## Abstract A method is presented for the acquisition and analysis of dynamic contrast‐enhanced (DCE) MRI data, focused on the characterization of tumors in humans. Gadolinium (Gd) contrast was administered by bolus injection, and its effect was monitored in time by fast T1‐weighted MRI. A simple a
Method for the quantitative assessment of contrast agent uptake in dynamic contrast-enhanced MRI
✍ Scribed by Karl Hittmair; Gregor Gomiscek; Karl Langenberger; Michael Recht; Herwig Imhof; Josef Kramer
- Publisher
- John Wiley and Sons
- Year
- 1994
- Tongue
- English
- Weight
- 499 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0740-3194
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
In previous papers relative signal intensity increase was used as a quantitative assessment parameter for contrast uptake in contrastenhanced MRI. However, relative signal intensity increase does not only reflect contrast uptake but depends also on tissue parameters (native T~1~ relaxation time) and sequence parameters (repetition time and flip angle); thus, the contrast uptake cannot be assessed accurately using relative signal intensity increase. Based on an analysis of the contrast behavior of spoiled gradient echo sequences, a method is described in this paper that overcomes the limitations of relative signal intensity increase measurement. A parameter, called “enhancement factor” (EF) is introduced that approximates differential T~1~ relaxation rate. The enhancement factor scales linearly with contrast uptake and is independent of tissue and sequence parameters. The additional measurement time involved in determining the enhancement factor is less than 1 min and computation is straightforward. The practicality of the new method was confirmed by phantom measurements using T~1~‐weighted and proton density‐weighted spoiled gradient echo sequences (FLASH‐2D). Enhancing tissues were simulated by water phantoms doped with increasing concentrations of Gd‐DTPA.
📜 SIMILAR VOLUMES
## Abstract ## Purpose To investigate the reproducibility of dynamic contrast‐enhanced MRI (DCE‐MRI) in colorectal liver metastases using a vascular normalization function (VNF) from pixels in the spleen and to compare this with a technique using an arterial input function (AIF) from pixels in the
## Abstract ## Purpose To investigate the effectiveness of a polydisulfide‐based biodegradable macromolecular contrast agent, (Gd‐DTPA)‐cystamine copolymers (GDCC), in assessing the efficacy of indocyanine green‐enhanced photothermal cancer therapy using dynamic contrast‐enhanced magnetic resonanc
## Abstract The accuracy and precision of two major approaches for analyzing dynamic MRI data from the first passage of a Gd‐DTPA contrast bolus are examined, using a Monte Carlo simulation. Method 1 fits the contrast concentration curve of the first pass to a two‐compartment kinetic model to deter
## Abstract ## Purpose To compare Gadomer, a macromolecular magnetic resonance (MR) contrast agent, and gadolinium diethylenetriamine pentaacetic acid (Gd‐DTPA) for quantifying angiogenesis in tissue‐engineered bladder constructs. ## Materials and Methods Constructs enhanced with vascular endoth