Department of Neurology, University Hospital, Ludwig Maximilian University of Munich, Munich, Germany.
Department of Neurology, Division for Neurodegenerative Diseases, University Medicine Mannheim, University of Heidelberg, Mannheim, Germany.
Ann Neurol. 2023 Jul;94(1):133-145. doi: 10.1002/ana.26652. Epub 2023 Apr 7.
Thalamic dysfunction in lesions or neurodegeneration may alter verticality perception and lead to postural imbalance and falls. The aim of the current study was to delineate the structural and functional connectivity network architecture of the vestibular representations in the thalamus by multimodal magnetic resonance imaging.
Seventy-four patients with acute unilateral isolated thalamic infarcts were studied prospectively with emphasis on the perception of verticality (tilts of the subjective visual vertical [SVV]). We used multivariate lesion-symptom mapping based on support-vector regression to determine the thalamic nuclei associated with ipsiversive and contraversive tilts of the SVV. The lesion maps were used to evaluate the white matter disconnection and whole brain functional connectivity in healthy subjects.
Contraversive SVV tilts were associated with lesions of the ventral posterior lateral/medial, ventral lateral, medial pulvinar, and medial central/parafascicular nuclei. Clusters associated with ipsiversive tilts were located inferiorly (ventral posterior inferior nucleus) and laterally (ventral lateral, ventral posterior lateral, and reticular nucleus) to these areas. Distinct ascending vestibular brainstem pathways terminated in the subnuclei for ipsi- or contraversive verticality processing. The functional connectivity analysis showed specific patterns of cortical connections with the somatomotor network for lesions with contraversive tilts, and with the core multisensory vestibular representations (areas Ri, OP2-3, Ig, 3av, 2v) for lesions with ipsiversive tilts.
The functional specialization may allow both a stable representation of verticality for sensorimotor integration and flexible adaption to sudden changes in the environment. A targeted modulation of this circuitry could be a novel therapeutic strategy for higher level balance disorders of thalamocortical origin. ANN NEUROL 2023;94:133-145.
丘脑病变或神经退行性变导致的功能障碍可能改变垂直感知,导致姿势失衡和跌倒。本研究旨在通过多模态磁共振成像描绘前庭在丘脑的结构和功能连接网络结构。
前瞻性研究 74 例急性单侧孤立性丘脑梗死患者,重点关注垂直感知(主观垂直视觉[SVV]倾斜)。我们使用基于支持向量回归的多变量病变-症状映射来确定与 SVV 同侧和对侧倾斜相关的丘脑核。利用病变图评估健康受试者的白质断开和全脑功能连接。
对侧 SVV 倾斜与腹后外侧/内侧、腹外侧、内侧丘脑枕和内侧中央/旁正中核的病变有关。与同侧倾斜相关的簇位于这些区域下方(腹后下核)和外侧(腹外侧、腹后外侧和网状核)。不同的前庭脑干上升通路终止于同侧或对侧垂直处理的亚核。功能连接分析显示,对侧倾斜病变的皮质连接具有特定的躯体感觉网络模式,同侧倾斜病变的核心多感觉前庭代表区(Ri、OP2-3、Ig、3av、2v 区)具有特定的皮质连接模式。
功能专业化可能允许对感觉运动整合进行稳定的垂直表示,并灵活适应环境的突然变化。靶向调节该回路可能是一种治疗源于丘脑皮质的高级平衡障碍的新治疗策略。神经病学年鉴 2023;94:133-145。