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Controlling the Kelvin force: basic strategies and applications to magnetic drug targeting

机译:控制开尔文力:磁性药物靶向的基本策略和应用

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摘要

Motivated by problems arising in magnetic drug targeting, we propose to generate an almost constant Kelvin (magnetic) force in a target subdomain, moving along a prescribed trajectory. This is carried out by solving a minimization problem with a tracking type cost functional. The magnetic sources are assumed to be dipoles and the control variables are the magnetic field intensity, the source location and the magnetic field direction. The resulting magnetic field is shown to effectively steer the drug concentration, governed by a drift-diffusion PDE, from an initial to a desired location with limited spreading.
机译:受磁性药物靶向问题引起的影响,我们建议在目标子域中沿着规定的轨迹移动,产生几乎恒定的开尔文(磁性)力。这是通过解决具有跟踪型成本函数的最小化问题来实现的。假定电磁源为偶极子,控制变量为磁场强度,源位置和磁场方向。结果表明,产生的磁场可以有效地控制药物浓度(由漂移扩散PDE决定)从初始位置扩散到所需位置,且扩散程度有限。

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