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1 insic disordered structure and thermodynamic metastability.
2 rature even in high vacuum, highlighting its metastability.
3 onsible for the extraordinarily long extreme metastability.
4 and heptad repeat 1-C (HR1(C)) regions to GP metastability.
5 considered synthesizable owing to their high metastability.
6 viruses by examining mutations critical to F metastability.
7 ovirus (reovirus) is a model to study capsid metastability.
8 al richness, measured by variance in FCD and metastability.
9 ze spectral entropy, a proxy for multi-state metastability.
10 trengths demonstrating critical dynamics and metastability.
11 his model for 30 min to generate multi-state metastability.
12  protein energy simulations and viral capsid metastability.
13 dynamic properties in terms of synchrony and metastability.
14 igate the contribution of two Env regions to metastability.
15 ocused/constrained mode characterized by low metastability.
16 otein that lie at the heart of its prefusion metastability.
17 DAN increases global synchrony and decreases metastability.
18 th in the computational running time and the metastability.
19 omplete crystallization, indicating extended metastability.
20 entamers of polyoma viruses maintains capsid metastability.
21 connection between structural plasticity and metastability.
22 y to "long-lived" metastability to transient metastability.
23                                              Metastability, a concept from the dynamical systems lite
24 ooling direction allow for the expression of metastability, a feature of liquid crystalline phases th
25 ination Dynamics proposes a mechanism called metastability, a subtle blend of integration and segrega
26 apolating from simulated data, synchrony and metastability across the RSNs emerged at coupling streng
27                                         This metastability allows ERMCSs to remodel with changes in t
28 twork connectivity and a decrease in network metastability allows rules that are coded throughout wor
29        However, owing to their thermodynamic metastability, anatase-type TiO(2) -IrO(2) solid solutio
30                                     However, metastability and a web of nonnative states slow the ave
31 tional variability in ACC that underpins its metastability and crystallization.
32 igned mutations to enhance A1-LCD condensate metastability and discovered that stress granule disasse
33 nal MRI data, we demonstrated a reduction of metastability and functional network repertoire in UWS c
34   Here, we provide a comprehensive review of metastability and its applications in neuroscience, cove
35 pressure-temperature pathways, indicative of metastability and kinetic barriers.
36 orphous ice structures(2,3), as well as rich metastability and kinetic effects(4,5).
37 tationary plateau indicating the presence of metastability and multi-exponential decays in case of mu
38 lex because of strong lattice strains, phase metastability and path dependent phase behaviors.
39 uctuations in electrical conductance display metastability and power law scaling of temporal correlat
40 es attentional focus by 'tuning' whole-brain metastability and so adjusts how stable brain network ac
41 ng of the genomic determinants of epigenetic metastability and suggest that interindividual epigeneti
42                In the empirical RSNs, higher metastability and synchrony were respectively associated
43 vity at baseline, as indexed by lower global metastability and synchrony.
44 ntal operations, higher-order RSNs had lower metastability and synchrony.
45 cused/exploratory mode characterized by high metastability, and a focused/constrained mode characteri
46 e relationship among brain network activity, metastability, and cognitive state in humans, testing th
47 n of nAbs caused by the dense glycan shield, metastability, and heterogeneity of GPC.
48 ten globule, has a wide temperature range of metastability, and it is identified as the "slow interme
49 emical synthesis, electric power generation, metastability, and phase transition kinetics.
50                                         This metastability appears to be a consequence of pressure to
51  computational approaches to investigate how metastability arises from the healthy structural connect
52             We also discuss the emergence of metastability as a stochastic bifurcation, which can be
53 hous calcium carbonate and rationalizing its metastability as an amorphous phase.
54                                We identified metastability as two complementary phases composing such
55  bone, we explored the fatigue resistance in metastability-assisted multiphase steels.
56 rogen chains in pure forms, and also exhibit metastability at ambient conditions.
57                                          The metastability barrier upon hydrate formation and dissoci
58  phosphate supersaturation or upper limit of metastability between thiosulfate-treated and control ra
59 l that multispike engagement can exploit the metastability built into virus the envelope to irreversi
60 ion cascades including reactant stability vs metastability, catalytic vs noncatalytic transduction, p
61  the conduction band are responsible for the metastability change.
