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3 lar mechanisms underpinning these processes, thanks in large part to the cross-fertilization of resea
4 ength scales spanning a few nucleosomes, but thanks in part to new technologies that permit targeted
6 to identify unknown samples at the nanoscale thanks, in first approximation, to the direct comparabil
10 sensitive to local structural modifications, thanks to (17)O wide chemical shift and quadrupolar cons
16 eaction spreads throughout the solid network thanks to a long-range H(+) and Rb(+) transport within t
18 HO2) in a jet-stirred reactor were performed thanks to a new experimental setup involving fast sampli
19 ) interval was acquired in approximately 3 h thanks to a new multidimensional photoemission data-reco
21 ion of an organic compound has been achieved thanks to a new system that couples a jet stirred reacto
23 ipulate cells in ways never possible before, thanks to a peculiar form of prokaryotic adaptive immuni
25 de, and (ii) the ATP binding site, localized thanks to a protein-bound AMP molecule, a reaction produ
28 vated poly(methacrylate) beads was optimized thanks to a Response Surface Methodologies approach.
32 al absorption or emission in semiconductors, thanks to a strong interaction of collective excitations
36 AL) amyloidosis has improved in recent years thanks to accurate biomarker-based staging systems and r
37 ound-state line has only now become possible thanks to accurate measurements of its transition freque
38 ssed considerably during the past few years, thanks to advances in biochemistry, genetics, and struct
39 rch in these areas has recently intensified, thanks to advances in chemical synthesis, improved under
41 velopment of new biomarkers for the disease, thanks to advances in MRI, amyloid positron emission tom
42 otype-phenotype associations in many species thanks to advances in next-generation sequencing (NGS) t
44 tural, complex systems are remarkably stable thanks to an absence of feedback acting on their element
46 dure extensive damage targeting this complex thanks to an efficient repair mechanisms, while if PSI i
48 ample pretreatment step for Cd(2+) detection thanks to an extra conjugation pad that ensures Cd(2+) c
50 t demonstrated unique electronic properties, thanks to charge carriers which mimic massless relativis
51 t demonstrated unique electronic properties, thanks to charge carriers which mimic massless relativis
53 s for miniaturization and system integration thanks to CMOS compatibility, the sensors show a detecti
55 ial enhancement of the thermal conductivity, thanks to decoupling of charge and heat currents within
56 oligomer emitting in the near-infrared (NIR) thanks to delocalisation of the BODIPY low-lying lowest
58 titutes an attractive complementary approach thanks to direct measurement and protein characterizatio
61 ectivity and a low detection limit of 0.17nM thanks to electrical conductivity and porous structure o
62 NA sequence data is undergoing a renaissance thanks to emerging technologies capable of producing rea
63 nce more efficiently enters the nanochannel, thanks to facilitating forces generated by the nanofunne
64 thout an electrical connection of the sample thanks to fast charge transfer kinetics but with a surfa
65 lar concentration is possible in short time, thanks to fast MRI sequences based on the HyperCEST sche
66 dy brings additional support to this concept thanks to functional magnetic resonance imaging (7 Tesla
