Sumin Kim, Gunha Hwang, Tae-Sun Hwang, H. Lee
2026.1.1Journal of Veterinary Science
tlooto Summary
In dogs, a 100 kVp protocol reduced radiation output and iodine dose while maintaining diagnostic image quality, supporting 100 kVp as a practical optimization strategy for clinical abdominal CT.
Abstract
Importance Lower peak kilovoltage (kVp) can reduce radiation dose and increase iodine conspicuity, but veterinary CT protocols integrating kVp reduction with iodine-dose reduction are not well defined. Objective To evaluate the effects of reduced kVp and reduced iodinated contrast volume on radiation dose and image quality in canine abdominal CT. Methods A phantom study (0%–10% iodine dilutions) at 120, 100, and 80 kVp quantified the relationship between iodine concentration and CT attenuation. Eight healthy Beagle dogs underwent multiphase abdominal CT at 120, 100, and 80 kVp (1-week intervals) with weight-based contrast volumes adjusted using phantom-derived slope ratios. Radiation output (CTDIvol, dose-length product) and quantitative image quality (attenuation, background noise, signal-to-noise ratio [SNR], contrast-to-noise ratio [CNR]) were assessed, along with blinded qualitative scoring by 2 readers. Results Compared with 120 kVp, CTDIvol decreased by 41% at 100 kVp and 74% at 80 kVp, with similar proportional decreases in dose-length product. Lower kVp increased iodine-related attenuation, permitting iodine-dose reductions (17% at 100 kVp; 34% at 80 kVp). Quantitative noise increased and SNR decreased at 80 kVp, particularly in delayed-phase images; qualitative noise scores were significantly worse at 80 kVp, whereas overall qualitative image quality did not differ across protocols. Conclusions and Relevance In dogs, a 100 kVp protocol reduced radiation output and iodine dose while maintaining diagnostic image quality, supporting 100 kVp as a practical optimization strategy for clinical abdominal CT.
Citation format
KIM, Sumin, et al. Effects of reduced kvp and contrast volume on dose and image quality in canine abdominal CT. Journal of Veterinary Science, 2026, 27(1): e10.