that bending deformations are reversible, while stretching deformatio
87 tances of 2-10 nm is particularly important: deformations arising from protein binding commonly fall
88 structing soft-tissue surfaces under dynamic deformations as well as for informing device design and
89 tions, despite obvious decrement of cellular deformation at moderate-to-higher shear stresses.
90 ight was associated with increased pituitary deformation, augmented aqueductal cerebrospinal fluid (C
91 elates the early receptor potential to these deformations based on the voltage-dependent membrane ten
92 hecus and Australopithecus) as captured by a deformation-based 3D geometric morphometric analysis.
93                                              Deformation-based morphometry was used to estimate corti
94  are remarkably resistant against mechanical deformations because collagen molecules hierarchically s
95       In those two films, there is a bimodal deformation behavior due to Cu-agglomeration under protr
96 ately, these studies enable control over the deformation behavior of future DNA-assembled nanomateria
97 e produced by some combination of four basic deformations: bending (orally, aborally; inward, outward
98 es tensile strains up to 60% without plastic deformation by aligning BNNTs, which enhances the compos
99 phase progressively increases during plastic deformation by forming at the stacking-fault network bou
100                                           LA deformations by the 3-beat method are feasible and repro
101 which is an algorithm that learns to rectify deformations by using a local z-scoring procedure, while
102 cropillars with different degrees of bending deformation can be configured in any spatial pattern usi
103 e demonstrate that microfluidic induced flow deformation can be used to robustly detect mechanical ch
104                                       Ground deformation can cause serious environmental issues such
105 e direct evidence that cell-scale mechanical deformation can elicit tau abnormalities and synaptic de
106 In addition, it has been found that flexible deformations can maximize the drag reduction rate.
107         To model cellular force response and deformation, cell mechanical models commonly describe th
108 ere significantly more resistant to physical deformation compared with the control experiment.
109 s (vdW) magnets are sensitive to the lattice deformation controlled by the external strain, providing
110 he deleterious moisture effects on long-time deformations, cracking damage, and fracture in concrete
111 contribution of these conditions to volcanic deformation, crustal stress evolution, and eruption fore
112 rate multilocation decoupling and multimodal deformation decoupling through a stretchable DFOS-integr
113                                      Plastic deformation, degradation, and relaxation of stress are t
114 hat hydrogen charged specimens after plastic deformation display a very characteristic pattern of tra
115 ccumulation, which drives extensive membrane deformation, DNA damage and chromosome fragmentation.
116 yclic loading, localization of intragranular deformation due to crystallographic slip acts as a precu
117 ctions in tensile stress and elastic-plastic deformation during dicing, thanks to a lower CoF.
118 ci of NFTs in CTE brains are regions of high deformation during injury.
119 ches which stabilized and reduced the tissue deformation during insertion.
120 echanical integrity that resists the plastic deformation during the lithiation/delithiation.
121 referred, although these undergo significant deformation during the printing process, which may impai
122              Neurons undergo nanometer-scale deformations during action potentials, and the underlyin
123 ances and are subject to significant stretch deformations during limb movements or sudden head moveme
124                                         High deformation energy and differences in solvation energies
125 he ability to accommodate extreme mechanical deformations, especially high levels of stretching, repr
126 ell as insensitivity to bending and twisting deformations-features that are important for soft device
127  are attributed to primary geology, tectonic deformation, followed by fluvial erosion (and lesser win
128                      Harnessing flow-induced deformation for passive functionality provides a means o
129  maintaining its stable output under complex deformations for an all-solid-state supercapacitor.
130  shell formulation capable of handling large deformations for applications in vascular biomechanics.
131 f pillar elasticity confirm that deflection, deformation force, and mechanical energies are more sign
132 stimate cortical and subcortical gray matter deformation from T1-weighted magnetic resonance images.
133 isk of mechanical damage during brain tissue deformation from traumatic brain injury.
134                    The device detects minute deformations from the unique laser-induced crack structu
135 nised our ability to measure Earth's surface deformation globally and with unprecedented resolution.
