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1 co-elastic masses showed they were initially soft.
2 ed by using a poly(ionic liquid) (PIL) as a "soft" activation agent that deposits nitrogen species ex
3 ovides an overview of the different advanced soft actuator configurations, their design, fabrication,
4                                              Soft actuators are the components responsible for produc
5                                     Although soft actuators have allowed for a variety of innovative
6 le reviews a particularly attractive type of soft actuators that are driven by pressurized fluids.
7 opment of self-contained electrically driven soft actuators with high strain density is difficult.
8 o develop self-contained electrically driven soft actuators with high strain density.
9 opment of these robots is the fabrication of soft actuators.
10                                          The soft adhesion system can use up to approximately 26% of
11                                         In a soft agar assay, treatment of HC11-Int3 cells with P50-s
12 ransition) signaling, transwell invasion and soft agar colony formation, and in vivo promoted lung me
13 ells led to decreased transwell invasion and soft agar colony formation, without affecting proliferat
14  phosphorylated ERK, and slows the growth in soft agar of HCT116 cells.
15 rly protein oxidation and the onset of pale, soft and exudative (PSE) condition in chicken breast are
16                                              Soft and flexible surfaces promote mechanical force-medi
17        A side-by-side comparison between the soft and hard skin layers after multiple cycles of stret
18 ge results in structures that can be used as soft and hard tissue-regenerating materials, biosensors,
19             In Biology, this process enables soft and hard tissues to coexist in the same organism wi
20 rsal and progression were confirmed for both soft and hard tissues.
21 l and/or systemic impact on the peri-implant soft and hard tissues.
22 the cohort of women younger than 35 years in SOFT and TEXT, alongside data from the cohort of older p
23      Investigation of topological defects in soft anisotropic materials enables one to better underst
24                                  We designed soft artificial branches perforated with longitudinal li
25  difference, 12.4% [95% CI, 9.3%-15.1%]), no soft bedding use (79.4% vs 67.6%; adjusted risk differen
26 location (room sharing without bed sharing), soft bedding use (none), and pacifier use (any); data we
27 for infants include prone and side sleeping, soft bedding, bed sharing, inappropriate sleep surfaces
28 ous stressor, such as prone/side sleeping or soft bedding, during a critical developmental period.
29                                              Soft bioelectronic devices provide new opportunities for
30 A Bluetooth-enabled system incorporating the soft bioelectronics demonstrates a precise, hands-free c
31 nductivity, an elastic compliance similar to soft biological tissue (Young's modulus < 100 kPa), and
32                   As most microorganisms are soft-bodied and seldom leave behind physical fossils in
33 -2 mm in size, and which, in contrast to the soft-body anatomy, have good preservation potential and
34 es are demonstrating how covalently bonding, soft, carbocyclic organometallic ligands provide an exce
35 ound that insulitis made islets mechanically soft compared with controls.
36 icroscale associated with the application of soft components in optics.
37 mation is challenging in fluid mechanics and soft condensed matter systems.
38 cle and polymeric materials, renders SCPINS (soft-confinement pattern-induced nanoparticle segregatio
39 yrophosphate/phosphate ratio is the cause of soft connective tissue mineralization in these disorders
40                                    Moreover, soft contact lenses may be more likely to retain asympto
41               It was reported that cnidarian soft corals [21] and box jellyfish [22, 23] exhibit peri
42  g fat from a firm cheese (young cheddar), a soft cream cheese (cream cheese), or butter (control) in
43 al scavenger, but it may also coordinate the soft Cu(I) cation and thereby yield pro-oxidant species.
44 terning of a crystallographic direction of a soft, cubic liquid-crystal superstructure, exhibiting an
45 s observed when the monolayers were grown on soft deformable gels.
46                    The experiments show that soft-deodorized VOOs could be added up to 50% to EVOOs a
47                        Herein, we describe a soft device that uses nanoscale information to mimic see
48                                              Soft dielectric materials typically exhibit poor heat tr
49 rld, exporting much of its production to the soft drinks industry.
50     INTERPRETATION: The health impact of the soft drinks levy is dependent on its implementation by i
51 pplied for the determination of Cd and Pb in soft drinks with different brands and flavours.
