Blood flow rather than oxygen extraction accounts for a size-dependent capillary-function DSC-MRI oxygen-metabolism contrast in glioblastoma

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Abstract

Background

Dynamic susceptibility contrast MRI with capillary-function post-processing exports a relative maximum cerebral metabolic rate of oxygen, formed from blood flow and a transit-time-derived extraction term. The share each contributes to an observed contrast is unquantified in glioblastoma.

Methods

In a retrospective single-centre cohort with untreated glioblastoma, six perfusion maps normalised to normal-appearing white matter were sampled in automatically segmented enhancing tumour and peritumoral brain. The paired compartment contrast in the oxygen-metabolism index was partitioned into flow, extraction and residual terms and examined against tumour-core volume.

Results

Of 131 included patients, 122 were suitable for analysis. Flow-linked maps were about twice as high in enhancing tumour, with transit and extraction maps only modestly increased (all q < 0.05). Flow accounted for 92.6% (95% CI 85.9–98.8) of the contrast and extraction for 6.6% (0.7–12.9). Across volume tertiles the flow share rose from 67.8% to 104.0%, a gradient arising peritumorally: every map changed with volume there, none in enhancing tumour.

Conclusion

The compartment contrast in the oxygen-metabolism index is largely accounted for by blood flow and varies with lesion size, that dependence originating peritumoral tissue. It should be interpreted within the complete perfusion panel, not as independent metabolic evidence.

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