Multimodal Locomotion and Active Targeted Thermal Control of Magnetic Agents for Biomedical Applications
Overview
Affiliations
Magnetic microrobots can be miniaturized to a nanometric scale owing to their wireless actuation, thereby rendering them ideal for numerous biomedical applications. As a result, nowadays, there exist several mechano-electromagnetic systems for their actuation. However, magnetic actuation is not sufficient for implementation in biomedical applications, and further functionalities such as imaging and heating are required. This study proposes a multimodal electromagnetic system comprised of three pairs of Helmholtz coils, a pair of Maxwell coils, and a high-frequency solenoid to realize multimodal locomotion and heating control of magnetic microrobots. The system produces different configurations of magnetic fields that can generate magnetic forces and torques for the multimodal locomotion of magnetic microrobots, as well as generate magnetic traps that can control the locomotion of magnetic swarms. Furthermore, these magnetic fields are employed to control the magnetization of magnetic nanoparticles, affecting their magnetic relaxation mechanisms and diminishing their thermal properties. Thus, the system enables the control of the temperature increase of soft-magnetic materials and selective heating of magnetic microrobots at different positions, while suppressing the heating properties of magnetic nanoparticles located at undesired areas.
Recent applications of stimulus-responsive smart hydrogels for osteoarthritis therapy.
Xu Z, Liu J, Hu H, Ma J, Yang H, Chen J Front Bioeng Biotechnol. 2025; 13:1539566.
PMID: 40035023 PMC: 11872905. DOI: 10.3389/fbioe.2025.1539566.
Li Q, Niu F, Yang H, Xu D, Dai J, Li J Adv Sci (Weinh). 2024; 11(43):e2406600.
PMID: 39316063 PMC: 11578324. DOI: 10.1002/advs.202406600.
System integration of magnetic medical microrobots: from design to control.
Zhou J, Li M, Li N, Zhou Y, Wang J, Jiao N Front Robot AI. 2024; 10:1330960.
PMID: 38169802 PMC: 10758462. DOI: 10.3389/frobt.2023.1330960.
Magnetic Chitosan Bionanocomposite Films as a Versatile Platform for Biomedical Hyperthermia.
Barra A, Wychowaniec J, Winning D, Cruz M, Ferreira L, Rodriguez B Adv Healthc Mater. 2023; 13(11):e2303861.
PMID: 38041539 PMC: 11468069. DOI: 10.1002/adhm.202303861.
Inductive sensing of magnetic microrobots under actuation by rotating magnetic fields.
Christiansen M, Stocklin L, Forbrigger C, Venkatesh S, Schuerle S PNAS Nexus. 2023; 2(9):pgad297.
PMID: 37746329 PMC: 10516638. DOI: 10.1093/pnasnexus/pgad297.