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Value of early follow-up CT in paediatric tuberculous meningitis
Savvas Andronikou1, Nicky Wieselthaler, Bruce Smith
1Department of Radiology, University of Cape Town, Cape Town, South Africa. docsav@mweb.co.za
Insights
Early follow-up CT scans in children with tuberculous meningitis (TBM) reveal new diagnostic, prognostic, and therapeutic features. Routine follow-up CT within the first week is recommended for suspected TBM cases.
Area of Science:
- Pediatric Neurology
- Infectious Diseases
- Radiology
Background:
- Computed tomography (CT) is crucial for diagnosing tuberculous meningitis (TBM) in children.
- The utility of follow-up CT scans, especially early ones, for pediatric TBM remains underexplored.
Purpose of the Study:
- To evaluate the diagnostic, prognostic, and therapeutic value of early follow-up CT scans in pediatric TBM patients.
Main Methods:
- Retrospective review of CT scans from 50 children with definite or probable TBM.
- Comparison of initial CT scans with those obtained within 1 week and 1 month.
Main Results:
- Early follow-up CT identified new hydrocephalus in 8/29 patients and new infarcts in 45% of those without initial infarction.
- Changes in basal enhancement and cistern hyperdensity were observed.
- Three patients developed CT features of TBM not evident on initial scans.
Conclusions:
- Early follow-up CT aids TBM diagnosis by revealing evolving features.
- It serves as a prognostic tool by detecting new infarcts.
- Follow-up CT is therapeutically valuable for identifying hydrocephalus requiring intervention.
Background:
The value of CT in the diagnosis of tuberculous meningitis (TBM) in children is well reported. Follow-up CT scanning for these patients is, however, not well described and, in particular, the value of early follow-up CT has not been addressed for children with TBM.
Objective:
To assess the value of early follow-up CT in children with TBM in identifying diagnostic, prognostic and therapeutically relevant features of TBM.
Materials And Methods:
A retrospective 4-year review of CT scans performed within 1 week and 1 month of initial CT in children with proven (CSF culture-positive) and probable TBM (CSF profile-positive but culture-negative) and comparison with initial CT for the diagnostic, prognostic and therapeutic CT features of TBM.
Results:
The CT scans of 50 children were included (19 "definite" TBM; 31 "probable" TBM). Of these, 30 had CT scans performed within 1 week of the initial CT. On initial CT, 44 patients had basal enhancement. Only 24 patients had contrast medium-enhanced follow-up scans. Important findings include: 8 of 29 patients (who were not shunted) developed new hydrocephalus. New infarcts developed in 24 patients; 45% of those who did not have infarction initially developed new infarcts. Three of the six patients who did not show basal enhancement on initial scans developed this on the follow-up scans, while in seven patients with pre-existing basal enhancement this became more pronounced. Two patients developed hyperdensity in the cisterns on non-contrast medium scans. Eight patients developed a diagnostic triad of features. Three patients developed CT features of TBM where there was none on the initial scans.
Conclusions:
Early follow-up CT is useful in making a diagnosis of TBM by demonstrating features that were not present initially and by demonstrating more sensitive, obvious or additional features of TBM. In addition, follow-up CT is valuable as a prognostic indicator as it demonstrates additional infarcts which may have developed or become more visible since the initial study. Lastly, follow-up CT has therapeutic value in demonstrating hydrocephalus, which may develop over time and may require drainage. We advise routine follow-up CT in patients with suspected TBM within the first week of initial CT and optionally at 1 month.
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