1. Kutikov, A, Fossett, LK, Ramchandani, P, et al. Incidence of benign pathologic findings at partial nephrectomy for solitary renal mass presumed to be renal cell carcinoma on preoperative imaging. Urology 2006;68:737–740.
Google Scholar |
Crossref |
Medline |
ISI2. Bhatt, S, MacLennan, G, Dogra, V. Renal pseudotumors. Am J Roentgenol 2007;188:1380–1387.
Google Scholar |
Crossref |
Medline3. Varma, PP . Prevalence of chronic kidney disease in India – where are we heading? Indian J Nephrol 2015;25:133–135.
Google Scholar |
Medline4. Wertman, R, Altun, E, Martin, DR, et al. Risk of nephrogenic systemic fibrosis: evaluation of gadolinium chelate contrast agents at four American universities. Radiology 2008;248:799–806.
Google Scholar |
Crossref |
Medline |
ISI5. Davenport, MS, Khalatbari, S, Cohan, RH, et al. Contrast material–induced nephrotoxicity and intravenous low-osmolality iodinated contrast material: risk stratification by using estimated glomerular filtration rate. Radiology 2013;268:719–728.
Google Scholar |
Crossref |
Medline |
ISI6. Sheth, S, Scatarige, JC, Horton, KM, et al. Current concepts in the diagnosis and management of renal cell carcinoma: role of multidetector CT and three-dimensional CT. Radiographics 2001;21:S237–S254.
Google Scholar |
Crossref |
Medline |
ISI7. Birnbaum, BA, Jacobs, JE, Ramchandani, P. Multiphasic renal CT: comparison of renal mass enhancement during the corticomedullary and nephrographic phases. Radiology 1996;200:753–758.
Google Scholar |
Crossref |
Medline |
ISI8. Cova, M, Squillaci, E, Stacul, F, et al. Diffusion-weighted MRI in the evaluation of renal lesions: preliminary results. Br J Radiol 2004;77:851–857.
Google Scholar |
Crossref |
Medline |
ISI9. Zhang, J, Tehrani, YM, Wang, L, et al. Renal masses: characterization with diffusion-weighted MR imaging--a preliminary experience. Radiology 2008;247:458–464.
Google Scholar |
Crossref |
Medline |
ISI10. Goyal, A, Sharma, R, Bhalla, AS, et al. Diffusion-weighted MRI in inflammatory renal lesions: all that glitters is not RCC! Eur Radiol 2013;23:272–279.
Google Scholar |
Crossref11. Goyal, A, Sharma, R, Bhalla, AS, et al. Diffusion-weighted MRI in renal cell carcinoma: a surrogate marker for predicting nuclear grade and histological subtype. Acta radiol 2012;53:349–358.
Google Scholar |
SAGE Journals12. Farivar-Mohseni, H, Perlmutter, AE, Wilson, S, et al. Renal cell carcinoma and end stage renal disease. J Urol 2006;175:2018–2020; discussion 2021.
Google Scholar |
Crossref |
Medline13. Katabathina, VS, Kota, G, Dasyam, AK, et al. Adult renal cystic disease: a genetic, biological, and developmental primer. Radiographics 2010;30:1509–1523.
Google Scholar |
Crossref |
Medline |
ISI14. Felson, B, Moskowitz, M. Renal pseudotumors: the regenerated nodule and other lumps, bumps, and dromedary humps. Am J Roentgenol Radium Ther Nucl Med 1969;107:720–729.
Google Scholar |
Crossref |
Medline15. Goyal, A, Sharma, R, Bhalla, AS, et al. Pseudotumours in chronic kidney disease: Can diffusion-weighted MRI rule out malignancy. Eur J Radiol 11/2013;82:1870–1876.
Google Scholar |
Crossref16. Kim, SY, Woo, S, Hwang, SI, et al. Usefulness of resistive index on spectral Doppler ultrasonography in the detection of renal cell carcinoma in patients with end-stage renal disease. Ultrasonography 2014;33:136–142.
Google Scholar |
Crossref |
Medline17. King, MC, Friedenberg, RM, Tena, LB. Normal renal parenchyma simulating tumor. Radiology 1968;91:217–222.
Google Scholar |
Crossref |
Medline18. Depner, TA, Ryan, KG, Yamauchi, H. Pseudotumor of the kidney: a sequel to regional glomerulonephritis. AJR Am J Roentgenol 1976;126:1197–1202.
Google Scholar |
Crossref |
Medline19. Singh, S, Mandal, A, Garg, S, et al. Pseudotumor in chronic renal failure: diagnostic relevance of radioisotope scan. Indian J Urol 2006;22:272.
Google Scholar |
Crossref20. Kobayashi, M, Nakano, K, Nukui, A, et al. Rare renal pseudotumor associated with chronic glomerulonephritis mimicking renal cell carcinoma. Urology 2008;72:461.e15–461.e17.
Google Scholar |
Crossref21. Kitamura, M, Miyanaga, T, Sato, Y, et al. A case of renal pseudotumor caused by pyelonephritis. Hinyokika Kiyo 1994;40:241–243.
Google Scholar |
Medline22. Lopez, FA . Renal pseudotumors. Am J Roentgenol 1970;109:172–184.
