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Updated: Feb 3, 2026

Co-analysis of Brain Structure and Function using fMRI and Diffusion-weighted Imaging
Published on: November 8, 2012
Dependence of apparent diffusion coefficient measurement on diffusion gradient direction and spatial position - A
Luca Fedeli1, Giacomo Belli2, Antonio Ciccarone3
1Università degli Studi di Firenze, Firenze, Italy.
Purpose:
To propose an MRI quality assurance procedure that can be used for routine controls and multi-centre comparison of different MR-scanners for quantitative diffusion-weighted imaging (DWI).
Materials And Methods:
44 MR-scanners with different field strengths (1 T, 1.5 T and 3 T) were included in the study. DWI acquisitions (b-value range 0-1000 s/mm2), with three different orthogonal diffusion gradient directions, were performed for each MR-scanner. All DWI acquisitions were performed by using a standard spherical plastic doped water phantom. Phantom solution ADC value and its dependence with temperature was measured using a DOSY sequence on a 600 MHz NMR spectrometer. Apparent diffusion coefficient (ADC) along each diffusion gradient direction and mean ADC were estimated, both at magnet isocentre and in six different position 50 mm away from isocentre, along positive and negative AP, RL and HF directions.
Results:
A good agreement was found between the nominal and measured mean ADC at isocentre: more than 90% of mean ADC measurements were within 5% from the nominal value, and the highest deviation was 11.3%. Away from isocentre, the effect of the diffusion gradient direction on ADC estimation was larger than 5% in 47% of included scanners and a spatial non uniformity larger than 5% was reported in 13% of centres.
Conclusion:
ADC accuracy and spatial uniformity can vary appreciably depending on MR scanner model, sequence implementation (i.e. gradient diffusion direction) and hardware characteristics. The DWI quality assurance protocol proposed in this study can be employed in order to assess the accuracy and spatial uniformity of estimated ADC values, in single- as well as multi-centre studies.
Insights
A new MRI quality assurance procedure was developed for quantitative diffusion-weighted imaging (DWI). This method assesses apparent diffusion coefficient (ADC) accuracy and uniformity across scanners, crucial for multi-centre studies.
Area of Science:
- Medical Imaging
- Radiology
- Physics
Background:
- Quantitative diffusion-weighted imaging (DWI) is vital for accurate medical diagnoses.
- Standardized quality assurance (QA) is needed for multi-centre DWI studies.
- Variations in MR scanner hardware and software can affect DWI data.
Purpose of the Study:
- To propose a novel MRI quality assurance (QA) procedure.
- To enable routine controls and multi-centre comparisons of MR scanners for quantitative DWI.
- To assess the accuracy and spatial uniformity of apparent diffusion coefficient (ADC) measurements.
Main Methods:
- 44 MR scanners with varying field strengths (1T, 1.5T, 3T) were evaluated.
- Standardized DWI acquisitions using a doped water phantom were performed.
- Apparent diffusion coefficient (ADC) was measured at isocenter and off-center positions.
Main Results:
- Over 90% of isocenter ADC measurements agreed within 5% of nominal values.
- Off-center ADC estimation showed >5% deviation in 47% of scanners due to gradient direction.
- Spatial non-uniformity >5% was observed in 13% of centers.
Conclusions:
- MR scanner model, sequence implementation, and hardware impact ADC accuracy and uniformity.
- The proposed DWI QA protocol effectively assesses ADC accuracy and spatial uniformity.
- This protocol is suitable for both single- and multi-centre DWI studies.
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