A brain atlas of axonal and synaptic delays based on modelling of cortico-cortical evoked potentials

神经科学 诱发电位 兴奋性突触后电位 局部场电位 抑制性突触后电位 脑电图 刺激(心理学) 心理学 心理治疗师
作者
Jean-Didier Lemaréchal,Maciej Jedynak,L Trébaul,Anthony Boyer,François Tadel,Manik Bhattacharjee,Pierre Deman,Viateur Tuyisenge,Leila Ayoubian,Etienne Hugues,Blandine Chanteloup-Forêt,Carole Saubat,Raouf Zouglech,Gina Catalina Reyes Mejia,Sébastien Tourbier,Patric Hagmann,Claude Adam,Carmen Barba,Fabricē Bartolomei,Thomas Blauwblomme,Jonathan Curot,François Dubeau,Stefano Francione,Mercedes Garcés,Édouard Hirsch,Elizabeth Landré,Sinclair Liu,Louis Maillard,Eeva-Liisa Metsähonkala,Ioana Mı̂ndruță,Anca Nica,Martin Pail,Ana Maria Roxana Petrescu,Sylvain Rheims,Rodrigo Rocamora,Andreas Schulze–Bonhage,William Szurhaj,Delphine Taussig,Antonio Valentı́n,Haixiang Wang,Philippe Kahane,Nathalie George,Olivier David,Claude Adam,Vincent Navarro,Arnaud Biraben,Anca Nica,Dominique Menard,Milan Brázdil,Robert Kuba,Jitka Kočvarová,Martin Pail,Irena Doležalová,François Dubeau,Jean Gotman,Philippe Ryvlin,Jean Isnard,Hélène Catenoix,Alexandra Montavont,Sylvain Rheims,Fabricē Bartolomei,Agnès Trébuchon,Aileen McGonigal,Wenjing Zhou,Haixiang Wang,Sinclair Liu,Wei Zhang,Da‐Yuan Zhu,Guo Qiang,Hu Xiangshu,Hua Li,Gang Hua,Wensheng Wang,Mian Xi,Yigang Feng,Rima Nabbout,Marie Bourgeois,Anna Kamińska,Thomas Blauwblomme,Mercedes Garcés,Antonio Valentı́n,Rinki Singh,Liisa Metsähonkala,Eija Gaily,Leena Lauronen,Maria Peltola,Francine Chassoux,Elizabeth Landré,Philippe Derambure,William Szurhaj,Maxime Chochois,Édouard Hirsch,Maria Paola Valenti,Julia Scholly,Luc Valton,Marie Denuelle,Jonathan Curot,Rodrigo Rocamora,Alessandro Príncipe,Miguel Ley,Ioana Mı̂ndruță,Andrei Barborică,Stefano Francione,Roberto Mai,Lino Nobili,Ivana Sartori,Laura Tassi,Louis Maillard,Jean–Pierre Vignal,Jacques Jonas,Louise Tyvaert,Mathilde Chipaux,Delphine Taussig,Philippe Kahane,Lorella Minotti,Anne‐Sophie Job,Véronique Michel,Marie de Montaudoin,Jérôme Aupy,Viviane Bouilleret,Ana Maria Roxana Petrescu,P. Masnou,Claire Dussaule,M. Quirins,Delphine Taussig,Carmen Barba,Renzo Guerrini,Matteo Lenge,Elisa Nacci
出处
期刊:Brain [Oxford University Press]
卷期号:145 (5): 1653-1667 被引量:24
标识
DOI:10.1093/brain/awab362
摘要

Abstract Epilepsy presurgical investigation may include focal intracortical single-pulse electrical stimulations with depth electrodes, which induce cortico-cortical evoked potentials at distant sites because of white matter connectivity. Cortico-cortical evoked potentials provide a unique window on functional brain networks because they contain sufficient information to infer dynamical properties of large-scale brain connectivity, such as preferred directionality and propagation latencies. Here, we developed a biologically informed modelling approach to estimate the neural physiological parameters of brain functional networks from the cortico-cortical evoked potentials recorded in a large multicentric database. Specifically, we considered each cortico-cortical evoked potential as the output of a transient stimulus entering the stimulated region, which directly propagated to the recording region. Both regions were modelled as coupled neural mass models, the parameters of which were estimated from the first cortico-cortical evoked potential component, occurring before 80 ms, using dynamic causal modelling and Bayesian model inversion. This methodology was applied to the data of 780 patients with epilepsy from the F-TRACT database, providing a total of 34 354 bipolar stimulations and 774 445 cortico-cortical evoked potentials. The cortical mapping of the local excitatory and inhibitory synaptic time constants and of the axonal conduction delays between cortical regions was obtained at the population level using anatomy-based averaging procedures, based on the Lausanne2008 and the HCP-MMP1 parcellation schemes, containing 130 and 360 parcels, respectively. To rule out brain maturation effects, a separate analysis was performed for older (>15 years) and younger patients (<15 years). In the group of older subjects, we found that the cortico-cortical axonal conduction delays between parcels were globally short (median = 10.2 ms) and only 16% were larger than 20 ms. This was associated to a median velocity of 3.9 m/s. Although a general lengthening of these delays with the distance between the stimulating and recording contacts was observed across the cortex, some regions were less affected by this rule, such as the insula for which almost all efferent and afferent connections were faster than 10 ms. Synaptic time constants were found to be shorter in the sensorimotor, medial occipital and latero-temporal regions, than in other cortical areas. Finally, we found that axonal conduction delays were significantly larger in the group of subjects younger than 15 years, which corroborates that brain maturation increases the speed of brain dynamics. To our knowledge, this study is the first to provide a local estimation of axonal conduction delays and synaptic time constants across the whole human cortex in vivo, based on intracerebral electrophysiological recordings.

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