Abstract
We previously integrated a magnetic resonance-(MR-) compatible small-animal positron emission tomograph (PET) in a Bruker 9.4 T microMRI system to obtain simultaneous PET/MR images of a rat's brain and of a gated mouse-heart. To minimize electromagnetic interactions in our MR-PET system, viz., the effect of radiofrequency (RF) pulses on the PET, we tested our modular front-end PET electronics with various shield configurations, including a solid aluminum shield and one of thin segmented layers of copper. We noted that the gradient-echo RF pulses did not affect PET data when the PET electronics were shielded with either the aluminum-or the segmented copper-shields. However, there were spurious counts in the PET data resulting from high-intensity fast spin-echo RF pulses. Compared to the unshielded condition, they were attenuated effectively by the aluminum shield (∼ 97%) and the segmented copper shield (∼90%). We noted a decline in the noise rates as a function of increasing PET energy-discriminator threshold. In addition, we observed a notable decrease in the signal-to-noise ratio in spin-echo MR images with the segmented copper shields in place; however, this did not substantially degrade the quality of the MR images we obtained. Our results demonstrate that by surrounding a compact PET scanner with thin layers of segmented copper shields and integrating it inside a 9.4 T MR system, we can mitigate the impact of the RF on PET, while acquiring good-quality MR images.
| Original language | English |
|---|---|
| Article number | 6289401 |
| Pages (from-to) | 1892-1899 |
| Number of pages | 8 |
| Journal | IEEE Transactions on Nuclear Science |
| Volume | 59 |
| Issue number | 5 PART 1 |
| DOIs | |
| State | Published - 2012 |
Keywords
- Electromagnetic interactions
- MR-PET
- PET/MRI
- magnetic resonance imaging (MRI)
- mutual interference
- positron emission tomography (PET)
- shielding
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