Noncontrast MRI Assessment of Oxygen Metabolism in Human Calf Muscles Using VSASL and ANN‐Based GESSE

ABSTRACT To investigate the feasibility of a noncontrast MRI framework combining velocity‐selective arterial spin labeling (VSASL) and artificial neural network (ANN)–based gradient‐echo sampling of spin‐echo (GESSE) analysis for quantifying exercise‐induced changes in calf muscle perfusion and oxygen metabolism. Ten healthy volunteers (mean age: 31.1 ± 5.45 years) underwent MRI scans before and after standardized eccentric calf muscle exercise. Muscle blood flow (MBF) was assessed using VSASL with 3D GRASE readout, while muscle oxygen extraction fraction (MOEF) was estimated from GESSE data using an ANN‐based method. Skeletal muscle oxygen consumption (SMVO 2 ) was calculated based on Fick's principle. All maps were registered to T2‐weighted images, and linear mixed‐effects models were applied to evaluate the effects of time and muscle group. Following exercise, a significant increase in MBF was observed ( Δ = 6.91 mL/100 g/min, p < 0.001), primarily in the gastrocnemius and soleus muscles. MOEF also increased significantly ( Δ = 0.014, p = 0.029), with no significant differences across muscles. SMVO 2 showed a significant overall increase ( Δ = 25.56 μmol O 2 /100 g/min, p < 0.001), with a significant interaction between time and muscle ( p = 0.028). The greatest SMVO 2 increases were observed in the gastrocnemius (68.76% ± 36.1%) and soleus (51.94% ± 44.0%). This noncontrast approach using VSASL and ANN‐based GESSE demonstrates the feasibility of spatially resolved quantification of calf muscle hemodynamics and oxygen metabolism. This method may serve as a valuable tool for assessing microvascular and metabolic function in both research and clinical practice.

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Journal
NMR in Biomedicine
Published
2026-09-11
DOI
https://doi.org/10.1002/nbm.70387
Primary Topic
Advanced MRI Techniques and Applications
Type
article
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Noncontrast MRI Assessment of Oxygen Metabolism in Human Calf Muscles Using VSASL and ANN‐Based GESSE

Hyungseok Jang, Hanyi Zhang, Hans‐Ulrich Kauczor, Ke Zhang et al.
NMR in Biomedicine
Advanced MRI Techniques and Applications
article

Noncontrast MRI Assessment of Oxygen Metabolism in Human Calf Muscles Using VSASL and ANN‐Based GESSE

Hyungseok Jang, Hanyi Zhang, Hans‐Ulrich Kauczor, Ke Zhang, Sam Sedaghat, Congcong Fu
article en

Abstract

ABSTRACT To investigate the feasibility of a noncontrast MRI framework combining velocity‐selective arterial spin labeling (VSASL) and artificial neural network (ANN)–based gradient‐echo sampling of spin‐echo (GESSE) analysis for quantifying exercise‐induced changes in calf muscle perfusion and oxygen metabolism. Ten healthy volunteers (mean age: 31.1 ± 5.45 years) underwent MRI scans before and after standardized eccentric calf muscle exercise. Muscle blood flow (MBF) was assessed using VSASL with 3D GRASE readout, while muscle oxygen extraction fraction (MOEF) was estimated from GESSE data using an ANN‐based method. Skeletal muscle oxygen consumption (SMVO 2 ) was calculated based on Fick's principle. All maps were registered to T2‐weighted images, and linear mixed‐effects models were applied to evaluate the effects of time and muscle group. Following exercise, a significant increase in MBF was observed ( Δ = 6.91 mL/100 g/min, p < 0.001), primarily in the gastrocnemius and soleus muscles. MOEF also increased significantly ( Δ = 0.014, p = 0.029), with no significant differences across muscles. SMVO 2 showed a significant overall increase ( Δ = 25.56 μmol O 2 /100 g/min, p < 0.001), with a significant interaction between time and muscle ( p = 0.028). The greatest SMVO 2 increases were observed in the gastrocnemius (68.76% ± 36.1%) and soleus (51.94% ± 44.0%). This noncontrast approach using VSASL and ANN‐based GESSE demonstrates the feasibility of spatially resolved quantification of calf muscle hemodynamics and oxygen metabolism. This method may serve as a valuable tool for assessing microvascular and metabolic function in both research and clinical practice.

NMR in BiomedicineVol. 39(10)
German Cancer Research Center (DE), Heidelberg University (DE), University Hospital Heidelberg (DE), German Center for Lung Research (DE), University of California, Davis (US)
Good health and well-being
Openalex Percentile: Top 11%
Advanced MRI Techniques and Applications
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