Mastropasqua Chiara, Bozzali Marco, Spanò Barbara, Koch Giacomo, Cercignani Mara
Neuroimaging Laboratory, Istituto Di Ricovero e Cura a Carattere Scientifico, Santa Lucia Foundation, Rome, Italy,
Brain Topogr. 2015 Jul;28(4):548-58. doi: 10.1007/s10548-014-0422-2. Epub 2014 Dec 31.
While methods of measuring non-invasively both, functional and structural brain connectivity are available, the degree of overlap between them is still unknown. In this paper this issue is addressed by investigating the connectivity pattern of a brain structure with many, well characterized structural connections, namely the thalamus. Diffusion-weighted and resting state (RS) functional MRI (fMRI) data were collected in a group of 38 healthy participants. Probabilistic tractography was performed to parcellate the thalamus into regions structurally connected to different cortical areas. The resulting regions were used as seeds for seed-based analysis of RS fMRI data. The tractographic parcellation was thus cross-validated against functional connectivity data by evaluating the overlap between the functional and structural thalamo-cortical connections originating from the parcellated regions. Our data show only a partial overall correspondence between structural and functional connections, in the same group of healthy individuals, thus suggesting that the two approaches provide complementary and not overlapping information. Future studies are warranted to extend the results we obtained in the thalamus to other structures, and to confirm that the mechanisms behind functional connectivity are more complex than just expressing structural connectivity.
虽然已经有了非侵入性测量大脑功能连接和结构连接的方法,但它们之间的重叠程度仍然未知。在本文中,通过研究具有许多特征明确的结构连接的脑结构——丘脑的连接模式来解决这个问题。在38名健康参与者中收集了扩散加权和静息态(RS)功能磁共振成像(fMRI)数据。进行概率性纤维束成像,将丘脑分割成与不同皮质区域有结构连接的区域。所得区域用作基于种子点的RS fMRI数据分析的种子点。通过评估源自分割区域的功能性和结构性丘脑-皮质连接之间的重叠,从而根据功能连接数据对纤维束成像分割进行交叉验证。我们的数据显示,在同一组健康个体中,结构连接和功能连接之间仅存在部分总体对应关系,因此表明这两种方法提供的是互补而非重叠的信息。有必要开展进一步研究,将我们在丘脑中获得的结果扩展到其他结构,并确认功能连接背后的机制比仅仅表达结构连接更为复杂。