74 M that offers significant potential benefits thanks to increased collection and utilization of data.
75 od, without invoking best fit parameters and thanks to independent lab experiments, thus demonstratin
77 ge mapping (EVM) is effective in guiding EMB thanks to its ability in identifying and locating low-vo
78 uman pathogen for tens of thousands of years thanks to its ability to resist and adapt to the adverse
80 ternative to conventional extraction process thanks to its high efficiency which was achieved in less
81 point/interface defects and grain boundary, thanks to its high-temperature processing condition and
84 ck memory (RM) has sparked enormous interest thanks to its outstanding potential for low-power, high-
85 onal optical methods for microarray analysis thanks to its potential advantages like low-cost, low-po
86 rug screening in a relevant microenvironment thanks to its simple, effective and user-friendly operat
87 as become a primary tool for glycan analysis thanks to its speed and sensitivity, but the information
90 promise in structural composite applications thanks to its unique combination of high tensile strengt
91 tool in many areas of science and technology thanks to its unique performance in terms of ultra-broad
93 t intensively studied extinct dinosaurs, and thanks to large sample sizes and an influx of new discov
96 able to enrich the debate on medical issues, thanks to many philosophical currents such as deontologi
99 putative identification from biological data thanks to MS/MS experiments for metabolites not availabl
100 er threshold than a number of known decoders thanks to naturally finding the most probable error and
101 AD patients can cope better with the disease thanks to neural reserve but also to the recruitment of
108 The strategy development was made possible thanks to our enhanced understanding of the reaction mec
110 ing, photothermal therapy, and drug delivery thanks to plasmon-enhanced absorption and scattering cro
112 nome maps have been produced in recent years thanks to rapid development of high throughput epigenome
114 ) short assay times and high reproducibility thanks to reaction-limited binding regime, (ii) dynamic
117 al decades, and it has gained fresh momentum thanks to recent community-wide blind tests aimed at ben
118 eered for a particular biosynthetic purpose, thanks to recent developments in genome sequencing, meta
122 SGBS pre-adipocytes with VPS13B invalidation thanks to siRNA delivery and (ii) CS primary fibroblasts
126 ing can access multitudes of components and, thanks to standardization, parts from different manufact
127 tal stress inherent to these regions in part thanks to symbioses with microorganisms, and yet these m
128 m and has recently garnered general interest thanks to technical and computational advances that auto
134 nowadays in genetics and population analysis thanks to the advancements in molecular high throughput
137 atography-mass spectrometry (LC-MS) analysis thanks to the arrival of recent high-resolution mass spe
141 al distributions of biomolecules of interest thanks to the availability of multiplexing fluorescent p
142 enhance the thermal conductivity of polymer, thanks to the bridging connections of silver nanoparticl
143 vertebrate model to address this challenge, thanks to the capacity, at the larval stage, for precise
144 tide effect as bacterial adhesion inhibitor, thanks to the carrier/concentrator effect of the AuNPs i
146 need for complex setup and configuration and thanks to the comprehensiveness of the BIDS standard the
150 rns, metallic Li is now ready for a revival, thanks to the development of investigative tools and nan
151 s only recently started to become tractable, thanks to the development of new long read sequencing te
152 brational analysis of live cellular samples, thanks to the development of novel biocompatible IR-visi
155 eld transmission electron microscope images, thanks to the difference of atomic density between the c
156 olid phase on an electrochemical transducer, thanks to the different dimensional interaction of enant
158 cingly that the DNA-based catalysis concept, thanks to the DNA-accelerating effect, can be an effecti
159 B/CD electrodes is close to that of a diode, thanks to the easily p-dopable oligo(BTB) moieties.
161 ve now been turned into a scientific reality thanks to the enabling theoretical tools of transformati
162 ies can be applied to Vg-unsequenced species thanks to the evolutionary conservation of Vg-proteotypi
164 mprehensive" preparation technique, but also thanks to the exploitation of a more powerful and sensit
165 Such in-well densities were only possible thanks to the fabrication process which implies first th
174 binds DOPC much more strongly than 5 and 6, thanks to the higher acidity of its H-bonding thiourea g
177 offer the strongest promise for improvement, thanks to the incessant growth in sequence knowledge.