52 ed by determination of the dyes in processed soft drinks with satisfactory results (recovery>95% and
53 strated anti-inflammatory activity in rat, a soft-drug strategy was implemented to ensure rapid elimi
54 an donor eyes with cuticular drusen (n = 2), soft drusen (n = 1), and hard drusen (n = 1).
55 his architecture stems from the emergence of soft edge modes recently found to appear near the surfac
56 ating liquid metal (LM) microdroplets into a soft elastomer, we achieve a approximately 25x increase
57 l model and a set of experiments showing how soft electrodes can be successfully employed in capaciti
58                                          The soft enolization of an acylated oxazolidinone using di-n
59 saturation approach, and the key is to merge soft enolization with a Pd-catalyzed oxidation process.
60                           Here, magnetically soft epitaxial spinel NiZnAl-ferrite thin films with an
61                                           In soft ferromagnetic materials, the smoothly varying magne
62 roblems of stochastic domain wall pinning in soft ferromagnetic nanowires.
63 oron nitride for chemical-free transfer to a soft, flexible substrate.
64  Unlike typical batteries, these systems are soft, flexible, transparent, and potentially biocompatib
65 l framework for the growth and dynamics of a soft, fluid-permeable, spherical shell.
66                                The different soft fruits showed a typical range for one or more isoto
67 configurable zigzag pattern deformation of a soft helical superstructure is demonstrated in a photore
68 heory and experimental observations show how soft hydraulics can regulate the size of growing tissue
69                              Measurements of soft hydrogel samples with a well-defined elastic modulu
70  test samples were recorded to be >93% using Soft Independent Modelling of Class Analogy approach.
71 nvestigate the dynamics of water confined in soft ionic nano-assemblies, an issue critical for a gene
72 , especially following the implementation of soft ionization (by tunable low energy electrons or vacu
73 TP) and the dielectric barrier discharge for soft ionization (DBDI).
74 ividual CnClm by mathematically deconvolving soft ionization high-resolution mass spectra of SCCP mix
75 hese approaches are generally unsuitable for soft, irregular, and heterogeneous tissues that account
76 lopentane rings has been developed employing soft ketone enolates as the initial nucleophile for anio
77 clean freestanding graphene were prepared by soft-landing electrospray ion beam deposition, which all
78 graphic orientation of the cubic blue phase, soft lattice.
79                              Cs(+) acts as a soft Lewis acid to polarize the carbon-carbon triple bon
80                   Analyses of macrophages on soft (like marrow) or stiff (like solid tumors) collagen
81                              Adipogenesis (a soft lineage) indeed increases LBR:lamin-A,C protein sto
82                                         Many soft-lithographic techniques have been developed for the
83 zation, monolayers are often patterned using soft lithography and selectively decorated with molecule
84 e applied approaches such as 2D conventional soft lithography methods that have rectangular channel c
85 ave basic skill sets in photolithography and soft lithography, as well as experience with stereotaxic
86                  To this end, we developed a soft-lithography method of growing the archaeal cells to
87 ed orthogonally to the channel length, while soft live cells follow hydrodynamic flow.
88 antly, and contrary to what is perceived for soft lyotropic materials in general, the self-assembly m
89 luids can be used to engineer self-organized soft machines.
90 ucture suppresses extrinsic damping, enables soft magnetic behavior, and generates large easy-plane m
91 we show that by embedding nanoparticles of a soft magnetic material in a thermoelectric matrix we ach
92 re second-order magnetic phase transition in soft magnetic material, gadolinium, was employed to obta
93  the structure of the magnetization within a soft magnetic pillar of diameter 5 micrometres with a sp
94 heoretical studies of this emerging class of soft material architectures and identifies current techn
95                       Organic monolayers are soft materials and display significant fluctuations.
96  of T = 1 assemblies templated by biological soft materials as well as the extra-swelling capacity of
97     Nanostructuring of magnetically hard and soft materials is fascinating for exploring next-generat
98 ene C as a versatile template for patterning soft materials potentially applicable as scaffolds in ca
99 nderstanding of temporal behavior of ordered soft materials under combined stimuli.
100 s, and diodes that are completely built from soft materials.
101 ntations leveraging the unique properties of soft materials.
102 rker of CAF, compared with MSC cultured on a soft matrix.
103 gn but also offer a route to generate robust soft matter materials.