136 ent (i.e. change in lesion position), and 3D deformation (i.e. change in lesion shape) could inform o
137 ars, including the integration of myocardial deformation imaging into routine clinical practice to id
138   However, they are intolerant to mechanical deformation, impeding their application in flexible elec
139                              Cell motion and deformation in a cross-slot channel was modeled for fixe
140 s exhibit superior resistance to macroscopic deformation in comparison to their analogs generated fro
141                                      Plastic deformation in crystalline materials consists of an ense
142 Experimental discovery of ultralarge elastic deformation in nanoscale diamond and machine learning of
143 lasticity contributes to the onset of pillar deformation in response to bacterial adhesion to the sur
144  different avenues for accommodating plastic deformation in the body-centered cubic (bcc) variants of
145  observe that human DHHC20 induces a drastic deformation in the membrane, particularly on the cytopla
146 nd Advanced-InSAR analysis highlights active deformation in the MS.
147  knowledge of how faults slip and distribute deformation in the shallow crust hinders efforts to miti
148 e, placed on a low-cost glass chip, we cause deformations in a thin liquid layer (850 nm) containing
149 l motion that produces mechanical forces and deformations in adjacent materials.
150         We investigated the diversity of arm deformations in Octopus bimaculoides with a frame-by-fra
151 st that further studies focus on these micro-deformations in order to test the representability of th
152  of membranes and the importance of membrane deformations in the analysis of swelling dynamics of bio
153 ation but permitting a family of zero-energy deformations in the bulk that may be used to reconfigure
154 , we show that Rho1 activity induces ectopic deformations in the dorsal and ventral epithelia of Dros
155 ped tissue samples when considering only the deformations in the far field.
156 ry and instability modes, as well as how the deformation increment size can influence the simulation
157                                 The platelet deformation index for GORE-TEX is 2-fold higher than tha
158 nt correlation was observed between AIRs and deformation, indicating that the highest yields of cell
159 ical gating mechanism stemming from membrane deformation induced by a non-planar transmembrane domain
160 le devices can detect the imperceptible skin deformation induced by the human pulse and capture the c
161 ng, walking, jumping, and swimming, by local deformations induced by selective spatiotemporal light i
162                                         This deformation-induced DNA damage, unlike nuclear-envelope-
163 ing, providing a molecular mechanism for the deformation-induced DNA damage.
164  of the embryo by quantifying its Lagrangian deformation, information that is inaccessible to simple
165  concept of elastic cables taking only axial deformation into account.
166  from discrete domains unaffected by ductile deformation into localized shear zones deforming via dif
167 iezoelectric materials to convert mechanical deformations into electrical signals, the representative
168  grooved detachment fault, and subdetachment deformation involving crustal-scale nappe folds and magm
169                       We found that regional deformation is correlated with the deformation of struct
170                                         This deformation is coupled to liquid pinning induced by the
171 nal analysis also demonstrates that envelope deformation is increased by adhesion to nanopatterns wit
172 ry leads us to conclude that wavelike atomic deformation is largely responsible for the observed long
173                                              Deformation is mechanically coupled from the crust to th
174 of SF strengthening to work hardening during deformation is not well understood; as compared to dislo
175                              This reversible deformation is retained in a broad class of face-centred
176 ge devices that can endure large and complex deformations is central to emerging wearable electronics
177 ly linking hormone transport to local tissue deformation leading to the generation of mechanical forc
178 orption of NPs is responsible for mechanical deformation, leading to cell rupture and death.
179                                          The deformation lifts the circular symmetry and creates chao
180 ent-twin boundary in order to understand the deformation localization behavior of this critical, 3D m
181 for systems with unidirectional variation in deformation magnitude.
182 ling is reversible and involves hierarchical deformation, making S. lepidophylla an attractive model
183  follow-up CT images was performed to obtain deformation maps of the whole lung.
184    Jacobian determinants calculated from the deformation maps were given as input to a deep learning-
185 eformations are reversible, while stretching deformation may be irreversible, leading to membrane dis
186 lowering of the energy required for membrane deformation may contribute to Ca(2+)-induced fusion.
187 ture changes suggests a relationship between deformation mechanisms and chemical atomic distribution,
188 nd call for further investigations about the deformation mechanisms and elasticity of minerals in the
189  has significance for reducing irrecoverable deformation mechanisms during loading and cycling throug
190                                Thermoelastic deformation mechanisms in polycrystalline biomedical-gra
191                                Understanding deformation mechanisms in silicon is critical for reliab
192 These findings also connect micrometer-scale deformation mechanisms with fatigue failure at the bulk
193                           Therefore, bending deformations need only be considered in reversible physi
194 n, cancer cells experience extensive nuclear deformation, nuclear envelope rupture, and DNA damage.
