| Literature DB >> 31523757 |
Ernst L Stille1, Ilaria Viozzi2, Mark Ter Laan2, Frederick J A Meijer3, Jurgen J Futterer3, Maroeska M Rovers4.
Abstract
PURPOSE: Flat-panel computed tomography (FP-CT) is increasingly available in angiographic rooms and hybrid OR's. Considering its easy access, cerebral imaging using FP-CT is an appealing modality for intra-procedural applications. The purpose of this systematic review is to assess the diagnostic accuracy of FP-CT compared with perfusion computed tomography (CTP) and perfusion magnetic resonance (MRP) in cerebral perfusion imaging.Entities:
Keywords: Cerebral perfusion imaging; Flat-panel detector computed tomography; Perfusion computed tomography; Perfusion magnetic resonance
Mesh:
Year: 2019 PMID: 31523757 PMCID: PMC6848034 DOI: 10.1007/s00234-019-02285-y
Source DB: PubMed Journal: Neuroradiology ISSN: 0028-3940 Impact factor: 2.804
Fig. 1a Prisma flowchart FP-CT vs. CTP. b Prisma flowchart FP-CT vs. MRP
Study characteristics: FP-CT vs. CTP
| Author | Study characteristics | Population characteristics | ||||
|---|---|---|---|---|---|---|
| Design | Population | Diagnosis | Age | |||
| Mean | Range | |||||
| Human studies | Fiorella (2014) | Multicenter pilot study | 56 patients | CVA | 62.9 | 25–86 |
| Struffert (2012) | Cohort | 16 patients | MCA occlusion, unilateral | 69.6 | – | |
| Struffert (2010) | Cohort | 25 patients | CVA | 58.3 | – | |
| Zhang (2013) | Cohort | 12 patients | CVA | 52 | 20–76 | |
| Zhang (2012) | Cohort | 20 patients | CVA | 55.2 | 30–70 | |
| Animal studies | Ahmed (2009) | Animal trial | 12 dogs | Healthy subjects | – | – |
| Beuing (2014) | Animal trial | 7 sheep | MCA occlusion, unilateral | – | – | |
| Bley (2010) | Animal trial | 20 dogs | MCA occlusion, unilateral | – | – | |
| Ganguly (2011) | Animal trial | 5 pigs | Healthy subjects | – | – | |
| Royalty (2013) | Animal trial | 7 dogs | ICA/MCA occlusion, unilateral | – | – | |
| Yasuda (2012) | Animal trial | 12 dogs | ICA/MCA occlusion, unilateral | – | – | |
CVA, cerebrovascular accident; MCA, middle cerebral artery; ICA, internal carotid artery
Study characteristics: FP-CT vs. MRP
| Author | Study characteristics | Population characteristics | ||||
|---|---|---|---|---|---|---|
| Design | Population | Diagnosis | Age | |||
| Mean | Range | |||||
| Human studies | Garcia (2017) | Cohort | 5 patients | Arteriovenous malformation | – | – |
| Chen (2018) | Cohort | 13 patients | Carotid stenosis > 70% | 67.1 | 45–78 | |
| Kamran (2015) | Cohort | 26 patients | DCI after SAH | 55 | – | |
| Kuriyama (2018) | Retrospective cohort | 10 patients | Unruptured aneurysm | 58.1 | 40–71 | |
| Struffert (2015) | Cohort | 12 patients | LVO | 72 | – | |
DCI, delayed cerebral ischemia; SAH, subarachnoid hemorrhage; LVO, large vessel occlusion
Fig. 2a and b Quality assessment FP-CT vs. CTP/MRP
Scan protocol specifics: FP-CT vs. CTP
| Author | Scan protocol | Contrast protocol | |||||||
|---|---|---|---|---|---|---|---|---|---|
| Machine | Sweeps | Sec/sweep | Static/dynamic | Conc. (mg/ml) | Route | Total | Dilution | ||
| Human studies | Fiorella (2014) | Artis Zee | 2 | 8 | Static | 370 | iv | 60 ml | – |
| Struffert (2012) | Artis dBA/Zeego | 2 | 8 | Static | 350 | iv | 60 ml | – | |
| Struffert (2010) | Artis dBA | 2 | 8 | Static | 350 | iv | 80 ml | – | |
| Zhang (2013) | Artis Zeego | 2 | 8 | Static | 300 | ia-AA | 48 ml | 50% | |
