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1 a benchtop fusion reactor that enabled us to bombard a palladium metal target with deuterium ions.
2 (2800)(8+)), separated in time and space, to bombard a surface.
3                                           We bombarded a high-purity deuterium gas target(10) with an
4                                           We bombarded ACC2-defective Arabidopsis leaves with a vecto
5 ically 136 keV Au(400)(4+), were utilized to bombard analyte surfaces due to its high efficiency for
6             Approximately 10 g of tissue was bombarded, and three transgenic lines were selected on h
7  the rapid loss of molecular signal from the bombarded area with both C60(+) and Au(+) used as a mona
8 up and defect interaction dynamics in 3C-SiC bombarded at 100 degrees C with either continuous or pul
9 tion of particles from beta-carotene samples bombarded by 15 keV Ar(2000).
10        In vivo, cortical pyramidal cells are bombarded by asynchronous synaptic input arising from on
11  history of the Solar System, Earth has been bombarded by interplanetary dust particles (IDPs), which
12  is consistent with initially pure water ice bombarded by meteors, but smaller radial structures may
13                              Hungry animals, bombarded by multiple sensory stimuli, are known to modi
14 dying this basic problem, we are continually bombarded by nature's surprises and challenges.
15 vels of salt tolerance were regenerated from bombarded cell cultures via somatic embryogenesis.
16 uorescent protein fusions in microprojectile-bombarded cells and confirmed by subcellular fractionati
17 uorescent protein fusions in microprojectile-bombarded cells.
18  mouse survival, in contrast with luciferase-bombarded control mice.
19                         Au(400)(4+) clusters bombard DNA-functionalized anisotropic gold nanostars an
20 e calli, confirmed the stable integration of bombarded DNA into the cassava genome.
21                                 Up to 20% of bombarded embryos produced calli with the recombined lox
22 n beam method to study defect dynamics in Si bombarded in the temperature range from -20 to 140 degre
23 hod to study dynamic annealing in 4H-SiC ion-bombarded in the temperature range of 25-250 degrees C.
24 luorescent marker genes were constructed and bombarded into five developmental regions in a growing m
25 nked by oppositely oriented lox sites was co-bombarded into maize cells along with a cre-expressing c
26 2x Cauliflower mosaic virus 35S promoter was bombarded into P. vittata spores using biolistics, in wh
27 beryllium lattice thermal effects as well as bombarding ion isotope effects are discussed where relev
28 led to localised acquired silencing (LAS) in bombarded leaves of wild-type, class I and class II plan
29 eted GFP to chloroplasts and mitochondria in bombarded maize leaves.
30 curonidase (GUS) reporter gene constructs in bombarded maize suspension culture cells was used to exa
31 y-ion beams of (28)Si and (16)O were used to bombard natural chromium and copper targets just above t
32               DNA from the endosymbionts has bombarded nuclei since the ancestral prokaryotes were en
33                   From the noisy information bombarding our senses, our brains must construct percept
34 t the relevant events among the many stimuli bombarding our senses.
35 one transgenic event per approximately seven bombarded plates under optimal conditions.
36 ation vector is at least 8-fold (1 event/2.4 bombarded plates) more efficient than 'Single Gene/Singl
37 tion (SGSS)' vector (aph A-6; 1 event per 20 bombarded plates).
38 one to two plastid transformation events per bombarded sample in spectinomycin-hypersensitive Slavice
39 gh as 17 independently transformed lines per bombarded sample.
40  This limitation is an inevitable outcome of bombarding single-compartment neurons with a large numbe
41  conclude that transfected cells in gene gun-bombarded skin, but not needle-injected muscle, play a c
42 ting the nonlinear dynamics of uniformly ion-bombarded surfaces.
43       The sense of touch detects forces that bombard the body's surface.
44 rs and the added environmental stresses that bombard the immune system on a daily basis, gaining an u
45 n delivers nucleic acids into plant cells by bombarding the cells with microprojectiles, which are mi
46        A highly focused beam of gallium ions bombards the tissue, which is eroded (sputtered) into co
47                                 Selection of bombarded tissue with paromomycin resulted in the establ
48 ed to TGBp3 were transfected to protoplasts, bombarded to tobacco leaves, and studied in transgenic l
49 ional activation assays with microprojectile-bombarded tobacco NT-1 cells.
50  in mature spikes, although expression of co-bombarded uidA (GUS) occurred under the regulation of a
51       Significance statement: Visual stimuli bombard us at different rates every day.
52 ns, and enriched [(50)Ti]TiO(2) targets were bombarded with 24 MeV protons.
53                                 The brain is bombarded with a continuous stream of sensory informatio
54  nucleosynthesis, where lighter elements are bombarded with a massive flux of neutrons.
55               In everyday life, the brain is bombarded with a multitude of concurrent and competing s
56           In our environment, our senses are bombarded with a myriad of signals, only a subset of whi
57 CANCE STATEMENT Our retinas are continuously bombarded with a rich flux of visual input.
58               Human observers are constantly bombarded with a vast amount of information.
59                    Clinicians are constantly bombarded with an onslaught of newly published data, yet
60                           The endothelium is bombarded with and must respond to multiple destabilizin
61 NT In everyday life, we often find ourselves bombarded with auditory information, from which we need
62                           Volvox carteri was bombarded with both Cas9 vector and one of several sgRNA
63   In addition, throughout life, the liver is bombarded with chemical and pathological insults, which
64   During inflammation, endothelial cells are bombarded with cytokines and other stimuli from surround
65 IPSPs; (2) the rate at which each source was bombarded with excitatory postsynaptic potentials (EPSPs
66 the receptive fields of cortical neurons are bombarded with frequent simultaneous changes in local me
67 ectrometry is presented where the surface is bombarded with individual gold nanoparticles each resolv
68 iments where free-standing nano-objects were bombarded with kiloelectronvolt projectiles of atomic to
69 ur skin and its embedded sensory neurons are bombarded with mechanical cues that we experience as ple
70          Photoreceptor cells are incessantly bombarded with photons of light, which, along with the c
71          Mating Tetrahymena thermophila were bombarded with ribosomal DNA-coated particles at various
72 ons, where neocortical pyramidal neurons are bombarded with synaptic input?
73 tyledons of cotton cultivar 'Deltapine 5415' bombarded with the modified viral vectors manifested chl
74                            Animals are often bombarded with visual information and must prioritize sp
75 rylation, deoxygenation, and azidation) upon bombarding with the corresponding reaction aliquots.