Scientific Institute, IRCCS E. Medea, Bosisio Parini, Italy.
Paediatric Radiology and Neuroradiology Department, V. Buzzi Children's Hospital, Via Castelvetro 32, 20154, Milan, Italy.
Neuroradiology. 2023 Apr;65(4):865-870. doi: 10.1007/s00234-022-03106-5. Epub 2022 Dec 29.
To describe the neuroanatomical correlates of unilateral congenital isolated oculomotor palsy by means of high-resolution MRI.
Children with a clinical diagnosis of congenital isolated oculomotr palsy and with a high-resolution MRI acquisition targeted on the orbits and cranial nerves were selected and included in the study. An experienced pediatric neuroradiologist evaluated all the exams, assessing the integrity and morphology of extraocular muscles, oculomotor, trochlear and abducens nerves as well as optic nerves and globes. Clinical data and ophthalmologic evaluations were also collected.
Six children (age range: 1-16 years; males: 3) were selected. All patients showed, on the affected side (left:right = 5:1), anomalies of the III nerve and extraocular muscles innervated by the pathological nerve. One patient had complete nerve agenesis, two patients showed a diffuse thinning of the nerve, from the brainstem to the orbit and 3 patients showed a distal thinning of the oculomotor nerve, starting at the level of the cavernous sinus. In all cases atrophy of corresponding muscles was noticed, but the involvement of the affected muscles varied with the nervous pattern of injury.
High-resolution MRI represents a valuable tool for the diagnosis of III nerve anomalies in unilateral congenital IOP, showing different patterns of nerve involvement and muscular atrophy.
通过高分辨率 MRI 描述单侧先天性孤立性动眼神经麻痹的神经解剖学相关性。
选择具有先天性孤立性动眼神经麻痹临床诊断且具有针对眼眶和颅神经的高分辨率 MRI 采集的儿童,并将其纳入研究。一位经验丰富的儿科神经放射科医生评估了所有的检查,评估了眼外肌、动眼神经、滑车神经和展神经以及视神经和眼球的完整性和形态。还收集了临床数据和眼科评估结果。
共选择了 6 名儿童(年龄范围:1-16 岁;男性:3 名)。所有患者(左侧/右侧=5:1)在受影响的一侧均表现出 III 神经和由病理性神经支配的眼外肌异常。一名患者出现完全性神经缺失,两名患者出现神经从脑干到眼眶的弥漫性变薄,3 名患者出现动眼神经的远端变薄,起始于海绵窦水平。在所有情况下均注意到相应肌肉的萎缩,但受累肌肉的受累程度随神经损伤模式而异。
高分辨率 MRI 是诊断单侧先天性 IOP 中 III 神经异常的一种有价值的工具,可显示不同的神经受累和肌肉萎缩模式。