104 trategy for inducing collective behaviour in soft matter microcompartmentalized systems and synthetic
105              An important goal of the modern soft matter science is to discover new self-assembly mod
106 to many other open questions in granular and soft matter systems, such as the evolution of size and s
107          Membrane lipids and cellular water (soft matter) are becoming increasingly recognized as key
108 s may spur a paradigm of soliton dynamics in soft matter, with a rich interplay between topology, chi
109 lecular binding-induced polymer shrinkage in soft matter.
110 omposition, which opens new opportunities in soft-matter robotics.
111 applicable for assembling a variety of ionic soft matters that are amenable to chemical reactions in
112 eneration implantable devices owing to their soft mechanical nature that leads to minimal tissue dama
113   This limitation arises from the need for a soft, mechanically compliant interface, which enables co
114 y packed clusters using thermally expandable soft microparticles, whereby the self-assembling process
115 n displays a regular progression involving a soft mode at about 85 cm(-1) These results are rationali
116 that relates the difference in the number of soft modes and states of self-stress localized along the
117 se this construction to localize topological soft modes in interior regions of the material by includ
118  leads to an asymmetry between the number of soft modes on opposing surfaces.
119 e, the topological modes are mixed with bulk soft modes, which organize themselves in Weyl loops.
120 thereupon, we propose a novel scenario where soft multiband modes built from microscopically coexisti
121 ompeting pathways that may aid the design of soft nanostructures with tunable dynamic properties and
122 ed hard neighbours and a weighted sum of its soft neighbours belong to some specified interval.
123 iled cross-sectional study of the microscale soft noble metal objects has been hindered by sample pre
124 ed to characterise structural remodelling in soft (non-calcified) tissues and to conduct in situ stud
125 n (2), turkey meat loaf, milk chocolate with soft nougat, jelly, cake, and candies] at pork DNA conce
126 ng the same axis, different stiffness (i.e., soft on one face and hard on the other).
127 the optical fiber/micropillar hybrid, into a soft optical contact sensor.
128 ex optical material designs, often involving soft or fluid components.
129     On the basis of experiments using either soft or less-intense hard X-rays, it is thought that the
130  subjectively graded calcifications as hard, soft, or fluid according to their appearance at US.
131 s in different physical environments, stiff, soft, or suspension, induced a phenotypic switch in pros
132 n considered to facilitate detoxification of soft organic electrophiles through covalent binding at i
133 ugh these nanocrystals are connected only by soft organic ligands (e.g., dodecanethiol or DNA) that a
134  show that loss of Dlx5 leads to a shortened soft palate and an absence of the levator veli palatini,
135 s, fuse at the midline, forming the hard and soft palate.
136 iented hard-phase SmCo rod-shaped grains and soft-phase Fe(Co) equiaxed grains with a high fraction (
137  combination and interactions of "hard" and "soft" phases within the SPCH and its constituents.
138 solids or fluids-collectively referred to as soft photonics-are poised to form the platform for tunab
139 ex of organic materials prevents the use of "soft-photonics" in applications where strong light confi
140 cell internal stiffness to match that of its soft, physiological-like environment.
141 pliance and large elastic deformability of a soft polymer gel to directly measure solid surface stres
142 crylamide (PAm) hydrogel have been chosen as soft polymers to be moulded.
143                                            A soft porous Zn(II)-MOF (1) displays distinctive three-st
144                                              Soft priming and erasing mechanical memory following cel
145 own to be due to a transition from strong to soft recollisions with increasing intensity.
146  array as a promising imaging element in the soft retinal implant.
147 d extreme high-power LED lamp and a swimming soft robot.
148 may open up new application possibilities in soft robotics and wearable devices.
149 spired by natural muscle, a key challenge in soft robotics is to develop self-contained electrically
150 rade-off is limiting for wearable computing, soft robotics, and other emerging applications that requ
151 uch as medical implants, tissue engineering, soft robotics, and wearable electronics.
152 nergy absorption, conversion and harvesting, soft robotics, prosthetics and optomechanics.
153 response to external stimuli are critical to soft robots, programmable matter, and smart medicine.
154 mponents responsible for producing motion in soft robots.
