Skip to main content
Top
Published in: Molecular Imaging and Biology 1/2012

01-02-2012 | Research Article

Evaluation of a Multi-pinhole Collimator for Imaging Small Animals with Different Sizes

Authors: Greta S. P. Mok, Jianhua Yu, Yong Du, Yuchuan Wang, Benjamin M. W. Tsui

Published in: Molecular Imaging and Biology | Issue 1/2012

Login to get access

Abstract

Purpose

Our goal was to evaluate a multi-pinhole (MPH) collimator which allows changing configurations for mouse imaging and rat imaging.

Procedures

The collimator length can be adjusted from 5 cm for rat imaging to a maximum of 8 cm for mouse imaging. Projections of mouse- and rat-size phantoms were simulated with collimator length of 8 cm, and the rat-size phantom was additionally simulated with collimator length of 5 cm. Bias and noise were assessed in the reconstructed images. Three physical phantoms were used to evaluate the axial sampling and resolutions for one-, four-, and five-pinhole single photon emission computed tomography (SPECT). Images of three different-sized rodents were also acquired.

Results

Simulations showed that for rat imaging, shorter collimator length provided an improved bias-noise trade-off compared to that of longer collimator length. Axial distortions were significantly reduced for MPH compared to single pinhole imaging. The smallest rods visible for mouse imaging and rat imaging were 1 and 1.6 mm, respectively, and their corresponding absolute sensitivities were 3.47% and 2.02% at the center field-of-view for 5-pinhole imaging. The count ratios were 1:3.78:4.42, respectively, for one-, four-, and five-pinhole for same acquisition time. Good image quality was observed in real animal studies.

