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1 gine has been built using this database as a back end.
2 d front end and a set of relational database back ends.
3 front of the MEKK2 PB1 domain binding to the back-end acidic clusters of the MEK5 PB1 domain.
4  novo modelling, have significantly improved back-end algorithms that were rigorously evaluated at th
5 d are compatible with either IEX-HPLC or CGE back-end analysis.
6 R use over 90-day period) was measured using back-end analytics.
7 ysis of mitochondrial variants) as well as a back-end and a front-end interface.
8 as dramatically influenced the design of the back-end and the functionality provided through the inte
9 hoA and RhoB are involved in pulling up the "back end" and resorbing lamellipodial membrane protrusio
10  a fine-tuned w2v2 front-end with the AASIST back-end, and an XGBoost classifier.
11                      GREIN is powered by the back-end computational pipeline for uniform processing o
12     The combination of the massive amount of back-end data and front-end analytics options driven by
13 ional data formats, modernized interface and back-end database and an optimized framework for adoptio
14 t the need for infrastructure investments or back-end deployments.
15 elongated because they fail to release their back ends during cell locomotion.
16 ducing the burden on signal transmission and back-end electronics.
17 -source R package providing a fast, flexible back-end for multi-gene, multi-cancer risk modeling with
18                                 The database back end has been changed from the venerable ACeDB to th
19 the Chado schema and redesigned all user and back end interfaces.
20                   In addition to fundamental back-end knowledge reasoning tasks, PloverDB automatical
21 front-end wearable devices, we also describe back-end machine learning algorithms, artificial intelli
22                                            A back-end neural network can then reconstruct the origina
23 re the front end of one PB1 domain binds the back end of a second PB1 domain.
24  array sequencer, both the front end and the back end of DNA sequencing are combined in a miniaturize
25 semiconductors have been integrated into the back end of silicon ICs.
26 dds blocks of muscles (the somites) from the back end of the embryo.
27  detail the manufacturing, encapsulation and back end of the fibertrodes.
28 jor role in the US, many questions about the back end of the fuel cycle must be addressed.
29 ve assessed the implications of SMRs for the back end of the nuclear fuel cycle.
30 ndom light intensities both at the front and back end of the phototransduction cascade.
31       Combined with a lightweight electronic back-end of about 2K parameters, our reconfigurable nano
32 stantial efforts to develop and populate the back-ends of biological databases, front-ends to these s
33 facilitated if the memories are built in the back-end-of-line (BEOL) and stacked directly above the l
34                                          The back-end-of-line (BEOL) integration of directly grown 2D
35 temperatures not compatible with traditional back-end-of-line (BEOL) processes in semiconductor indus
36  high temperatures to be compatible with the back-end-of-line (BEOL) technology.
37 OS compatible processing parameters even for back-end-of-line integration; our findings suggest feasi
38 t requisite scalability and performance in a back-end-of-line process have proven challenging.
39 ion was assisted by the advanced 8-inch CMOS back-end-of-line technology.
40                              Here we present back-end-of-line-compatible FE-FETs using two-dimensiona
41 ational voltage drift, ultimately enabling a back-end-of-line-compatible OTS selector with >12 MA/cm(
42 rphous or polycrystalline surfaces after the back-end-of-the-line process at low temperatures to pres
43 al-oxide-semiconductors (CMOS) processing by back-end-of-the-line steps.
44 nhances volumetric ESD beyond the best-known back-end-of-the-line-compatible dielectrics (115 J cm(-3
45 y and ultrafast-charging thin films within a back-end-of-the-line-compatible process enables monolith
46 data with an efficient distributed computing back-end pipeline that runs on a Linux cluster.
47  be accessible to non-bioinformaticians, its back-end pipelines may also be run independently on the
48                               REST API based back ends provide programmatic data access and supports
49 xpression patterns at the click of a button; back-end refactoring from an object oriented to relation
50                                          The back end runs a series of sequence analysis tools on a D
51                            Its computational back end runs operations on-demand wherever possible, al
52 ot require third-party software, plugins, or back-end servers.
53 tion to track experiments and submit jobs to back-end servers; and SBSIVisual, an extensible client a
54  we successfully designed and customized two back-end signal amplifiers for biosensing by integrating
55 t-in support for multiple data sources and a back end that houses abstract data types, the metagenomi
56 he front end and an ion chromatograph at the back end, the PC readily operated for at least 4-week pe
57 ger designed to work together with a digital back end to offload computationally expensive convolutio
58  to add additional protocols, (c) a flexible back-end to allow leveraging of computer cluster resourc
59 e describe significant updates to the server back end, where we have focused on performance improveme
60 ficient site-specific cargo delivery, with a back-end zinc (Zn) propellant engine segment and an upfr