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右半球损伤后的脱离不足:外侧额顶损伤的不同作用。

The disengagement deficit after right-hemisphere damage: Distinct roles of lateral frontal and parietal damage.

机构信息

Laboratory of Cognitive Neurorehabilitation, Faculty of Medicine, University of Geneva, Geneva, Switzerland; Division of Neurorehabilitation, Department of Clinical Neurosciences, University Hospitals of Geneva, Geneva, Switzerland.

Laboratory of Cognitive Neurorehabilitation, Faculty of Medicine, University of Geneva, Geneva, Switzerland; Division of Neurorehabilitation, Department of Clinical Neurosciences, University Hospitals of Geneva, Geneva, Switzerland.

出版信息

Brain Res Bull. 2024 Aug;214:111003. doi: 10.1016/j.brainresbull.2024.111003. Epub 2024 Jun 7.

Abstract

An influential model of spatial attention postulates three main attention-orienting mechanisms: disengagement, shifting, and engagement. Early research linked disengagement deficits with superior parietal damage, regardless of hemisphere or presence of spatial neglect. Subsequent studies supported the involvement of more ventral parietal regions, especially in the right hemisphere, and linked spatial neglect to deficient disengagement from ipsilateral cues. However, previous lesion studies faced serious limitations, such as small sample sizes and the lack of brain-injured controls without neglect. Additionally, some studies employed symbolic cues or used long cue-target intervals, which may fail to reveal impaired disengagement. We here used a machine-learning approach to conduct lesion-symptom mapping (LSM) on 89 patients with focal cerebral lesions to the left (LH) or right (RH) cerebral hemisphere. A group of 54 healthy participants served as controls. The paradigm used to uncover disengagement deficits employed non-predictive cues presented in the visual periphery and at short cue-target intervals, targeting exogenous attention. The main factors of interest were group (healthy participants, LH, RH), target position (left, right hemifield) and cue validity (valid, invalid). LSM-analyses were performed on two indices: the validity effect, computed as the absolute difference between reaction times (RTs) following invalid compared to valid cues, and the disengagement deficit, determined by the difference between contralesional and ipsilesional validity effects. While LH patients showed general slowing of RTs to contralesional targets, only RH patients exhibited a disengagement deficit from ipsilesional cues. LSM associated the validity effect with a right lateral frontal cluster, which additionally affected subcortical white matter of the right arcuate fasciculus, the corticothalamic pathway, and the superior longitudinal fasciculus. In contrast, the disengagement deficit was related to damage involving the right temporoparietal junction. Thus, our results support the crucial role of right inferior parietal and posterior temporal regions for attentional disengagement, but also emphasize the importance of lateral frontal regions, for the reorienting of attention.

摘要

一种有影响力的空间注意模型假设了三种主要的注意定向机制

脱离、转移和参与。早期的研究将脱离缺陷与顶叶损伤联系起来,无论损伤发生在大脑的哪一侧,也不论是否存在空间忽视。随后的研究支持更多腹侧顶叶区域的参与,特别是在右半球,并将空间忽视与对同侧线索的脱离缺陷联系起来。然而,以前的病变研究存在严重的局限性,例如样本量小,以及缺乏没有忽视的脑损伤对照者。此外,一些研究使用了符号线索或使用了较长的线索-目标间隔,这可能无法揭示受损的脱离。我们在这里使用机器学习方法对 89 名左(LH)或右(RH)大脑半球有局灶性脑损伤的患者进行病变-症状映射(LSM)。一组 54 名健康参与者作为对照组。用于发现脱离缺陷的范式使用了非预测性线索,这些线索出现在视觉外围和短的线索-目标间隔,针对外源性注意。主要的兴趣因素是组(健康参与者、LH、RH)、目标位置(左、右半视野)和线索有效性(有效、无效)。对两个指标进行了 LSM 分析:有效性效应,计算为无效线索与有效线索相比的反应时间(RTs)的绝对差异,以及脱离缺陷,由对侧和同侧有效性效应的差异确定。虽然 LH 患者对同侧目标的 RTs 普遍减慢,但只有 RH 患者对同侧线索表现出脱离缺陷。LSM 将有效性效应与右侧额侧的一个聚类相关联,该聚类还影响了右侧弓状束、皮质丘脑通路和上纵束的皮质下白质。相比之下,脱离缺陷与涉及右侧颞顶交界处的损伤有关。因此,我们的结果支持右顶下和后颞叶区域对注意力脱离的关键作用,但也强调了侧额叶区域对注意力重新定向的重要性。

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