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1 ands became bent, a phenomenon called 'Euler buckling'.
2 traocular lens, glaucoma implant, or scleral buckle).
3 ed using an encircling element and segmental buckle.
4 fference between segmental versus 360-degree buckle.
5  substrate, but upon releasing the nanotubes buckle.
6 nd the MTs within the leading process become buckled.
7 ucture, are prone to substantial bending and buckling.
8 ip-localized, decaying, and short-wavelength buckling.
9 4A ROP in the right eye and received scleral buckling.
10 multiple scales of anisotropic, out-of-plane buckling.
11 gnetic systems break the symmetry before the buckling.
12 ures into extended 3D layouts by compressive buckling.
13 d sudden changes in curvature through mirror buckling.
14 will impart minimal drag force because of S2 buckling.
15 sotropic changes in the in-plane O-Cu-O bond buckling.
16 al jump, which we interpret as due to mirror buckling.
17 gh, and porcupine quills and feathers resist buckling.
18 ilar to graphene but with varying degrees of buckling.
19 e fold the epithelium into villi via mucosal buckling.
20 nd determine the transition from aligning to buckling.
21 o estimate the load they can transmit before buckling.
22 ptimized to transmit the largest load before buckling.
23 uctures, many strategies are used to prevent buckling.
24 e epithelium-stroma area mismatch leading to buckling.
25 ith cryotherapy and more extensive segmental buckling.
26 ckward toward their minus ends, resulting in buckling.
27 e, such as solitons, breathers and localised buckling.
28 s plana vitrectomy (PPV), encircling scleral buckle, 360 degrees Laser endophotocoagulation, and sili
29 ted with PPV coupled with encircling scleral buckle, 360 degrees laser retinopexy and silicon oil tam
30 ormed under contractile load into sinusoidal buckles, a behavior dependent on posttranslational "dety
31         The data indicate the onset of layer buckling accompanied by movement of the Cl(-) ions out o
32 olds, period-doubles, ridges and delaminated-buckles according to their distinctive topographical cha
33 ngth, as demonstrated by outward sliding and buckling after ablation-mediated release from the centro
34 d aphakic groups, those treated with scleral buckle alone (n = 1341) had a significantly lower final
35 r failure rate versus treatment with scleral buckle alone (P = 0.0015).
36 leral buckle, and those treated with scleral buckle alone (P = 0.7).
37  rate was higher when treated with a scleral buckle alone versus vitrectomy (P = 0.0017).
38                Initial surgery using scleral buckling alone was performed in most (8 of 13, 62%) of t
39 derwent PPV combined with encircling scleral buckle and 360 degrees laser retinopexy of the periphera
40 ) can be generated by single myofilaments to buckle and break actin filaments.
41 ks and benefits of vitrectomy versus scleral buckle and keep in mind that the single-surgery reattach
42                                      Scleral buckle and vitrectomy combined with belt buckle were per
43 t into two branches under tensile strain-low buckled and high buckled structures, which respectively
44 , the latter two modes are associated with a buckled and propeller-twisted geometry of the basepair.
45 anoscale pores driven by twisting, rotation, buckling and bending of pore walls contributes to the la
46 s interrogation process involves significant buckling and bending of the DNA to promote extrusion of
47 ted to single actin filaments, causing their buckling and breakage.
48 m a competition between the strain energy of buckling and chemical energy of electronic hybridization
49 try-breaking transitions associated with the buckling and folding of curved multilayered surfaces-whi
50 ting compressive stresses that lead to their buckling and folding.
51                                    Thin-film buckling and nanoindentation are used to evaluate the me
52 interacting Au is nonplanar with significant buckling and numerous polymorphs as in vacuum, whereas o
53 for the growth of the mesenchyme can explain buckling and postbuckling instabilities.
54  mantle and deformation associated with slab buckling and stagnation.
55 ealed that myosin XI generates the force for buckling and straightening of both single actin filament
56 ial growth in arterioles makes them prone to buckling and that buckling leads to tortuous collaterals
57  Stresses are relaxed by both out-of-surface buckling and the emergence of defects in the quasi-hexag
58 arge energy dissipation via full recovery of buckling and vdW bondings.
