-
101
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
102
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
103
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
104
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
105
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
106
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Published 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
-
107
-
108
-
109
-
110
-
111
-
112
-
113
-
114
-
115
-
116
A blocked staggered-level design for an experiment with two hard-to-change factors
Published 2024“…The experiment was run in blocks and involved one quantitative hard-to-change factor, one two-level categorical hard-to-change factor, and three quantitative easy-to-change factors. …”
-
117
-
118
Nuclear Translocation of hARD1 Contributes to Proper Cell Cycle Progression
Published 2014“…The high homology and widespread expression of ARD1 across multiple species and tissues signify that it serves a fundamental role in cells. Human ARD1 (hARD1) has been suggested to be involved in diverse biological processes, and its role in cell proliferation and cancer development has been recently drawing attention. …”
-
119
Surfactant-Boosted Silk Fibroin Microneedle Patches for Visual Glucose Detection
Published 2024Subjects: -
120
Surfactant-Boosted Silk Fibroin Microneedle Patches for Visual Glucose Detection
Published 2024Subjects: