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1 y some proteins are dynamic while others are rigid.
2 how that both HsCKK and NgCKK are remarkably rigid.
3 igand shell is rich in nuclear spins and non-rigid.
4  equivalent states and can eventually become rigid.
5 he two DNA Pol modules of Pol2, holding them rigid.
6 the flexible 170 loop of FVIIa with the more rigid 170 loop from trypsin and combined it with an L163
7 ine, an acylhydrazide-based conformationally rigid 2,5-DKP scaffold having exocyclic N-N bonds.
8                        In contrast, the more rigid 4-mercaptopyridine ligand presents a more classica
9 an extra methyl group, as compared to a more rigid 4-pyridinethiol linker, allows the pyridine-4-yl-m
10 lly dynamic double-[4]helicene termini and a rigid [6]helicene-based core within their helical supers
11 quely sculpts each substrate within a single rigid active site remains unclear.
12 S-Hex resulted in hGSTA1-1 to favor the more rigid active state conformation, while the faster mode p
13 Au(25) nanoclusters becomes more fragile and rigid after ligand addition.
14 d no effect on S-acylation, but extended and rigid alanine-proline repeats perturbed it.
15 sponding bis-styryl-BTD were retained with a rigid alkyne linker rendering a probe insensitive to cis
16 lytic triad, include not only loops but also rigid alpha-helixes and beta-strands, suggesting their i
17 y contrast, in reduced nDsbD the cap loop is rigid, always protecting the active-site thiols from the
18  has the highest, even though it is the most rigid amino acid.
19 oid-beta peptides (Abeta) assemble into both rigid amyloid fibrils and metastable oligomers termed Ab
20  phases at lower binding energies than their rigid analogs.
21  Stretchable electronics outperform existing rigid and bulky electronics and benefit a wide range of
22 de motion artifacts and discomfort caused by rigid and bulky electronics and mandatory device connect
23 lly require high computational loads or have rigid and bulky form factors that are unsuitable for use
24                                         Both rigid and chameleonic compounds showed high permeability
25 re), which omits the need to pre-calculate a rigid and computationally costly neural feedback control
26 on via different types of linkers (flexible, rigid and conjugated or rigid and nonconjugated) or by s
27                Polymers are synthesized with rigid and contorted backbones, which incorporate hydroph
28 MGTPA lipids reveal the presence of multiple rigid and dynamic conformations, which provide evidence
29 ques in a fully automated fashion, employing rigid and elastic MSI image registration using structure
30 tly in the E* form, whereas thrombin is more rigid and exists predominantly in the E form.
31 lcers in difficult locations or those with a rigid and fibrotic base.
32 and presence of sporophylls) and L. spicata (rigid and flat main stipe and first bifurcation), as wel
33 engineer favorable ADME properties into both rigid and flexible macrocyclic peptides, and that scaffo
34 lity of living species to transition between rigid and flexible shapes represents one of their surviv
35 of 12% and AVTs of 20% are achieved, both on rigid and flexible substrates.
36 aser posterior capsulotomy rate (%) of eight rigid and foldable intraocular lens (IOL) designs in a s
37 n, and the results indicate that BII forms a rigid and helically ordered secondary structure upon bin
38              Polyoxometalates (POMs) provide rigid and highly symmetric coordination sites and can be
39 ituents to the aryl group makes the molecule rigid and hinders the rotation along the Au-C(aryl)-coor
40 ion and subsequent stress transfer through a rigid and low-permeability rock to the fault.
41 f linkers (flexible, rigid and conjugated or rigid and nonconjugated) or by supramolecular hydrogen b
42 irect colorimetric measurement or built with rigid and permanent materials cannot provide continuous
43 strates that are not suitable for biostable, rigid and self-expanding devices.
44 table and stretchable conductive patterns on rigid and soft substrates.
45   The RNA-paclitaxel complex is structurally rigid and stable, demonstrated by the sub-nanometer reso
46 de-esterification of pectin resulted in more rigid and stiffer pectin, which enhanced its interaction
47                                        Three rigid and structurally simple heterocyclic stilbene deri
48 de chain, the hydrogen-bonded system is less rigid, and energy transfer by chromophore relaxation is
49 aired uncertainty-driven belief updating and rigid anticipation of a volatile environment.
