Le et al., 2018 - Google Patents
An optimal design of an electromagnetic actuator for targeting magnetic micro-/nano-carriers in a desired regionLe et al., 2018
- Document ID
- 147773997824612999
- Author
- Le T
- Bui M
- Yoon J
- Publication year
- Publication venue
- IEEE Transactions on Magnetics
External Links
Snippet
Magnetic drug targeting (MDT) by using magnetic nano-particles (MNPs) is a technique used to deliver drug molecules to a desired location. One of the major challenges in MDT is to develop an electromagnetic actuator to focus micro-/nano-particles into a desired deep …
- 230000005291 magnetic 0 title abstract description 31
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N2/00—Magnetotherapy
- A61N2/02—Magnetotherapy using magnetic fields produced by coils, including single turn loops or electromagnets
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Hoshiar et al. | Studies of aggregated nanoparticles steering during magnetic-guided drug delivery in the blood vessels | |
Mathieu et al. | Magnetic microparticle steering within the constraints of an MRI system: proof of concept of a novel targeting approach | |
Vartholomeos et al. | MRI-guided nanorobotic systems for therapeutic and diagnostic applications | |
Tehrani et al. | A novel electromagnetic actuation system for magnetic nanoparticle guidance in blood vessels | |
Nacev et al. | Dynamic inversion enables external magnets to concentrate ferromagnetic rods to a central target | |
US20250065092A1 (en) | Magnetic injection of therapeutic agents by addition of material extrusions with differing magnetization and magnetic permeability | |
Erni et al. | Comparison, optimization, and limitations of magnetic manipulation systems | |
Barnsley et al. | Halbach arrays consisting of cubic elements optimised for high field gradients in magnetic drug targeting applications | |
IL214839A (en) | Devices, systems and methods for magnetically assisted therapeutic agent delivery | |
Shapiro et al. | A two-magnet system to push therapeutic nanoparticles | |
Mahmood et al. | A novel design of an MPI-based guidance system for simultaneous actuation and monitoring of magnetic nanoparticles | |
Zhang et al. | A soft magnetic core can enhance navigation performance of magnetic nanoparticles in targeted drug delivery | |
Hayden et al. | ‘Magnetic bandages’ for targeted delivery of therapeutic agents | |
Podaru et al. | Magnetism in nanomaterials: heat and force from colloidal magnetic particles | |
Le et al. | First human-scale magnetic particle imaging system with superconductor | |
KR101506807B1 (en) | A 3D electromagnetic actuation system for magnetic nano-particle | |
Komaee et al. | Magnetic steering of a distributed ferrofluid spot towards a deep target with minimal spreading | |
EP3643354A1 (en) | Medical device for targeting and fixing therapeutic agent using magnet array | |
Le et al. | An electromagnetic navigation system with real-time 2D magnetic particle imaging for targeted drug delivery | |
Le et al. | An optimal design of an electromagnetic actuator for targeting magnetic micro-/nano-carriers in a desired region | |
Le et al. | Simulation studies of a novel electromagnetic actuation scheme for focusing magnetic micro/nano-carriers into a deep target region | |
Le et al. | Electromagnetic actuation system for focused capturing of magnetic particles with a half of static saddle potential energy configuration | |
Liu et al. | Analysis and design of a new hybrid array for magnetic drug targeting | |
US20160096030A1 (en) | Pulsed gradient field method to counteract a static magnetic field for magnetic particle focusing | |
Mirkhani et al. | Spatially selective open loop control of magnetic microrobots for drug delivery |