Triple modality image reconstruction of PET data using SPECT, PET, CT information increases lesion uptake in images of patients treated with radioembolization with \(^{90}Y\) micro-spheres

Verel I, Visser GW, Van Dongen GA. The promise of immuno-pet in radioimmunotherapy. J Nucl Med. 2005;46(1 suppl):164–71.

Google Scholar 

Gomes Marin JF, Nunes RF, Coutinho AM, Zaniboni EC, Costa LB, Barbosa FG, Queiroz MA, Cerri GG, Buchpiguel CA. Theranostics in nuclear medicine: emerging and re-emerging integrated imaging and therapies in the era of precision oncology. Radiographics. 2020;40(6):1715–40.

Article  PubMed  Google Scholar 

Clinical Commissioning Policy: Selective internal radiation therapy (SIRT) for chemotherapy refractory intolerant metastatic colorectal cancer (adults)

Selective internal radiation therapies for treating hepatocellular carcinoma. https://www.nice.org.uk/guidance/ta688. Published: 2021-03-31

Chiesa C, Sjogreen-Gleisner K, Walrand S, Strigari L, Flux G, Gear J, Stokke C, Gabina PM, Bernhardt P, Konijnenberg M. Eanm dosimetry committee series on standard operational procedures: a unified methodology for 99mtc-maa pre-and 90y peri-therapy dosimetry in liver radioembolization with 90y microspheres. EJNMMI Phys. 2021;8(1):1–44.

Article  Google Scholar 

Cremonesi M, Chiesa C, Strigari L, Ferrari M, Botta F, Guerriero F, De Cicco C, Bonomo G, Orsi F, Bodei L, et al. Radioembolization of hepatic lesions from a radiobiology and dosimetric perspective. Front Oncol. 2014;4:210.

Article  PubMed  PubMed Central  Google Scholar 

Deidda D, Denis-Bacelar AM, Fenwick AJ, Ferreira KM, Heetun W, Hutton BF, Robinson AP, Scuffham J, Thielemans K. Hybrid kernelised expectation maximisation for bremsstrahlung SPECT reconstruction in SIRT with 90y micro-spheres. EJNMMI Phys. 2022;9(1):1–15.

Article  Google Scholar 

Kao Y-H, Steinberg JD, Tay Y-S, Lim GK, Yan J, Townsend DW, Takano A, Burgmans MC, Irani FG, Teo TK, et al. Post-radioembolization Yttrium-90 PET/CT-part 1: diagnostic reporting. EJNMMI Res. 2013;3(1):1–13.

Google Scholar 

Manglos SH, Jaszczak RJ, Floyd CE, Hahn LJ, Greer KL, Coleman RE. Nonisotropic attenuation in SPECT: phantom tests of quantitative effects and compensation techniques. J Nucl Med. 1987;28(10):1584–91.

CAS  PubMed  Google Scholar 

Seo Y, Wong KH, Hasegawa BH. Calculation and validation of the use of effective attenuation coefficient for attenuation correction in In-111 SPECT. Med Phys. 2005;32(12):3628–35.

Article  CAS  PubMed  Google Scholar 

Scott BR, Guilmette RA. Radiation toxicology, ionizing and nonionizing. In: Wexler P, editor. Encyclopedia of toxicology. 2nd ed. New York: Elsevier; 2005. p. 601–15.

Chapter  Google Scholar 

Deidda D, Efthimiou N, Manber R, Thielemans K, Markiewicz P, Aykroyd RG, Tsoumpas C. Comparative evaluation of image reconstruction methods for the siemens PET-MR scanner using the STIR library. NSS/MIC/RTSD, Strasburg, France. IEEE; 2016. p. 1–6.

Yue J, Mauxion T, Reyes DK, Lodge MA, Hobbs RF, Rong X, Dong Y, Herman JM, Wahl RL, Geschwind J-FH, et al. Comparison of quantitative Y-90 SPECT and non-time-of-flight PET imaging in post-therapy radioembolization of liver cancer. Med Phys. 2016;43(10):5779–90.

