Department of Information Engineering, University of Pisa, 56122 Pisa, Italy.
Fondazione CNR-Regione Toscana G. Monasterio, 56124 Pisa, Italy.
Sensors (Basel). 2022 Jul 8;22(14):5132. doi: 10.3390/s22145132.
In recent years, the usage of radio frequency magnetic fields for biomedical applications has increased exponentially. Several diagnostic and therapeutic methodologies exploit this physical entity such as, for instance, magnetic resonance imaging, hyperthermia with magnetic nanoparticles and transcranial magnetic stimulation. Within this framework, the magnetic field focusing and shaping, at different depths inside the tissue, emerges as one of the most important challenges from a technological point of view, since it is highly desirable for improving the effectiveness of clinical methodologies. In this review paper, we will first report some of the biomedical practices employing radio frequency magnetic fields, that appear most promising in clinical settings, explaining the underneath physical principles and operative procedures. Specifically, we direct the interest toward hyperthermia with magnetic nanoparticles and transcranial magnetic stimulation, together with a brief mention of magnetic resonance imaging. Additionally, we deeply review the technological solutions that have appeared so far in the literature to shape and control the radio frequency magnetic field distribution within biological tissues, highlighting human applications. In particular, volume and surface coils, together with the recent raise of metamaterials and metasurfaces will be reported. The present review manuscript can be useful to fill the actual gap in the literature and to serve as a guide for the physicians and engineers working in these fields.
近年来,射频磁场在生物医学应用中的使用呈指数级增长。几种诊断和治疗方法利用了这种物理实体,例如磁共振成像、利用磁性纳米粒子的热疗和经颅磁刺激。在这个框架内,在组织的不同深度聚焦和成形磁场,从技术角度来看,是最具挑战性的问题之一,因为这对于提高临床方法的有效性是非常理想的。在这篇综述论文中,我们将首先报告一些采用射频磁场的生物医学实践,这些实践在临床环境中最有前途,解释其背后的物理原理和操作程序。具体来说,我们将兴趣集中在利用磁性纳米粒子的热疗和经颅磁刺激上,并简要提及磁共振成像。此外,我们还深入回顾了迄今为止文献中出现的用于在生物组织内形射频磁场分布并控制其分布的技术解决方案,突出了人类应用。特别地,我们将报告体线圈和表面线圈,以及最近出现的超材料和超表面。本综述性手稿可有助于填补文献中的实际空白,并为从事这些领域的医生和工程师提供指导。