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多排 CT 成像机械人工心脏瓣膜:应用搏动式体外模型对伪影进行定量分析。

Multidetector CT imaging of mechanical prosthetic heart valves: quantification of artifacts with a pulsatile in-vitro model.

机构信息

Department of Cardiothoracic Surgery, Onze Lieve Vrouwe Gasthuis, Amsterdam, The Netherlands.

出版信息

Eur Radiol. 2011 Oct;21(10):2103-10. doi: 10.1007/s00330-011-2146-y. Epub 2011 May 15.

Abstract

OBJECTIVES

Multidetector computed tomography (MDCT) can detect the cause of prosthetic heart valve (PHV) dysfunction but is hampered by valve-induced artifacts. We quantified artifacts of four PHV using a pulsatile in-vitro model and assessed the relation to leaflet motion and valve design.

METHODS

A Medtronic Hall tilting disc (MH), and Carbomedics (CM), St Jude (SJM), and ON-X bileaflet valves underwent CT in an in-vitro model using retrospective gating with a 64 detector CT system in stationary and pulsatile conditions. Artifacts and radiopaque component volumes were quantified with thresholds based on surrounding structures and valvular components.

RESULTS

Hypodense artifacts volumes (mm³) were 1,029 ± 147, 535 ± 53, 371 ± 16, and 366 ± 18 for the SJM, MH, CM and ON-X valves (p < 0.001 except for the latter two valves p = 0.43). Hyperdense artifact volumes were 3,546 ± 141, 2,387 ± 103, 2,003 ± 102, and 3,033 ± 31 for the SJM, MH, CM and ON-X valve, respectively (all differences p < 0.001). Leaflet motion affected hypodense (F = 41.5, p < 0.001) and hyperdense artifacts (F = 53.7, p < 0.001). Closed and moving leaflets were associated with the least and the most artifacts respectively (p < 0.001, both artifact types).

CONCLUSION

Both valve design and leaflet motion affect PHV-induced artifacts. Best imaging results may be expected for the CM valve during phases in which the leaflets are closed.

摘要

目的

多排螺旋 CT(MDCT)可检测人工心脏瓣膜(PHV)功能障碍的病因,但受到瓣膜伪影的影响。我们使用脉动式体外模型对四种 PHV 的伪影进行了量化,并评估了其与瓣叶运动和瓣膜设计的关系。

方法

使用 64 排 CT 系统对 Medtronic Hall 倾斜碟片(MH)、Carbomedics(CM)、St Jude(SJM)和 ON-X 双叶瓣进行回顾性门控 CT,在静止和脉动条件下进行体外模型检测。根据周围结构和瓣膜组件,使用阈值对低密度伪影和不透射线组件体积进行量化。

结果

SJM、MH、CM 和 ON-X 瓣膜的低密度伪影体积(mm³)分别为 1029 ± 147、535 ± 53、371 ± 16 和 366 ± 18(除后两者外,p < 0.001,p = 0.43)。高密度伪影体积分别为 3546 ± 141、2387 ± 103、2003 ± 102 和 3033 ± 31(所有差异 p < 0.001)。瓣叶运动影响低密度(F = 41.5,p < 0.001)和高密度伪影(F = 53.7,p < 0.001)。关闭和移动的瓣叶与最少和最多的伪影分别相关(p < 0.001,两种伪影类型)。

结论

瓣膜设计和瓣叶运动均影响 PHV 引起的伪影。CM 瓣膜在瓣叶关闭时可能获得最佳成像效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2b0/3165133/b4da9d8039cd/330_2011_2146_Fig1_HTML.jpg

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