50        This distinguishes AFGPs and PVA from rigid antifreeze proteins and, we argue, is responsible
51                                              Rigid application of any single equality indicator can t
52                                         This rigid arrangement of the putative DNA-binding domain imp
53               Certain Al distributions yield rigid arrangements of anionic charge that stabilize cati
54 slating mRNAs can form stable, and sometimes rigid, associations with RNP granules with stability inc
55 he phosphorylation of S8 variant is the most rigid at the G9 site in line with structural studies, th
56 separation performance through the design of rigid backbone chemistries that concomitantly increase c
57 s were related to the pragmatic language and rigid BAP domains.
58 likely underpins the inflexible thinking and rigid behaviors exhibited by patients with AN.
59 organized extracellular matrix, resulting in rigid benign tumors.
60 digestion, generating more peptides from the rigid beta-barrel regions, without compromising the abil
61 highly flexible disulfide-anchored loop to a rigid beta-strand and by traditional cystatin domain swa
62 freely available as a part of the NOn-Linear rigid Block (NOLB) package.
63 ment of the N-domain out of the channel as a rigid body and suggest instead that it remains within th
64 he thrombin-thrombomodulin complex through a rigid body association that produces a protease with ess
65  of linear folding motions and the number of rigid body modes that depends only on the average coordi
66 r-like transport mechanism involving a large rigid body movement of the substrate-binding site.
67 hich connects the two domains, thus allowing rigid body movement of the transport domain throughout t
68 hese multiple "gyrase(CORE)" structures show rigid body movements of the catalytic GyrA WHD and GyrB
69 ng state to the inward-facing state involves rigid body movements of transmembrane helices (TMs) 2-6
70 c mechanics, LV twist, and the prevalence of rigid body rotation, using 2-dimensional speckle trackin
71          Furthermore, MD simulations support rigid body subdomain motions within the FabD structure t
72                    The specimens also have a rigid body with triangular bony blades protruding from t
73 y (residue-residue contacts) and quaternary (rigid-body contacts) networks that mediate robust, rapid
74 are bi-directionally coordinated through the rigid-body coupling, with LptF's coupling helix being im
75 tes, (68)Ga-PSMA uptake was quantified using rigid-body image registration of (68)Ga-PSMA PET/CT and
76 "closed" crystal form, mutually related by a rigid-body reorientation of its domains.
77 tracellular loops of the receptor enable the rigid-body repositioning of the 7-transmembrane domains,
78 nhancement, are used to efficiently estimate rigid-body respiratory motion and the computed transform
79 prediction, followed by EM density map-based rigid-body structure fitting, flexible fragment adjustme
80                              However, as the rigid bridge is increased in length to 4 and 5 phenylene
81                                 However, the rigid bulky SnSe cannot satisfy the applications for fle
82 cores are often viewed as tightly packed and rigid, but they do show some plasticity and could thus b
83 eatures possessed by pillararenes (PAs; e.g. rigid, capacious, and hydrophobic cavities, as well as e
84 flow; bulges that come into contact with the rigid cell roof interrupt the flow.
85 ound healing in plant tissues, consisting of rigid cell wall-encapsulated cells, represents a conside
86                Conventional machines rely on rigid, centralized electronic components to make decisio
87  of materials, ranging from soft polymers to rigid ceramics.
88 tions of ions (monovalent and divalent) with rigid charged rods, in which ion condensation is uniform
89                               An anisotropic rigid chassis coupled with a high density of legs maximi
90        Thinning down supporting substrate of rigid chip-based monolithic microwave integrated circuit
91             ACLY forms a homotetramer with a rigid citrate synthase homology (CSH) module, flanked by
92 remains useful, it should not be viewed as a rigid classification of pathogenic microbes, which exhib
93 ractions: with shorter crosslink lifetimes, "rigid" clustering emerges with clusters that interact in
94            Hence, BST2 with an unstable or a rigid coiled-coil fails to activate ILT7, whereas substi
95 n additional alpha-helix that behaves like a rigid component of the domain.
96 e the morphology in a short time, and a more rigid conformation with strong intermolecular interactio
97  investigated IgE molecules share an overall rigid conformation.
98 ne-proline chimeras 4 and 5, which represent rigid conformationally locked three-dimensional structur
99 ayer cylindrical nanoparticle with a hollow, rigid, conjugated core composed of the polyfuran backbon
100 riteria included past ocular surgery, recent rigid contact lens wear, and corneal scarring.
