Cacciola Alberto, Milardi Demetrio, Calamuneri Alessandro, Bonanno Lilla, Marino Silvia, Ciolli Pietro, Russo Margherita, Bruschetta Daniele, Duca Antonio, Trimarchi Fabio, Quartarone Angelo, Anastasi Giuseppe
Department of Biomedical, Dental Sciences and Morphological and Functional Images, University of Messina, 98125, Messina, Italy.
IRCCS Centro Neurolesi "Bonino Pulejo", S.S. 113, Via Palermo, C.da Casazza, 98124, Messina, Italy.
Cerebellum. 2017 Apr;16(2):483-495. doi: 10.1007/s12311-016-0830-9.
According to the classical view, the cerebellum has long been confined to motor control physiology; however, it has now become evident that it exerts several non-somatic features other than the coordination of movement and is engaged also in the regulation of cognition and emotion. In a previous diffusion-weighted imaging-constrained spherical deconvolution (CSD) tractography study, we demonstrated the existence of a direct cerebellum-hippocampal pathway, thus reinforcing the hypothesis of the cerebellar role in non-motor domains. However, our understanding of limbic-cerebellar interconnectivity in humans is rather sparse, primarily due to the intrinsic limitation in the acquisition of in vivo tracing. Here, we provided tractographic evidences of connectivity patterns between the cerebellum and mammillary bodies by using whole-brain CSD tractography in 13 healthy subjects. We found both ipsilateral and contralateral connections between the mammillary bodies, cerebellar cortex, and dentate nucleus, in line with previous studies performed in rodents and primates. These pathways could improve our understanding of cerebellar role in several autonomic functions, visuospatial orientation, and memory and may shed new light on neurodegenerative diseases in which clinically relevant impairments in navigational skills or memory may become manifest at early stages.
根据传统观点,小脑长期以来一直局限于运动控制生理学领域;然而,现在已经很明显,它除了协调运动外,还具有多种非躯体功能,并且还参与认知和情绪的调节。在先前的一项扩散加权成像约束球形反卷积(CSD)纤维束成像研究中,我们证实了小脑与海马之间直接通路的存在,从而强化了小脑在非运动领域作用的假说。然而,我们对人类边缘系统与小脑之间的相互连接的了解相当有限,主要是由于活体追踪获取方面的内在局限性。在此,我们通过对13名健康受试者进行全脑CSD纤维束成像,提供了小脑与乳头体之间连接模式的纤维束成像证据。我们发现乳头体、小脑皮质和齿状核之间存在同侧和对侧连接,这与先前在啮齿动物和灵长类动物中进行的研究一致。这些通路可能会增进我们对小脑在多种自主功能、视觉空间定向和记忆中的作用的理解,并可能为神经退行性疾病带来新的启示,在这些疾病中,导航技能或记忆方面的临床相关损伤可能在早期就会显现出来。