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

Micrometer-scale tPA beads amplify plasmin generation for enhanced thrombolytic therapy.

微米级 tPA 微珠可增强纤溶酶的生成,从而增强溶栓治疗效果

Osmond Matthew J, Dabertrand Fabrice, Quillinan Nidia, Su Enming J, Lawrence Daniel A, Marr David W M, Neeves Keith B

Soft Microbot Traction on Structured Surfaces

软微型机器人在结构化表面上的牵引力

Zou, Fangrong; Gao, Yan; Wu, Ning; Marr, David W M

Harnessing micrometer-scale tPA beads for high plasmin generation and accelerated fibrinolysis.

利用微米级 tPA 微珠实现高纤溶酶生成和加速纤维蛋白溶解

Osmond Matthew J, Dabertrand Fabrice, Quillinan Nidia, Su Enming J, Lawrence Daniel A, Marr David W M, Neeves Keith B

Coupling magnetic torque and force for colloidal microbot assembly and manipulation

利用磁扭矩和磁力耦合进行胶体微型机器人组装和操控

Zimmermann, Coy J; Petruska, Andrew J; Neeves, Keith B; Marr, David W M

Engineered microparticles and nanoparticles for fibrinolysis

用于纤维蛋白溶解的工程微粒和纳米颗粒

Disharoon, Dante; Marr, David W M; Neeves, Keith B

ac/dc Magnetic Fields for Enhanced Translation of Colloidal Microwheels

交流/直流磁场增强胶体微轮的平移

Disharoon, Dante; Neeves, Keith B; Marr, David W M

High-throughput linear optical stretcher for mechanical characterization of blood cells

用于血细胞力学表征的高通量线性光学拉伸器

Roth, Kevin B; Neeves, Keith B; Squier, Jeff; Marr, David W M

Viscoelasticity as a biomarker for high-throughput flow cytometry

粘弹性作为高通量流式细胞术的生物标志物

Sawetzki, Tobias; Eggleton, Charles D; Desai, Sanjay A; Marr, David W M

Erythrocyte deformation in high-throughput optical stretchers

高通量光学拉伸器中的红细胞变形

Sraj, Ihab; Szatmary, Alex C; Desai, Sanjay A; Marr, David W M; Eggleton, Charles D

Dynamic ray tracing for modeling optical cell manipulation

用于模拟光学细胞操控的动态光线追踪

Sraj, Ihab; Szatmary, Alex C; Marr, David W M; Eggleton, Charles D