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Retrograde occlusive arteriography of hemodialysis access: failure to detect inflow lesions?
Micah R Chan1, Vikramjit S Chhokar, Henry N Young
1Section of Nephrology, Department of Medicine, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA. mr.chan@hosp.wisc.edu
Insights
Retrograde occlusive arteriography (ROA) may underestimate inflow stenosis in hemodialysis access. Direct arteriogram (DA) reveals significantly higher stenosis degrees, suggesting ROA alone may miss critical lesions.
Area of Science:
- Nephrology
- Vascular Surgery
- Interventional Radiology
Background:
- Inflow stenosis is increasingly recognized as a significant cause of hemodialysis access failure.
- Traditional imaging via retrograde occlusive arteriography (ROA) has raised concerns regarding diagnostic accuracy and potential complications.
Purpose of the Study:
- To compare the diagnostic yield of ROA versus direct arteriogram (DA) in evaluating inflow stenosis in hemodialysis access.
- To determine if ROA adequately assesses the severity of inflow lesions.
Main Methods:
- A prospective database identified 18 patients with hemodialysis access dysfunction undergoing both ROA and DA for inflow lesion imaging.
- Luminal stenosis percentages were compared between the two imaging techniques.
Main Results:
- Direct arteriogram (DA) showed a significantly higher mean percent luminal stenosis (79.06%) compared to ROA (59.89%) (p = 0.009).
- Multiple regression analysis indicated DA was associated with detecting a higher degree of stenosis (β = 19.17, p = 0.006).
Conclusions:
- Retrograde occlusive arteriography (ROA) may not sufficiently evaluate inflow lesions in hemodialysis access.
- Relying solely on ROA might lead to the underdiagnosis of hemodynamically significant inflow stenosis.
Abstract:
Once thought to be a minor player in hemodialysis (HD) access dysfunction relative to outflow stenosis, inflow stenosis has recently come to be viewed as a major cause of access failure. Indeed, recent literature has shown that up to 40% of all accesses referred for dysfunction have an inflow lesion. Imaging of the inflow segment has been traditionally performed by interventional nephrologists via retrograde occlusive arteriography (ROA). Recent advances in our understanding of ROA have cast the technique in a negative light, with the possibility of vascular complications and poor diagnostic yield coming to the fore. Using a prospectively collected, vascular access database, we identified 18 consecutive patients who received imaging of inflow lesions by ROA and direct arteriogram (DA). The mean percent luminal stenoses were found to be 59.89 ± 24 and 79.06 ± 17.8 (p = 0.009) for the ROA vs. DA groups, respectively. Using multiple regression analysis, DA was found to be associated with detecting higher degree of luminal stenosis (β = 19.17, 95% CI 6.28-32.05, p = 0.006). This small case series provides evidence on the theoretical concern that ROA does not adequately evaluate inflow lesions. We may conclude that by relying solely on ROA, interventional nephrologists may be failing to detect a subset of hemodynamically significant inflow lesions.
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