Abnormal supplementary motor areas are associated with idiopathic and acquired blepharospasm

Parkinsonism Relat Disord. 2024 Apr:121:106029. doi: 10.1016/j.parkreldis.2024.106029. Epub 2024 Feb 9.

Abstract

Blepharospasm is a common form of focal dystonia characterized by excessive and involuntary spasms of the orbicularis oculi. In addition to idiopathic blepharospasm, lesions in various brain regions can also cause acquired blepharospasm. Whether these two types of blepharospasm share a common brain network remains largely unknown. Herein, we performed lesion coactivation network mapping, based on meta-analytic connectivity modeling, to test whether lesions causing blepharospasm could be mapped to a common coactivation brain network. We then tested the abnormality of the network in patients with idiopathic blepharospasm (n = 42) compared with healthy controls (n = 44). We identified 21 cases of lesion-induced blepharospasms through a systematic literature search. Although these lesions were heterogeneous, they were part of a co-activated brain network that mainly included the bilateral supplementary motor areas. Coactivation of these regions defines a single brain network that encompasses or is adjacent to most heterogeneous lesions causing blepharospasm. Moreover, the bilateral supplementary motor area is primarily associated with action execution, visual motion, and imagination, and participates in finger tapping and saccades. They also reported decreased functional connectivity with the left posterior cingulate cortex in patients with idiopathic blepharospasm. These results demonstrate a common convergent abnormality of the supplementary motor area across idiopathic and acquired blepharospasms, providing additional evidence that the supplementary motor area is an important brain region that is pathologically impaired in patients with blepharospasm.

Keywords: And meta-analytic connectivity modeling; Blepharospasm; BrainMap; Co-activation patterns; Lesion brain mapping.

MeSH terms

  • Blepharospasm*
  • Brain
  • Brain Mapping
  • Dystonic Disorders*
  • Humans
  • Magnetic Resonance Imaging
  • Motor Cortex* / diagnostic imaging