Skip to main content
Erschienen in: Pediatric Radiology 9/2010

01.09.2010 | Original Article

Xenon ventilation CT using dual-source and dual-energy technique in children with bronchiolitis obliterans: correlation of xenon and CT density values with pulmonary function test results

verfasst von: Hyun Woo Goo, Dong Hyun Yang, Soo-Jong Hong, Jinho Yu, Byoung-Ju Kim, Joon Beom Seo, Eun Jin Chae, Jeongjin Lee, Bernhard Krauss

Erschienen in: Pediatric Radiology | Ausgabe 9/2010

Einloggen, um Zugang zu erhalten

Abstract

Background

Xenon ventilation CT using dual-source and dual-energy technique is a recently introduced, promising functional lung imaging method. To expand its clinical applications evidence of additional diagnostic value of xenon ventilation CT over conventional chest CT is required.

Objective

To evaluate the usefulness of xenon ventilation CT using dual-source and dual-energy technique in children with bronchiolitis obliterans (BO).

Materials and methods

Seventeen children (age 7–18 years; 11 boys) with BO underwent xenon ventilation CT using dual-source and dual-energy technique. Xenon and CT density values were measured in normal and hyperlucent lung regions on CT and were compared between the two regions. Volumes of hyperlucent regions and ventilation defects were calculated with thresholds determined by visual and histogram-based analysis. Indexed volumes of hyperlucent lung regions and ventilation defects were correlated with pulmonary function test results. Effective doses of xenon CT were calculated.

Results

Xenon (14.6 ± 6.4 HU vs 26.1 ± 6.5 HU; P < 0.001) and CT density (−892.8 ± 25.4 HU vs −812.3 ± 38.7 HU; P < 0.001) values were significantly lower in hyperlucent regions than in normal lung regions. Xenon and CT density values showed significant positive correlation for the entire lung in 16 children (γ = 0.55 ± 0.17, P < 0.001 or =0.017) and for hyperlucent regions in 13 children (γ = 0.44 ± 0.16, P < 0.001 or =0.001–0.019). Indexed volumes and volume percentages of hyperlucent lung regions and ventilation defects showed strong negative correlations with forced expiratory volume [FEV1, (γ = −0.64–−0.85, P ≤ 0.006)], FEV1/forced vital capacity [FVC, (γ = −0.63–−0.84, P ≤ 0.008), and forced midexpiratory flow rate [FEF25–75, (γ = −0.68–−0.88, P ≤ 0.002). Volume percentages of xenon ventilation defects (35.0 ±  16.4%) were not significantly different from those of hyperlucent lung regions (38.2 ± 18.6%). However, mismatches between the volume percentages were variable up to 21.4–33.3%. Mean effective dose of xenon CT was 1.9 ± 0.5 mSv.