101  the entire range of particle size under the rigid contact regime.
102 t, negatively charged surface supported by a rigid core of tightly intertwined proteins.
103                                         This rigid core spans the R2 and R3 repeats and adopts a hair
104                  Moreover, the presence of a rigid, crystalline structure based on organic linkers en
105                      The material features a rigid Cu-Ge-S open framework that increases its stabilit
106                    In addition, the residual rigid Cu-Sn intermetallic shows terrific mechanical inte
107 al hierarchy of 2D nanomaterials that employ rigid, cylindrical structural units.
108                   Small, strained rings have rigid, defined conformations and unique electronic prope
109 ractions with biomembrane systems, and (ii) "rigid" dendronized side chains to enhance the membrane l
110                    Comparing foldable versus rigid designs, the foldable IOLs were associated with a
111 ue-adaptive implants that can be inserted as rigid devices followed by matching the surrounding tissu
112 ibing the sustainable catalytic synthesis of rigid diols from biomass derivatives.
113                              In this work, a rigid DNA tetrahedron (TDN) scaffold was synthesized to
114 nalysis using photoactivable anesthetics and rigid docking simulation showed that isoflurane and sevo
115 ts cortical contraction cannot deform a near-rigid ECM, but then the contraction of the cortex has to
116  highest correlation between tagging and non-rigid, elastic image registration (r = 0.84), while corr
117                                      The non-rigid, elastic image registration algorithm produces mor
118 king software with different algorithms (non-rigid, elastic image registration, and blood myocardial
119 ent strategies to convert the conventionally rigid electrochemical energy storage materials into stre
120 ace, that it should be possible to fabricate rigid electrodes to concurrently record from essentially
121                                          The rigid, electron-rich trioxaazatriangulene (TANG) buildin
122                                 Conventional rigid electronic systems use a number of metallization l
123 o drive local assembly of a stable structure rigid enough to enforce membrane curvature.
124 own how softer tumors can grow within a more rigid environment such as the brain.
125             A model is proposed in which the rigid enzyme takes advantage of substrate flexibility to
126                              The presence of rigid epidermal growth factor domains in protein C as op
127                The induced correspondence of rigid ethynylene-cumulene moieties leading to near-infra
128 etrical conformation of IgE, which retains a rigid Fab-Fc architecture.
129 s (FRPs), consisting of rubbery matrices and rigid fabrics, are widely utilized in industry because t
130 ing by cue-excited neurons and promoted more rigid, fear output signaling by cue-inhibited neurons.
131          Under hypoxia, HbS polymerizes into rigid fibers, causing red blood cells (RBCs) to sickle;
132                        Adhesive contact of a rigid flat surface with an elastic substrate having Weie
133 nge of dibenzocycloocta-1,5-diene (DBCOD), a rigid-flexible-rigid organic moiety, from its Boat to Ch
134  by nucleic-acids to generate a mechanically rigid fluorenylmethyloxycarbonyl (Fmoc)-guanine peptide
135 ed, which possesses a flexible backbone with rigid, fluorinated side chains.
136                  It is believed to provide a rigid foundation for stereocilia motion, but specifics a
137 scales, show that leptin is monomeric, has a rigid four-helix scaffold, and a dynamic domain, includi
138 ore how proteins recognize adenine: a planar rigid fragment found in the most common and ancient liga
139  all-nanoparticle network was developed as a rigid framework for a perovskite active layer.
140 onfiguration in which weak Li bonding in the rigid framework promotes an environment for highly condu
141 al metal-organic frameworks (MOFs) that have rigid frameworks and adaptable (flexible) pores.
142                                     However, rigid frequency-invariant transmission may lead to runaw
143 efin consisting of repeating units of fairly rigid fused bicyclic structures and alkenes separated by
144 design method for generating a wide range of rigid fusions between helix-containing proteins and use
145  ectasia (VAE cohort) with and without their Rigid Gas Permeable contact lenses (RGP CL's) and 20 age
146 theoretical conditions under which a pair of rigid helical filaments can form a tangled bundle, and w
147 alent organic frameworks(12-14) that feature rigid helical strands interlaced in all three dimensions
148        Most motile bacteria are propelled by rigid, helical, flagellar filaments and display distinct
149 gether, we thoroughly characterize the BSL's rigid, highly stereoselective attachment to protein alph
150                Protonation of Ci1 leads to a rigid hydrogen-bonding network in the active-site region
151 across Class A GPCRs and is conformationally rigid in both the inactive and active states of the rece
152 rotein-protein interactions, is unexpectedly rigid in free Cre.