| Zhang (2012) | Artis Zee | 2 | 8 | Static | – | iv | – | – | |
| Animal studies | Ahmed (2009) | Artis dBA | 2 | 5 | Static | 300–375 | iv | – | – |
| Beuing (2014) | Artis Zeego | 7 | 4.43 2.83 | Dynamic | 400 | iv | 42 ml | – | |
| Bley (2010) | Artis dBA | 2 | 5 | Static | 370 | iv | 25 ml | – | |
| Ganguly (2011) | Artis dTA | 6 | 4.3 | Dynamic | 350 | ia | 40–50 ml | 50–100% | |
| Royalty (2013) | Artis Zeego | 9 | 2.8 | Dynamic | 370 | iv | 28 ml | – | |
| Yasuda (2012) | Artis Zeego | 2 | 5 | Static | 370 | iv ia-AA ia-CCA ia-VA | 25 ml 11–15 ml 4.5–15 ml 3–9.9 ml | 100% 15–20% 10–30% 10–30% | |
iv, intravenous; ia, intra-arterial; AA, aortic arch; CCA, common carotid artery; VA, vertebral artery
Scan protocol specifics: FP-CT vs. MRP
| Author | Scan protocol | Contrast protocol | ||||||
|---|---|---|---|---|---|---|---|---|
| Machine | Sweeps | Sec/sweep | Static/dynamic | Conc. (mg/ml) | Route | Total | ||
| Human studies | Garcia (2017) | Artis dBA | 2 | 8 | Static | 370 | iv | 80 ml |
| Chen (2018) | Artis | 10 | 5 | Dynamic | 370 | iv | 60 ml | |
| Kamran (2015) | Artis dBA | 2 | 8 | Static | 370 | iv | 80 ml | |
| Kuriyama (2017) | Artis Zee | 2 | 6 | Static | 300 | ia | Variable | |
| Struffert (2015) | Artis dBA | 9 | 5 | Dynamic | 350 | iv | 60 ml | |
iv, intravenous; ia, intra-arterial; AA, aortic arch
Study results: FP-CT vs. CTP in humans
| Author | Population | Methods | Parameter(s) | Results |
|---|---|---|---|---|
| Diagnostic accuracy | ||||
| Fiorella (2014) | 56 CVA patients | Detection of PBV deficits: any or > 1/3 of vascular territory | CTP-CBV vs FD-PBV | Sens 100% Spec 63–81% |
| Zhang (2013) | 3 patients: CVA, ICH, Moyamoya | IA contrast dose 70%↓ in visual detection of perf. disorders | IVCT-CBV vs IAFD-CBV | Sens 100% Similar results in all patients |
| Bland-Altman mean differences | ||||
| Struffert (2010) | 25 CVA patients | CBV in 6 ROI’s | CTP-CBV vs FD-CBV | − 0.077 ± 0.48 ml/100 g |
| Zhang (2012) | 20 CVA patients | CBV in 6 ROI’s | CTP-CBV vs FDCT-CBV | − 0.25 ± 2.79 ml/100 g |
| Correlation coefficients | ||||
| Struffert (2010) | 25 CVA patients | CBV in 6 ROI’s | CTP-CBV vs FD-CBV | |
| Zhang (2012) | 20 CVA patients | CBV in 6 ROI’s | CTP-CBV vs FDCT-CBV CTP-rCBV vs FDCT-rCBV | Pearson Pearson |
| Struffert (2012) | 16 CVA patients | Post-MCA treatment CBV deficits | CTP-CBV vs FP-CT-CBV | |
CVA, cerebrovascular accident; ICH, intracranial hemorrhage
Study results: FP-CT vs. MRP in humans
| Author | Population | Methods | Parameter(s) | Results |
|---|---|---|---|---|
| Bland-Altman mean differences | ||||
| Kamran (2015) | 26 patients: DCI after SAH | Cortical VOI’s Subcortical VOI’s | CCT-rPBV vs weighted MR-rCBF/rCBV | 0.015 ± 0.119 ml/100 g 0.043 ± 0.118 ml/100 g |
| Correlation coefficients | ||||
| Chen (2018) | 13 patients: carotid stenosis | MCA territory ROI’s | FD-CTP-rCBF vs MRP-rCBF FD-CTP-rMTT vs MRP-rMTT FD-CTP-rTTP vs MRP-rTTP | |
| Kamran (2015) | 26 patients: DCI after SAH | Cortical VOI’s Subcortical VOI’s | CCT-rPBV vs weighted MR-rCBF/rCBV | |
| Struffert (2015) | 12 CVA patients | Qualitative ASPECTS score | CBV CBF, MTT, and TTP | Pearson Pearson |
| Garcia (2017) | 5 AVM patients | Perinidal perfusion | FPD-CT vs DSC-CBV FPD-CT vs DSC-CBF FPD-CT vs ASL-CBF | Pearson Pearson Pearson |
DCI, delayed cerebral ischemia; SAH, subarachnoid hemorrhage; AVM, arteriovenous malformation