155 le new kinds of electrically driven entirely soft robots.The development of self-contained electrical
156 extract nanoscale viscoelastic properties of soft samples like living cells and hydrogels directly fr
157 h sinking photosynthetic organic matter in a soft-sediment setting creates geochemically diverse envi
158 are relevant within the context of designing soft semiconductors that exhibit high solubility and a t
159  conserved DM domain gene, Dmrt1, in Chinese soft-shelled turtle Pelodiscus sinensis (P. sinensis), w
160 erature Monte Carlo simulations of hard core-soft shoulder particles with experimentally realistic in
161                The printing process combines soft silicone elastomer printing and liquid metal proces
162 ere, we show that priming on physiologically soft silicone substrates suppresses fibrogenesis and des
163 f stretching and releasing revealed that the soft skin layer enabled dynamic control over wrinkle top
164                          Currently, however, soft solid and fluid material systems still represent an
165 dynamic photoisomerization in mesostructured soft solids involving non-covalent co-assembly has recei
166 lly from reconfigurable, stimuli-responsive, soft solids or fluids-collectively referred to as soft p
167                Agarose gels are viscoelastic soft solids that display a porous microstructure filled
168 eous structures in glasses-such as localized soft spots-and understanding structure-dynamics relation
169 ent mechanical and acoustic properties via a soft strain.
170 erging domain is characterized by continuous soft structures that simultaneously fulfill the role of
171                                         In a soft substrate, the ovipositors can be inserted without
172 and in the design of synthetic adhesives for soft substrates (including for biomedical applications a
173                                           On soft substrates, most paxillin binds to endocytic factor
174 dynamic materials with long-range order on a soft support.
175 logically relevant membrane systems or other soft surface materials for applications in cellular reco
176 g bacteria that are rod-shaped and motile on soft surfaces exhibit polymertropism.
177                                           On soft surfaces, neither EGFR inhibition nor EGF stimulati
178 sively studied, little work has been done on soft surfaces.
179 priate melting point, SFC similar to that of soft table margarines, plastic and spreadable consistenc
180  four categories, including hard-templating, soft-templating, self-templating, and multimethod combin
181 ns highlight the potential of converting the soft textured carp roe mass into stable fish roe powder
182 bout how cells adhere to and exert forces in soft, three-dimensional (3D), and structurally heterogen
183 els mimic many of the physical properties of soft tissue and are widely used biomaterials for tissue
184 tegrate tumor response in the primary tumor, soft tissue and bone metastases, and bone marrow.
185                                              Soft tissue and bone sarcomas are malignancies of mesenc
186 ce imaging (MRI) is critical for visualizing soft tissue and organs, with over 60 million MRI procedu
187  similarities and possible unique aspects of soft tissue and uterine LMS.
188  plan interceptive periodontal augmentation (soft tissue and/or bone augmentation) therapies for pati
189 axial images were reconstructed for bone and soft tissue assessment, respectively.
190 is a clinical diagnosis, exquisitely reveals soft tissue changes such as muscle edema and scapulothor
191 n X-ray computed tomographic data in 3D, the soft tissue comprising blood vessels that are putatively
192 tical porosity simultaneously along with the soft tissue comprising the vasculature.
193 present and 7-24% via biofilm on bones after soft tissue decomposition.
194                         The body outline and soft tissue details suggest significant functional decou
195          Longitudinally, 76% of baseline TMJ soft tissue diagnoses and 71% of the baseline hard tissu
196               Of 789 baseline joint-specific soft tissue diagnoses of DD, 598 (76%) joints showed no
197                          Concurrent baseline soft tissue diagnoses were associated with hard tissue d
198 ificant attenuation of 1) total new bone and soft tissue ectopic bone with 0.5 mg/kg (38.5% and 14.7%
199 onal development and occurs spontaneously in soft tissue environments.
200 twork was trained to identify air, bone, and soft tissue in volumetric head MR images coregistered to
201 gnificantly attenuated in the bacteremia and soft tissue infection models, and the mutant strain lack
202 hil deployment protected mice against lethal soft tissue infection with Streptococcus pyogenes and pr
203 lococcus aureus is a major cause of skin and soft tissue infection.
204  is causing an increasing number of skin and soft tissue infections (SSTIs) in Denmark and other Euro
205  aureus is the most common cause of skin and soft tissue infections (SSTIs), yet sex bias in suscepti
206 ossible, probable, or definite cellulitis or soft tissue infections.