Article  PubMed  PubMed Central  Google Scholar 

Bailey D, TapnerSirtex M. A multicentre comparison of quantitative 90Y PET/CT for dosimetric purposes after radioembolization with resin microspheres: the QUEST phantom study. Artic Eur J Nucl Med. 2015;42:1202–22.

Article  Google Scholar 

Kubik A, Budzyńska A, Kacperski K, Maciak M, Kuć M, Piasecki P, Wiliński M, Konior M, Dziuk M, Iller E. Evaluation of qualitative and quantitative data of y-90 imaging in SPECT/CT and PET/CT phantom studies. PLoS ONE. 2021;16(2):0246848.

Article  Google Scholar 

Deidda D, Karakatsanis N, Robson PM, Tsai Y, Efthimiou NAZ, Thielemans K, Fayad Aykroyd RG, Tsoumpas C. Hybrid PET-MR list-mode kernelized expectation maximization reconstruction. Inv Prob. 2019;35(4):1–24.

Article  Google Scholar 

Arridge SR, Ehrhardt MJ, Thielemans K. (An overview of) synergistic reconstruction for multimodality/multichannel imaging methods. Philos Trans R Soc A. 2021;379(2200):20200205.

Article  Google Scholar 

Wang G, Qi J. PET image reconstruction using kernel method. IEEE Trans Med Imaging. 2015;34:61–71.

Article  CAS  PubMed  Google Scholar 

Hutchcroft W, Wang G, Chen KT, Catana C, Qi J. Anatomically-aided PET reconstruction using the kernel method. Phys Med Biol. 2016;61(18):6668.

Article  PubMed  PubMed Central  Google Scholar 

Deidda D, Karakatsanis N, Robson PM, Efthimiou N, Fayad ZA, Aykroyd RG, Tsoumpas C. Hybrid PET-MR list-mode kernelized expectation maximization reconstruction for quantitative PET images of the carotid arteries. In: 2017 IEEE nuclear science symposium and medical imaging conference (NSS/MIC); 2017. p. 1–7

Deidda D, Karakatsanis N, Robson PM, Efthimiou N, Fayad ZA, Aykroyd RG, Tsoumpas C. Effect of PET-MR inconsistency in the kernel image reconstruction method. IEEE Trans Rad Plas Med Sci. 2019;3(4):400–9.

Article  Google Scholar 

Deidda D, Aykroyd RG, Tsoumpas C. Multiplexing kernelized expectation maximization reconstruction for pet-mr. In: 2018 IEEE NSS/MIC proceedings. IEEE; 2018. p. 1–4.

Deidda D, Karakatsanis N, Calcagno C, Robson PM, Senders M, Mulder WJM, Fayad ZA, Aykroyd RG, Tsoumpas C. Hybrid PET-MR kernelised expectation maximisation reconstruction for improved image-derived estimation of the input function from the aorta of rabbits. Contrast Media Mol Imaging. 2019:1–12

Akerele MI, Karakatsanis NA, Forsythe RO, Dweck MR, Syed M, Aykroyd RG, Sourbron S, Newby DE, Tsoumpas C. Iterative reconstruction incorporating background correction improves quantification of [18 f]-NaF PET/CT images of patients with abdominal aortic aneurysm. J Nucl Cardiol. 2019;28:1–12.

Google Scholar 

Akerele MI, Karakatsanis NA, Deidda D, Cal-Gonzalez J, Forsythe RO, Dweck MR, Syed M, Newby DE, Aykroyd RG, Sourbron S, et al. Comparison of correction techniques for the spill in effect in emission tomography. IEEE Trans Rad Plas Med Sci. 2020;4:422–32.

Article  Google Scholar 

Deidda D, Akerele MI, Aykroyd RG, Dweck MR, Ferreira K, Forsythe RO, Heetun W, Newby DE, Syed M, Tsoumpas C. Improved identification of abdominal aortic aneurysm using the kernelized expectation maximization algorithm. Philos Trans R Soc A. 2021;379(2200):20200201.

