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1 ated with a failure to increase auxin in the main stem.
2 rbon, nutrients and pollutants to the Amazon main stem.
3 pe, possibly owing to a faster growth of the main stem.
4 e primary shoot apex is transported down the main stem and inhibits the growth of the axillary buds b
5 ort/canalization from axillary buds into the main stem and is enhanced by a low sink for auxin in the
6 pulvinus" is found between the inflorescence main stem and lateral branches.
7 IRNA shows that sequences that form both the main stem and one loop are critical for its translation
8 s in daily streamflow for the Fraser River's main stem and six of its major tributaries over 1949-200
9 anching only in the presence of auxin in the main stem, and enhances competition between two branches
10 n in the polar auxin transport stream of the main stem, as a likely cause for the suppression of basa
11 h as leaf area, growth rate, flowering time, main stem branching, rosette branching, and final plant
12                                          The main-stem bronchi bifurcate from this common structure a
13  of polyp-like structures in the trachea and main-stem bronchi.
14    Although tracheal development was normal, main-stem bronchial formation, as well as all subsequent
15 dobronchial blocker was placed into the left main stem bronchus for lung isolation and application of
16 ) before and during hypoxia produced by left main stem bronchus occlusion (LMBO) in mice with and wit
17 e third patient, stent placement in the left main stem bronchus was needed to relieve left lung atele
18 bres with receptive fields in the trachea or main stem bronchus.
19 ing gross specimens, we found that the right main-stem bronchus was consistently larger in diameter t
20 onsistently larger in diameter than the left main-stem bronchus, though the latter was longer and str
21 r most patients with multivessel and/or left main stem CAD, as well as a significant reduction in sub
22 n most patients with multivessel and/or left main stem CAD.
23 lly in diabetic patients and those with left main-stem CAD, and exhorts the need for a multidisciplin
24 ght be better than PCI for treatment of left main stem coronary artery disease.
25 ft anterior descending, multivessel and left main-stem coronary artery disease (CAD) and that these b
26 ntly up-regulated in axillary meristems upon main stem decapitation.
27 surgery to have hypercholesterolemia or left main stem disease and were, on average, less obese.
28  factors, multiple coronary vessel, and left main stem disease were more frequent in patients with di
29 hade avoidance syndrome, including increased main stem elongation and reduced branching.
30 ary angiography as >50% stenosis of the left main stem, >70% stenosis in a major coronary vessel, or
31 rrent hypotheses: that auxin moving down the main stem inhibits branch activity by preventing the est
32                                        Fifth main stem leaf samples were harvested at sunrise and sub
33 elocity with intracoronary wires in the left main stem, left anterior descending, and circumflex arte
34  and almost two-thirds of patients with left main stem (LMS) disease have a survival benefit and mark
35 oronary artery disease with unprotected left main stem (LMS) stenosis, coronary artery bypass graftin
36  more than double the free energy of the IGR main stem-loop structure.
37                  In this study, DOM from the main stem of 10 global rivers covering a wide climatic r
38 ional normalized ratio (INR) represented the main stem of such protocol.
39 516 EEMs measured in surface waters from the main stem of the Neuse River and its tributaries, locate
40 nance (the concentration of resources in the main stem of the plant and a corresponding suppression o
41 detected a high-activity binding site on the main stem of the WNV 3' SL RNA.
42 ting the number of sylleptic branches on the main stems of poplar hybrids by a Poisson distribution,
43  the base, (2) from thin branches toward the main stem's top and base, and (3) from the base toward t
44 bserved difference in the development of the main stem shoot apex between tin and the wild type.
45 mortality associated with dams; (ii) even if main stem survival were elevated to 100%, Snake River sp
46  identified a cluster of atoms within the D1 main stem that control the rate constant for D135 collap
47 bsidizing microorganisms in large rivers and main-stem waters.

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