59 tabilities can further generate higher order buckling and wrinkling patterns.
60 al techniques, including vitrectomy, scleral buckle, and pneumatic retinopexy, are the only means to
61 ted with vitrectomy, with or without scleral buckle, and those treated with scleral buckle alone (P =
62  elusive how actin filaments are reoriented, buckled, and bundled as well as undergo tension buildup
63 a distribution of 83% vitrectomy, 5% scleral buckling, and 12% pneumatic retinopexy in 2014.
64 ers a real laboratory for pattern formation, buckling, and postbuckling induced by growth of soft tis
65 formed between pneumatic retinopexy, scleral buckling, and vitrectomy.
66 cal responses--such as bending, twisting and buckling--and on local-feature development (primarily re
67                                          The buckling approach is generally applicable to a wide rang
68                             The delamination buckling approach provides a facile means to dynamically
69 eak forces were shown to create an efficient buckle as in a hook-and-loop fastener, and fine structur
70 act with the cortex, the astral microtubules buckle as they exert compressive, pushing forces.
71 f the polymer constraint results in graphene buckling at a fixed value of strain with an estimated wr
72 in the calculated structures, especially the buckling at the H in O-H-O motifs.
73          Scissoring in thick bars suppresses buckling behavior in serpentine traces that have thickne
74  leave a distinct signature in the nonlinear buckling behavior of a cellular material built out of el
75  the surrounding cytoplasm and MAP tau on MT buckling behavior, which allows MT filaments to bear muc
76                                   As for the buckling behaviors, a significant enhancement could be o
77  several existing HDL models, including the "buckle-belt" conformation of apoA-I on the midsize disks
78 nsities, however, overlapping filaments form buckles between their nanofiber tethers and myosin attac
79   Finally, at a critical bending moment, the buckling bilayer fissions a vesicle to regulate its shap
80 izes the intrahelical base primarily through buckling both surrounding base pairs.
81 on of the continuum model, we analyze tissue buckling by a line tension applied along a circular cont
82 superelastic conducting fibers, comprising a buckled carbon nanotube sheath on a rubber core, are fab
83  these hair-like-diameter fibers, comprising buckled carbon nanotube sheaths on a rubber core, can be
84 n the voids buckle, leading to a cooperative buckling cascade of the skeleton of the ball.
85 n dynamics and lasing properties in a single buckled CdS nanoribbon (NR) by strain-engineering.
86   In addition, we also present the lasing of buckled CdS NRs, in which the strain-dominated mode sele
87      Continuum mechanics models suggest that buckled cofilactin filaments localize elastic energy at
88 ed filopodia can obviate the classical Euler buckling condition and remain stable up to several tens
89 lysis rates for each protomer, such that the buckled conformation favors ATP hydrolysis.
90       We demonstrate that the magnetoelastic buckling corresponds to a classical Landau second-order
91                                      Scleral buckling declined from 6502 procedures in 2000 to 1260 p
92  and finite element analyses reveal that the buckling deformation of the outer spherical shell domina
93                       To locally control the buckling direction, masks with holes were used to guide
94 ling step with different masks to encode the buckling directions of separate domains.
95 ne tension decreases, protrusion resumes and buckling disappears, until the next cycle.
96 ugh-thickness gradient and thus directed the buckling during the subsequent unmasked swelling process
97 nder high tensile stress to minimize thermal buckling effects, therefore keeping control of the nanom
98 attributes, including complete pre- and post-buckling elasticity, outstanding electrical conductivity
99 crocoils formed by deterministic compressive buckling establish the basis for systems that can offer
100 ating structure integrates local contraction/buckling events into a global contractile state via an a
101                                              Buckling events, which occur due to compressive intracel
102 riations in expansion rate that induce local buckling events.
103 ytical and numerical calculations as well as buckling experiments performed on two- and three-dimensi
104 na vitrectomy (1/19, 5.3%), and post-scleral buckle exposure (1/19, 5.3%).
