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3 ng is not linear and the anisotropic bandgap makes it possible to achieve anisotropic propagation cha
4 acellular access and are minimally invasive, making it possible to achieve stable recording up to an
5 Fourier transform EPR (FT-EPR) spectroscopy makes it possible to acquire the entire EPR spectrum of
6 ience research, where microfluidic platforms made it possible to address specific questions extending
8 s in genome-wide association studies (GWASs) make it possible to address important questions about th
9 are poorly understood, but novel methods now make it possible to address them by examining the relati
10 tomics, proteomics, and metabolomics, is now making it possible to address the contributions of the e
11 the withdrawal speed during the dip-coating made it possible to adjust the thickness of the film ove
16 RF rung electrodes and guards along the axis makes it possible to apply static or transient electric
17 e regions in individual amusic subjects will make it possible to ask more precise questions about the
18 e-cell ATAC-seq, DNase-seq or ChIP-seq) have made it possible to assay regulome of individual cells.
22 data provide an anatomical framework that 1) makes it possible to assign most neurons to their parent
23 ted instruments and high detection expenses, making it possible to be a reliable alternative in resou
26 hylation variants were known until recently, making it possible to begin to address major unanswered
27 f this reconstituted MMR reaction should now make it possible to better study both Exo1-independent a
29 Current cutting edge computing technology makes it possible to build genomic sequences from the bi
30 distribution of retail activities in cities makes it possible to build models formalized at the leve
31 ease can be predicted by a kinetic equation, making it possible to calculate PAH content equal to any
32 ecent advancements in molecular methods have made it possible to capture physical contacts between mu
33 onic generation driven by femtosecond lasers makes it possible to capture the fastest dynamics in mol
37 ext generation sequencing of cellular RNA is making it possible to characterize genes and alternative
39 nalysis identifies symmetry-based rules that make it possible to classify and predict the selection s
41 Methods of transcriptional profiling have made it possible to compare gene expression between fema
42 normalization units should be agreed upon to make it possible to compare different impacts and method
43 ncing of lymphocyte receptor repertoires has made it possible to comprehensively profile the clonal c
44 d assembly methods over the past decade have made it possible to construct genome-size fragments from
48 cent advances in polymerase engineering have made it possible to copy information back and forth betw
52 pothesis test and a collection of tools that make it possible to decouple these problems, which we be
54 (GLIC)-and crystallized eukaryotic receptors made it possible to define the overall structure and top
57 n both functional and structural studies now make it possible to describe many of the intricate molec
59 of experimental and computational techniques makes it possible to describe the interaction between 2P
60 and controlling of micro robotic structures, making it possible to design and fabricate even smaller
61 t-generation sequencing (NGS) technology has made it possible to detect genomic alterations within tu
64 ve to ELISA as it is much more sensitive and makes it possible to detect a small amount of antibodies
65 ignal amplification because of redox cycling makes it possible to detect species at relatively low co
66 als are part of the same transmission chain, making it possible to detect probable direct transmissio
67 otopolymerization of methyl methacrylate and made it possible to determine the orders of reaction and
69 ike whole-genome bisulfite sequencing (WGBS) make it possible to determine cytosine methylation state
70 color space used as the analytical parameter make it possible to determine K(I) between 2.4 x 10(-5)
74 core/shell NPs with nonprecious metal core, making it possible to develop advanced NP catalysts with
76 to palynological and mineral characteristics make it possible to differentiate among the types of hon
77 tudies of EVOO composition and adulteration, making it possible to differentiate and classify oils.