153 te, but crystal structures are typically too rigid in loops, whereas NMR structures are typically too
154 rands led to "chameleonic" species that were rigid in nonpolar media but highly flexible in water.
155            Solid ferromagnetic materials are rigid in shape and cannot be reconfigured.
156  has the same fold as proteins that form the rigid inner tubes of contractile tail phages, such as T4
157 ally stretchable piezoelectric materials and rigid inorganic piezoelectric materials with novel stret
158 n certain environments but make the DNA more rigid instead in other environments is the subject of on
159 er's theory and cannot be prohibited even by rigid interconnecting cage compounds such as cubane or d
160 t traditional solid-state ISE electrodes are rigid ion-to-electron transducers that are not conformal
161 ntroducing 3 glycine residues that disrupt a rigid IS6-alpha-interaction domain helix markedly reduce
162 amely, the strategies of strain engineering, rigid island geometry, fiber-like geometry, and intrinsi
163    Proprioceptive sensing of the position of rigid joints has been described in detail in several sys
164 ded from authorship because they cannot meet rigid journal criteria.
165 design models, demonstrating the control the rigid junctions provide for protein shape sculpting over
166 ns exhibit motional dynamics with respect to rigid lattice-forming crystallization domains.
167 on at <0.8 V vs Li(+)/Li adds a second, less rigid layer on top.
168 either expanded (EPS) or extruded (XPS) is a rigid, lightweight insulating thermoplastic that has a v
169 ng units (SBUs) are linked to each other via rigid linear organic groups, resulting in a stable 3D PO
170 a-adrenergic agonists/PKA also requires this rigid linker and beta-binding to alpha(1C).
171  mode by a mechanism that requires an intact rigid linker between the beta-subunit binding site in th
172 inimally interconnected clusters that act as rigid, load bearing units.
173 he flexible loops of JNK and p38 but not the rigid loop of ERK.
174 ck of the cell that enables migration of the rigid lymphocyte nucleus through restrictive barriers.
175 e, which results from the combination of the rigid macrocyclic scaffold with the bulky, yet conformat
176  materials due to their highly contorted and rigid macromolecular structures, which prevent space-eff
177 ecyclability problems often encountered with rigid materials.
178 ional grid responses, a cell-inefficient and rigid mechanism.
179 nt conditioning of spinal reflexes still use rigid metal electrodes with conductive gels and aggressi
180     Traditional robots are mostly built from rigid, metallic components and electromagnetic motors, w
181 es, with MgSO(4) abruptly transitioning to a rigid microgel at 30% RH.
182 less than five grams) aerial robots(3-6) use rigid microscale actuators, which are typically fragile
183 f photochromic molecules integrated inside a rigid MOF scaffold are discussed.
184 can be constructed by judicious selection of rigid molecular building blocks and hydrogen-bonded unit
185                   Pyrazolopyrimidines have a rigid molecular scaffold and may thus be less affected b
186            It was found that this relatively rigid molecular switch exhibited a high helical twisting
187 us helical growth yielding three-dimensional rigid nanohelices.
188 lar dynamics and continuum simulations, that rigid nanoplatelets can attain a stable orientation for
189 easurements were consistent with the overall rigid nature of GB1 and with predictions from molecular
190                                  Whereas the rigid nature of standard thermoelectrics limits their us
191 ctive information processing patterns (e.g., rigid, negative biases in attention, memory, interpretat
192 ntly strong CNCs (E(A) > 140 GPa) align into rigid, nematically ordered lamellae across multiple leng
193  of rod-shaped bacteria is determined by the rigid net of peptidoglycan forming the cell wall.
194            The multi-confinement by a highly rigid network, stable covalent bonding, and 3D spatial r
195 itic cells and macrophages with a variety of rigid noncellular particles triggers activation of the N
196 e electrical performances with conventional, rigid, nonporous ones.
197 rimental results show that the presence of a rigid obstacle does not affect the growth rate of the wh
198  a new function that models the influence of rigid obstacles on wheat root growth.
