The uncommon causes of hearing loss detected on MDCT scan of temporal bone

Thị Hậu Vũ1, , Quốc Thành Phạm, Mạnh Chung Phạm, Đình Long Trần, Đình Tuấn Vũ
1 BVĐKQT Vinmec Times city

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Abstract

Objective: Description the findings on temporal bone MDCT scan and diagnostic the causes of hearing loss. Methods: From 01/2022 to 01/2024, more than 300 patients have been done temporal bone MDCT scan in Diagnostic Imaging Department of Vinmec Healthcare System, of which 250 patients had symptoms of hearing loss, which can be the main or an accompanying symptom. We interpreted the CT findings and diagnostic causes of hearing loss based on the consensus of clinical and imaging diagnostic results, some of which are accompanied by surgical assessment or follow-up examination after treatment. 

Results: The patients undergoing temporal bone MDCT scan have F/M ratio 132/118 with an age range from 2 years old to 81 years old. Most type of hearing loss are conductive, with a few being mixed and sensorineural types. CT findings show that the main cause of hearing loss is otitis media with or without perforated eardrum. Other less common causes including: ear wax, perforated eardrum due to trauma, otosclerosis, middle ear cholesteatoma, external ear cholesteatoma, external ear polyps, ossicular chain abnormalities, tympanic glomus tumor, inner ear malformation, a few cases with normal findings on CT scan in patients diagnosed with nasopharyngitis with eustachian tube obstruction, disorders circulation in the inner ear, or age – related hearing loss,.. In cases of otitis media, there is a special case where the cause is tuberculosis in a patient with history of colon tuberculosis and lymph node tuberculosis. In some cases of sensorineural hearing loss or suspected inner ear abnormalities, inner ear MRI was performed to better evaluate the inner ear and especially the vestibular-cochlear nerve. CT scan of the temporal bone has high positive and negative diagnostic value in determining the location of abnormalities and the causes of hearing loss.

 Conclusion: MDCT of the temporal bone is a highly valuable method in assessing the morphology of the ossicles, the mastoid cells, tympanic cavity, footplate and inner ear morphology, contributing to the prediction the causes of hearing loss and other symptoms associated with hearing loss (may be primary or secondary symptoms). The findings are analyzed from the outer ear to the middle ear and the inner ear, depending on the cause of hearing loss, which has different findings.

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References

1. Hugh D. Curtin (2016). Imaging of Conductive Hearing Loss With a Normal Tympanic Membrane. AJR. Neuroradiology/ head and neck Imaging, Volume 206, Issue 1. ttps://doi.org/10.2214/AJR.15.15060.
2. Quesnel AM, Moonis G, Appel J, et al (2013). Correlation of computed tomography with histopathology in otosclerosis. Otol Neurotol 2013; 34:22–28.
3. David Chen, C. Douglas Phillips (2015), Imaging the patient wih hearing loss. The journal of practical Imaging and Management. Clinical Review article.Appl Radiol 2015; 40(4):20-25.
4. Persaud RA, Hajioff D, Thevasagayam MS, et al (2004). Keratosis obturans and external ear canal cholesteatoma: how and why we should distinguish between these conditions.Clin Otolaryngol 2004;29(6):577-581.
5. Armington WG, Harnsberger HR, Smoker WR, Osborn AG (1988). Normal and diseased acoustic pathway: Evaluation with MR imaging. Radiology 1988;167:509-515.
6. Glastonbury CM (2009). The vestibulocochlear nerve, with an emphasis on the normal and disease internal auditory canal and cerebellopontine angle. In: Swartz JD, Loevner LA. Imaging of the Temporal bone 4th ed. New York, NY: Thieme; 2009:480-558.
7. Ina Sorge1 , Franz Wolfgang Hirsch1, Michael Fuchs, Daniel Gräfe1, Andreas Dietz, Martin Sorge (2023) Imaging in children with hearing loss. Thieme Fortschr Röntgenstr 2023; 195: 896–904
8. Wang EY, Shatzkes D, Swartz JA (2009). Temporal bone trauma. In: Swartz JD, Loevner LA.Imaging of the Temporal Bone 4th ed. New York, NY: Thieme; 2009: 412-443.
9. Pulickal, G.G. (2021). Imaging Approach to Conductive Hearing Loss. In: Pulickal, G.G., Tan, T.Y., Chawla, A. (eds) Temporal Bone Imaging Made Easy. Medical Radiology(). Springer, Cham. https://doi.org/10.1007/978-3-030-70635-7_3.
10. Warner, E., Dziedzic, M., Lingam, R.K., Singh, A. (2021). Imaging of the Temporal Bone in Hearing Loss. In: Tatla, T.S., Manjaly, J., Kumar, R., Weller, A. (eds) Head and Neck Imaging. Springer, Cham. https://doi.org/10.1007/978- 3-030-80897-6_7