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零回波时间成像可在小鼠中实现全脑活动图谱绘制,且无腹侧信号损失。

Zero-echo time imaging achieves whole brain activity mapping without ventral signal loss in mice.

作者信息

Imamura Ayako, Araki Rikita, Takahashi Yukari, Miyatake Koichi, Kato Fusao, Honjoh Sakiko, Tsurugizawa Tomokazu

机构信息

Ph. D. Program in Humanics, University of Tsukuba, Tsukuba, Japan; International Institute for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba, Tsukuba, Japan; Department of Neuroscience, The Jikei University School of Medicine, Tokyo, Japan; Human Informatics and Interaction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.

Bruker Japan K.K., Yokohama, Japan.

出版信息

Neuroimage. 2025 Feb 15;307:121024. doi: 10.1016/j.neuroimage.2025.121024. Epub 2025 Jan 11.

Abstract

Functional MRI (fMRI) is an important tool for investigating functional networks. However, the widely used fMRI with T2*-weighted imaging in rodents has the problem of signal lack in the lateral ventral area of forebrain including the amygdala, which is essential for not only emotion but also noxious pain. Here, we scouted the zero-echo time (ZTE) sequence, which is robust to magnetic susceptibility and motion-derived artifacts, to image activation in the whole brain including the amygdala following the noxious stimulation to the hind paw. ZTE exhibited higher temporal signal-to-noise ratios than conventional fMRI sequences. Electrical sensory stimulation of the hind paw evoked ZTE signal increase in the primary somatosensory cortex. Formalin injection into the hind paw evoked early and latent change of ZTE signals throughout the whole brain including the subregions of amygdala. Furthermore, resting-state fMRI using ZTE demonstrated the functional connectivity, including that of the amygdala. These results indicate the feasibility of ZTE for whole brain fMRI including the amygdala and we first show acute and latent activity in different subnuclei of the amygdala complex after nociceptive stimulation.

摘要

功能磁共振成像(fMRI)是研究功能网络的重要工具。然而,在啮齿动物中广泛使用的基于T2*加权成像的fMRI存在一个问题,即在包括杏仁核在内的前脑腹外侧区域信号缺失,而杏仁核对情绪和伤害性疼痛都至关重要。在此,我们探索了零回波时间(ZTE)序列,该序列对磁化率和运动衍生伪影具有鲁棒性,用于在对后爪进行伤害性刺激后对包括杏仁核在内的全脑激活进行成像。ZTE表现出比传统fMRI序列更高的时间信噪比。对后爪进行电感觉刺激会引起初级体感皮层中ZTE信号增加。将福尔马林注射到后爪会引起全脑包括杏仁核各亚区域的ZTE信号早期和延迟变化。此外,使用ZTE的静息态fMRI显示了功能连接性,包括杏仁核的功能连接性。这些结果表明ZTE用于包括杏仁核在内的全脑fMRI的可行性,并且我们首次展示了伤害性刺激后杏仁核复合体不同亚核中的急性和延迟活动。

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