IEEE Trans Biomed Eng. 2021 Sep;68(9):2880-2891. doi: 10.1109/TBME.2021.3084313. Epub 2021 Aug 19.
The timely treatment is the crucial element for the survival of patients with brain stroke. Thus, a fast, cost-effective, and portable device is needed for the early and on-the-spot diagnosis of stroke patients. A 3D electromagnetic head imaging system for rapid brain stroke diagnosis with a wearable and lightweight platform is presented. The platform comprises a custom-built flexible cap with a 24-element planar antenna array, and a flexible matching medium layer. The custom-built cap is made out of an engineered polymer-ceramic composite substrate of RTV silicone rubber and aluminum oxide (AlO) for enhanced dielectric properties and mechanical flexibility and robustness. The array is arranged into two elliptical rings that are entirely incorporated into the flexible cap. The employed antenna elements within the system are compact with low SAR values over the utilized frequency range of 0.9-2.5 GHz. Moreover, a flexible matching medium layer is introduced on the front of the apertures of the antenna array to enhance the impedance matching with the skin. The detection capability of the system is experimentally verified on 3D realistic head phantoms at multiple imaging scenarios and different types of strokes. The reconstructed 3D and 2D multi-slice images using the beamforming and polar sensitivity encoding (PSE) image processing algorithms indicate the applicability and potential of the system for onsite brain imaging.
及时治疗是脑卒中患者生存的关键因素。因此,需要一种快速、经济高效且便携的设备,以便对脑卒中患者进行早期和现场诊断。本文提出了一种用于快速脑卒中风诊断的 3D 电磁头部成像系统,该系统具有可穿戴和轻巧的平台。该平台包括一个定制的柔性帽,帽上带有 24 个单元的平面天线阵列和一个柔性匹配介质层。定制的柔性帽由 RTV 硅橡胶和氧化铝(AlO)的工程聚合物陶瓷复合材料制成,以增强介电性能、机械灵活性和坚固性。该阵列被排列成两个完全集成到柔性帽中的椭圆形环。系统中使用的天线元件紧凑,SAR 值低,工作频率范围为 0.9-2.5GHz。此外,在天线阵列的孔径前引入了一个柔性匹配介质层,以增强与皮肤的阻抗匹配。该系统的检测能力在多个成像场景和不同类型的中风的 3D 真实头部体模上进行了实验验证。使用波束形成和极敏感编码(PSE)图像处理算法重建的 3D 和 2D 多层图像表明了该系统用于现场脑部成像的适用性和潜力。