Literature DB >> 25494297

Low-Iodine-Load and Low-Tube-Voltage CT Angiographic Imaging of the Kidney by Using Bolus Tracking with Saline Flushing.

Masayuki Kanematsu1, Satoshi Goshima, Nobuyuki Kawai, Hiroshi Kondo, Toshiharu Miyoshi, Haruo Watanabe, Yoshifumi Noda, Yukichi Tanahashi, Kyongtae T Bae.   

Abstract

PURPOSE: To prospectively determine the feasibility of low-iodine-load and low-tube-voltage computed tomographic (CT) angiographic imaging of the kidney and to evaluate the opacification and image quality compared with moderate-iodine-load and high-iodine-load techniques.
MATERIALS AND METHODS: Institutional review board approval and written informed consent was obtained. One hundred thirteen consecutive patients randomly underwent three protocols for dual-phase renal CT angiographic imaging: high-iodine-load (600 mg iodine per kilogram of body weight at 120 kVp); moderate-iodine-load (400 mg iodine per kilogram of body weight at 80 kVp); and low-iodine-load (contrast agent injection initially prepared at 400 mg iodine per kilogram of body weight but stopped immediately after bolus-tracking trigger at 80 kVp) scanning. CT numbers of vessels and kidneys were measured. CT numbers and signal-to-noise ratio (SNR) were compared with one-way analysis of variance and posthoc Tukey-Kramer test and depiction of vessels and image noise, with Kruskal-Wallis test and pair-wise Mann-Whitney test with Bonferroni correction.
RESULTS: Mean iodine weight administered was significantly reduced in order of low- (16.4 g), moderate- (23.5 g), and high-iodine-load (33.7 g) protocols (P < .001). Mean CT numbers of abdominal aorta, renal artery, and renal cortex in first phase were significantly lower with high-iodine-load protocol (308, 274, and 132 HU, respectively) than with moderate- (347, 334, and 156 HU, respectively; P = .001-.006) or low-iodine-load (362, 316, and 161 HU, respectively; P = .001-.003) protocol. Mean CT number of renal vein in second phase was significantly lower with low-iodine-load protocol (223 HU) than with moderate- (299 HU; P < .001) or high-iodine-load (258 HU; P = .020). Mean SNR of renal medulla in second phase was significantly lower (P = .019) with moderate-iodine-load protocol (mean SNR, 7.2) than with high-iodine-load protocol (mean SNR, 10.0). No significant difference in image quality grades was found between high-iodine-load (mean grade, 2.6-2.9), moderate-iodine-load (mean grade, 2.6-3.0), and low-iodine-load (mean grade, 2.6-2.9) protocols (P = .018-.31).
CONCLUSION: Combined application of low-iodine-load, bolus tracking with saline flushing, and low-tube-voltage scanning is feasible and resulted in substantial reduction of iodine dose for renal CT angiographic imaging without compromising image quality. RSNA, 2014

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Year:  2014        PMID: 25494297     DOI: 10.1148/radiol.14141457

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  5 in total

Review 1.  Low radiation dose in computed tomography: the role of iodine.

Authors:  Andrik J Aschoff; Carlo Catalano; Miles A Kirchin; Martin Krix; Thomas Albrecht
Journal:  Br J Radiol       Date:  2017-05-04       Impact factor: 3.039

2.  Imaging Tool for Predicting Renal Clear Cell Carcinoma Fuhrman Grade: Comparing R.E.N.A.L. Nephrometry Score and CT Texture Analysis.

Authors:  Ran Sun; Sheng Zhao; Huijie Jiang; Hao Jiang; Yanmei Dai; Chuzhen Zhang; Song Wang
Journal:  Biomed Res Int       Date:  2021-12-23       Impact factor: 3.411

3.  Validation of computed tomography angiography as a complementary test in the assessment of renal artery stenosis: a comparison with digital subtraction angiography.

Authors:  Anilawan S Fleury; Rachelle E Durand; Anne Marie Cahill; Xiaowei Zhu; Kevin E Meyers; Hansel J Otero
Journal:  Pediatr Radiol       Date:  2021-08-10

4.  Can iterative reconstruction algorithms replace tube loading compensation in low kVp hepatic CT? Subjective versus objective image quality.

Authors:  Fredrik Holmquist; Marcus Söderberg; Ulf Nyman; Tobias Fält; Roger Siemund; Mats Geijer
Journal:  Acta Radiol Open       Date:  2020-03-16

5.  Low kV Computed Tomography of Parenchymal Abdominal Organs-A Systematic Animal Study of Different Contrast Media Injection Protocols.

Authors:  Daniel Overhoff; Gregor Jost; Michael McDermott; Olaf Weber; Hubertus Pietsch; Stefan O Schoenberg; Ulrike Attenberger
Journal:  Tomography       Date:  2021-11-29
  5 in total

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