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sLORETA allows reliable distributed source reconstruction based on subdural strip and grid recordings

机译:sLORETA允许基于硬膜下条带和网格记录进行可靠的分布式源重建

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摘要

Source localization based on invasive recordings by subdural strip and grid electrodes is a topic of increasing interest. This simulation study addresses the question, which factors are relevant for reliable source reconstruction based on sLORETA. MRI and electrode positions of a patient undergoing invasive presurgical epilepsy diagnostics were the basis of sLORETA simulations. A boundary element head model derived from the MRI was used for the simulation of electrical potentials and source reconstruction. Focal dipolar sources distributed on a regular three-dimensional lattice and spatiotemporal distributed patches served as input for simulation. In addition to the distance between original and reconstructed source maxima, the activation volume of the reconstruction and the correlation of time courses between the original and reconstructed sources were investigated. Simulations were supplemented by the localization of the patient's spike activity. For noise-free simulated data, sLORETA achieved results with zero localization error. Added noise diminished the percentage of reliable source localizations with a localization error ≤15 mm to 67.8%. Only for source positions close to the electrode contacts the activation volume correctly represented focal generators. Time-courses of original and reconstructed sources were significantly correlated. The case study results showed accurate localization. sLORETA is a distributed source model, which can be applied for reliable grid and strip based source localization. For distant source positions, overestimation of the extent of the generator has to be taken into account. sLORETA-based source reconstruction has the potential to improve the localization of distributed generators in presurgical epilepsy diagnostics and cognitive neuroscience.
机译:基于硬膜下条带和栅格电极的侵入性记录的源定位是越来越引起人们关注的话题。该仿真研究解决了这个问题,哪些因素与基于sLORETA的可靠源重建有关。进行侵入性术前癫痫诊断的患者的MRI和电极位置是sLORETA模拟的基础。从MRI导出的边界元首模型用于电势仿真和源重建。分布在规则三维晶格上的焦点偶极源和时空分布的斑块用作模拟输入。除了原始和重建源最大值之间的距离外,还研究了重建的激活量以及原始和重建源之间的时程相关性。通过对患者峰值活动的定位来补充模拟。对于无噪声的模拟数据,sLORETA获得了零定位误差的结果。增加的噪声使定位误差≤15 mm的可靠源定位的百分比降低到67.8%。仅对于靠近电极的源位置,才可以正确表示聚焦发生器的激活体积。原始来源和重建来源的时间过程显着相关。案例研究结果表明定位准确。 sLORETA是一种分布式源模型,可用于基于网格和条带的可靠源定位。对于较远的源位置,必须考虑发电机范围的高估。基于sLORETA的源重构具有改善术前癫痫诊断和认知神经科学中分布式发生器定位的潜力。

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