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1                                                             To understand how these receptors distinguish ACh and Cho, we
2                                                             To understand the adhesive secretions of P. shermani, its com
3                                                             To understand the genetic architecture of how these two organ
4                                                             To understand the population genetics of structural variants
5                                                             To understand the role of oncogenic KRAS in CRC, we engineere
6                                                             To understand this process, we applied an unbiased quantitati
7                                                             To understand this, we investigated transcriptomes using RNA-
8                        This region may underlie our ability to understand the structure of our social world and navigate
9 ted neurogenesis models and a transgenic approach, we aimed to understand the cell-source for new neurons in infectious a
10 alongside genome, transcriptome, and DNA methylome analysis to understand determinants of drug response.
11 ss these estimates in light of more clinical trial data and to understand the effect on an individual country's programme
12  heat from landfills, to predict landfill temperatures, and to understand the relative importance of factors that contrib
13 , and RyR on the intracellular calcium dynamics of VSMC and to understand how variation in protein levels that arise due
14 l or group of cells over time, this method offers an avenue to understand dynamic cell behavior, including processes such
15                   Our microbiome is complex and challenging to understand, but evolutionary theory provides a universal f
16 s on issues critical for researchers and research consumers to understand.
17                Rutherford backscattering (RBS) was employed to understand this unusual behavior as to whether it is a mix
18               Quantifying stochastic processes is essential to understand many natural phenomena, particularly in biology
19                                  Recent studies have helped to understand the genetic basis of clonal evolution and relap
20 or sufficient suppression of autoreactive T cells and helps to understand how MSCs ameliorate symptoms in lupus-prone MRL
21 tions are being lost at alarming rates and it is imperative to understand how communities assemble if we have to prevent
22 high levels of morbidity and can be lethal, it is important to understand how Toxoplasma traffics to these tissues, how t
23                                    Phenotyping is important to understand plant biology, but current solutions are costly
24                                             It is important to understand the intellectual legacies underpinning macrosys
25                                        It is thus important to understand underlying early molecular events.
26                Collectively, our data provides new insights to understand the evolutionary relationships between MULE, hA
27                           One goal of structural biology is to understand how a protein's 3-dimensional conformation dete
28 ient ionization mass spectrometry, an attempt has been made to understand the molecular signatures of bacterial fouling.
29                                 We used synchrotron methods to understand the modes underlying clinically significant tis
30                      We have developed a mathematical model to understand the significance of altered levels of SERCA, IP
31 nism of intracellular dynamics of IAV assembly is necessary to understand reassortment.
32 he growing elderly population worldwide highlights the need to understand how aging promotes CVD in order to develop new
33                    This finding further emphasizes the need to understand how brain reward networks contribute to youth d
34 pt PD-L1-mediated tumour tolerance has highlighted the need to understand the molecular regulation of PD-L1 expression.
35                                  Further research is needed to understand how these noncardiac complications may affect t
36                                     More research is needed to understand the effectiveness of screening and treatment fo
37 ted data from 14 countries (where it has active operations) to understand the extent of stock-outs, in-country purchasing
38 hotoionization mass spectrometry experiments were performed to understand the ion-molecule growth mechanism of small acet
39                                               The potential to understand fundamental biological processes from gene expr
40 nts a vast amount of high-throughput data has been profiled to understand the mechanism of complex diseases.
41 ution airborne remote sensing (Light Detection and Ranging) to understand orangutan movement in disturbed and fragmented
42                                                  In seeking to understand this discrepancy, we find that many of the barc
43 is important to identify the major components of these SMPs to understand what is in wastewater effluents.
44 phatase 1 (PP1) with the SR protein splicing factor (SRSF1) to understand the foundation of these opposing effects in the
45                      This contemporary review first strives to understand the diverse roles of immune cells implicated in
46      The bacterial flagellar filament has long been studied to understand how a polymer composed of a single protein can
47          To date, significant research efforts are underway to understand the spread and the unique pathogenesis of this
48                                 These observations allow us to understand how ZIF-8 crystals self-assemble and the subseq
49  the tertiary structure folding processes of RNA enables us to understand and control its biological functions.
50 ic spread in the region by focusing on the role of voyaging to understand better the core elements that produced the obse

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