Anterior Pituitary Volume in Patients with Transfusion Dependent Anemias: Volumetric Approaches and Relation to Pituitary MRI‑R2
Autor: | Regine Grosse, Bjoern P. Schoennagel, Eric Padua, Qing Yuan, Gerhard Adam, Christoph Berliner, Zhiyue J. Wang, Ellen James, Roland Fischer, Elliott Vichinsky, Marcela G Weyhmiller, Rosalie McDonough, Jin Yamamura, Sylvia T. Singer, Peter Bannas |
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Rok vydání: | 2021 |
Předmět: |
Body surface area
medicine.medical_specialty Percentile medicine.diagnostic_test business.industry Anemia Magnetic resonance imaging medicine.disease medicine.anatomical_structure Anterior pituitary Hypogonadotropic hypogonadism Medicine Radiology Nuclear Medicine and imaging Neurology (clinical) Neurosurgery business Nuclear medicine Neuroradiology |
Zdroj: | Clinical Neuroradiology. 32:259-267 |
ISSN: | 1869-1447 1869-1439 |
DOI: | 10.1007/s00062-021-01111-4 |
Popis: | Purpose Anterior pituitary iron overload and volume shrinkage is common in patients with transfusion-dependent anemia and associated with growth retardation and hypogonadotropic hypogonadism. We investigated the accuracy of different MRI-based pituitary volumetric approaches and the relationship between pituitary volume and MRI-R2, particularly with respect to growth and hypogonadism. Methods In 43 patients with transfusion-dependent anemia (12–38 years) and 32 healthy controls (12–72 years), anterior pituitary volume was measured by a sagittal T1 GRE 3D sequence at 1.5T and analyzed by 3D semi-automated threshold volumetry (3D-volumetry). This reference method was compared with planimetric 2D-volumetry, approximate volume calculations, and pituitary height. Using a multiple SE sequence, pituitary iron as MRI-R2 was assessed by fitting proton signal intensities to echo times. Growth and hypogonadism were obtained from height percentile tables and patients’ medical charts. From body surface area and age adjusted anterior pituitary volumes of controls, Z‑scores were calculated for all subjects. Separation of controls and patients with respect to Z and pituitary R2 was performed by bivariate linear discriminant analysis. Results Tuned 2D volumes showed highest agreement with reference 3D-volumes (bias −4.8%; 95% CI:−8.8%|−0.7%). A linear discriminant equation of Z = −17.8 + 1.45 · R2 revealed optimum threshold sensitivity and specificity of 65% and 100% for discrimination of patients from controls, respectively. Of correctly classified patients 71% and 75% showed hypogonadism and growth retardation, respectively. Conclusion Accurate assessment of anterior pituitary size requires 3D or precise 2D volumetry, with shorter analysis time for the latter. Anterior pituitary volume Z‑scores and R2 allow for the identification of patients at risk of pituitary dysfunction. |
Databáze: | OpenAIRE |
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