Institute for Biomedical Engineering, ETH Zurich and University of Zurich, Zurich, Switzerland.
Magn Reson Med. 2021 May;85(5):2882-2891. doi: 10.1002/mrm.28662. Epub 2021 Jan 12.
To explore the use of conductive elastomer for MR signal detection and the utility of this approach for wearable detector arrays.
An elastomer filled with silver microparticles was used to form stretchable radiofrequency coils for MR detection. Their electrical performance in terms of the Q and Q ratio was assessed in the relaxed state and under repeated strain up to 40%. In a phantom imaging study, the signal-to-noise ratio yield of conductive elastomer coils was compared with that of a reference copper coil. Four elastomer coils were integrated with a stretchable textile substrate to form a wearable array for knee imaging. The array was employed for multiple-angle and kinematic knee imaging in vivo.
The elastomer coils proved highly stretchable and mechanically robust. Upon repeated stretching by 20%, a medium-sized coil element settled at Q of 42 in the relaxed state and 32 at full strain, reflecting sample-noise dominance. The signal-to-noise ratio of elastomer coils was found to be 8% to 16% lower than that achieved with a conventional copper coil. Multiple-angle and kinematic knee imaging with the wearable array yielded high-quality results indicating robustness of detection performance against stretching and warping of the array.
Conductive elastomer is a viable material for MR detection. Coils made from this material reconcile high stretchability and adequate electrical performance with ease of manufacturing. Conductive elastomer also offers inherent restoring forces and is readily washable and sanitizable, making it an excellent basis of wearable detector front ends.
探索导电弹性体在磁共振信号检测中的应用,以及这种方法在可穿戴探测器阵列中的实用性。
使用填充有银微颗粒的弹性体形成可拉伸的磁共振检测射频线圈。在松弛状态和重复应变高达 40%的情况下,评估其 Q 值和 Q 比的电性能。在一项体模成像研究中,比较了导电弹性体线圈的信噪比增益与参考铜线圈的信噪比增益。将四个弹性体线圈与可拉伸的纺织基底集成,形成用于膝关节成像的可穿戴阵列。该阵列用于体内多角度和运动膝关节成像。
弹性体线圈表现出高度的可拉伸性和机械稳定性。在重复拉伸 20%的情况下,中等尺寸的线圈元件在松弛状态下的 Q 值为 42,在完全应变下的 Q 值为 32,反映了样品噪声的主导地位。与传统的铜线圈相比,弹性体线圈的信噪比降低了 8%至 16%。使用可穿戴阵列进行多角度和运动膝关节成像,获得了高质量的结果,表明检测性能对阵列的拉伸和变形具有很强的鲁棒性。
导电弹性体是磁共振检测的一种可行材料。由这种材料制成的线圈具有高的可拉伸性和足够的电性能,易于制造。导电弹性体还具有内在的恢复力,易于清洗和消毒,是可穿戴探测器前端的理想材料。