Article  CAS  Google Scholar 

Marquis H, Deidda D, Gillman A, Willowson K, Gholami Y, Hioki T, Eslick E, Thielemans K, Bailey D. Theranostic SPECT reconstruction for improved resolution: application to radionuclide therapy dosimetry. EJNMMI Phys. 2021;8(1):1–17.

Article  Google Scholar 

Deidda D, Denis-Bacelar A, Fenwick A, Ferreira K, Heetun W, Hutton BF, Scuffham J, Robinson AP, Thielemans K. Feasibility of image reconstruction from triple modality data of yttrium-90. In: 2021 IEEE nuclear science symposium and medical imaging conference (NSS/MIC); 2021. p. 1–3.

Rowley LM, Bradley KM, Boardman P, Hallam A, McGowan DR. Optimization of image reconstruction for 90Y selective internal radiotherapy on a lutetium yttrium orthosilicate PET/CT system using a bayesian penalized likelihood reconstruction algorithm. J Nucl Med. 2017;58(4):658–64.

Article  CAS  PubMed  Google Scholar 

Porter CA, Bradley KM, Hippeläinen ET, Walker MD, McGowan DR. Phantom and clinical evaluation of the effect of full monte carlo collimator modelling in post-sirt yttrium-90 bremsstrahlung spect imaging. EJNMMI Res. 2018;8(1):1–7.

Article  Google Scholar 

Scott NP, McGowan DR. Optimising quantitative 90Y PET imaging: an investigation into the effects of scan length and bayesian penalised likelihood reconstruction. EJNMMI Res. 2019;9(1):1–10.

Article  Google Scholar 

Thielemans K, Tsoumpas C, Mustafovic S, Beisel T, Aguiar P, Dikaios N, Jacobson M. STIR: software for tomographic image reconstruction release 2. Phys Med Biol. 2012;57:867–83.

Article  PubMed  Google Scholar 

Wadhwa P, Thielemans K, Efthimiou N, Wangerin K, Keat N, Emond E, Deller T, Bertolli O, Deidda D, Delso G, Tohme M, Jansen F, Gunn RN, Hallett W, Tsoumpas C. PET image reconstruction using physical and mathematical modelling for time of flight PET-MR scanners in the STIR library. Methods Simul Biomed. 2021;185:110–9. https://doi.org/10.1016/j.ymeth.2020.01.005.

Article  CAS  Google Scholar 

Deidda D, Thomas BA, Ferreira K, Heetun W, Forgács A, Hutton BF, Thielemans K, Robinson AP. Validation of spect-ct image reconstruction for the Mediso AnyScan SCP scanner in stir. In: 2019 IEEE (NSS/MIC). IEEE;2019. p. 1–4.

Deidda D, Ferreira K, Heetun W, Fenwick A, Hutton B, Thielemans K, Robinson AP. Implementation of the first triple modality system model in STIR. In: 2020 IEEE (NSS/MIC); 2020. p. 1–4.

Brown S, Bailey DL, Willowson K, Baldock C. Investigation of the relationship between linear attenuation coefficients and ct hounsfield units using radionuclides for spect. Appl Radiat Isot. 2008;66(9):1206–12.

Article  CAS  PubMed  Google Scholar 

Kinahan PE, Townsend D, Beyer T, Sashin D. Attenuation correction for a combined 3d pet/ct scanner. Med Phys. 1998;25(10):2046–53.

Article  CAS  PubMed  Google Scholar 

Modat M, Ridgway GR, Taylor ZA, Lehmann M, Barnes J, Hawkes DJ, Fox NC, Ourselin S. Fast free-form deformation using graphics processing units. Comput Methods Programs Biomed. 2010;98(3):278–84.

Article  PubMed  Google Scholar 

Wickham H, François R, Henry L, Müller K. Dplyr: a grammar of data manipulation. 2022. https://dplyr.tidyverse.org

留言 (0)

沒有登入
gif