78 le manipulation and imaging technologies has made it possible to directly probe DNA binding by H-NS,
79 dvances in single-molecule spectroscopy have made it possible to directly probe transition paths, whi
80 ection of the overtone used to separate ions makes it possible to directly determine ion mobilities f
81 ogically known times and places, ancient DNA makes it possible to directly track migrations and respo
83 ly activated by designer drugs (DREADDs) has made it possible to dissect specific GPCR signaling path
85 activity (auditory brainstem responses) have made it possible to distinguish both synaptic and audito
87 and the use of hospital discharge diagnoses made it possible to draw a comprehensive picture of the
88 ations caused by the presence of the analyte make it possible to draw some conclusions about the dire
91 genic and electroporation technologies, have made it possible to easily visualize the cellular and mo
92 ies of GT using WDV-based DNA replicons will make it possible to edit complex cereal genomes without
94 dicated kinetic Monte Carlo algorithm, which makes it possible to efficiently simulate this system co
95 -quantum-well semiconductor heterostructures make it possible to engineer one of the largest known no
98 ly describes experimental concentrations and makes it possible to estimate the degradation of precurs
99 e spot in a statistically principled way, it makes it possible to estimate the error introduced by im
100 rate of the overall stoichiometric reaction, making it possible to estimate the observed reaction kin
101 ures in the optical spectra of the two forms made it possible to evaluate which of the cluster forms
102 Although high-throughput sequencing has made it possible to examine the genome and transcriptome
103 next-generation sequencing technologies have made it possible to examine whole-genome sequencing (WGS
104 Several animal models have been developed to make it possible to examine bilirubin-induced neurotoxic
106 e of data construction, analyzed by MCR-ALS, makes it possible to exploit the so-called "second-order
107 nvenient wet-chemistry synthetic routes have made it possible to explore catalytic activities of a va
108 ces in next-generation sequencing (NGS) have made it possible to explore complex microbial communitie
109 quenching rate attainable in the experiment, makes it possible to explore the fast kinetics and struc
110 valley and spin quantum degrees of freedom, making it possible to explore new physical phenomena and
111 plexes of 4,4'-dinonyl-2,2'-bipyridyl, which makes it possible to extend the redox buffer approach to
113 aster image correlation spectroscopy (RICS), makes it possible to extract molecular translational dif
116 in explicit solvent with milestoning theory, making it possible to extract kinetic information from n
117 e spectroscopy continues to play a key role, making it possible to focus on active sites that exist w
118 a conditional reporter allele in the crosses made it possible to follow cells that had expressed Pax3
120 volumes, the new methodology presented here makes it possible to forecast the conditions for magma-c
121 mbined with mass spectrometry advances could make it possible to fully characterize the human glycopr
122 corrected with their repeats, this approach makes it possible to further refine these long read regi
123 eover, the analytical model underlying D(3)E makes it possible to gain additional biological insights
125 The advent of mobile DNA sequencers has made it possible to generate DNA sequencing data outside
126 in immunology, and genetic engineering have made it possible to generate human T cells that display
127 uent at the 3-position of the triazole ring, made it possible to generate the first pyrrole-substitut
130 unity could be represented in our framework, making it possible to highlight interactions across mult
131 nt developments in electronic technology are making it possible to home monitor the sensitivity of th
132 Using the data from up to six grass species made it possible to identify conserved sequences as shor
133 Recent advances in genomic technologies have made it possible to identify miRNA-mRNA binding sites fr
134 and crystallographic orientation of domains made it possible to identify single crystals that releas
137 areas with 7 commercial chromogenic reagents makes it possible to identify 13 metal ions and to deter
139 Importantly, IDREAM's enhanced accuracy makes it possible to identify subtle synthetic growth de
140 ress in magnetic resonance imaging (MRI) now makes it possible to identify the major white matter tra
141 ription of the mutational burden of cancers, making it possible to identify targetable oncogene addic
142 es have been conclusively observed directly, making it possible to identify the ultrafast reaction pa
143 imaging sequence on a clinical scanner that makes it possible to image an entire intact human heart
144 nidinium thiocyanate, pepsin, and SDS, which makes it possible to immobilize new biotinylated bait.