62 l findings presented can allow assessment of metastability characteristics of leading thin-film photo
63            Thus, local inhibitory-controlled metastability constitutes the dynamical core specifying
64 he transient perturbation and how the serpin metastability contributes to the perturbation.
65                                   Therefore, metastability could be a hallmark of dynamic functional
66 d repeat 2 (HR2) in S2 as the cause of spike metastability, designed an HR2-deleted glycine-capped sp
67 scontinuous change in area, arguing that the metastability does not reflect transition of the POPC fi
68                                              Metastability (dynamic recurrence of non-equilibrium tra
69 findings provide thermodynamic insights into metastability engineering strategies that can be deploye
70                            Here we present a metastability-engineering strategy in which we design na
71                                         This metastability-engineering strategy should thus usefully
72                                   Here, the "metastability-engineering" strategy is exploited in brit
73                                The energetic metastability explains why coffinite cannot be synthesiz
74 emperature anharmonicity and low-temperature metastability fine-tuned with phonon stability at the lo
75                We also report the regions of metastability for non-ground state equilibrium configura
76 ng seven alloys with experimentally observed metastability for TRIP/TWIP.
77      Using the full diagram, we examined the metastability gaps, i.e., the distance between the cryst
78 e, we found that IgG antibodies have similar metastability gaps.
79                                              Metastability has been studied for its potential role in
80                                    HIV-1 Env metastability has created challenges for defining the st
81                                     Although metastability has garnered increasing attention, it has
82 neutralizing activity in human sera, but its metastability has hindered characterization.
83 , this body of work often uses the notion of metastability heuristically, and sometimes inaccurately,
84 ain during resting state operates at maximum metastability, i.e. in a state of maximum network switch
85 itions, representing a rare demonstration of metastability in a Meisenheimer complex.
86                          Here, we illustrate metastability in continuous neural and behavioral record
87  This challenges the common understanding of metastability in discontinuous phase transitions.
88 cid addition, and they represent a source of metastability in Escherichia coli's proteome.
89                             We found reduced metastability in large-scale neural dynamics after TBI,
90                                  Multi-state metastability in neuroimaging signals reflects the brain
91  over 20 years ago, the extent of epigenetic metastability in the mouse genome remains unknown.
92 me-resolved thalamo-cortical connections and metastability in the recovery of consciousness.
93 e the computational mechanisms underlying GC metastability in this task; and iii) establish a relatio
94 n humans, testing the hypothesis that global metastability is "tuned" by network interactions.
95 This study highlights that disrupting capsid metastability is a powerful strategy for the development
96                                          The metastability is explained in terms of the intrinsic con
97                                          How metastability is impacted by sigma1 and whether the lowe
98  coherence, such as the chimera-like chi and metastability lambda indices, which quantify the degree
99 y and motor RSNs showed greater cohesion and metastability, likely to respectively reflect their func
100 recombinant expression due to their inherent metastability, making biochemical and immunological expe
101 accine development, but, due to its inherent metastability, many Env variants are difficult to recomb
102                                              Metastability may confer important behavioral properties
103  decision-making is metastable and that this metastability may serve as a substrate for sequentially
104 respond to biological function and how their metastability may underlie devastating protein aggregati
105  the two positional isomers a high degree of metastability, meaning that altering the chemical state
106 ndogenous concentrations of the peptide, the metastability of Abeta oligomers, and the wide range of
107                           Organisms tune the metastability of amorphous calcium carbonates (ACC), oft
108  of the training cohort (n = 87) showed that metastability of bile was reduced in CAGB (p < 0.05).
109                                          The metastability of californium(II) is responsible for many
110 re of this epitope, which is consistent with metastability of class I fusion proteins.
111 titutive elements of this model idealize the metastability of cortical networks.
112                                          The metastability of critical systems maximizes their dynami
113 logical clustering method that leverages the metastability of exponentially perturbed Markov chains f
114                   We find that the intrinsic metastability of first-order phase transitions is the or
115 ion of Ostwald's step rule, where the strong metastability of graphite hinders the transformation to
116 ersification of properties that affected the metastability of HAs required for their membrane fusion
117 pect to twist deformation contributes to the metastability of HbS fibers: HbS double strands are twis
118 ffect its encapsidation on particles and the metastability of ISVPs.
