| Literature DB >> 30498885 |
Dobromila Baranska1, Katarzyna Matera2, Michal Podgorski1, Magdalena Gorska-Chrzastek3, Karolina Krajewska4, Joanna Trelinska4, Piotr Grzelak1.
Abstract
OBJECTIVE: The aim of the study was to evaluate feasibility of diffusion-weighted whole-body imaging with background body signal suppression (DWIBS) method in diagnosing Hodgkin lymphoma in pediatric patients and to compare it with 18F-FDG PET/CT as a gold standard.Entities:
Keywords: Apparent diffusion coefficient; Diffusion-weighted magnetic resonance imaging; Hodgkin lymphoma; Positron emission tomography/computed tomography; Standard uptake value
Mesh:
Substances:
Year: 2018 PMID: 30498885 PMCID: PMC6525117 DOI: 10.1007/s10334-018-0726-4
Source DB: PubMed Journal: MAGMA ISSN: 0968-5243 Impact factor: 2.310
WB MRI sequence protocol parameters
| Parameter | T2W_TSE | DWIBS | T1W_TSE | T2W_STIR |
|---|---|---|---|---|
| Echo | SE fast imaging mode TSE Multishot | IR fast imaging mode EPI Single-shot double b-factors | IR fast imaging mode EPI Multishot | IR fast imaging mode TSE Single-shot |
| TR (ms) | 12021/13023* | 6260/6335* | 11281/11986* | 5.4 |
| TE (ms) | 100 | 65/67* | 70 | 1.72/3.6 |
| Flip angle (°) | 90 | No | No | 15 |
| NSA | 2 | 4 | 1 | 1 |
| Slice thickness (mm) | 3 | 5 | 5 | 2.2 |
| Slice gap (mm) | 0.8 | 1 | 0.7 | 0 |
| WFS | Maximum | Minimum | Maximum | Default |
| SENSE | Yes | Yes | Yes | Yes |
| Max b factor | No | 800 | No | No |
| Breath hold | No | No | Expiration | Expiration |
| Phase encoding | RL | AP | RL | RL |
| Estimated time (mm:ss) | 04:13/05:00* | 03:02/03:04* | 05:24 | 00:34/00:36* |
| Number of sequence used | 2 × (chest, head and neck) | 4 × (head, neck, chest, abdomen) | 1 × chest | 4 × (head, neck, chest, abdomen) |
Patient age: up to 10
* Above 11 years old
Fig. 1Images of a 14-year-old girl with Hodgkin lymphoma, showing the same enlarged cervical group of lymph nodes: a WB MRI, axial of b0 DWIBS image hyperintensity restricted diffusion (green star), b WB MRI, axial of T2-weighted image with isointensity region (yellow star); c WB MRI, coronal MIP reconstruction of head and neck STIR image with high signal intensity region (little green cross on green, horizontal line); d WB MRI, axial of b800 DWIBS image subtraction with restricted diffusion region (green star); e WB MRI, axial of ADC map from DWIBS images subtraction with hypointensity restricted diffusion region (yellow star) and ADC scale; f 18F-FDG PET/CT axial image showing 18F-FDG uptake (black star) of cervical region and SUV scale
Fig. 2Correlations between ADCmean and SUVmax variables
Fig. 3Scatter diagram with regression line occurs lymph node area (S) and ADCmean value dependence
The counts of the identified areas in the two methods of PET/CT and DWIBS, including measured coefficients of SUV and ADC, respectively
| Localization/region | DWIBS | ADC × 10−3 (mm2/s) (SD) | PET/CT | SUV (unitless) (SD) |
|---|---|---|---|---|
| Cervical | 37 | 0.74 (0.14) | 30 | 10.01 (5.49) |
| Palatine tonsil | 22 | 0.78 (0.14) | 22 | 7.21 (2.56) |
| Axilla | 20 | 0.82 (0.09) | 12 | 6.62 (2.64) |
| Supraclavicular | 18 | 0.81 (0.21) | 15 | 9.64 (4.39) |
| Subclavicular | 18 | 0.83 (0.26) | 15 | 8.27 (4.15) |
| Mediastinum | 16 | 1.00 (0.27) | 14 | 10.14 (4.00) |
| Submandibular | 13 | 0.84 (0.16) | 7 | 6.12 (6.23) |
| Paratracheal | 7 | 0.86 (0.04) | 7 | 11.54 (5.20) |
| Paraaortic | 6 | 0.74 (0.17) | 6 | 10.65 (4.14) |
| Maxillary | 4 | 0.79 (0.04) | 2 | 3.18 (0.47) |
| Parotid | 2 | 0.86 (0.04) | 2 | 3.46 (0.07) |
| Visceral | 2 | 0.90 (0.09) | 1 | 13.07 |
| Inguinal | 2 | 0.80 (0.11) | 1 | 1.95 |
| Total | 167 | 134 |