Centre for Functional and Metabolic Mapping, The University of Western Ontario, London, ON, Canada; Department of Medical Biophysics, The University of Western Ontario, London, ON, Canada.
Centre for Functional and Metabolic Mapping, The University of Western Ontario, London, ON, Canada.
J Neurosci Methods. 2023 Jan 1;383:109737. doi: 10.1016/j.jneumeth.2022.109737. Epub 2022 Oct 29.
The small common marmoset (Callithrix jacchus) is an ideal nonhuman primate for awake fMRI in ultra-high field small animal MRI scanners. However, it can often be challenging in task-based fMRI experiments to provide a robust stimulus within the MRI environment while using hardware (an RF coil and restraint system) that is compatible with awake imaging.
Here we present an RF coil and restraint system that permits unimpeded access to an awake marmoset's head subsequent to immobilization, thereby permitting the setup of peripheral devices and stimuli proximal to the head.
As an example application, an fMRI experiment probing whole-brain activation in response to marmoset vocalizations was conducted-this paradigm showed significant bilateral activation in the inferior colliculus, medial lateral geniculate nucleus, and auditory cortex.
COMPARISON WITH EXISTING METHOD(S): The coil performance was evaluated and compared to a previously published restraint system with integrated RF coil. The image and temporal SNR were improved by up to 58 % and 27 %, respectively, in the peripheral cortex and by 30 % and 3 % in the centre of the brain. The restraint-system topology limited head motion to less than 100 µm of translation and 0.30° of rotation when measured over a 15-minute acquisition.
The proposed hardware solution provides a versatile approach to awake-marmoset imaging and, as demonstrated, can facilitate task-based fMRI.
小型普通狨猴(Callithrix jacchus)是一种理想的非人类灵长类动物,可用于超高场小动物 MRI 扫描仪中的清醒 fMRI。然而,在基于任务的 fMRI 实验中,使用与清醒成像兼容的硬件(射频线圈和约束系统)在 MRI 环境中提供稳健的刺激通常具有挑战性。
在这里,我们提出了一种射频线圈和约束系统,在对狨猴进行固定后,可以无障碍地接触到其清醒的头部,从而可以在头部附近设置外围设备和刺激物。
作为一个示例应用,进行了一项 fMRI 实验,以探测狨猴发声时的全脑激活情况 - 该范式显示出在下丘、内侧外侧膝状体核和听觉皮层中双侧显著激活。
评估了线圈性能并与具有集成射频线圈的先前发布的约束系统进行了比较。在周边皮层中,图像和时间 SNR 分别提高了 58%和 27%,在大脑中心提高了 30%和 3%。约束系统的拓扑结构限制了头部运动,在 15 分钟的采集过程中,平移小于 100µm,旋转小于 0.30°。
所提出的硬件解决方案为狨猴的清醒成像提供了一种通用方法,并且如所证明的,它可以促进基于任务的 fMRI。