145 standard semiconductor thin-film technology, making it possible to implement more complex and larger
146 ofactor is substituted by different analogs, makes it possible to improve the details of the spin dis
147 -optimized indexing schemes, Centrifuge also makes it possible to index the entire NCBI nonredundant
148 logy of the space of experimental conditions makes it possible to infer the position and to build con
149 gaze at the options, but with reduced vigor, making it possible to infer timing of the decision from
150 t the application of psychological targeting makes it possible to influence the behavior of large gro
151 s high operational light sensitivity, iChloC makes it possible to inhibit neurons in a large volume o
153 techniques, often used in combination, have made it possible to integrate structural and electrophys
154 th population exposure to outdoor emissions, making it possible to integrate occupational exposure wi
156 oppy self-incompatibility system may finally make it possible to introduce this potentially valuable
157 of endolysosomal patch-clamp techniques has made it possible to investigate directly ion channel act
158 r (18F-AV-1451, also known as 18F-T807) have made it possible to investigate the sequence of developm
159 port on new methodological developments that make it possible to investigate the heterogeneity of Del
161 of measurements made at CTFS-ForestGEO sites makes it possible to investigate the complex ways in whi
162 on serial-section electron microscopy (ssEM) makes it possible to investigate the dense meshwork of a
163 ecent advances in the field of deep learning make it possible to learn more complex functions and bet
165 ion of its cognate aminoacyl-tRNA synthetase makes it possible to map transient protein-protein inter
166 iverse range of available fluorescent probes makes it possible to mark proteins, organelles, and othe
167 t consist of hundreds of genomes, which also makes it possible to match compounds from unsequenced or
168 Attosecond spectroscopic techniques have made it possible to measure differences in transport tim
169 Recent technological breakthroughs have made it possible to measure RNA expression at the single
170 ndividuals, followed up by targeted analysis made it possible to measure subtle (<2 fold), yet highly
171 gh advances in protein labeling methods have made it possible to measure the proteome of mixed cell p
172 ecent advances in X-ray instrumentation have made it possible to measure the spectra of an essentiall
173 or CB-839, yielding titration profiles that make it possible to measure the binding affinities of th
174 ments utilizing the vibrational Stark effect make it possible to measure the electric field a substra
175 such as profession or location, which would make it possible to measure the transmission potential o
177 therefore be used as in vivo force sensors, making it possible to measure the forces that act on a n
179 wo-dimensional infrared (T2DIR) spectroscopy makes it possible to monitor the conformational changes
180 encing technologies, including RNA-seq, have made it possible to move beyond gene expression analysis
181 can be subjected to a cluster analysis that makes it possible to objectively compare microscopy imag
182 The DSC technique coupled with microscopy made it possible to observe that the lactobionic acid sh
184 erful tools for studying immune cells, which make it possible to observe rare and intermediate cell s
185 hermal fluctuations at high temperatures and makes it possible to observe a reciprocity principle of
187 ce spectroscopy is a powerful technique that makes it possible to observe the conformational dynamics
189 ecent advances in sequencing technology have made it possible to obtain high-throughput data on the c
190 ate that the design strategy that we propose makes it possible to obtain antibodies targeting given e
191 able to investigations of complex lipids and makes it possible to obtain structural parameters for bi
192 We now report a new Hmox1 reporter line that makes it possible to obtain this information in mice, a
194 at the control over the nanoporous structure makes it possible to optimize optical signals in RfS for
195 y improving tools of genetic engineering may make it possible to overcome the humoral immune barrier
196 presence of a surface oxide on these metals makes it possible to pattern them into useful shapes usi
197 ethod of molecular fragment replacement that makes it possible to perform equilibrium simulations of
199 the half-reactions is limiting on the other, making it possible to precisely monitor the contribution
200 defect line to ratchet in either direction, making it possible to precisely position the line at a d
201 ulated loudness at absolute threshold, which made it possible to predict accurately the absolute thre
204 entativeness of hospital-based surveillance, making it possible to predict its ability to detect emer
205 pal map alignment and the animal's behavior, making it possible to predict the search location of the
206 h as aortic valve stenosis or insufficiency, making it possible to predict their integrated effects o
207 the synthesis and semisynthesis of proteins made it possible to prepare several unique ubiquitin con
208 yster norovirus outbreaks at their onset may make it possible to prevent or at least reduce the risk
211 ifferentials and act as a working electrode, makes it possible to probe electrochemical reactions in
213 molecular allergen characterization has now made it possible to produce defined vaccines for AIT and
216 terized cell types during genome annotation, making it possible to produce high-quality annotations o
217 carbon lattice of graphene to boron nitride, making it possible to produce uniform boron nitride and