Conclusion

In addition to high-resolution anatomic information, xenon ventilation CT using dual-source and dual-energy technique demonstrates impaired regional ventilation and its heterogeneity accurately in children with BO without additional radiation exposure.
Literatur
1.
Zurück zum Zitat Chang AB, Masel JP, Masters B (1998) Post-infectious bronchiolitis obliterans: clinical, radiological and pulmonary function sequelae. Pediatr Radiol 28:23–29CrossRefPubMed Chang AB, Masel JP, Masters B (1998) Post-infectious bronchiolitis obliterans: clinical, radiological and pulmonary function sequelae. Pediatr Radiol 28:23–29CrossRefPubMed
2.
Zurück zum Zitat Goo HW, Kim HJ (2006) Detection of air trapping on inspiratory and expiratory phase images obtained by 0.3-second cine CT in the lungs of free-breathing young children. AJR 187:1019–1023CrossRefPubMed Goo HW, Kim HJ (2006) Detection of air trapping on inspiratory and expiratory phase images obtained by 0.3-second cine CT in the lungs of free-breathing young children. AJR 187:1019–1023CrossRefPubMed
3.
Zurück zum Zitat Moonnumakal SP, Fan LL (2008) Bronchiolitis obliterans in children. Curr Opin Pediatr 20:272–278CrossRefPubMed Moonnumakal SP, Fan LL (2008) Bronchiolitis obliterans in children. Curr Opin Pediatr 20:272–278CrossRefPubMed
4.
Zurück zum Zitat Chae EJ, Seo JB, Goo HW et al (2008) Xenon ventilation CT with a dual-energy technique of dual-source CT: initial experience. Radiology 248:615–624CrossRefPubMed Chae EJ, Seo JB, Goo HW et al (2008) Xenon ventilation CT with a dual-energy technique of dual-source CT: initial experience. Radiology 248:615–624CrossRefPubMed
5.
Zurück zum Zitat Goo HW, Chae EJ, Seo JB et al (2008) Xenon ventilation CT using a dual-source dual-energy technique: dynamic ventilation abnormality in a child with bronchial atresia. Pediatr Radiol 38:1113–1116CrossRefPubMed Goo HW, Chae EJ, Seo JB et al (2008) Xenon ventilation CT using a dual-source dual-energy technique: dynamic ventilation abnormality in a child with bronchial atresia. Pediatr Radiol 38:1113–1116CrossRefPubMed
6.
Zurück zum Zitat Yang DH, Goo HW (2008) Pediatric 16-slice CT protocols: radiation dose and image quality. J Korean Radiol Soc 59:333–347 Yang DH, Goo HW (2008) Pediatric 16-slice CT protocols: radiation dose and image quality. J Korean Radiol Soc 59:333–347
7.
Zurück zum Zitat Johnson TR, Krauss B, Sedlmair M et al (2007) Material differentiation by dual energy CT: initial experience. Eur Radiol 17:1510–1517CrossRefPubMed Johnson TR, Krauss B, Sedlmair M et al (2007) Material differentiation by dual energy CT: initial experience. Eur Radiol 17:1510–1517CrossRefPubMed
8.
Zurück zum Zitat Fain SB, Korosec FR, Holmes JH et al (2007) Functional lung imaging using hyperpolarized gas MRI. J Magn Reson Imaging 25:910–923CrossRefPubMed Fain SB, Korosec FR, Holmes JH et al (2007) Functional lung imaging using hyperpolarized gas MRI. J Magn Reson Imaging 25:910–923CrossRefPubMed
9.
Zurück zum Zitat Shinya T, Sato S, Kato K et al (2008) Assessment of mean transit time in the engrafted lung with 133Xe lung ventilation scintigraphy improves diagnosis of bronchiolitis obliterans syndrome in living-donor lobar lung transplant recipients. Ann Nucl Med 22:31–39CrossRefPubMed Shinya T, Sato S, Kato K et al (2008) Assessment of mean transit time in the engrafted lung with 133Xe lung ventilation scintigraphy improves diagnosis of bronchiolitis obliterans syndrome in living-donor lobar lung transplant recipients. Ann Nucl Med 22:31–39CrossRefPubMed
10.
Zurück zum Zitat Gast KK, Viallon M, Eberle B et al (2002) MRI in lung transplant recipients using hyperpolarized 3He: comparison with CT. J Magn Reson Imaging 15:268–274CrossRefPubMed Gast KK, Viallon M, Eberle B et al (2002) MRI in lung transplant recipients using hyperpolarized 3He: comparison with CT. J Magn Reson Imaging 15:268–274CrossRefPubMed
11.
Zurück zum Zitat Petersilka M, Bruder H, Krauss B et al (2008) Technical principles of dual source CT. Eur J Radiol 68:362–368CrossRefPubMed Petersilka M, Bruder H, Krauss B et al (2008) Technical principles of dual source CT. Eur J Radiol 68:362–368CrossRefPubMed
Metadaten
Titel
Xenon ventilation CT using dual-source and dual-energy technique in children with bronchiolitis obliterans: correlation of xenon and CT density values with pulmonary function test results
verfasst von
Hyun Woo Goo
Dong Hyun Yang
Soo-Jong Hong
Jinho Yu
Byoung-Ju Kim
Joon Beom Seo
Eun Jin Chae
Jeongjin Lee
Bernhard Krauss
Publikationsdatum
01.09.2010
Verlag
Springer-Verlag
Erschienen in
Pediatric Radiology / Ausgabe 9/2010
Print ISSN: 0301-0449
Elektronische ISSN: 1432-1998
DOI
https://doi.org/10.1007/s00247-010-1645-3

Weitere Artikel der Ausgabe 9/2010

Pediatric Radiology 9/2010 Zur Ausgabe

Update Radiologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.