Conclusions

This collimator allows flexible single pinhole and MPH SPECT imaging for rodents, achieving high resolution and detection efficiency with minimal image artifacts.
Literature
1.
go back to reference Massoud TF, Gambhir SS (2003) Molecular imaging in living subjects: seeing fundamental biological processes in a new light. Genes Dev 17:545–580PubMedCrossRef Massoud TF, Gambhir SS (2003) Molecular imaging in living subjects: seeing fundamental biological processes in a new light. Genes Dev 17:545–580PubMedCrossRef
2.
go back to reference Weissleder R, Mahmood U (2001) Molecular imaging. Radiology 219:316–333PubMed Weissleder R, Mahmood U (2001) Molecular imaging. Radiology 219:316–333PubMed
3.
go back to reference Beekman FJ, van der Have F, Vastenhouw B, van der Linden AJA, van Rijk PP, Burbach JPH, Smidt MP (2005) U-SPECT-I: a novel system for submillimeter-resolution tomography with radiolabeled molecules in mice. J Nucl Med 46:1194–1200PubMed Beekman FJ, van der Have F, Vastenhouw B, van der Linden AJA, van Rijk PP, Burbach JPH, Smidt MP (2005) U-SPECT-I: a novel system for submillimeter-resolution tomography with radiolabeled molecules in mice. J Nucl Med 46:1194–1200PubMed
4.
go back to reference Kim H, Furenlid LR, Crawford MJ, Wilson DW, Barber HB, Peterson TE, Hunter WCJ, Liu ZL, Woolfenden JM, Barrett HH (2006) SemiSPECT: a small-animal single-photon emission computed tomography (SPECT) imager based on eight cadmium zinc telluride (CZT) detector arrays. Med Phys 33:465–474PubMedCrossRef Kim H, Furenlid LR, Crawford MJ, Wilson DW, Barber HB, Peterson TE, Hunter WCJ, Liu ZL, Woolfenden JM, Barrett HH (2006) SemiSPECT: a small-animal single-photon emission computed tomography (SPECT) imager based on eight cadmium zinc telluride (CZT) detector arrays. Med Phys 33:465–474PubMedCrossRef
5.
go back to reference Lackas C, Schramm NU, Hoppin JW, Engeland U, Wirrwar A, Halling H (2005) T-SPECT: a novel imaging technique for small animal research. IEEE Trans Nucl Sci 52:181–187CrossRef Lackas C, Schramm NU, Hoppin JW, Engeland U, Wirrwar A, Halling H (2005) T-SPECT: a novel imaging technique for small animal research. IEEE Trans Nucl Sci 52:181–187CrossRef
6.
go back to reference Metzler SD, Jaszczak RJ, Patil NH, Vemulapalli S, Akabani G, Chin BB (2005) Molecular imaging of small animals with a triple-head SPECT system using pinhole collimation. IEEE Trans Med Imaging 24:853–862PubMedCrossRef Metzler SD, Jaszczak RJ, Patil NH, Vemulapalli S, Akabani G, Chin BB (2005) Molecular imaging of small animals with a triple-head SPECT system using pinhole collimation. IEEE Trans Med Imaging 24:853–862PubMedCrossRef
7.
go back to reference van der Have F, Vastenhouw B, Ramakers RM, Branderhorst W, Krah JO, Ji C, Staelens SG, Beekman FJ (2009) U-SPECT-II: an ultra-high-resolution device for molecular small-animal imaging. J Nucl Med 50:599–605PubMedCrossRef van der Have F, Vastenhouw B, Ramakers RM, Branderhorst W, Krah JO, Ji C, Staelens SG, Beekman FJ (2009) U-SPECT-II: an ultra-high-resolution device for molecular small-animal imaging. J Nucl Med 50:599–605PubMedCrossRef
8.
go back to reference Beekman F, van der Have F (2007) The pinhole: gateway to ultra-high-resolution three-dimensional radionuclide imaging. Eur J Nucl Med Mol Imaging 34:151–161PubMedCrossRef Beekman F, van der Have F (2007) The pinhole: gateway to ultra-high-resolution three-dimensional radionuclide imaging. Eur J Nucl Med Mol Imaging 34:151–161PubMedCrossRef
9.
go back to reference Jaszczak RJ, Li JY, Wang HL, Zalutsky MR, Coleman RE (1994) Pinhole collimation for ultra-high-resolution, small-field-of-view spect. Phys Med Biol 39:425–437PubMedCrossRef Jaszczak RJ, Li JY, Wang HL, Zalutsky MR, Coleman RE (1994) Pinhole collimation for ultra-high-resolution, small-field-of-view spect. Phys Med Biol 39:425–437PubMedCrossRef
10.
go back to reference Schramm NU, Ebel G, Engeland U, Schurrat T, Behe M, Behr TM (2003) High-resolution SPECT using multipinhole collimation. IEEE Trans Nucl Sci 50:315–320CrossRef Schramm NU, Ebel G, Engeland U, Schurrat T, Behe M, Behr TM (2003) High-resolution SPECT using multipinhole collimation. IEEE Trans Nucl Sci 50:315–320CrossRef
11.
