Related Experiment Video
Updated: Aug 13, 2026

High-Resolution Cardiac Positron Emission Tomography/Computed Tomography for Small Animals
Published on: December 16, 2022
Application of 50-keV virtual monochromatic imaging combined with a personalized contrast agent protocol in computed
Zhi-Wei Liu1,2,3, Xiao-Li Hu4, Chang-Wei Li1,2,3
1Department of Radiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Background:
Computed tomography pulmonary angiography (CTPA) is the preferred imaging modality for the diagnosis of pulmonary embolism (PE). Conventional fixed contrast agent protocols are associated with high contrast volume and severe superior vena cava (SVC) artifacts. This study aimed to evaluate the value of 50-keV virtual monochromatic imaging (VMI) combined with a body weight-adjusted personalized contrast agent protocol in reducing contrast load and optimizing image quality in CTPA.
Methods:
A total of 76 patients undergoing CTPA were randomly allocated to the control group (Group A; n=38) or the experimental group (Group B; n=38). Since this was a small-sample exploratory study on imaging technology, it was not registered on any official platform. Both groups were scanned with a tube voltage of 120-kVp and automatic tube current modulation. Patients in group A received a fixed contrast protocol (flow rate 4.0 mL/s; volume 40 mL) with 120-kVp reconstruction. Meanwhile, patients in Group B were subjected to a body weight-adjusted protocol with weights of 40-60 kg, 60-80 kg, and 80-100 kg, having a flow rate and volume of 2.3 mL/s and 13 mL, 2.6 mL/s and 15 mL, and 2.9 mL/s and 17 mL, respectively. For all weights, 50-keV VMI reconstruction was conducted. Objective and subjective image quality was compared between the groups.
Results:
All images were diagnostically acceptable. Group B had a significantly lower contrast dose (15.1±0.64 mL; 62.25% reduction) and flow rate (2.55±0.18 mL/s; 36.25% reduction) (both P values <0.05). Group B also demonstrated significantly higher computed tomography (CT) values in the right pulmonary artery [406.3±112.9 vs. 345.9±102.6 Hounsfield units (HU)], right upper lobe pulmonary artery (398.3±109.3 vs. 366.7±116.1 HU), and right lower lobe pulmonary artery (441.1±111.7 vs. 357.2±120.6 HU), as well as improved signal-to-noise ratio (SNR) in the right pulmonary artery (18.01±5.70 vs. 14.33±5.23), right upper lobe pulmonary artery (17.67±5.55 vs. 15.17±5.78), and right lower lobe pulmonary artery (19.55±5.66 vs. 14.81±6.10). Similar improvements were observed in contrast-to-noise ratio (CNR) values for the corresponding regions. No significant difference was observed in pulmonary artery visualization scores between the two groups (P>0.05), but Group B had higher SVC artifact scores and a lower number of artifacts (P<0.05).
Conclusions:
In CTPA examination, 50-keV VMI combined with a personalized contrast agent protocol can improve image quality while substantially reducing both the contrast dose and injection flow rate.
More Related Videos
09:32Time-Resolved, Dynamic Computed Tomography Angiography for Characterization of Aortic Endoleaks and Treatment Guidance via 2D-3D Fusion-Imaging
Published on: December 9, 2021
06:59Improved Registration of 3D CT Angiography with X-ray Fluoroscopy for Image Fusion During Transcatheter Aortic Valve Implantation
Published on: June 3, 2018
Related Concept Videos
Radiological Investigation III: Pulmonary Angiogram and PET Scan
Pulmonary Angiogram
A Pulmonary Angiogram is an invasive procedure involving injecting a contrast medium through a catheter threaded into the pulmonary artery or the right side of the heart to visualize the pulmonary vasculature. Computed Tomography (CT) scans have mainly replaced this...
Imaging Studies for Cardiovascular System V: CT
Computed Tomography
The technique was invented in the 1970s and is based on the principle that as X-rays pass through the body, they are absorbed or reflected at different levels. In the technique, a patient lies on a motorized platform while a computerized axial tomography (CAT) scanner rotates...
Imaging Studies III: Computed Tomography