199 ) do not allow simulating root growth around rigid obstacles.
200 essible hydrodynamics and interaction with a rigid ocean floor overestimate the phase speed of tsunam
201  on the transfer of graphene patterns from a rigid or flexible substrate onto a polymeric film surfac
202 flexible system dynamics that are not overly rigid or random.
203 ycloocta-1,5-diene (DBCOD), a rigid-flexible-rigid organic moiety, from its Boat to Chair conformatio
204 h of the order of a few millimeters, MTs are rigid over cellular dimensions and are thus expected to
205 ensional halide perovskites by incorporating rigid pai-conjugated organic ligands.
206  model granular system composed of perfectly rigid particles.
207 cular and atomic building blocks behave like rigid particles.
208 skeleton and actin-dependent protrusion of a rigid penetration hypha(3).
209                                  In fathers, rigid personality was related to increased repetitive be
210 e incorporated hemicelluloses exhibit both a rigid phase having close interactions with cellulose, to
211            Mechanistic studies show that the rigid pillar[5]arene cavity has additional binding sites
212 d ligands are synthetically accessible, with rigid piperidine or quinuclidine analogues of TPMA(NMe2)
213                 Two conjugated polymers with rigid planar backbones, but with disordered crystalline
214    To overcome these challenges, we employ a rigid planar ligand with an aromatic ring and bifunction
215  reversible switching from soft hydrogels to rigid plastics at elevated temperature is reported.
216 ible bulky hydrophobic groups instead of the rigid polyheterocyclic moieties.
217  propane through the hypothesized triangular rigid pore-aperture of Zr-fum-fcu-MOF.
218 unique optoelectronic properties and smooth, rigid pores of macrocycles with radially oriented pai sy
219 at 195 K, it abruptly opens and turns into a rigid porous form that is irreversible via desorption.
220 , the gastrulating tissue is surrounded by a rigid protective shell(4).
221 e X-ray illumination, indicating a much more rigid protein architecture.
222       NMR spectroscopy results show that the rigid protein matrix provides a frame for fast substrate
223  aminoacylation sensing modules bridged by a rigid pseudoknot structure formed by the mid-region doma
224      By linking 2 naltrexone units through a rigid pyrrole spacer, the bivalent ligand norbinaltorphi
225  exhibit heterogeneous dynamics: Outside the rigid R2-R3 core, the R1 and R4 repeats are semirigid ev
226 ovel approach to dock flexible peptides into rigid receptors.
227  (i) a volume atlas derived by automatic non-rigid registration of image volumes to a common template
228 ed, and scaled to the target during a scaled rigid registration step, then transformed further to fit
229 ated memory impairments, suggesting that the rigid representations in aging result primarily from dys
230 ty enhances pattern completion, resulting in rigid representations.
231  and pattern completion, resulting in overly rigid representations.
232 al properties of cellohexaose, behaving as a rigid ribbon that becomes flexible when twisted.
233 are not typically possible with conventional rigid robotic systems.
234 s are an interesting alternative for classic rigid robots in applications requiring interaction with
235 rt characterization of two recently reported rigid-rod conjugated polymers that do not contain single
236 ective processing strategy for this class of rigid-rod polymer system to optimize their charge transp
237                      ASB9 and CUL5 behave as rigid rods, connected through a hinge provided by ELOB/C
238 ntrollable physical characteristics, such as rigid rods, semiflexible or kinked chains, and thermally
239 y large cross-sections, which turn them into rigid rods.
240 ively poor performance obtained, while quasi-rigid rotor harmonic oscillator thermal contributions ar
241  guide the design of helical hydrocarbons as rigid scaffolds or as hydrophobic components in soft mat
242 rom signal loss due to improper contact of a rigid sensor with the skin.
243 t (NICU) require multiple wires connected to rigid sensors with strongly adherent interfaces to the s
244 ioelectronic system avoids the use of bulky, rigid sensors, while providing negligible mechanical and
245 s that Ycg1 has to undergo to adopt a closed rigid shape and thereby create a DNA-binding surface in
246 enhanced if one of the polymer species has a rigid shape that allows for multiple distinct bonding co
247 lobes of the mantle, constrained both by the rigid shell that they secrete and by each other, we unco
248 e different genomes within the conserved and rigid shell.IMPORTANCE Members of the Tombusviridae fami
249 al membrane physics and the physics of thin, rigid shells.
