Literature DB >> 22728857

T2 and DWI in pilocytic and pilomyxoid astrocytoma with pathologic correlation.

M Horger1, M N Vogel, R Beschorner, U Ernemann, J Wörner, M Fenchel, F Ebner, T Nägele, S Heckl.   

Abstract

OBJECTIVE: To quantify and compare T2 signal and apparent diffusion coefficient (ADC) in pilocytic and pilomyxoid astrocytoma (PA and PMA) and correlate results with myxoid content.
METHODS: Echo-planar diffusion weighted images (DWI) and standard magnetic resonance imaging (MRI) findings were reviewed retrospectively in patients with PA (n=34) and PMA (n=8). Regions of interest (ROIs) were drawn on ADC maps within tumor parts with lowest ADC values. Apparent diffusion coefficient values in tumor were normalized to those in cerebrospinal fluid (ADC/CSF). The ratio of T2 signal intensity in solid tumor parts to CSF (T2/CSF) was registered. Myxoid matrix was histologically quantified retrospectively in 8 PMAs and 17 PAs and correlated with imaging findings.
RESULTS: Mean ADC/CSF for PA and PMA was 0.53±0.10 and 0.69±0.10 (p<0.01). Mean T2/CSF for PA and PMA was 0.78±0.19 and 0.93±0.09 (p<0.01). Mean proportion of myxoid tumor matrix in PA was 50% (range, 10-100%) and 93% (range, 90-100%) in PMA (p=0.004). Eight patients (32%; all PA) had less than 50% myxoid content and 17 (68%; 8 PA; 9 PMA) had more. There was positive correlation of ADC/CSF, T2/CSF and ADC (r2=0.61, 0.65 and 0.60 respectively) and significant difference between the groups with more and less than 50% myxoid content (p=0.01 for ADC/CSF and T2/CSF and p=0.02 for ADC).
CONCLUSIONS: General imaging features of PA and PMA are non-specific, ADC values and T2 signal intensity are generally higher in the latter, reflecting the proportion of myxoid matrix in these tumors.

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Year:  2012        PMID: 22728857     DOI: 10.1017/s0317167100014013

Source DB:  PubMed          Journal:  Can J Neurol Sci        ISSN: 0317-1671            Impact factor:   2.104


  5 in total

1.  Differential imaging characteristics and dissemination potential of pilomyxoid astrocytomas versus pilocytic astrocytomas.

Authors:  Bálint Alkonyi; Johannes Nowak; Astrid K Gnekow; Torsten Pietsch; Monika Warmuth-Metz
Journal:  Neuroradiology       Date:  2015-02-10       Impact factor: 2.804

2.  Imaging Features of Pilocytic Astrocytoma in Cerebral Ventricles.

Authors:  Jg Xia; B Yin; L Liu; Yp Lu; Dy Geng; Wz Tian
Journal:  Clin Neuroradiol       Date:  2015-01-28       Impact factor: 3.649

3.  Spectrum of qualitative and quantitative imaging of pilomyxoid, intermediate pilomyxoid and pilocytic astrocytomas in relation to their genetic alterations.

Authors:  Sandra Abi Fadel; Marc von Reppert; Eve Kazarian; E Zeynep Erson Omay; Asher Marks; Nicolas Linder; Karl-Titus Hoffmann; Armine Darbinyan; Anita Huttner; Mariam S Aboian
Journal:  Neuroradiology       Date:  2022-08-19       Impact factor: 2.995

4.  Pilomyxoid astrocytoma of the brainstem.

Authors:  Francisco Otavio Pereira; Ismael Augusto Lombardi; Adriana Yuki Mello; Flavio Ramalho Romero; Luis Gustavo Ducati; Roberto Colichio Gabarra; Marco Antonio Zanini
Journal:  Rare Tumors       Date:  2013-04-15

5.  Pilomyxoid Astrocytoma Occurring in the Third Ventricle.

Authors:  Sanghyeon Kim; Myongjin Kang; Sunseob Choi; Dae Cheol Kim
Journal:  J Clin Imaging Sci       Date:  2015-07-31
  5 in total

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