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Small animal simultaneous PET/MRI: Initial experiences in a 9.4 T microMRI

  • Sri Harsha Maramraju
  • , S. David Smith
  • , Sachin S. Junnarkar
  • , Daniela Schulz
  • , Sean Stoll
  • , Bosky Ravindranath
  • , Martin L. Purschke
  • , Sergio Rescia
  • , Sudeepti Southekal
  • , Jean François Pratte
  • , Paul Vaska
  • , Craig L. Woody
  • , David J. Schlyer
  • Stony Brook University
  • Brookhaven National Laboratory
  • Brigham and Women’s Hospital
  • Université de Sherbrooke

Research output: Contribution to journalArticlepeer-review

95 Scopus citations

Abstract

We developed a non-magnetic positron-emission tomography (PET) device based on the rat conscious animal PET that operates in a small-animal magnetic resonance imaging (MRI) scanner, thereby enabling us to carry out simultaneous PET/MRI studies. The PET detector comprises 12 detector blocks, each being a 4 × 8 array of lutetium oxyorthosilicate crystals (2.22 × 2.22 × 5 mm3) coupled to a matching non-magnetic avalanche photodiode array. The detector blocks, housed in a plastic case, form a 38 mm inner diameter ring with an 18 mm axial extent. Custom-built MRI coils fit inside the positron-emission tomography (PET) device, operating in transceiver mode. The PET insert is integrated with a Bruker 9.4 T 210 mm clear-bore diameter MRI scanner. We acquired simultaneous PET/MR images of phantoms, of in vivo rat brain, and of cardiac-gated mouse heart using [11C]raclopride and 2-deoxy-2-[18F]fluoro-d-glucose PET radiotracers. There was minor interference between the PET electronics and the MRI during simultaneous operation, and small effects on the signal-to-noise ratio in the MR images in the presence of the PET, but no noticeable visual artifacts. Gradient echo and high-duty-cycle spin echo radio frequency (RF) pulses resulted in a 7% and a 28% loss in PET counts, respectively, due to high PET counts during the RF pulses that had to be gated out. The calibration of the activity concentration of PET data during MR pulsing is reproducible within less than 6%. Our initial results demonstrate the feasibility of performing simultaneous PET and MRI studies in adult rats and mice using the same PET insert in a small-bore 9.4 T MRI.

Original languageEnglish
Pages (from-to)2459-2480
Number of pages22
JournalPhysics in Medicine and Biology
Volume56
Issue number8
DOIs
StatePublished - Apr 21 2011

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