日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Dietary burden of phosphorus and aluminum in ready-to-eat wheat flour tortillas exceed that of corn tortillas: Implications for patients with renal or cardiovascular disease

即食小麦粉玉米饼中磷和铝的膳食负担高于玉米粉玉米饼:对肾脏或心血管疾病患者的影响

Chiang, Kate C; Yokel, Robert A; Unrine, Jason M; Kalantar-Zadeh, Kamyar; Gupta, Ajay

Carboxylic acids and light interact to affect nanoceria stability and dissolution in acidic aqueous environments

羧酸和光相互作用影响纳米二氧化铈在酸性水环境中的稳定性和溶解度

Matthew L Hancock, Eric A Grulke, Robert A Yokel

Macrophage Polarization Status Impacts Nanoceria Cellular Distribution but Not Its Biotransformation or Ferritin Effects

巨噬细胞极化状态影响纳米铈的细胞分布,但不影响其生物转化或铁蛋白效应

Uschi M Graham, Alan K Dozier, David J Feola, Michael T Tseng, Robert A Yokel

Field experiments to assess passage of juvenile salmonids across beaver dams during low flow conditions in a tributary to the Klamath River, California, USA

在美国加利福尼亚州克拉马斯河的一条支流中,开展了野外实验,以评估低流量条件下幼鲑鱼通过海狸坝的情况。

Pollock, Michael M; Witmore, Shari; Yokel, Erich

The preparation temperature influences the physicochemical nature and activity of nanoceria

制备温度影响纳米二氧化铈的物理化学性质和活性

Robert A Yokel, Wendel Wohlleben, Johannes Georg Keller, Matthew L Hancock, Jason M Unrine, D Allan Butterfield, Eric A Grulke

Tissue Specific Fate of Nanomaterials by Advanced Analytical Imaging Techniques - A Review

利用先进分析成像技术研究纳米材料的组织特异性命运——综述

Graham, Uschi M; Dozier, Alan K; Oberdörster, Günter; Yokel, Robert A; Molina, Ramon; Brain, Joseph D; Pinto, Jayant M; Weuve, Jennifer; Bennett, David A

Nanoceria distribution and effects are mouse-strain dependent

纳米氧化铈的分布和作用取决于小鼠品系

Yokel, Robert A; Tseng, Michael T; Butterfield, D Allan; Hancock, Matthew L; Grulke, Eric A; Unrine, Jason M; Stromberg, Arnold J; Dozier, Alan K; Graham, Uschi M

Surface-controlled dissolution rates: a case study of nanoceria in carboxylic acid solutions

表面控制的溶解速率:以羧酸溶液中的纳米氧化铈为例

Grulke, Eric A; Beck, Matthew J; Yokel, Robert A; Unrine, Jason M; Graham, Uschi M; Hancock, Matthew L

Simulated biological fluid exposure changes nanoceria's surface properties but not its biological response

模拟生物流体暴露会改变纳米二氧化铈的表面特性,但不会改变其生物反应

Robert A Yokel, Matthew L Hancock, Benjamin Cherian, Alexandra J Brooks, Marsha L Ensor, Hemendra J Vekaria, Patrick G Sullivan, Eric A Grulke

Carboxylic acids accelerate acidic environment-mediated nanoceria dissolution

羧酸会加速酸性环境介导的纳米氧化铈溶解

Yokel, Robert A; Hancock, Matthew L; Grulke, Eric A; Unrine, Jason M; Dozier, Alan K; Graham, Uschi M