105                                  Portions of buckled F-actin with a radius of curvature ~300 nm are p
106 l severing at actin-cofilactin boundaries of buckled filaments is more prominent than predicted by co
107 s induces cargo crowding and inward membrane buckling, followed by constriction of the nascent bud ne
108 monolayers is known to proceed via wrinkling/buckling, followed by folding into bilayers in water.
109 ion and extension leads to a decrease in the buckling force that we attribute to the bundle remaining
110                                              Buckling forces physically distort the shape of the morp
111 bundling increases the frequency of filament buckle formation, consistent with a requirement of accel
112  different folding mechanisms such as tissue buckling from mechanical stress, axon tethering, localiz
113 th an S-like shape that exhibit a non-planar buckled geometry, with the handedness of the substrate's
114 ing two (or more) out of five (A-E) types of buckled graphene layers.
115                                        These buckles grew approximately 3.4-fold faster than the diff
116 e vitrectomy group compared with the scleral buckle group (P = 3x10(-8)).
117  final failure rate was lower in the scleral buckle group compared with those who had vitrectomy, wit
118               Vitrectomy with a supplemental buckle had an increased failure rate compared with those
119 institution before referral, or if a scleral buckle had been placed.
120                                Turbine tower buckling has been observed in typhoons, but no offshore
121 s and examined a known compound, BaSn2, with buckled hexagonal layers.
122 as developed, introducing the concept of the buckling hinge.
123 icene, a silicon analogue of graphene, has a buckled honeycomb lattice and, because of its Dirac band
124 ch also can avoid complications of long-term buckle implantation.
125 enerated by the Dirac electrons we show that buckling imposes a periodic potential, which locally mod
126    Five eyes were treated with SB (segmental buckle in 4 cases and encircling buckle in one case) and
127  (segmental buckle in 4 cases and encircling buckle in one case) and 2 cases were treated by PPV.
128 plate; (ii) the emergence of a contact layer buckled in an ice-like manner; and (iii) nucleation on c
129 with a Winkler approach, we show that unlike buckling in air, the presence of the polymer constraint
130       This demonstrates an essential role of buckling in breaking the symmetry between tensile and co
131 2.5 diopter) were caused by previous scleral buckling in one case and by keratoconus in the other cas
132 ght asymmetries at the poles, which bias the buckling in opposite directions, thus leading to a helic
133  in BD can be effectively treated by scleral buckling in selected cases and PPV in more complex cases
134 nalytical treatment are developed to examine buckling in stationary (pinned) and moving swimmers.
135                We find that collective fiber buckling in the vicinity of a local active unit results
136 modeling of pre-twisted beams in bending and buckling indicates that the different growth tactics of
137 orneal astigmatism in keratoconus or scleral-buckle-induced regular astigmatisms can be equally well
138 tation in two cases - a patient with scleral-buckle-induced regular corneal astigmatism and a patient
139 ic IOL implantation in patients with scleral-buckle-induced regular corneal astigmatism.
140                                              Buckling-induced reversible symmetry breaking and amplif
141 structures are rationally designed, in which buckling induces a reversible switching between achiral
142 esults suggest a mechanism wherein nanoscale buckling instabilities can define the global topology of
143 ervations of uniflagellar bacteria show that buckling instabilities of the hook protein connecting th
144                   We show how the mechanical buckling instability can explain their formation.
145 lms during compression reveal an interfacial buckling instability followed by folding, which is in go
146 embranes of pre-twisted kagome lattices, the buckling instability is avoided, allowing for smooth and
147         Finally, we propose a unique type of buckling instability of epithelia, driven by a flattenin
148 egrees "flicks," the latter resulting from a buckling instability of the flagellum.
149      In its simplest form the magnetoelastic buckling instability refers to the sudden bending transi
150                         This growth controls buckling instability, which triggers the formation of wr
151  the midpiece section, likely arising from a buckling instability.
152 lar focus on the parameter dependence of the buckling instability.
153 s to map out the parameter dependence of the buckling instability.