go back to reference Strand SE, Ivanovic M, Erlandsson K, Franceschi D, Button T, Sjogren K, Weber DA (1994) Small animal imaging with pinhole single-photon emission computed-tomography. Cancer 73:981–984PubMedCrossRef Strand SE, Ivanovic M, Erlandsson K, Franceschi D, Button T, Sjogren K, Weber DA (1994) Small animal imaging with pinhole single-photon emission computed-tomography. Cancer 73:981–984PubMedCrossRef
12.
go back to reference Bal G, Zeng GL, Lewitt RM, Cao Z, Acton PD (2004) Study of different pinhole configurations for small animal tumor imaging. IEEE Nucl Sci Symp Conf Rec 1–7:3133–3137CrossRef Bal G, Zeng GL, Lewitt RM, Cao Z, Acton PD (2004) Study of different pinhole configurations for small animal tumor imaging. IEEE Nucl Sci Symp Conf Rec 1–7:3133–3137CrossRef
13.
go back to reference Cao ZX, Bal G, Accorsi R, Acton PD (2005) Optimal number of pinholes in multi-pinhole SPECT for mouse brain imaging—a simulation study. Phys Med Biol 50:4609–4624PubMedCrossRef Cao ZX, Bal G, Accorsi R, Acton PD (2005) Optimal number of pinholes in multi-pinhole SPECT for mouse brain imaging—a simulation study. Phys Med Biol 50:4609–4624PubMedCrossRef
14.
go back to reference Nuyts J, Vunckx K, Defrise M, Vanhove C (2009) Small animal imaging with multi-pinhole SPECT. Methods 48:83–91PubMedCrossRef Nuyts J, Vunckx K, Defrise M, Vanhove C (2009) Small animal imaging with multi-pinhole SPECT. Methods 48:83–91PubMedCrossRef
15.
go back to reference Rentmeester MCM, van der Have F, Beekman FJ (2007) Optimizing multi-pinhole SPECT geometries using an analytical model. Phys Med Biol 52:2567–2581PubMedCrossRef Rentmeester MCM, van der Have F, Beekman FJ (2007) Optimizing multi-pinhole SPECT geometries using an analytical model. Phys Med Biol 52:2567–2581PubMedCrossRef
16.
go back to reference Beekman FJ, Vastenhouw B (2004) Design and simulation of a high-resolution stationary SPECT system for small animals. Phys Med Biol 49:4579–4592PubMedCrossRef Beekman FJ, Vastenhouw B (2004) Design and simulation of a high-resolution stationary SPECT system for small animals. Phys Med Biol 49:4579–4592PubMedCrossRef
17.
go back to reference Mok GS, Wang Y, Tsui BM (2009) Quantification of the multiplexing effects in multi-pinhole small animal SPECT—a simulation study. IEEE Trans Nucl Sci 56:2636–2643PubMedCrossRef Mok GS, Wang Y, Tsui BM (2009) Quantification of the multiplexing effects in multi-pinhole small animal SPECT—a simulation study. IEEE Trans Nucl Sci 56:2636–2643PubMedCrossRef
18.
go back to reference Pan MH, Huang SC, Liao YP, Schaue D, Wang CC, Stout DB, Barrio JR, McBride WH (2008) FLT-PET imaging of radiation responses in murine tumors. Mol Imaging Biol 10:325–334PubMedCrossRef Pan MH, Huang SC, Liao YP, Schaue D, Wang CC, Stout DB, Barrio JR, McBride WH (2008) FLT-PET imaging of radiation responses in murine tumors. Mol Imaging Biol 10:325–334PubMedCrossRef
19.
go back to reference Pissarek MB, Oros-Peusquens AM, Schramm NU (2008) Challenge by the murine brain: multi-pinhole SPECT of 123I-labelled pharmaceuticals. J Neurosci Methods 168:282–292PubMedCrossRef Pissarek MB, Oros-Peusquens AM, Schramm NU (2008) Challenge by the murine brain: multi-pinhole SPECT of 123I-labelled pharmaceuticals. J Neurosci Methods 168:282–292PubMedCrossRef
20.
go back to reference Al-Shafei AIM, Wise RG, Gresham GA, Bronns G, Carpenter TA, Hall LD, Huang CLH (2002) Non-invasive magnetic resonance imaging assessment of myocardial changes and the effects of angiotensin-converting enzyme inhibition in diabetic rats. J Physiol Lond 538:541–553PubMedCrossRef Al-Shafei AIM, Wise RG, Gresham GA, Bronns G, Carpenter TA, Hall LD, Huang CLH (2002) Non-invasive magnetic resonance imaging assessment of myocardial changes and the effects of angiotensin-converting enzyme inhibition in diabetic rats. J Physiol Lond 538:541–553PubMedCrossRef
21.
go back to reference Hastings DL, Reader AJ, Julyan PJ, Zweit J, Jeavons AP, Jones T (2007) Performance characteristics of a small animal PET camera for molecular imaging. Nucl Instrum Methods Phys Res Sect A 573:80–83CrossRef Hastings DL, Reader AJ, Julyan PJ, Zweit J, Jeavons AP, Jones T (2007) Performance characteristics of a small animal PET camera for molecular imaging. Nucl Instrum Methods Phys Res Sect A 573:80–83CrossRef
22.
go back to reference Wang Y, Mok GS, Tsui BM (2005) Derivation and implementation of a simple method for geometric calibration in multi-pinhole SPECT. In IEEE Nuclear Science Symposium and Medical Imaging Conference, Puerto Rico Wang Y, Mok GS, Tsui BM (2005) Derivation and implementation of a simple method for geometric calibration in multi-pinhole SPECT. In IEEE Nuclear Science Symposium and Medical Imaging Conference, Puerto Rico