178 emists, materials scientists and biologists, thanks to the increasing availability of commercial tera
179 evanescent wave modes inside the ADNZ medium thanks to the interplay of near-zero density, material l
183 me sequencing is becoming cheaper and faster thanks to the introduction of next-generation sequencing
185 objective based position detection methods, thanks to the light guiding in optical fibers and small
195 full solar thermophotovoltaic device, which, thanks to the nanophotonic properties of the absorber-em
201 systems possess such flagrant imperfections, thanks to the persistent optimization of evolution, and
203 creased electrical conductivity are observed thanks to the pre-energy-filtering effect before carrier
205 pounds sufficiently to permit discrimination thanks to the predominance of particular compounds such
208 ss illumination, while single pgrl1 are not, thanks to the presence of an efficient repair mechanism
209 cient to establish a link between L1 and L2, thanks to the presence of coordinating solvent molecules
210 a single biochip, enabling a quick screening thanks to the presence of different immobilized antibodi
214 the various causes of loss of consciousness thanks to the publication of several important studies a
215 also revealed with a new level of precision, thanks to the quality of the electron density maps obtai
216 rment generated in sub-Saharan Africa (SSA), thanks to the Rapid Assessment of Avoidable Blindness (R
219 o a broad spectrum of gram-positive bacteria thanks to the recognition of highly conserved cell wall
220 ansplantation (haploBMT) has seen a revival, thanks to the reduced intensity conditioning (RIC) regim
221 ationally predicted regulatory interactions, thanks to the representation of conserved non-coding ele
222 d as multi-component chemical systems which, thanks to the reversibility of their interconnections wi
223 huge potential for novel device applications thanks to the rich physical behaviour displayed in these
224 s as a robust porous metal-organic framework thanks to the rigidity introduced by the use of Gly-Thr
226 o study complex out-of-equilibrium phenomena thanks to the simplicity of the underlying Stokes flow a
227 tion on surface properties than ever before, thanks to the simultaneous multi-channel acquisition of
228 e function, which we have been able to trace thanks to the singular features of SPS genes, wherein th
232 assisted laser desorption/ionization (MALDI) thanks to the specificity of analyte-matrix chemistry.
233 that very diverse communities could persist thanks to the stabilizing role of higher-order interacti
234 lent reversible capacity and rate capability thanks to the steerable nature of the synthesis and mate
235 ave different, hopefully improved properties thanks to the stereoelectronic features of the fluoroalk
236 opentadienyls whose preparation was possible thanks to the steric shielding provided by fullerides 1a
238 ng removed, the HDC map could be constructed thanks to the sufficient number of collinear non-redunda
240 hydroxyl group of the acceptor was obtained thanks to the transient formation of a borinate adduct o
242 de supramolecular chemistry is fast growing, thanks to the unique physical (magnetic and luminescent)
244 zation steps or sample extraction procedures thanks to the use of transmission mode direct analysis i
248 onance spectroscopy (NMR) and imaging (MRI), thanks to their ability to free the evolution of a spin-
249 evices have attracted considerable attention thanks to their ability to show large third-order nonlin
250 ging in clinical diagnosis as powerful tools thanks to their analytical features, mainly the real-tim
254 organic synthesis across chemistry, largely thanks to their ease of handling and functional group to
256 ity to flout many therapeutic interventions, thanks to their fast and easy-to-occur evolutionary gene
257 nnels play an important role in this process thanks to their high activation threshold and fast closu
259 found to be an exciting plasmonic platform, thanks to their high field confinement and low phase vel
261 new applications in heterogeneous catalysis, thanks to their hitherto unprecedented intrinsic structu
264 lectrode materials for lithium-ion batteries thanks to their minimum volume expansion and fast lithiu
266 s can also sustain substantial pulling loads thanks to their persistent attachment to the surface fro
267 e used to build highly functional materials, thanks to their potential multi-addressability and/or mu
268 all the clinical signs of filovirus disease, thanks to their relative ease of use and low cost, they
269 Interest in molecular crystals has grown thanks to their relevance to pharmaceuticals, organic se
270 rmation carriers in logic or storage devices thanks to their robustness, guaranteed by the topologica
271 within networks of competing reactions, and thanks to their sensitivity to environmental parameters,
275 terials can solve key problems in biosensing thanks to their unique material properties and implement
276 development of integrated photonic devices, thanks to their unique spatiotemporal control and spectr
279 non-rodent species has been finally achieved thanks to these customizable nucleases; yet the rates re
291 ineered nucleases is a rapidly growing field thanks to transformative technologies that allow researc
293 e protein structures is beginning to quicken thanks to various improvements in technology, including
295 sthetically pleasurable, not despite, rather thanks to, some of the strong negative emotions it provo
297 h participation, 6 themes emerged: 1) to say thank you to the ICU team, 2) to help other bereaved fam
299 mail field experiment and demonstrates that thank-you gifts reduced donation rates in a fundraising
300 pite this, many nonprofits offer conditional thank-you gifts, such as mugs or tote bags, in exchange
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