CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter.
J, L., D, K., S, K., I, Y., K, L., & H, Y. (2026). CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter.. Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radio. https://doi.org/10.1111/vru.70209
J L, D K, S K, I Y, K L, H Y. CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter.. Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radio. 2026; doi: 10.1111/vru.70209
J L, D K, S K, et al. CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter.[J]. Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radio. 2026. DOI: 10.1111/vru.70209.
@article{j2026,
author = {Lee J and Kwon D and Kim S and Yoon I and Lee K and Yoon H},
title = {CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter.},
journal = {Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radio},
year = {2026},
doi = {10.1111/vru.70209},
note = {PMID: 42499198},
}
TY - JOUR AU - Lee J AU - Kwon D AU - Kim S AU - Yoon I AU - Lee K AU - Yoon H TI - CT-Based Reference Ranges for Canine Pyloric Thickness: Influence of Body Size and Normalization With Aortic Diameter. T2 - Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radio PY - 2026 DO - 10.1111/vru.70209 AN - PMID:42499198 ER -
Pyloric wall thickness reflects pyloric pathology. Prior related studies included small samples and did not consistently measure perpendicular to the pyloric axis. This multicenter retrospective study established body-weight (BW)-specific computed tomography (CT) reference ranges for pyloric thickness, measured in both cross-sectional and transverse planes, in clinically normal dogs and evaluated relationships with BW, age, breed, and sex. Multiplanar reconstruction (MPR) was used to obtain a true cross-sectional plane, and the transverse plane was used for practicality. CT images of 229 dogs were analyzed to measure pyloric thickness and calculate the pyloric thickness-to-aortic diameter (P/Ao) ratio. Consistent differences were observed between planes. Pyloric thickness showed a positive correlation with BW, with significant differences across BW groups. No significant association was found with age, nor based on neutering status, nor among breeds with similar BW. A minor difference between sexes was observed only in the transverse plane, likely reflecting oblique slicing. In the cross-sectional plane, mean (±standard deviation [SD]) pyloric thickness was 3.61 ± 0.76, 4.21 ± 0.87, 5.10 ± 1.14, and 6.93 ± 1.18 mm for dogs weighing <5, 5-10, 10-20, and ≥20 kg, respectively. In the transverse plane, the corresponding values were 4.03 ± 0.82, 4.80 ± 1.03, 6.02 ± 1.40, and 7.75 ± 1.33 mm. P/Ao ratio was independent of BW, with means (±SD) of 0.74 ± 0.18 and 0.83 ± 0.20 in the cross-sectional and transverse planes, respectively. Therefore, BW-specific reference ranges may be used routinely, whereas the BW-independent P/Ao ratio may facilitate assessment when BW is unavailable.