Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses

Objectives: The aim of this study was to assess the role of multi-detector computed tomography (MDCT) in diagnosis and preoperative staging of solid renal masses. Patients and methods: During two years duration we prospectively evaluated 56 patients with solid renal lesions previously detected by US...

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Main Authors: Manal H. Wahba, Tamer W. Kassem, Ahmed A.S. Mahmoud
Format: Article
Language:English
Published: SpringerOpen 2015-03-01
Series:The Egyptian Journal of Radiology and Nuclear Medicine
Subjects:
RCC
Online Access:http://www.sciencedirect.com/science/article/pii/S0378603X14001661
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spelling doaj-ac7e1fc1c10d459a94ece4b5f8d9dd5e2020-11-25T02:33:01ZengSpringerOpenThe Egyptian Journal of Radiology and Nuclear Medicine0378-603X2015-03-0146121522410.1016/j.ejrnm.2014.09.004Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal massesManal H. Wahba0Tamer W. Kassem1Ahmed A.S. Mahmoud2Radiology Department, Cairo University, EgyptRadiology Department, Cairo University, EgyptRadiology Department, Tudor Bilharz Research Institute, EgyptObjectives: The aim of this study was to assess the role of multi-detector computed tomography (MDCT) in diagnosis and preoperative staging of solid renal masses. Patients and methods: During two years duration we prospectively evaluated 56 patients with solid renal lesions previously detected by US. All patients underwent multiphasic CT scanning for the kidneys and urinary tract following a preset scanning protocol that included unenhanced, corticomedullary phase (CMP), nephrograhic phase (NP) and excretory phase (EP) scanning. The images obtained in the excretory delayed phase were reconstructed in different planes to obtain 2D and 3D reformatted images providing volume rendering VR and maximum intensity projection (MIP) CTU images. Curved reformatting was sometimes used for the ureter. The numbers of lesions detected in all three phases were determined. Results of CT scan were compared with histopathology or constellation of clinical and imaging patient data. Results: A total of 61 masses were detected in 56 cases, 51 cases had unilateral masses (91%), 5 cases had bilateral masses (9%). The different pathologies encountered in the study were RCC 39 masses (64%), Wilm’s tumor 3 masses (4.9%), transitional cell carcinoma 3 masses (4.9%), angiomyolipoma 7 masses (11.5%), lymphoma 6 masses (9.8%), metastasis one mass (1.6%), angiomyolipoma associated with RCC two masses (3.3%). Lymph nodal metastasis, renal vein, IVC thrombosis and distant metastatic spread in different pathologies were assessed. The attenuation HU values calculated in the early CMP for all cases of RCC had a mean value of 80.5 HU (STD 45.7) while the mean values in NP and EP were 70.6 HU (STD 25.4) and 51.3 HU (STD 19.2) respectively. A pattern of enhancement was detected in all cases of RCC in the form of rapid wash out of contrast and decrease of attenuation (HU) by time throughout different phases. Significant difference between HU in CMP and EP in cases of RCC (P value = 0.0002) and difference between HU in NP and EP in cases of RCC (P value < 0.00001) were found. Conclusion: Multiphase multislice computed tomography combined with CT angiography and CT urography have a major role in solid renal neoplastic masses’ diagnosis, characterization and differentiating benign and malignant tumors.http://www.sciencedirect.com/science/article/pii/S0378603X14001661Multiphasic MDCT scanSolid renal massesRCC
collection DOAJ
language English
format Article
sources DOAJ
author Manal H. Wahba
Tamer W. Kassem
Ahmed A.S. Mahmoud
spellingShingle Manal H. Wahba
Tamer W. Kassem
Ahmed A.S. Mahmoud
Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
The Egyptian Journal of Radiology and Nuclear Medicine
Multiphasic MDCT scan
Solid renal masses
RCC
author_facet Manal H. Wahba
Tamer W. Kassem
Ahmed A.S. Mahmoud
author_sort Manal H. Wahba
title Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
title_short Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
title_full Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
title_fullStr Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
title_full_unstemmed Role of multiphasic multi-detector computed tomography (MDCT) in the diagnosis and staging of solid neoplastic renal masses
title_sort role of multiphasic multi-detector computed tomography (mdct) in the diagnosis and staging of solid neoplastic renal masses
publisher SpringerOpen
series The Egyptian Journal of Radiology and Nuclear Medicine
issn 0378-603X
publishDate 2015-03-01
description Objectives: The aim of this study was to assess the role of multi-detector computed tomography (MDCT) in diagnosis and preoperative staging of solid renal masses. Patients and methods: During two years duration we prospectively evaluated 56 patients with solid renal lesions previously detected by US. All patients underwent multiphasic CT scanning for the kidneys and urinary tract following a preset scanning protocol that included unenhanced, corticomedullary phase (CMP), nephrograhic phase (NP) and excretory phase (EP) scanning. The images obtained in the excretory delayed phase were reconstructed in different planes to obtain 2D and 3D reformatted images providing volume rendering VR and maximum intensity projection (MIP) CTU images. Curved reformatting was sometimes used for the ureter. The numbers of lesions detected in all three phases were determined. Results of CT scan were compared with histopathology or constellation of clinical and imaging patient data. Results: A total of 61 masses were detected in 56 cases, 51 cases had unilateral masses (91%), 5 cases had bilateral masses (9%). The different pathologies encountered in the study were RCC 39 masses (64%), Wilm’s tumor 3 masses (4.9%), transitional cell carcinoma 3 masses (4.9%), angiomyolipoma 7 masses (11.5%), lymphoma 6 masses (9.8%), metastasis one mass (1.6%), angiomyolipoma associated with RCC two masses (3.3%). Lymph nodal metastasis, renal vein, IVC thrombosis and distant metastatic spread in different pathologies were assessed. The attenuation HU values calculated in the early CMP for all cases of RCC had a mean value of 80.5 HU (STD 45.7) while the mean values in NP and EP were 70.6 HU (STD 25.4) and 51.3 HU (STD 19.2) respectively. A pattern of enhancement was detected in all cases of RCC in the form of rapid wash out of contrast and decrease of attenuation (HU) by time throughout different phases. Significant difference between HU in CMP and EP in cases of RCC (P value = 0.0002) and difference between HU in NP and EP in cases of RCC (P value < 0.00001) were found. Conclusion: Multiphase multislice computed tomography combined with CT angiography and CT urography have a major role in solid renal neoplastic masses’ diagnosis, characterization and differentiating benign and malignant tumors.
topic Multiphasic MDCT scan
Solid renal masses
RCC
url http://www.sciencedirect.com/science/article/pii/S0378603X14001661
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AT ahmedasmahmoud roleofmultiphasicmultidetectorcomputedtomographymdctinthediagnosisandstagingofsolidneoplasticrenalmasses
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