Google Scholar |
Crossref23. Alpers, CE . The kidney. In: Kumar, V, Abbas, AK, Fausto, N, et al., editors. Robbins and Cotran Pathologic Basis of Disease. 8th edn. Philadelphia, PA: Saunders Elsevier, 2010:905–969.
Google Scholar |
Crossref24. Nadasdy, T, Sedmak, D. Acute and chronic tubulointerstitial nephritis. In: Jennette, JC, Olson, JL, Schwartz, MM, et al., editors. Heptinstall’s Pathology of the Kidney. 6th edn. Philadelphia, PA: Lippincott Williams & Wilkins, 2007:1084–1137.
Google Scholar25. Rumack, CMSRW, Charboneau, JW. Diagnostic ultrasound. St Louis, MO: Elsevier Health Sciences, 2005.
Google Scholar26. Mazziotti, S, Zimbaro, F, Pandolfo, A, et al. Usefulness of contrast-enhanced ultrasonography in the diagnosis of renal pseudotumors. Abdom Imaging 2010;35:241–245.
Google Scholar |
Crossref |
Medline27. Spiesecke, P, Fischer, T, Maxeiner, A, et al. Contrast-enhanced ultrasound (CEUS) reliably rules out neoplasm in developmental renal pseudotumor. Acta Radiol 2021;62:821–829.
Google Scholar28. Tamai, H, Takiguchi, Y, Oka, M, et al. Contrast-enhanced ultrasonography in the diagnosis of solid renal tumors. J Ultrasound Med 2005;24:1635–1640.
Google Scholar |
Crossref |
Medline |
ISI29. Harvey, CJ, Alsafi, A, Kuzmich, S, et al. Role of US contrast agents in the assessment of indeterminate solid and cystic lesions in native and transplant kidneys. Radiographics 2015;35:1419–1430.
Google Scholar |
Crossref |
Medline |
ISI30. Ascenti, G, Gaeta, M, Magno, C, et al. Contrast-enhanced second-harmonic sonography in the detection of pseudocapsule in renal cell carcinoma. AJR Am J Roentgenol 2004;182:1525–1530.
Google Scholar |
Crossref |
Medline |
ISI31. Haendl, T, Strobel, D, Legal, W, et al. Renal cell cancer does not show a typical perfusion pattern in contrast-enhanced ultrasound. Ultraschall Med 2009;30:58–63.
Google Scholar |
Crossref |
Medline32. Israel, GM, Bosniak, MA. Pitfalls in renal mass evaluation and how to avoid them. Radiographics 2008;28:1325–1338.
Google Scholar |
Crossref |
Medline |
ISI33. Macari, M, Bosniak, MA. Delayed CT to evaluate renal masses incidentally discovered at contrast-enhanced CT: demonstration of vascularity with deenhancement. Radiology 1999;213:674–680.
Google Scholar |
Crossref |
Medline34. Kang, SK, Zhang, A, Pandharipande, PV, et al. DWI for renal mass characterization: systematic review and meta-analysis of diagnostic test performance. Am J Roentgenol 2015;205:317–324.
Google Scholar |
Crossref |
Medline35. Taouli, B, Thakur, RK, Mannelli, L, et al. Renal lesions: characterization with diffusion-weighted imaging versus contrast-enhanced MR imaging. Radiology 2009;251:398–407.
Google Scholar |
Crossref |
Medline |
ISI36. Sandrasegaran, K, Sundaram, CP, Ramaswamy, R, et al. Usefulness of diffusion-weighted imaging in the evaluation of renal masses. AJR Am J Roentgenol 2010;194:438–445.
Google Scholar |
Crossref |
Medline |
ISI37. Goyal, A, Sharma, R, Bhalla, AS, et al. Comparison of MDCT, MRI and MRI with diffusion-weighted imaging in evaluation of focal renal lesions: The defender, challenger, and winner! Indian J Radiol Imaging 2018;28:27–36.
Google Scholar |
Crossref38. Thoeny, HC, De Keyzer, F, Oyen, RH, et al. Diffusion-weighted MR imaging of kidneys in healthy volunteers and patients with parenchymal diseases: initial experience. Radiology 2005;235:911–917.
Google Scholar |
Crossref |
Medline |
ISI39. Xu, X, Fang, W, Ling, H, et al. Diffusion-weighted MR imaging of kidneys in patients with chronic kidney disease: initial study. Eur Radiol 2010;20:978–983.
Google Scholar |
Crossref |
Medline40. Goyal A, Sharma R, Bhalla AS, et al. Diffusion-weighted MRI in assessment of renal dysfunction. Indian J Radiol Imaging 2012;22:155–159.
Google Scholar |
Crossref41. Visconti, L, Cernaro, V, Ricciardi, CA, et al. Renal biopsy: still a landmark for the nephrologist. World J Nephrol 2016;5:321–327.
Google Scholar |
Crossref |
Medline42. Eiro, M, Katoh, T, Watanabe, T. Risk factors for bleeding complications in percutaneous renal biopsy. Clin Exp Nephrol 2005;9:40–45.
Google Scholar |
Crossref |
Medline
留言 (0)