119                This implies a lower limit of metastability of liquid water just below T(H) and well a
120  The reduction in ice adhesion is due to the metastability of liquid water; as ambient ice cleaves fr
121 is high enthalpic performance comes from the metastability of MnB(2) and demonstrates that transition
122          Our approach takes advantage of the metastability of our cationically charged materials to i
123        Initial experiments confirmed similar metastability of POPC if compressed above a threshold ra
124       This molecular mechanism points to the metastability of reflectins as the centrally important d
125                           The conformational metastability of RNA polymerase revealed by this single-
126 he serpin inhibitory mechanism, the inherent metastability of serpins, and the high-affinity associat
127 llic nanoparticles (NP) dramatically promote metastability of switchable metallic domains in single-c
128 ds strongly upon the cooling trajectory: The metastability of the A phase is enhanced by transiting t
129 be competitively stable despite the inherent metastability of the alpha-phase.
130                            The thermodynamic metastability of the co-assembly in turn leads to the sp
131                                              Metastability of the immature lattice has been proposed
132 to the complexity of oligomerization and the metastability of the oligomers thus formed.
133 Our experiments collectively demonstrate the metastability of the protonated triazoline intermediate
134                                  The ambient metastability of the rock-salt phase in well-defined mod
135 he internal pressure, the drop caused by the metastability of the solute-rich phase.
136 posed mechanisms in terms of a thermodynamic metastability of the tumor with respect to growth.
137 cture provides mechanistic insights into the metastability of the unliganded state, receptor-induced
138                We observed the formation and metastability of this PdSn phase in situ.
139                                          The metastability of this state further enables migrational
140 ies, supersaturation, and the upper limit of metastability of urine.
141                                   Structural metastability of viral capsids is pivotal for viruses to
142                             The impact of GB metastability on solute segregation remains poorly under
143 h the equilibrium state after deviation from metastability or can be frozen on returning from nonequi
144 in the FPCN/DAN and DMN might control global metastability, providing a mechanistic explanation of ho
145 es in trimer design, the roots of Env trimer metastability remain elusive.
146 l aspects of the virion architecture and its metastability remain poorly defined.
147 etailed understanding of prefusion F-protein metastability remains elusive.
148                                 However, the metastability responsible for this behavior makes the pr
149 ritical coupling point and show much greater metastability, resulting in a wider range of coupling st
150        The structural architecture of serpin metastability seems to be designed to ensure the active
151  modifies phase-change kinetics, eliminating metastability that is the root of catastrophic electric
152 es in functional connectivity, synchrony and metastability, this analysis revealed a significant shif
153 e stability of fibrils and weaken condensate metastability, thus enhancing the rate of fibril formati
154 e literature has leveraged the phenomenon of metastability to investigate various aspects of brain fu
155  properties whose modulation confers certain metastability to their structures to fulfill each task o
156 f a crossover from stability to "long-lived" metastability to transient metastability.
157 bility (switching between stable states) and metastability (transient stability over time).
158 erimental evidence for the optically induced metastability transition and expand the divacancy model
159                            This reduction in metastability was associated with damage to the connecto
160 onstrated increased synchrony, and decreased metastability was associated with increased activity wit
161                       Furthermore, decreased metastability was associated with reduced cognitive flex
162           To explore the limit of electronic metastability, we tried to make the related quadruply ch
163 important factor impacting the efficiency is metastability, where material changes occur over timesca
164 dels by accounting for variability due to GB metastability, where the segregation energy is treated a
165 n at the A(vy) locus and that the epigenetic metastability which confers this lability is due to the
166 tions in the atomic Voronoi volume due to GB metastability, which are found to influence the segregat
167 sate sink potentials are influenced by their metastability, which is tunable through separable intera
168 oimaging data, we link CTC to the concept of metastability, which refers to a rich exploration of the
169 BOLD signal across regions of the brain; and metastability, which we define as the extent to which sy
170 ticipants correlate with maximal multi-state metastability, while dynamics away from this point corre
171  atmosphere the structure shows considerable metastability with increasing temperature (T <160 K) bef
172 ding of glasses includes their thermodynamic metastability with respect to crystals.

 
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