23.
go back to reference Wang YC, Tsui BMW (2007) Pinhole SPECT with different data acquisition geometries: usefulness of unified projection operators in homogeneous coordinates. IEEE Trans Med Imaging 26:298–308PubMedCrossRef Wang YC, Tsui BMW (2007) Pinhole SPECT with different data acquisition geometries: usefulness of unified projection operators in homogeneous coordinates. IEEE Trans Med Imaging 26:298–308PubMedCrossRef
24.
go back to reference Mok GS, Tsui BM, Wang Y, Du Y, Segars WP, Frey EC (2005) Effects of pinhole pattern and multiplexing in multi-pinhole small animal SPECT. In 52nd Annual Meeting of the Society of Nuclear Medicine, Toronto, Canada Mok GS, Tsui BM, Wang Y, Du Y, Segars WP, Frey EC (2005) Effects of pinhole pattern and multiplexing in multi-pinhole small animal SPECT. In 52nd Annual Meeting of the Society of Nuclear Medicine, Toronto, Canada
25.
go back to reference Vunckx K, Suetens P, Nuyts J (2008) Effect of overlapping projections on reconstruction image quality in multipinhole SPECT. IEEE Trans Med Imaging 27:972–983PubMedCrossRef Vunckx K, Suetens P, Nuyts J (2008) Effect of overlapping projections on reconstruction image quality in multipinhole SPECT. IEEE Trans Med Imaging 27:972–983PubMedCrossRef
26.
go back to reference Segars WP, Tsui BMW, Frey EC, Johnson GA, Berr SS (2004) Development of a 4-D digital mouse phantom for molecular imaging research. Mol Imaging Biol 6:149–159PubMedCrossRef Segars WP, Tsui BMW, Frey EC, Johnson GA, Berr SS (2004) Development of a 4-D digital mouse phantom for molecular imaging research. Mol Imaging Biol 6:149–159PubMedCrossRef
27.
go back to reference Gabrielson KL, Mok GS, Nimmagadda S, Bedja D, Pin S, Tsao A, Wang Y, Sooryakumar D, Yu SJ, Pomper MG, Tsui BM (2008) Detection of dose response in chronic doxorubicin-mediated cell death with cardiac technetium 99 m annexin V single-photon emission computed tomography. Mol Imaging 7:132–138PubMed Gabrielson KL, Mok GS, Nimmagadda S, Bedja D, Pin S, Tsao A, Wang Y, Sooryakumar D, Yu SJ, Pomper MG, Tsui BM (2008) Detection of dose response in chronic doxorubicin-mediated cell death with cardiac technetium 99 m annexin V single-photon emission computed tomography. Mol Imaging 7:132–138PubMed
28.
go back to reference Barrett HH, Furenlid LR, Freed M, Hesterman JY, Kupinski MA, Clarkson E, Whitaker MK (2008) Adaptive SPECT. IEEE Trans Med Imaging 27:775–788PubMedCrossRef Barrett HH, Furenlid LR, Freed M, Hesterman JY, Kupinski MA, Clarkson E, Whitaker MK (2008) Adaptive SPECT. IEEE Trans Med Imaging 27:775–788PubMedCrossRef
29.
go back to reference Freed M, Kupinski MA, Furenlid LR, Wilson DW, Barrett HH (2008) A prototype instrument for single pinhole small animal adaptive SPECT imaging. Med Phys 35:1912–1925PubMedCrossRef Freed M, Kupinski MA, Furenlid LR, Wilson DW, Barrett HH (2008) A prototype instrument for single pinhole small animal adaptive SPECT imaging. Med Phys 35:1912–1925PubMedCrossRef
30.
go back to reference Hesterman JY, Kupinski MA, Furenlid LR, Wilson DW, Barrett HH (2007) The multi-module, multi-resolution system (M3R): a novel small-animal SPECT system. Med Phys 34:987–993PubMedCrossRef Hesterman JY, Kupinski MA, Furenlid LR, Wilson DW, Barrett HH (2007) The multi-module, multi-resolution system (M3R): a novel small-animal SPECT system. Med Phys 34:987–993PubMedCrossRef
31.
go back to reference Difilippo FP (2008) Design and performance of a multi-pinhole collimation device for small animal imaging with clinical SPECT and SPECT-CT scanners. Phys Med Biol 53:4185–4201PubMedCrossRef Difilippo FP (2008) Design and performance of a multi-pinhole collimation device for small animal imaging with clinical SPECT and SPECT-CT scanners. Phys Med Biol 53:4185–4201PubMedCrossRef
Metadata
Title
Evaluation of a Multi-pinhole Collimator for Imaging Small Animals with Different Sizes
Authors
Greta S. P. Mok
Jianhua Yu
Yong Du
Yuchuan Wang
Benjamin M. W. Tsui
Publication date
01-02-2012
Publisher
Springer-Verlag
Published in
Molecular Imaging and Biology / Issue 1/2012
Print ISSN: 1536-1632
Electronic ISSN: 1860-2002
DOI
https://doi.org/10.1007/s11307-011-0472-8

Other articles of this Issue 1/2012

Molecular Imaging and Biology 1/2012 Go to the issue