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Published on: April 4, 2013
Stability of Codman Hakim programmable valve pressure settings during 0.23 T portable magnetic resonance imaging: a
Long Zeng1, Minghan Xie1, Hongwei Zhu1
1Neurosurgery Center, Department of Functional Neurosurgery, The National Key Clinical Specialty, The Engineering Technology Research Center of Education Ministry of China on Diagnosis and Treatment of Cerebrovascular Disease, Guangdong Provincial Key Laboratory on Brain Function Repair and Regeneration, The Neurosurgery Institute of Guangdong Province, Zhujiang Hospital, Southern Medical University, Guangzhou, China.
Background:
Patients with hydrocephalus require multiple cranial imaging sessions for visualization of the ventricles following the implantation of a ventriculoperitoneal shunt (VPS) valve. However, conventional imaging methods have certain limitations: high-field-strength magnetic resonance imaging (MRI) equipment can interfere with the pressure setting of a Codman Hakim programmable valve, while mobile computed tomography (CT) exposes patients and medical staff to radiation. Low-field-strength portable MRI (pMRI) offers a safer and more convenient method for the monitoring of patients with hydrocephalus after VPS surgery. This study aimed to evaluate the stability of valve pressure setting during 0.23 T pMRI and to assess the image quality in patients with hydrocephalus.
Methods:
This prospective observational study involved 20 patients with hydrocephalus admitted to Zhujiang Hospital of Southern Medical University between September 2022 and September 2023. Eligible patients had hydrocephalus confirmed by recent routine imaging (1.5 T/3 T MRI or CT) and had undergone implantation of a non-MR-resistant Codman Hakim programmable valve. Participants were then subjected to pMRI (0.23 T), before and after which the valve pressure settings were verified via X-ray. Pressure stability was analyzed with the Wilcoxon signed-rank test. Image quality was evaluated through comparison of the Evans index (EI) measured on pMRI with that on standard CT (performed within 24 hours) via intraclass correlation coefficients (ICCs) and Bland-Altman analysis.
Results:
In the in vitro pretest, no significant pressure changes were observed (P=0.161). In the clinical study involving 40 pMRI sessions, the valve pressure setting remained unchanged in 30 (75.0%) sessions. Pressure deviations occurred in 10 (25.0%) sessions, but no change exceeded 20 mmH2O. There was no statistically significant difference between pre- and post-pMRI pressure settings (P=0.5552). Regarding image quality (n=22 paired scans), pMRI showed excellent agreement with CT for EI assessment, with an ICC of 0.981 [95% confidence interval (CI): 0.955-0.992; P<0.001]. Bland-Altman analysis indicated a negligible bias of -0.0019 (limits of agreement -0.0283 to 0.0245).
Conclusions:
The results indicate that 0.23T pMRI has minimal impact on the pressure setting of the Codman Hakim programmable valve. This study's findings support the safety and convenience of pMRI for VPS follow-up.
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