Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

to determine (1) a target Hounsfield unit (HU) for portal venous phase iodinated contrast media enhanced abdominal CT scans, (2) an equation for a personalized total contrast agent volume, and (3) the best/most appropriate time between injection and plateau/peak in HU enhancement. from an original dataset of 5,000 cases, a weight representative subset of 370 cases was sampled for detailed HU measurements. An additional 90 cases were used for visual grading to define the minimal HU required for diagnostic quality, which led to the proposed target HU. This study uses the fact that in a first approach, the injected contrast agent volume and HU correlate linearly. Based on the injected contrast agent volumes and HU measurements in the patient scans, it was then calculated which (ideal) volume would have reached the target value. The ideal volumes and patient data (weight, height, heart rate, age, and gender) were correlated by means of a regression analysis, to determine a new patient-specific contrast volume calculation equation. The best scan delay time was derived from the start of the injection to the HU enhancement plateau/peak evaluated from manually triggered venous phase scans. The target HU value was 125. This can be achieved with a personalized contrast agent volume (ml), equal to - 108.5 + ∗ + 0.40 ∗ + 0.61 ∗ . The time delay between injection and HU plateau/peak was found to be, on average, 102 s. this study proposes a comprehensive protocol for contrast enhanced venous phase scans, including a target HU, a personalized contrast volume, and a scan delay.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12164761PMC
http://dx.doi.org/10.5334/jbsr.3906DOI Listing

Publication Analysis

Top Keywords

contrast agent
20
personalized contrast
12
venous phase
12
agent volume
12
agent volumes
8
contrast
8
injection plateau/peak
8
injected contrast
8
contrast volume
8
scan delay
8

Similar Publications

In ultrasound imaging, propagation of an acoustic wavefront through heterogeneous media causes phase aberrations that degrade the coherence of the reflected wavefront, leading to reduced image resolution and contrast. Adaptive imaging techniques attempt to correct this phase aberration and restore coherence, leading to improved focusing of the image. We propose an autofocusing paradigm for aberration correction in ultrasound imaging by fitting an acoustic velocity field to pressure measurements, via optimization of the common midpoint phase error (CMPE), using a straight-ray wave propagation model for beamforming in diffusely scattering media.

View Article and Find Full Text PDF

Background: Stroke, frequently associated with carotid artery disease, is evaluated using carotid computed tomography angiography (CTA). Dual-energy CTA (DE-CTA) enhances imaging quality but presents challenges in maintaining high image clarity with low-dose scans.

Objectives: To compare the image quality of 50 keV virtual monoenergetic images (VMI) generated using Deep Learning Image Reconstruction (DLIR) and Adaptive Statistical Iterative Reconstruction-V (ASIR-V) algorithms under a triple-low scanning protocol in carotid CTA.

View Article and Find Full Text PDF

Myocardial fibrosis, a key pathological feature of hypertensive heart disease (HHD), remains diagnostically challenging due to limited clinical tools. In this study, a FAPI-targeted uptake mechanism previously reported by our group, originally developed for tumor imaging, is extended to the detection of myocardial fibrosis in HHD using [F]F-NOTA-FAPI-MB. The diagnostic performance of this tracer is compared with those of [F]F-FDG, [F]F-FAPI-42, and [F]F-NOTA-FAP2286, and its potential for fluorescence imaging is also evaluated.

View Article and Find Full Text PDF

Background MRI-derived arrhythmogenic substrate, including late gadolinium enhancement (LGE) and extracellular volume fraction (ECV), is indicative of sudden cardiac death (SCD) risk in nonischemic dilated cardiomyopathy (DCM). The relative prognostic value of LGE and ECV remains unclear. Purpose To evaluate the performance of LGE and T1 mapping in predicting SCD in patients with DCM and to explore clinical implementation.

View Article and Find Full Text PDF

Chimeric antigen receptor T-cell (CAR-T) therapies have demonstrated clinical efficacy in treating haematological malignancies, resulting in multiple regulatory approvals. However, there is a need for robust manufacturing platforms and the use of GMP-aligned reagents to meet the clinical and commercial demands. This study investigates the impact of serum/xeno-free medium (SXFM) and cytokine supplementation on CAR-T cell production in static and agitated culture systems, using 24-well plate G-Rex vessels and 500 mL stirred tank bioreactors (STRs), respectively.

View Article and Find Full Text PDF