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19861
Expanding the donor pool in kidney transplantation: Should organs with acute kidney injury be accepted?—A retrospective study
Published 2019“…</p><p>Results</p><p>Patient survival was similar in both groups, whereas death-censored and overall graft survival were decreased in AKI kidney recipients. AKI kidney recipients showed higher frequencies of DGF and had a reduced eGFR at 7 days, three months and one and three years after RTx. …”
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19862
Analysis of the <sup>1</sup>H-<sup>15</sup>N HSQC Spectra of mS100A4 in Complex with EGF.
Published 2016“…<p>(A) Overlaid <sup>1</sup>H-<sup>15</sup>N HSQC spectra of 0.5 mM <sup>15</sup>N-labeled free mS100A4 (red) and mS100A4: EGF, molar ratio = 1:0.3 (green), 1:0.6 (blue), and 1:1 (white), with the intensity drop indicated by green boxes. …”
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19863
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19864
Loss of layer V pyramidal neurons of motor cortex.
Published 2013“…Values are expressed as mean ± SEM. Scale bars: 5 mm in A; 50 µm in C.</p>…”
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19865
Expression levels of myosin heavy chain and AMPK-PGC-1α pathway in the skeletal muscles.
Published 2016“…<p>The mRNA expression levels of <i>MYH1</i> (encoding MHC type IIx), <i>MYH2</i> (encoding MHC type IIa), and <i>MYH7</i> (encoding MHC type I) normalized to β2-microglobulin levels in the intercostal muscles of SBMA (<i>n</i> = 5) and ALS (<i>n</i> = 5) subjects (A–C). The expression levels of <i>MYH1</i> (A) and <i>MYH2</i> (B) were significantly decreased in subjects with SBMA compared with subjects with ALS. …”
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19866
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19867
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19868
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19869
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19870
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19871
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19872
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19873
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19874
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19875
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19876
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19877
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19878
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19879
Dynamic Behavior of Droplet Impact on Laminar Superheated Particles
Published 2023“…Interestingly, we find that the Leidenfrost point (LFP) of droplets on the laminar superheated particles decreases with particle size, which is related to the effect of the pore space generated between the laminar particles. …”
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19880