195                  Bending was the most common deformation observed, although the proximal third of the
196 in the comet's body testify that large-scale deformation occurred in a brittle-plastic regime and was
197 d that the light-induced periodic mechanical deformation of actin nanofibres with a frequency of 50 H
198         For non-sealing fractures mechanical deformation of altered asperities can rapidly reduce per
199 odeled as samples from an unknown, nonlinear deformation of an underlying Riemannian manifold, which
200 growth/biofilm matrix production, mechanical deformation of both the biofilm and the substrate, and t
201  fortuitous and can be attributed to elastic deformation of capillary walls(23-25), which suppresses
202 amic approaches to the relaxation, flow, and deformation of glasses.
203    Twinning is commonly activated in plastic deformation of low stacking-fault face-centered cubic (F
204 , which enter a shock state characterized by deformation of many cellular structures, including mitoc
205 tic pathway that directly relates mechanical deformation of neurons to tau-mediated synaptic impairme
206            Here, we report that a mechanical deformation of plastic organic single crystals such as b
207  regional deformation is correlated with the deformation of structurally and functionally connected n
208                         Although the surface deformation of tectonic plate boundaries is well determi
209 el transduces optical energy into mechanical deformation of the 3D cross-linked hydrogel matrix.
210 use; above a critical flux, the flow-induced deformation of the cell blocks the outflow, interrupting
211              To monitor the localization and deformation of the droplets, fluorous soluble fluorophor
212 ese conformational changes might lead to the deformation of the GDP-binding pocket.
213                                          The deformation of the heart tissue due to the contraction c
214 in lipid nanodiscs, suggesting that physical deformation of the lipid bilayer, either by mechanical f
215 rupture, we show that, in others, mechanical deformation of the nucleus is sufficient to cause DNA da
216 cally induced DNA damage, linking mechanical deformation of the nucleus to DNA replication stress.
217  the generation of mechanical forces and the deformation of the organ in three dimensions.
218 plant tissue that are balanced by an overall deformation of the organ, hence changing its orientation
219 ovement is caused by buckling and subsequent deformation of the suspended ice, with a threshold that
220 n the crystals enable homogeneous plastic co-deformation of the two regions.
221 onent to TT content exchange, wherein cyclic deformation of TT during diastolic stretch and systolic
222                                   Mechanical deformations of DNA such as bending are ubiquitous and h
223 in the modeling of sorption and hygrothermal deformations of nanoporous materials such as hydrated ce
224                  We consider the zero-energy deformations of periodic origami sheets with generic cre
225  and Pseudomonas aeruginosa can induce large deformations of soft synthetic hydrogels.
226 ropulsion mechanisms rely on global or local deformations of the cell surface.
227                                              Deformations of the disc and adjacent PPR were measured
228                    There were no significant deformations of the disc during abduction by older subje
229 r of the DW comes from energy changes due to deformations of the DW shape during the rotation around
230  the campaniform sensilla (CS), which detect deformations of the exoskeleton arising from resisted mo
231 tudy the interrelations between synchronized deformations of the soft solitonic particles and their a
232                This phenomenon arises due to deformations of the solid at the moving contact line, en
233 agonal lattices prompt repetitive shear-like deformations of the solitons, which synchronize the elec
234         Typically, ion migration for crystal deformation or connection with other nanocrystals needs
235 as to investigate if microgravity can create deformations or movements of the eye or optic nerve, and
236                               The mechanical deformation originates from the electron transport and i
237 fraction imaging to investigate the internal deformations originating from the inhomogeneous Cu ion d
238 proach provides an insight into the molecule deformation over a surface at high pressures under nonde
239 ability to precisely detect millimeter-scale deformation over broad regions of active faulting.
240                                  Distributed deformation patterns are circumscribed by specific funct
241 eyl semimetal NbAs by combining the internal deformation potential of coupled phonons with applied st
242 o-strain transducer involving thermoelastic, deformation potential, or inverse piezoelectric effects.
243                                        These deformations prevent the automatic extraction of vital c
244 ials, providing fundamental insight into the deformation process of the involved materials.
245 eneration and therefore spatially nonuniform deformation profiles that drive out-of-plane buckling of
246                                     From the deformation profiles, we determined key biophysical prop
247 eastern Nepal, we present evidence of recent deformation propagating >37 km south of the MFT.
