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Magnetic resonance imaging of extraocular rectus muscles abnormalities in acute acquired concomitant esotropia
Jia-Yu Chen1, Li-Rong Zhang2, Jia-Wen Liu3
1Beijing Tongren Eye Center, Beijing Tongren Hospital, Beijing Key Laboratory of Ophthalmology & Visual Sciences, Capital Medical University, Beijing 100176, China.
Aim:
To investigate the difference of medial rectus (MR) and lateral rectus (LR) between acute acquired concomitant esotropia (AACE) and the healthy controls (HCs) detected by magnetic resonance imaging (MRI).
Methods:
A case-control study. Eighteen subjects with AACE and eighteen HCs were enrolled. MRI scanning data were conducted in target-controlled central gaze with a 3-Tesla magnetic resonance scanner. Extraocular muscles (EOMs) were scanned in contiguous image planes 2-mm thick spanning the EOM origins to the globe equator. To form posterior partial volumes (PPVs), the LR and MR cross-sections in the image planes 8, 10, 12, and 14 mm posterior to the globe were summed and multiplied by the 2-mm slice thickness. The data were classified according to the right eye, left eye, dominant eye, and non-dominant eye, and the differences in mean cross-sectional area, maximum cross-sectional area, and PPVs of the MR and LR muscle in the AACE group and HCs group were compared under the above classifications respectively.
Results:
There were no significant differences between the two groups of demographic characteristics. The mean cross-sectional area of the LR muscle was significantly greater in the AACE group than that in the HCs group in the non-dominant eyes (P=0.028). The maximum cross-sectional area of the LR muscle both in the dominant and non-dominant eye of the AACE group was significantly greater than the HCs group (P=0.009, P=0.016). For the dominant eye, the PPVs of the LR muscle were significantly greater in the AACE than that in the HCs group (P=0.013), but not in the MR muscle (P=0.698).
Conclusion:
The size and volume of muscles dominant eyes of AACE subjects change significantly to overcome binocular diplopia. The LR muscle become larger to compensate for the enhanced convergence in the AACE.
Insights
In acute acquired concomitant esotropia (AACE), the lateral rectus (LR) muscle is significantly larger in dominant and non-dominant eyes. This suggests the LR muscle enlarges to compensate for increased convergence, helping overcome double vision.
Area of Science:
- Ophthalmology
- Neuroscience
- Medical Imaging
Background:
- Acute acquired concomitant esotropia (AACE) is a condition affecting eye alignment.
- Understanding the anatomical changes in extraocular muscles (EOMs) in AACE is crucial for diagnosis and treatment.
Purpose of the Study:
- To compare the size and volume of the medial rectus (MR) and lateral rectus (LR) muscles between individuals with AACE and healthy controls (HCs) using magnetic resonance imaging (MRI).
Main Methods:
- A case-control study involving 18 AACE patients and 18 HCs.
- MRI scans were performed to measure cross-sectional areas and posterior partial volumes (PPVs) of MR and LR muscles.
- Data were analyzed based on eye dominance.
Main Results:
- The LR muscle showed significantly greater maximum cross-sectional area in both dominant and non-dominant eyes of the AACE group compared to HCs.
- The LR muscle's mean cross-sectional area was larger in the non-dominant eyes of the AACE group.
- The LR muscle's PPVs were significantly greater in the dominant eye of the AACE group.
Conclusions:
- The increased size and volume of the LR muscle in AACE patients suggest a compensatory mechanism.
- Enlargement of the LR muscle likely helps overcome binocular diplopia by compensating for enhanced convergence.
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