154 eved through mechanical instabilities (i.e., buckling) introduced by structural hierarchy and retaine
155 rmed, these data suggest that a supplemental buckle is not helpful.
156                                              Buckling is exploited to design a new class of three-dim
157 ducing coordinated protrusive forces without buckling is not well understood.
158                                              Buckling is predicted to enhance cofilactin filament sev
159  mechanism from the rod instability to shell buckling is shown to explain the nonmonotonic variation
160 pressure disordered phase with closed-packed buckled layers.
161 pological insulators, the monolayer (ML) low-buckled (LB) mercury telluride (HgTe) and mercury seleni
162 sure, the narrow ligaments between the voids buckle, leading to a cooperative buckling cascade of the
163                                This ligament buckling leads to closure of the voids and a reduction o
164 rioles makes them prone to buckling and that buckling leads to tortuous collaterals.
165 s reduced, MTs uncoupled from sarcomeres and buckled less during contraction, which allowed sarcomere
166 al buckling procedure with a small segmental buckle limited to the area of the holes and cryotherapy.
167  retinal breaks, cryotherapy and a segmental buckle limited to the retinal holes and not on the neova
168  the interactions of single molecules with a buckled lipid bilayer.
169 urgical tools, including bioerodible scleral buckling materials and artificial vitreous substitutes,
170 ic retinal detachments, repair using scleral buckle may be a good option.
171 rmed, these data suggest that a supplemental buckle may not be helpful.
172 on is dominated by either sarcomeric-like or buckling mechanisms.
173 quantify shape and stress-strain relation of buckled membranes, we demonstrate that gel phase bilayer
174 ndable sheets are not described by classical buckling methods, but rather by a theory which assumes t
175                Under certain conditions, the buckling microtubules self-organize into parallel bendin
176                     Pre-strained substrates, buckled microwires and three-dimensional microfluidic po
177 s a combination of growth-induced mechanical buckling modulated by the growth medium and a simultaneo
178 s, which respectively lead to a low and high buckled monolayer structure.
179 the DNA template to condense into toroids or buckle multiple times.
180 h vitrectomy, with or without a supplemental buckle (n = 2723; P = 0.04).
181 rwent vitrectomy with a supplemental scleral buckle (n = 488) had an increased failure rate compared
182  semiconductors, such as dichalcogenides and buckled nanomaterials with sizeable bandgaps.
183 pectral characteristics of broad emission of buckled NR, which can be understood by the discrepancy o
184 we develop a new method to fabricate uniform buckled NRs supported on polydimethylsiloxane (PDMS).
185 accompanying with the macro vibration, micro buckles occur on the interfaces of the delamination with
186                                          The buckling occurs between the front of the lamellipodium,
187 zes the critical flexibility number at which buckling occurs.
188             A new manufacturing strategy for buckling of aligned carbon nanotubes is developed, which
189 acterization revealed the origin (i.e., bond buckling of atoms) and kinetics (e.g., discontinuouslike
190 large HCNTs this is accomplished by stepwise buckling of coils.
191 apes of epithelial cells and the bending and buckling of epithelial sheets, as well as the relative s
192                We demonstrate thermal mirror buckling of graphene by scanning tunnelling microscopy a
193  we show a versatile approach to control the buckling of individual domains and thus the outcome conf
194  driven or followed by bending, looping, and buckling of MT filaments.
195 nobserved in other Hsp90 homologs, is due to buckling of one of the protomers and is most pronounced
196 ere, we demonstrate on-demand reconfigurable buckling of poly(N-isopropylacrylamide-co-acrylic acid)
197 red to other LnAuZ phases as a result of the buckling of the Au-Sb honeycomb layers to create interla
198 airs at the periphery of anthracene leads to buckling of the backbone while also dramatically lowerin
199                                    We report buckling of the boundary controlled by the pattern of bo
200 behaviour of the tetrapod is governed by the buckling of the central joint, a mechanical nonlinear mo
201 e swelling mismatch resulted in out-of-plain buckling of the disc gels.
