Technical University Munich, SVT, Gregor-Mendel-Straße 4, 85354 Freising, Germany; Forschungszentrum Jülich, IBG-2, Wilhelm-Johnen-Straße, Jülich, Germany.
Forschungszentrum Jülich, IBG-2, Wilhelm-Johnen-Straße, Jülich, Germany.
J Magn Reson. 2021 Feb;323:106879. doi: 10.1016/j.jmr.2020.106879. Epub 2020 Nov 27.
In this contribution we demonstrate a mobile, integrated MR plant imager that can be handled by one single person and used in the field. Key to the construction of it was a small and lightweight gradient amplifier, specifically tailored to our combination of magnet, gradient coils and the requirements of the desired pulse sequences. To allow imaging of branches and stems, an open C-shaped permanent magnet was used. In the design of the magnet, pole gap width, low weight and robustness were prioritized over homogeneity and field strength. To overcome the adverse effects of short T*, multi-spin echo imaging was employed, using short echo times and high spectral widths. To achieve microscopic resolution under these constraints requires fast switching field gradients, driven by strong and fast gradient amplifiers. While small-scale spectrometers and RF amplifiers are readily available, appropriate small-scale gradient amplifiers or designs thereof currently are not. We thus constructed a small, 3-channel gradient amplifier on the basis of a conventional current-controlled AB amplifier design, using cheap and well-known parts. The finished device weighs 5 kg and is capable of delivering 40 A gradient pulses of >6 ms in duration. With all components built onto an aluminum hand trolley, the imaging setup weighs 45 kg and is small enough to fit into a car. We demonstrate the mobility and utility of the device imaging quantitative water content and T, first of an apple tree in an orchard; second, of a beech tree during spring leaf flushing in a greenhouse. The latter experiment ran for a continuous period of 62 days, acquiring more than 6000 images.
在本研究中,我们展示了一种可由单人操作并应用于现场的移动集成式磁共振设备成像仪。该设备的关键在于一个小型、轻巧的梯度放大器,其是根据我们的磁铁、梯度线圈以及所需脉冲序列的要求专门定制的。为了能够对分支和茎进行成像,我们使用了一个开放式 C 形永磁体。在磁铁的设计中,磁极间隙宽度、低重量和坚固性被置于同质性和场强之前。为了克服 T*较短的不利影响,我们采用了多自旋回波成像,使用短回波时间和高谱线宽度。在这些约束条件下,要实现微观分辨率,需要由强大且快速的梯度放大器驱动的快速切换场梯度。虽然小型谱仪和 RF 放大器很容易获得,但合适的小型梯度放大器或其设计目前并不存在。因此,我们根据传统的电流控制 AB 放大器设计,使用廉价且知名的部件构建了一个小型的 3 通道梯度放大器。该设备的成品重量为 5 公斤,能够输出 40A 梯度脉冲,持续时间超过 6ms。所有组件都安装在一个铝制手推车上,成像设备的总重量为 45 公斤,体积小到足以放入汽车中。我们演示了该设备在对苹果树(在果园中)和山毛榉树(在温室中春季树叶生长期间)进行定量水含量和 T1 成像方面的移动性和实用性。后者的实验连续进行了 62 天,共采集了超过 6000 张图像。