221 e(1.52)Mn(0.68)O18 (B6TFMO) thin films, that makes it possible to put a high, defined confidence leve
223 Also, recent theoretical developments now make it possible to quantify how neurons modify informat
224 nces in mass spectrometry-based technologies make it possible to quantify phosphorylation on a proteo
225 assay's ruggeddness or reproducibility also made it possible to quantitatively detect active ricin w
227 availability of rapid prototyping technology makes it possible to quickly and easily engineer purpose
228 availability of rapid prototyping technology makes it possible to quickly engineer alternatives to co
230 f next-generation sequence technologies have made it possible to rapidly and inexpensively identify g
231 rangement and an on-demand droplet generator makes it possible to rapidly and reliably trap particles
232 Genome engineering technologies are now making it possible to rationally change the genetic code
233 description of symptoms and pathologies has made it possible to read a 7-century-old case through th
234 Recent advances in nano-biotechnology have made it possible to realize a great variety of enzyme el
238 tion technologies for organellar genomes has made it possible to reconstruct this endosymbiotic gene
240 ermore, a combination of dual output signals makes it possible to reduce the interference from other
241 tuitive control of surface AMPAR expression, making it possible to regulate the directionality and ma
242 hievements in several areas of research have made it possible to relate specific properties of brain
243 globular proteins for association with SDS, making it possible to release and refold SDS-denatured p
245 ub-Angstrom (0.76 A) spatial resolution that makes it possible to resolve the position of the nuclei
246 ystems epidemiology and systems virology and making it possible to respond rapidly to emerging viruse
247 ic phase transition in SrCoO x (x = 2.5-3.0) makes it possible to reversibly transit between the two
248 cent probes with reactive oxygen species has made it possible to rigorously analyze these reactive sp
250 to specific OMS drift regions are varied to make it possible to select different ions from a specifi
251 This optically driven diazoether chemistry makes it possible to selectively functionalize a specifi
252 s with longer, 13-nucleotide binding domains make it possible to self-assemble 0.1-1-gigadalton, thre
253 ent AC measurements, impedance spectroscopy, make it possible to separate the contribution of each co
258 ate that the outlined procedures are robust, making it possible to solve by Nanobody-assisted X-ray c
259 gic angle spinning (MAS) NMR technology have made it possible to spin solid samples up to 110 kHz fre
260 Combined with genetic tools, this analysis made it possible to study the assembly of the oligosacch
261 d optical tethering of endosomes (NOTE) that made it possible to study the cooperative mechanics of d
263 f fluorescent markers into viral genomes has made it possible to study the trafficking of enveloped v
264 ultrahigh vacuum surface analysis techniques make it possible to study chemical reactivity at the gas
265 uminescent and fluorescent genetic tools now make it possible to study hair regeneration in vivo in r
266 er strands via mechanical exfoliation, which makes it possible to study individual, long polymer chai
268 kly combined with a favorable safety profile made it possible to substitute CBL0137 in the ILP protoc
269 tropy breaks the symmetry of the problem and makes it possible to switch the magnet deterministically
270 of materials science and nanotechnology have made it possible to synthesize nanoparticles with desira
271 In recent years, technical advances have made it possible to systematically determine the target
272 terplay between chain diameter and stiffness makes it possible to tailor the network's elastic modulu
274 fication of DBH variants with strong effects makes it possible to take advantage of Mendelian randomi
275 herapy planning and delivery techniques have made it possible to target tumors more accurately while
277 Recent findings from molecular genetics now make it possible to test directly for natural selection
278 ion of the patterns of these Int bridges has made it possible to think realistically about the global
281 chnologies have emerged in recent years that make it possible to track the masses of single suspended
282 ise in the study of quantum materials, as it makes it possible to track similarities and correlations
283 VICT might be utilized in clinical settings, making it possible to track the progress of point mutati
284 ique properties of this transient Dirac cone make it possible to tune with ultrafast light pulses a r
285 to other multimetallic nanoparticle systems, making it possible to tune nanoparticle catalysis for ma
286 rol over the energy position of this feature making it possible to turn this phenomenon on and off.
287 lymer observed in the single crystals should make it possible to understand the long-range ordering o
288 knowledge of miRNA-based gene regulation has made it possible to unravel pathomechanisms, enabling th
293 significantly lowers the limit of detection, making it possible to use antibodies previously ineffect
294 ome a powerful tool in evolutionary biology, making it possible to use molecular sequences to estimat
296 ever, recent advances in bulk RNA sequencing make it possible to utilize metatranscriptomic approache
297 stablishment of Gfi1 and Gfi1b reporter mice made it possible to visualize their cell type-specific e
299 es smaller than the operating wavelength and makes it possible to visualize independently edges align
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