202 s from differential-growth-driven mechanical buckling of the gut tube as it elongates against the con
203 ng of the M4 inner transmembrane helix and a buckling of the M2 transmembrane helix.
204 lting actuated form derives from the elastic buckling of the rods subjected to inextensibility.
205 way via subtle displacements of Ni atoms and buckling of the Se sublattice.
206         The tendons of some steering muscles buckle on every wingbeat to accommodate high amplitude m
207  to determine the effects of one-dimensional buckling on the electronic properties of Bi(2)Te(3.) By
208          At cell width of 9 mm, there was no buckling or migration of the stent at 180 Hg.
209                             Previous scleral buckling or pars plana vitrectomy seem to have no impact
210 n their length, CNTs can break due to either buckling or stretching.
211 the DNA helix with the inserting ligand in a buckled orientation; spectroscopic studies in the presen
212 te compared with those who did not receive a buckle (P = 0.007).
213 d vitrectomy, with or without a supplemental buckle (P = 0.028).
214 r failure rate versus treatment with scleral buckle (P = 7x10(-8)).
215 segmental (n = 721) and encircling (n = 351) buckles (P = 0.5).
216 ine arteriole critical buckling pressure and buckling pattern during arteriole remodeling.
217                                  By inducing buckling patterns on these films, the correlation betwee
218 t method simulations elucidate the governing buckling phenomena.
219 solids, and confirm that it is essentially a buckling phenomenon.
220 de is a magnetic resonance mode or an oxygen buckling phonon mode.
221                 Because of this, bending and buckling play an important role in these networks.
222 is study was to determine arteriole critical buckling pressure and buckling pattern during arteriole
223 results demonstrated that arteriole critical buckling pressure decreased with increasing axial growth
224 licone oil tamponade with or without scleral buckling procedure (SBP) for recurrent RD due to PVR.
225              The patient underwent a scleral buckling procedure with a small segmental buckle limited
226  drainage of subretinal fluid during scleral buckling procedures is considered by many ophthalmologis
227  in a water suspension by a swelling-induced buckling process.
228 ability is attained by harnessing the unique buckling properties of auxetic elastic materials (buckli
229 M; reflecting bending strength) and cortical buckling ratio (BR; reflecting bone instability) were me
230 es akin to magnetic tweezers contain, in the buckling regime, multiple and branched plectonemes that
231 pological quantum states to sculpt localized buckling regions in the interior of periodic cellular me
232       The salient feature of these localized buckling regions is that they are indistinguishable from
233  bonds, chain straightening and stretching); buckling resistance can be achieved by filling a slender
234 wever, falls in the entirely new category of buckling resistance.
235  constituent solid in favor of elastic shell buckling, resulting in ductile-like deformation and reco
236 l that the obtained antimonene polygons have buckled rhombohedral atomic structure, consistent with t
237                                     Although buckled Sb and Bi honeycombs support 2D topological insu
238 plana vitrectomy (PPV), and combined scleral buckle (SB) plus PPV (SB+PPV).
239           In addition, an encircling scleral buckle (SB) was used in 2 cases.
240 , 413 (12.1%) were retinopexy with a scleral buckle (SB), and 297 (8.7%) were PPV with an SB (PPV-SB)
241 d grade C PVR after primary encircle scleral buckling (SB group - 12 eyes), or pars plana vitrectomy
242   Surgical repair was done either by scleral buckling (SB) or pars plana vitrectomy (PPV) according t
243 udies) of pneumatic retinopexy (PR), scleral buckling (SB), pars plana vitrectomy (PPV), and laser pr
244 inition of complex and stimuli-responsive 3D buckled shapes.
245                                      Scleral buckling sharply declined, and preference for retinal de
246        Paradoxically, such local compressive buckling should not occur given the tensile stresses acr
247                              Two-dimensional buckled Si-based silicene has been recently realized by
248 ndicate that MT filaments in a bundle do not buckle simultaneously implying that the applied stress i
249 lt, sliding forces within the midzone cannot buckle spindle microtubules, which allows the cell bound
250 ersely, increased detyrosination promoted MT buckling, stiffened the myocyte, and correlated with imp
251                                    The local buckling strain depends on the relative size of the comp
252 bserved in the yield stress and average post-buckling stress of the CNTs.