250  show how cellular rafts can be structurally rigid signaling platforms while remaining nearly as perm
251 inges, which are often functionally critical rigid sites, is a mechanism through which proteins can r
252 on of C-H bonds - with reactions that expand rigid, small rings in polycyclic steroids to medium-size
253 lting from constraining the foot joints by a rigid sole was the result of a mechanical effect rather
254                             Although wearing rigid soles can be used to assist balance, there appears
255 hat improvements in balance performance with rigid soles did not affect or transfer to subsequent tas
256             Results showed that walking with rigid soles improved balance performance in both expert
257 straining the motion of the foot joints with rigid soles influenced balance performance when walking
258 a narrow beam with and without wearing flat, rigid soles on their feet.
259  however, the reported performance of TTA in rigid solid-state systems is substantially inferior, whi
260 ical scene understanding for the dynamics of rigid, solid objects can be supported by approximate pro
261 process as entropy-driven crystallization of rigid spherical particles.
262 k as a visco-active gel exerting forces on a rigid spherocylinder representing the endocytic invagina
263 slowly progressive limb-girdle weakness with rigid spine and disabling contractures.
264 nset axial and proximal weakness, scoliosis, rigid spine, dysmorphic facies, cutaneous involvement, r
265                             For LZU-111 with rigid spiral channels, size effect reflects in pore surf
266 ion of light-detection technology; yet their rigid structure and limited area scaling at low cost ham
267 icenophanes with a large pai-system and semi-rigid structure exhibited anomalous photophysical proper
268                                          The rigid structure of the polymers allows the formation of
269         Using a substrate mimic containing a rigid structure, we also identify and characterize two r
270 y longer than in MICU1, and it adopts a more rigid structure.
271 d facile routes for transformation into more rigid structures that are otherwise not accessible by di
272  that are traditionally designed for planar, rigid substrates (e.g., Si wafers).
273 ed with either transfer processes to soft or rigid substrates, offers an efficient, robust and low-co
274 Strong CT cocrystals were found to display a rigid supramolecular framework while weakly bound CT com
275  inelastic collision between a soft body and rigid surface, and unilateral contact and Coulombic fric
276 orm complex tasks inaccessible to artificial rigid systems.
277 ead range comparable to that of conventional rigid tags.
278  5mC and 6mA positions are, in general, more rigid than Ile, Leu, and Val methyl probes in protein si
279       The resulting blood clot was also more rigid than the blood clot formed by thrombin solution.
280                  Moreover, if one species is rigid, the effect is robust over a much greater range of
281 s are capable of accessing a wide variety of rigid three-dimensional structures through the sequence-
282  range of mechanical properties tunable from rigid to elastic.
283 er, these same assumed growth models are too rigid to recapitulate patterns observed in many experime
284 alysis suggests that braiding is governed by rigid topological constraints, and that branching occurs
285 t axial musculature anchored to a relatively rigid torso consisting of numerous short vertebrae, and
286             Specifically, distal presence of rigid trachea can limit out-of-plane motion in the longi
287 en the natural anatomical orientation of the rigid trachea, thyroid and the pulsating carotid artery,
288 the specific shape of the target using a non-rigid transformation.
289 erization yields glassy polymers composed of rigid triazole linkages with enhanced toughness, the RAF
290 n upon fluoride binding and form dynamically rigid trifurcated hydrogen-bonded fluoride complexes tha
291 , consisting of color charts warped inside a rigid tube mimicking a lumen.
292 a long contractile sheath assembled around a rigid tube with associated toxins anchored to a cell env
293 monstrate how a common protein fold produces rigid tubes in some phages but flexible tubes in others.
294 e each actin protein as a fully or partially rigid unit to identify the equilibrium structural ensemb
295                  The majority of the MTBD is rigid upon binding, with the transition to the high-affi
296 se pairs in stem 1 become structured or more rigid upon binding.
297 le in solution but becomes considerably more rigid when bound to its kleisin-binding partner protein
298 inherently plastic, others are intrinsically rigid with respect to phenotypic transitions.
299 high turgor pressure and are surrounded by a rigid yet flexible cell wall, which is the primary deter
300                 We demonstrate a spectrum of rigid-yet-flexible super-multiplex structures for encode

 
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