248              Theoretical modeling of thermal deformations provides a clear understanding of the micro
249 d finite element modeling to investigate how deformation rate and mechanical properties of the shallo
250 sults demonstrated the maximum line-of-sight deformation rate of 14.6 cm/year and maximum vertical de
251 f the fluid rotation-rate (vorticity) by its deformation-rate (strain).
252 de aging stiffened the nucleus and decreased deformation recovery rate.
253 were used to establish a new measure of cell deformation, referred to as the "elongation index" (EI).
254                      However, the structural deformation regarding inhomogeneous active regions durin
255 edbacks between deep carbon mobilization and deformation remain poorly investigated.
256 hanges are rectified to produce irreversible deformation, remains poorly understood.
257 ork, we study the equilibrium properties and deformation response of a complex DNA structure called a
258                                      Nuclear deformation, resulting from either confined migration or
259                                          The deformation score also predicted cognitive performance o
260                                          The deformation scores from patients with iRBD were compared
261 full-field observations of the spike-induced deformations shed light upon the electromechanical coupl
262  though the expected pattern of tidal forced deformation should be symmetric between the north and so
263 e physiological swelling, whereas stretching deformations should also be considered in pathological i
264 etection and classification of distinct skin-deformation signatures, enable the reliable decoding of
265 on rate of 14.6 cm/year and maximum vertical deformation (subsidence) rate about 19.1 cm/year which c
266 patients showed subtle changes in myocardial deformation, suggesting subclinical myocardial injury.
267 trix without further knowledge of the matrix deformations surrounding the cell and without performing
268   Here we track in situ the yield stress and deformation texturing of pure nickel samples of various
269  CLC mixtures was more effective in membrane deformation than clathrin with single neuronal isoforms
270 biofilms) were potentially less resistant to deformation than the thinner and denser biofilms (tin an
271                The resistance to macroscopic deformation that arises from a microphase-separated stru
272                The resulting elastic lattice deformation that follows scanning irradiation of a laser
273  density, skyrmions may exhibit such extreme deformation that spontaneous merging with nearest neighb
274 ple foldable 3D microstructures that involve deformations that typical conductive materials, such as
275 ic digital image correlation technique while deformations throughout the wall and thrombus are inferr
276                           By applying finite deformation to the spectrin network, we obtain the total
277 er pores, each tRNA is required to undergo a deformation to translocate.
278 n introduces a new degree of freedom, cavity deformation, to the microcomb studies, and our microcomb
279 cts work synergistically to bias crystallite deformations toward a subset of the available outcomes.
280 t to those in most Fcc metals, a majority of deformation twins in Bcc metals are unstable and undergo
281 insights into the structure and stability of deformation twins in Bcc metals.
282 rther showed that BC nanopaper showed little deformation under creep, with a secondary creep rate of
283                    Here we show that plastic deformation under triaxial compression at room temperatu
284 e vesicle disruption and asymmetric membrane deformation upon alpha-synuclein binding to phosphatidyl
285 1 even reaches a level resisting substantial deformation upon deposition on an Au(111) surface, as de
286                                     Membrane deformation upon swelling generates tensile stress and i
287 t to crystalline defects formed during creep deformation, using combined transmission electron micros
288                                  Gray matter deformation was estimated in a sample of 133 individuals
289 ly captures the non-monotonic osmosis-driven deformation waves and determines the onset of their emer
290   Overall, the prognostic performances of LA deformations were attenuated after adding global longitu
291                         More than 16,500 arm deformations were observed in 120 min of video.
292 noted that spider web could experience large deformation when the spider uses its silk to catch prey.
293  model may increase the risk for bending and deformation, which could result in the skeletal dysplasi
294                                         This deformation, which is larger in younger than older subje
295          Using only the kinematics of tissue deformation, which naturally integrates local and global
296 ct with the substrate results in significant deformation, which not only produces adhesion, but can c
297  can resiliently tolerate extreme forces and deformation while being manufactured at large scales hav
298 s that can be twisted and folded to multiple deformations while retaining their electrochemical perfo
299 ate reversible reaction with fast structural deformation whose lifetime is around 20 ps at 298 K.
300 layers are frequently subjected to extensive deformations, yet sustain such mechanical stress without
301                                              Deformation zones beneath the Bhadrapur topographic high

 
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