207  shoulder to define the nature and extent of soft tissue injuries prior to physical therapy.
208 matic review is to examine marginal bone and soft tissue level changes, technical and biologic compli
209                  Rhabdomyosarcoma is a rare, soft tissue malignancy, diagnosed particularly in adults
210 ases were not evident on the CT scan and the soft tissue mass was out of the coverage area of the CT.
211                     Subsequent biopsy of the soft tissue mass was performed and histopathology conclu
212  but 2 months later developed a new left hip soft tissue nodule.
213 aim of this study is to compare peri-implant soft tissue parameters (plaque index [PI], bleeding on p
214 cryogenically 3D printed CH structures, from soft tissue phantoms for surgical training and simulatio
215 esis inducer with a therapeutic potential in soft tissue reconstruction and augmentation.
216  as the essential surgical element (bone and soft tissue removal) was omitted.
217 els and prolonged hyperemia characterize the soft tissue response.
218              In 2005, the European Pediatric Soft Tissue Sarcoma Study Group (EpSSG) proposed a conse
219 n effective treatment strategy for childhood soft tissue sarcoma.
220  18 (41%) had bone sarcoma, and 26 (59%) had soft tissue sarcoma.
221  nerve sheath tumor (MPNST) is an aggressive soft tissue sarcoma.
222 can be used to generate multiple subtypes of soft tissue sarcomas in mice.
223 S FDA approved for the treatment of advanced soft tissue sarcomas.
224 curative for primary nonmetastatic extremity soft tissue sarcomas.
225 trated to be more active compared with other soft tissue sarcomas.
226 llagen and elastin fibers of periosteum, the soft tissue sheath bounding all nonarticular bone surfac
227                       Primary and metastatic soft tissue sites will be assessed using Response Evalua
228  significant effect on peri-implant hard and soft tissue status in healthy smokers and non-smokers.
229       Moreover, the infrapatellar fat pad, a soft tissue that becomes highly fibrotic in the post-TKA
230 d in the measured values and a shift towards soft tissue values was observed with decreasing window p
231      The percentage residual viable tumor in soft tissue was significantly less with IRE (P = .005) a
232  adapt itself under stress, enabling abiotic soft tissue with multiscale self-organization for effect
233 s (respiratory tract, urinary tract, skin or soft tissue), antibiotic resistance, and clinical outcom
234 MR in-phase was segmented to air, inner air, soft tissue, and continuous bone.
235 s factor VIII to prevent bleeding in joints, soft tissue, and the central nervous system.
236 ight, WB lean soft tissue, appendicular lean soft tissue, and WB and skeletal site-specific BMC acqui
237 ne the mean trajectories for height, WB lean soft tissue, appendicular lean soft tissue, and WB and s
238 neration of discrete-valued pseudo CT scans (soft tissue, bone, and air) from a single high-spatial-r
239  promote bone regeneration and maturation of soft tissue.
240  No statistically significant differences in soft-tissue absorbed doses were found between the two pr
241 t (ED) visit or hospitalization for skin and soft-tissue infection (SSTI), respiratory infection, int
242 l infection rates and rates of RTI, skin and soft-tissue infection, urinary tract infection, and bloo
243 a-analysis for Staphylococcus aureus skin or soft-tissue infections.
244 l, predominantly for abdominal, urinary, and soft-tissue infections.
245 idence of infections, such as RTIs; skin and soft-tissue infections; chronic comorbid conditions, inc
246 ulated contrast material-enhanced blood, and soft-tissue inserts with known elemental compositions wa
247 68% for ZeDD PET) and by a factor of 1.5 for soft-tissue lesions (6.24% for Dixon PET and 4.07% for Z
248             In total, 30 bone lesions and 60 soft-tissue lesions were evaluated.
249                            Both skeletal and soft-tissue lesions were visualized with high contrast.
250       Synovial sarcoma (SS) is an aggressive soft-tissue malignancy characterized by expression of SS
251 ostatic, including all lymph nodes, bone, or soft-tissue metastasis), and subject level.
