The additional utility of apparent diffusion coefficient values of clear-cell renal cell carcinoma for predicting metastasis during clinical staging

Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC) is significantly lower than that of low-grade clear-cell RCC. Purpose To investigate the utility of ADC values of clear-cell RCC...

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Published inActa Radiologica Open Vol. 6; no. 1; p. 2058460116687174
Main Authors Yoshida, Rika, Yoshizako, Takeshi, Hisatoshi, Araki, Mori, Hiroshi, Tamaki, Yukihisa, Ishikawa, Noriyoshi, Kitagaki, Hajime
Format Journal Article
LanguageEnglish
Published London, England SAGE Publications 01.01.2017
Sage Publications Ltd
SAGE Publishing
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ISSN2058-4601
2058-4601
DOI10.1177/2058460116687174

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Abstract Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC) is significantly lower than that of low-grade clear-cell RCC. Purpose To investigate the utility of ADC values of clear-cell RCC by comparing ADC values between groups with T1a RCC (tumor size ≤ 4 cm) without metastasis and the group with metastasis. Material and Methods A retrospective review was performed on 51 patients with 51 RCCs who underwent 1.5 T magnetic resonance imaging (MRI) for evaluating a renal mass confirmed pathologically to be clear-cell RCC between January 2010 and August 2014. We compared ADC values between group A (T1a RCC without metastasis, T1aN0M0) and group B (RCC with metastasis) using the Mann–Whitney U test. Results The patients were divided into group A (n = 30; tumor size: median, 24.5 mm; range, 8–40 mm; ADC value [×10−3 mm2/s]: median, 1.71; range, 1.23–2.24) and group B (n = 21; tumor size: median, 87.5 mm; range, 18–150 mm; ADC value [×10−3 mm2/s]: median, 1.35; range, 0.91–1.94). The ADC value differed significantly between the two groups. The area under the receiver operating characteristic curve was 0.869. Using the optimum cutoff value (1.552 × 10−3 mm2/s), ADC had a sensitivity of 80.0% and specificity of 81.0%. Conclusion There was a statistically significant difference in the ADC between group A (T1a clear-cell RCC without distant metastasis) and group B (advanced clear-cell RCC with lymph node metastasis or distant metastasis).
AbstractList The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC) is significantly lower than that of low-grade clear-cell RCC. To investigate the utility of ADC values of clear-cell RCC by comparing ADC values between groups with T1a RCC (tumor size ≤ 4 cm) without metastasis and the group with metastasis. A retrospective review was performed on 51 patients with 51 RCCs who underwent 1.5 T magnetic resonance imaging (MRI) for evaluating a renal mass confirmed pathologically to be clear-cell RCC between January 2010 and August 2014. We compared ADC values between group A (T1a RCC without metastasis, T1aN0M0) and group B (RCC with metastasis) using the Mann-Whitney test. The patients were divided into group A (n = 30; tumor size: median, 24.5 mm; range, 8-40 mm; ADC value [×10  mm /s]: median, 1.71; range, 1.23-2.24) and group B (n = 21; tumor size: median, 87.5 mm; range, 18-150 mm; ADC value [×10  mm /s]: median, 1.35; range, 0.91-1.94). The ADC value differed significantly between the two groups. The area under the receiver operating characteristic curve was 0.869. Using the optimum cutoff value (1.552 × 10  mm /s), ADC had a sensitivity of 80.0% and specificity of 81.0%. There was a statistically significant difference in the ADC between group A (T1a clear-cell RCC without distant metastasis) and group B (advanced clear-cell RCC with lymph node metastasis or distant metastasis).
Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC) is significantly lower than that of low-grade clear-cell RCC. Purpose To investigate the utility of ADC values of clear-cell RCC by comparing ADC values between groups with T1a RCC (tumor size ≤ 4 cm) without metastasis and the group with metastasis. Material and Methods A retrospective review was performed on 51 patients with 51 RCCs who underwent 1.5 T magnetic resonance imaging (MRI) for evaluating a renal mass confirmed pathologically to be clear-cell RCC between January 2010 and August 2014. We compared ADC values between group A (T1a RCC without metastasis, T1aN0M0) and group B (RCC with metastasis) using the Mann–Whitney U test. Results The patients were divided into group A (n = 30; tumor size: median, 24.5 mm; range, 8–40 mm; ADC value [×10−3 mm2/s]: median, 1.71; range, 1.23–2.24) and group B (n = 21; tumor size: median, 87.5 mm; range, 18–150 mm; ADC value [×10−3 mm2/s]: median, 1.35; range, 0.91–1.94). The ADC value differed significantly between the two groups. The area under the receiver operating characteristic curve was 0.869. Using the optimum cutoff value (1.552 × 10−3 mm2/s), ADC had a sensitivity of 80.0% and specificity of 81.0%. Conclusion There was a statistically significant difference in the ADC between group A (T1a clear-cell RCC without distant metastasis) and group B (advanced clear-cell RCC with lymph node metastasis or distant metastasis).
Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC) is significantly lower than that of low-grade clear-cell RCC. Purpose To investigate the utility of ADC values of clear-cell RCC by comparing ADC values between groups with T1a RCC (tumor size ≤ 4 cm) without metastasis and the group with metastasis. Material and Methods A retrospective review was performed on 51 patients with 51 RCCs who underwent 1.5 T magnetic resonance imaging (MRI) for evaluating a renal mass confirmed pathologically to be clear-cell RCC between January 2010 and August 2014. We compared ADC values between group A (T1a RCC without metastasis, T1aN0M0) and group B (RCC with metastasis) using the Mann–Whitney U test. Results The patients were divided into group A (n = 30; tumor size: median, 24.5 mm; range, 8–40 mm; ADC value [×10−3 mm2/s]: median, 1.71; range, 1.23–2.24) and group B (n = 21; tumor size: median, 87.5 mm; range, 18–150 mm; ADC value [×10−3 mm2/s]: median, 1.35; range, 0.91–1.94). The ADC value differed significantly between the two groups. The area under the receiver operating characteristic curve was 0.869. Using the optimum cutoff value (1.552 × 10−3 mm2/s), ADC had a sensitivity of 80.0% and specificity of 81.0%. Conclusion There was a statistically significant difference in the ADC between group A (T1a clear-cell RCC without distant metastasis) and group B (advanced clear-cell RCC with lymph node metastasis or distant metastasis).
Author Yukihisa Tamaki
Araki Hisatoshi
Hajime Kitagaki
Takeshi Yoshizako
Hiroshi Mori
Noriyoshi Ishikawa
Rika Yoshida
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Keywords ADC value
Clear-cell renal cell carcinoma (RCC)
diffusion-weighted imaging (DWI)
1.5 T magnetic resonance imaging (MRI)
Language English
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Snippet Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell...
The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell carcinoma (RCC)...
Background The apparent diffusion coefficient (ADC) value is known to be an indicator of tumor activity. The ADC value of high-grade clear-cell renal cell...
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StartPage 2058460116687174
SubjectTerms Clear cell-type renal cell carcinoma
Diffusion coefficient
Kidney cancer
Lymph nodes
Magnetic resonance imaging
Medical physics. Medical radiology. Nuclear medicine
Metastases
Metastasis
R895-920
Statistical analysis
Tumors
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Title The additional utility of apparent diffusion coefficient values of clear-cell renal cell carcinoma for predicting metastasis during clinical staging
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Volume 6
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