253  of bottom-up assembly and simple triaxially buckled structure design.
254 ed metal-ligand fragments form a noncoplanar buckled structure, as a promising structural unit that c
255  results show that after the introduction of buckled structure, improvement in stretchability, toughn
256 izing the direct-bandgap (nearly 5.0 eV), 2D buckled structure.
257 ratio (NPR) behaviors due to the presence of buckled structure.
258 es under tensile strain-low buckled and high buckled structures, which respectively lead to a low and
259 obtained from patients who underwent scleral buckling surgery for primary rhegmatogenous retinal deta
260 ens from patients subjected to vitrectomy or buckling surgery for RRD.
261 rs sustain this transverse compression until buckling takes place and results in an undulated structu
262 bited distinct short- and long-period sheath buckling that occurred reversibly out of phase in the ax
263 and 3), forces parallel to the membrane that buckle the coat protein layer, generated by an actomyosi
264 ereby regulating the compressive forces that buckle the gut tube into loops.
265 his complex procedure, concurrent encircling buckle the primary intervention may contribute to high c
266 lical state of the oxoG lesion, primarily by buckling the target base pair.
267  the pattern transformation to be induced by buckling, the possible number and arrangement of these v
268 ell body, a fraction of meandering Paramecia buckle their body by pushing on the channel walls.
269                                          The buckling thresholds predicted by the continuum descripti
270 rowing bilayer force the confined bilayer to buckle to conserve its mass.
271 adhesive surfaces, and controlled mechanical buckling to achieve ultralow modulus, highly stretchable
272               We experimentally observe this buckling transition by stretching and imaging the lamina
273                                         This buckling transition is caused by the large energy requir
274 cteristic transition rate at the plectonemic buckling transition is two orders of magnitude slower th
275 ge as this pressure approaches the classical buckling transition of the shell.
276                  Mechanical systems, such as buckling transition spring switches, can have engineered
277                             We monitored the buckling transition via Forster Resonance Energy Transfe
278 ndergoes a hysteretic, temperature-dependent buckling transition.
279 t the observation of first- and second-order buckling transitions between stable mechanical states in
280 ial domain with both minor vein collapse and buckling (turgor loss) of the living cells.
281 rgoes a structural transformation induced by buckling under pressure loading.
282 eases, velocity slows, and the lamellipodium buckles upward in a myosin II-independent manner.
283  detachment with surgical treatment (scleral buckling, vitrectomy, or pneumatic retinopexy).
284                                          The buckle was inserted deeply into the inferior fornix with
285                                  An external buckle was made of a 505 sponge sutured along the blunt
286                     More extensive segmental buckling was associated with greater increase in AL (P =
287   The enhanced ability of MT bundles to damp buckling waves relative to individual MT filaments, may
288 ament assembly/disassembly and translocation/buckling, we also examined the dynamic behavior of indiv
289 ral buckle and vitrectomy combined with belt buckle were performed in 4 and 6 eyes, respectively.
290 ng, tamponade choice, and concurrent scleral buckling, were constructed to assess associations with c
291 pexy was found to be comparable with scleral buckle when a retinal hole was present (P = 0.65), but n
292                                    Filaments buckle when FH1-FH2 is anchored specifically to cover sl
293               Soft, pneumatic actuators that buckle when interior pressure is less than exterior prov
294 interplay between fiber stretching and fiber buckling when the networks are repeatedly strained.
295                                              Buckling, when the cardiac tube grows between fixed pole
296 orces, thereby promoting vertical mechanical buckling, which subsequently leads to wrinkle formation.
297  the shell can alter mechanical response and buckling, which we show by simulating a model for the nu
298 e eyes of 31 patients who underwent external buckling with pneumatic retinopexy for uncomplicated rhe
299                          Short-term external buckling with pneumatic retinopexy is a novel and effect
300 pe-switching of the silk filament induced by buckling within the droplets.

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