252 val for patients with bone metastasis versus soft-tissue or no metastasis for both (18)F-FDG (P = 0.0
253     Here we analyse details of appendage and soft-tissue preservation in Yunnanolimulus luopingensis,
254 the bone sarcoma group and four [10%] in the soft-tissue sarcoma group) had treatment-emergent seriou
255 treatment for locally advanced or metastatic soft-tissue sarcoma has been doxorubicin.
256 el, phase 2 study, we enrolled patients with soft-tissue sarcoma or bone sarcoma from 12 academic cen
257       Synovial sarcoma (SS) is an aggressive soft-tissue sarcoma that is often discovered during adol
258 on-Hodgkin lymphoma, acute myeloid leukemia, soft-tissue sarcoma, and central nervous system cancer.
259 is of an advanced unresectable or metastatic soft-tissue sarcoma, of intermediate or high grade, for
260 treatment for locally advanced or metastatic soft-tissue sarcoma.
261 ne treatment for most patients with advanced soft-tissue sarcoma.
262 ally engineered autochthonous mouse model of soft-tissue sarcomas (STSs) to determine NG2/CSPG4's rol
263 d fatty cyst-like structure and inflammatory soft-tissue swelling.
264 (MTVt, TLGt) and from the manually contoured soft-tissue volumes.
265 with excellent repeatability in extracranial soft tissues across a wide range of tumor sites, sizes,
266 abled the MNs to mechanically interlock with soft tissues by selective distal swelling after skin ins
267             Recognition of these specialized soft tissues in Confuciusornis is enabled by our combina
268                      Exceptionally preserved soft tissues include an extendable, gullwing-shaped, ten
269 that chronic inflammation in musculoskeletal soft tissues may result from dysregulated LM-SPM product
270 os designed to intimately interface with the soft tissues of the human body are of growing interest,
271 sult in irrigant extrusion into the bone and soft tissues surrounding the tooth.
272                         Scales are rooted in soft tissues, and are regenerated by specialized cells.
273  over 75 sponge species, many with preserved soft tissues, in pronounced contrast to normal survival
274  (HO), the abnormal formation of bone within soft tissues, is a major complication after severe traum
275  be sites of infection such as the lungs and soft tissues.
276 f 10-200 kPa, which is in the region of many soft tissues.
277 rs presented stable and healthy peri-implant soft tissues.
278 g from mesenchymal tissues, such as bone and soft-tissues sarcomas, is still largely unclear.
279                         In this magnetically soft, two-dimensional van der Waals ferromagnet, we achi
280                                   Overall, a soft version of Brexit would minimise health threats whe
281 emonstrate spectroscopic measurements of the soft vibrational mode driving this transition and a meas
282 d along lines in 3D, while avoiding extended soft Weyl modes.
283 brown rice, oat and white rice flours, using soft wheat flour as a comparison.
284 te calibrations built by separating hard and soft wheat, or on kernels placed on similar orientation
285 sitivity ranged from 67% (rio zona) to 100% (soft) while specificity ranged from 71% (rio) to 100% (r
286  exploit the element and site selectivity of soft X-ray absorption to sensitively follow the ultrafas
287                       A laboratory setup for soft X-ray GEXRF measurements is presented.
288                       In contrast, table-top soft X-ray lasers (SXRL) feature excellent temporal cohe
289                        Here we demonstrate a soft X-ray pulse duration of 53 as and single pulse stre
290 lement- and site-specificity using broadband soft X-ray pulses produced by high harmonic generation,
291 er resolved elemental depth profiling in the soft X-ray range with a laboratory source, opening, for
292 absorption edges of matter, which lie in the soft X-ray regime above 200 eV, permit the probing of el
293  pulses often suffer from low photon flux in soft X-ray regime.
294               Here, we used femtosecond (fs) soft x-ray spectroscopy near the carbon K-edge ( 284 ele
295 rus 1-sized particles in a three-dimensional soft x-ray tomography reconstruction of an infected cell
296  and processing framework in full field cryo soft X-ray tomography to computationally extend the dept
297      However, the short penetration depth of soft X-rays imposes stringent constraints on sample type
298 gy recording) and the high brilliance of the soft X-rays used.
299  response of atoms and small molecules using soft X-rays with much lower intensities.
300 flare onsets show rapid increase of hard and soft X-rays, ultra-violet emission with large Doppler bl

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