In this 2-year AARA grant application, we propose to develop, construct, and evaluate a prototype SPECT/MRI system for simultaneous high-resolution molecular SPECT/MR imaging of small animals, with the potential of further developing into a human brain SPECT/MRI system. The main innovations include the use of state-of-the-art MR compatible cadmium zinc telluride (CZT) detector modules developed by our industrial partner, Gamma Medica-Ideas (GMI). The new CZT detectors have small sub-millimeter resolvable pixel size that allows acquisition of high-resolution SPECT projection data. A ring-type SPECT subunit will be developed based on five CZT based cameras each consists of a 5x5 array of 2.54cmx2.54cm CZT detector modules. The cameras will connected seamlessly to form a ring SPECT subunit that will fit inside a 3T Philips MRI system allowing high-resolution SPECT imaging for small animals as well as potential development of a human brain SPECT/MRI system, for simultaneous acquisition of SPECT/MRI data. A cylindrical collimator with an array of multi-pinhole apertures that surrounds the small animal will be developed and a birdcage RF coil will be designed and constructed that is attached to the inside surface of the collimator cylinder. Multi-pinhole images of the small animal are projected onto the contiguous detector surface. Also, shimming methods, quantitative multi-pinhole SPECT image reconstruction methods, optimized MR pulse sequences and image fusion methods will be developed for artifact-free co-registered SPECT/MR images. The Johns Hopkins University (JHU) team of investigators comprises strong expertise in high-resolution SPECT instrumentation, simulation tools and quantitative image reconstruction methods and in MR imaging including RF coil design, shimming for magnetic field uniformity, MR pulse sequences, MR data acquisition methods and image reconstruction and processing methods. The proposed research will involve (1) development of high-resolution MR compatible CZT detectors for SPECT imaging, (2) development of optimized RF transmit/receive coils, shimming methods and MRI pulse sequences for artifact-free high-resolution small animal MR imaging using the Philips 3T MRI system in the presence of the SPECT subunit, (3) development of an optimized MR compatible SPECT subunit and image reconstruction methods for artifact-free SPECT images inside the 3T MRI system, and (4) preliminary evaluation of the SPECT/MR system using physical phantom and simulation studies.

Public Health Relevance

In this innovative grant application, we propose to develop, construct, and evaluate a prototype SPECT/MRI system for simultaneous high-resolution molecular SPECT/MR imaging of small animals. The main innovations include the use of state-of-the-art MR compatible cadmium zinc telluride (CZT) detector modules developed by our industrial partner, Gamma Medica-Ideas (GMI). A ring-type SPECT subsystem will be developed based on the CZT detector modules and will fit inside research Philips MRI systems (both 3T and 7T). The prototype system also provides a platform for further development into a human brain SPECT/MRI system in the future for multimodality molecular imaging of brain diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of Biomedical Imaging and Bioengineering (NIBIB)
Type
Research Project (R01)
Project #
5R01EB008730-02
Application #
7923932
Study Section
Biomedical Imaging Technology Study Section (BMIT)
Program Officer
Sastre, Antonio
Project Start
2009-09-01
Project End
2012-08-31
Budget Start
2010-09-01
Budget End
2012-08-31
Support Year
2
Fiscal Year
2010
Total Cost
$621,779
Indirect Cost
Name
Johns Hopkins University
Department
Radiation-Diagnostic/Oncology
Type
Schools of Medicine
DUNS #
001910777
City
Baltimore
State
MD
Country
United States
Zip Code
21218
Xu, Jingyan; Tsui, Benjamin M W (2013) An analytical geometric calibration method for circular cone-beam geometry. IEEE Trans Med Imaging 32:1731-44
Xu, Jingyan; Tsui, Benjamin M W (2012) A graphical method for determining the in-plane rotation angle in geometric calibration of circular cone-beam CT systems. IEEE Trans Med Imaging 31:825-33
Meier, D; Wagenaar, D J; Chen, S et al. (2011) A SPECT Camera for Combined MRI and SPECT for Small Animals. Nucl Instrum Methods Phys Res A 652:731-734