Yıl: 2020 Cilt: 26 Sayı: 4 Sayfa Aralığı: 264 - 270 Metin Dili: İngilizce DOI: 10.5152/dir.2019.19147 İndeks Tarihi: 27-11-2020

Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors

Öz:
PURPOSEWe aimed to explore the influence of tube voltage, current and iterative reconstruction (IR) in computed tomography perfusion imaging (CTPI) and to compare CTPI parameters with microvessel density (MVD).METHODSHepatic CTPI with three CTPI protocols (protocol A, tube voltage/current 80 kV/40 mAs; protocol B, tube voltage/current 80 kV/80 mAs; protocol C: tube voltage/current 100 kV/80 mAs) were performed in 25 rabbit liver VX2 tumor models, and filtered back projection (FBP) and IR were used for reconstruction of raw data. Hepatic arterial perfusion (HAP), hepatic portal perfusion (HPP), total perfusion (TP), hepatic arterial perfusion index (HPI), blood flow (BF) and blood volume (BV) of VX2 tumor and normal hepatic parenchyma were measured. Image noise, signal-to-noise ratio (SNR) and contrast-to-noise ratio (CNR) were quantified and radiation dose was recorded. MVD was counted using CD34 stain and compared with CTPI parameters.RESULTSThe highest radiation dose was found in protocol C, followed by protocols B and A. IR lowered image noise and improved SNR and CNR in all three protocols. There was no statistical difference between HAP, HPP, TP, HPI, BF and BV of VX2 tumor and normal hepatic parenchyma among the three protocols (P > 0.05) with FBP or IR reconstruction, and no statistical difference between IR and FBP reconstruction (P > 0.05) in either protocol. MVD had a positive linear correlation with HAP, TP, BF, with best correlation observed with HAP; MVD of VX2 tumor showed no or poor correlation with HPI and BV.CONCLUSIONCTPI parameters are not affected by tube voltage, current or reconstruction algorithm; HAP can best reflect MVD, but no correlation exists between BV and MVD.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Bray F, Ferlay J, Soerjomataram I, et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin 2018; 68: 394–424. [Crossref]
  • 2. Omata M, Cheng AL, Kokudo N, et al. Asia-Pacific clinical practice guidelines on the management of hepatocellular carcinoma: a 2017 update. Hepatol Int 2017; 11:317–370. [Crossref]
  • 3. Eisenhauer EA, Therasse P, Bogaerts J, et al. New response evaluation criteria in solid tumours: revised RECIST guideline (version 1.1). Eur J Cancer 2009; 45:228–247. [Crossref]
  • 4. Lencioni R, Llovet JM. Modified RECIST (mRECIST) assessment for hepatocellular carcinoma. Semin Liver Dis 2010; 30:52–60. [Crossref]
  • 5. Materne R, Smith AM, Peeters F, et al. Assessment of hepatic perfusion parameters with dynamic MRI. Magn Reson Med 2002; 47:135–142. [Crossref]
  • 6. Goetti R, Reiner CS, Knuth A, et al. Quantitative perfusion analysis of malignant liver tumors: dynamic computed tomography and contrast-enhanced ultrasound. Invest Radiol 2012; 47:18–24. [Crossref]
  • 7. Reiner CS, Goetti R, Burger IA, et al. Liver perfusion imaging in patients with primary and metastatic liver malignancy: prospective comparison between 99mTc-MAA spect and dynamic CT perfusion. Acad Radiol 2012; 19:613–621. [Crossref]
  • 8. Ren Y, Fleischmann D, Foygel K, et al. Antiangiogenic and radiation therapy: early effects on in vivo computed tomography perfusion parameters in human colon cancer xenografts in mice. Invest Radiol 2012; 47:25–32. [Crossref]
  • 9. Ash L, Teknos TN, Gandhi D, et al. Head and neck squamous cell carcinoma: CT perfusion can help noninvasively predict intratumoral microvessel density. Radiology 2009; 251:422–428. [Crossref]
  • 10. Goh V, Halligan S, Daley F, et al. Colorectal tumor vascularity: quantitative assessment with multidetector CT--do tumor perfusion measurements reflect angiogenesis? Radiology 2008; 249:510–517. [Crossref]
  • 11. Kim JW, Jeong YY, Chang NK, et al. Perfusion CT in colorectal cancer: comparison of perfusion parameters with tumor grade and microvessel density. Korean J Radiol 2012; 13 Suppl 1:S89–97. [Crossref]
  • 12. Kim DH, Kim SH, Im SA, et al. Intermodality comparison between 3D perfusion CT and 18F-FDG PET/CT imaging for predicting early tumor response in patients with liver metastasis after chemotherapy: preliminary results of a prospective study. Eur J Radiol 2012; 81:3542–3550. [Crossref]
  • 13. Kim SH, Kamaya A, Willmann JK. CT perfusion of the liver: principles and applications in oncology. Radiology 2014; 272:322–344. [Crossref]
  • 14. Liang C. Pay attention to the relative radiation of CT. Zhonghua Yi Xue Za Zhi 2014; 94:3361–3362.
