Comprehensive Evaluation of Extraocular Muscle Fibrosis in Thyroid Eye Disease With Multi-modal Medical Images
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 58
- 试验地点
- 1
- 主要终点
- MRI parameters (native T1 value and ECV) and elasticity of EOMs in the TED.
研究概览
简要总结
The purpose of this study was to evaluate the elasticity of the extraocular muscles in different stages of thyroid eye disease and to examine the correlation of MRI parameters (native T1 value and ECV) and elasticity for the assessment of extraocular muscles fibrosis in the thyroid eye disease.
详细描述
Thyroid eye disease (TED) is an autoimmune orbitopathy characterized by inflammation and remodeling of the orbital tissues. These changes can lead to the development of symptoms such as proptosis, diplopia, and cosmetically disturbing. Strabismic diplopia in the active phase TED results from restriction of muscle movement due to inflammatory and oedema of extraocular muscles (EOMs). Recent studies have demonstrated that patients with active TED receiving teprotumumab experienced a meaningful improvement in proptosis and strabismic diplopia. However, there are still patients with strabismic diplopia who require strabismus surgery in the inactive phase TED. Unfortunately, the dose-response relationship in strabismus surgery for TED still exhibits significant variability, potentially leading to unsatisfactory postoperative alignment.
EOMs are manipulated mechanically during surgery for strabismus. In the progression of TED, the heterogeneity in the biomechanical properties of the EOMs caused by fibrosis may contribute to the unpredictability of strabismic diplopia. Thus, evaluating their biomechanical property changes has the potential to provide invaluable information that improves our understanding of the pathogenic mechanisms of TED-related strabismus. Real-time tissue elastography (RTE) is a noninvasive modality that provides information on periocular and ocular tissues elasticity. It could also account for strain distribution inhomogeneity across large tissue areas, potentially serving as a powerful tool for detecting and monitoring pathological processes affecting EOM stiffness.
Biomechanical property changes are often based on corresponding changes in the morphology. Orbital magnetic resonance imaging (MRI) could help to quantitatively assess the clinical activity, fibrosis and other pathological changes of TED. Studies recently reported that native T1 mapping values provide the best discrimination of morphological and fibrotic information of EOMs, and the extracellular volume (ECV) fraction is a reliable tool to quantify EOMs fibrosis. Nevertheless, the correlation of this method to relevant muscle elasticity architectures remains unavailable.
Methods Study Design and Participants Consecutive patients (n=40) with moderate-to-severe TED were retrospectively enrolled from Tianjin Eye Hospital between 2020 and 2024. All patients underwent MR with T1 mapping and RTE. The patients were categorized into either the active or inactive TED group based on the Clinical Activity Score (CAS). The sex-matched control group (n=18) comprised healthy individuals and patients with orbital symptoms but normal findings on orbital MRI. All participants underwent a comprehensive ophthalmic examination, including slit-lamp biomicroscopy, Hertel exophthalmometry and intraocular pressure. A blood sample was obtained on the day of MR scanning to measure hematocrit. Participants who reported any of the following were excluded: (1) any ophthalmopathies (e.g., glaucoma, diabetic retinopathy and optic nerve disorders); (2) patients with dysthyroid optic neuropathy (DON). Our institutional ethics committee approved all study protocols, and patients provided written informed consent.
MR image acquisition and image analysis All participants were examined using a 3.0-T MR scanner (Siemens Magnetom Verio dot, Siemens Healthcare) and a 64-channel brain coil. On the basis of a previous report, the scan sequences included routine sequences (T1-weighted sequence, T2-weighted sequence, fat-suppressed, STIR sequence) and pre/postcontrast T1 mapping using a dual-flip-angle method. Postcontrast T1 mapping was repeated in identical prescription as precontrast T1 mapping 15 min after contrast injection. The extra-cellular volume (ECV) was calculated following the previously described methodology. The region of interest (ROI) was drawn at the thickest part of the muscle and its adjacent upper and lower levels in selected axial planes, and then MRI parameters of the medial rectus (MR) and lateral rectus (LR) muscles were measured from both sides. Two independent radiologists (L.X. and J.M.) delineated ROIs on the EOMs of all participants. Three repeated measurements were performed for each muscle slice, and the mean value was used for analysis. Radiologist L.X. repeated all evaluations twice at one-month intervals to assess intraobserver reliability.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Cross Sectional
入排标准
- 年龄范围
- 20 Years 至 70 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Consecutive patients with moderate-to-severe TED were retrospectively enrolled from Tianjin Eye Hospital between 2020 and 2024.
排除标准
- •Participants who reported any of the following were excluded: (1) any ophthalmopathies (e.g., glaucoma, diabetic retinopathy and optic nerve disorders); (2) patients with dysthyroid optic neuropathy (DON).
结局指标
主要结局
MRI parameters (native T1 value and ECV) and elasticity of EOMs in the TED.
时间窗: Consecutive patients with moderate-to-severe TED were retrospectively enrolled from Tianjin Eye Hospital between 2020 and 2024. All patients underwent MR with T1 mapping and RTE. The patients were categorized into either the active or inactive TED
次要结局
未报告次要终点