  • 15. Kalra MK, Maher MM, Toth TL, et al. Strategies for CT radiation dose optimization. Radiology 2004; 230:619–628. [Crossref]
  • 16. Li JL, Huang MP, Cao XM, et al. Individualized reduction of radiation dose with a chest circumference-adapted technique and iterative reconstructions in 256-slice retrospective and prospective ECG-triggered computed tomography coronary angiography. Coron Artery Dis 2015; 26:308–316. [Crossref]
  • 17. Mello-Amoedo CD, Martins AN, Tachibana A, et al. Comparison of radiation dose and image quality of abdominopelvic CT using iterative (AIDR 3D) and conventional reconstructions. AJR Am J Roentgenol 2018; 210:127–133. [Crossref]
  • 18. Mileto A, Zamora DA, Alessio AM, et al. CT detectability of small low-contrast hypoattenuating focal lesions: iterative reconstructions versus filtered back projection. Radiology 2018; 289:443–454. [Crossref]
  • 19. Mitsumori LM, Shuman WP, Busey JM, et al. Adaptive statistical iterative reconstruction versus filtered back projection in the same patient: 64 channel liver CT image quality and patient radiation dose. Eur Radiol 2012; 22:138–143. [Crossref]
  • 20. Willemink MJ, Leiner T, de Jong PA, et al. Iterative reconstruction techniques for computed tomography part 2: initial results in dose reduction and image quality. Eur Radiol 2013; 23:1632–1642. [Crossref]
  • 21. Anzidei M, Napoli A, Zaccagna F, et al. Liver metastases from colorectal cancer treated with conventional and antiangiogenetic chemotherapy: evaluation with liver computed tomography perfusion and magnetic resonance diffusion-weighted imaging. J Comput Assist Tomogr 2011; 35:690–696. [Crossref]
  • 22. Negi N, Yoshikawa T, Ohno Y, et al. Hepatic CT perfusion measurements: a feasibility study for radiation dose reduction using new image reconstruction method. Eur J Radiol 2012; 81:3048–3054. [Crossref]
  • 23. Zhang CY, Cui YF, Guo C, et al. Low contrast medium and radiation dose for hepatic computed tomography perfusion of rabbit VX2 tumor. World J Gastroenterol 2015; 21:5259–5270. [Crossref]
  • 24. Yang HF, Du Y, Ni JX, et al. Perfusion computed tomography evaluation of angiogenesis in liver cancer. Eur Radiol 2010; 20:1424–1430. [Crossref]
  • 25. Jiang HJ, Zhang ZR, Shen BZ, et al. Quantification of angiogenesis by CT perfusion imaging in liver tumor of rabbit. Hepatobil Pancreat Dis Int 2009; 8:168–173. 270
APA LI J, Ye W, YAN L, LIU Z, CAO X, Liang C (2020). Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. , 264 - 270. 10.5152/dir.2019.19147
Chicago LI Jing-lei,Ye Weitao,YAN Li-Fen,LIU Zai-Yi,CAO Xi-Ming,Liang Chang hong Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. (2020): 264 - 270. 10.5152/dir.2019.19147
MLA LI Jing-lei,Ye Weitao,YAN Li-Fen,LIU Zai-Yi,CAO Xi-Ming,Liang Chang hong Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. , 2020, ss.264 - 270. 10.5152/dir.2019.19147
AMA LI J,Ye W,YAN L,LIU Z,CAO X,Liang C Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. . 2020; 264 - 270. 10.5152/dir.2019.19147
Vancouver LI J,Ye W,YAN L,LIU Z,CAO X,Liang C Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. . 2020; 264 - 270. 10.5152/dir.2019.19147
IEEE LI J,Ye W,YAN L,LIU Z,CAO X,Liang C "Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors." , ss.264 - 270, 2020. 10.5152/dir.2019.19147
ISNAD LI, Jing-lei vd. "Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors". (2020), 264-270. https://doi.org/10.5152/dir.2019.19147
APA LI J, Ye W, YAN L, LIU Z, CAO X, Liang C (2020). Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. Diagnostic and Interventional Radiology, 26(4), 264 - 270. 10.5152/dir.2019.19147
Chicago LI Jing-lei,Ye Weitao,YAN Li-Fen,LIU Zai-Yi,CAO Xi-Ming,Liang Chang hong Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. Diagnostic and Interventional Radiology 26, no.4 (2020): 264 - 270. 10.5152/dir.2019.19147
MLA LI Jing-lei,Ye Weitao,YAN Li-Fen,LIU Zai-Yi,CAO Xi-Ming,Liang Chang hong Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. Diagnostic and Interventional Radiology, vol.26, no.4, 2020, ss.264 - 270. 10.5152/dir.2019.19147
AMA LI J,Ye W,YAN L,LIU Z,CAO X,Liang C Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. Diagnostic and Interventional Radiology. 2020; 26(4): 264 - 270. 10.5152/dir.2019.19147
Vancouver LI J,Ye W,YAN L,LIU Z,CAO X,Liang C Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors. Diagnostic and Interventional Radiology. 2020; 26(4): 264 - 270. 10.5152/dir.2019.19147
IEEE LI J,Ye W,YAN L,LIU Z,CAO X,Liang C "Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors." Diagnostic and Interventional Radiology, 26, ss.264 - 270, 2020. 10.5152/dir.2019.19147
ISNAD LI, Jing-lei vd. "Influence of tube voltage, tube current and newer iterative reconstruction algorithms in CT perfusion imaging in rabbit liver VX2 tumors". Diagnostic and Interventional Radiology 26/4 (2020), 264-270. https://doi.org/10.5152/dir.2019.19147