ArticleDiabetic medicine : a journal of the British Diabetic Association2009
Skeletal muscle microvascular exchange capacity is associated with hyperglycaemia in subjects with central obesity.
Article in Diabetic medicine : a journal of the British Diabetic Association, 2009. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It reports registered trial NCT00666029. Cited by 2 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Implications for Treatment of the Metabolic Syndrome
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2 citing papers in PubMed, 12 citations in OpenAlex.
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- Differences in the daily activity of patients with diabetic foot ulcers compared to controls in their free-living environments.International wound journal · 2017Article
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7 authors at 3 institutions in 1 country.
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Abstract
aimsPoor glycaemic control is associated with increased risk of microvascular disease in various organs including the eye and kidney, but the relationship between glycated haemoglobin (HbA(1c)) and microvascular function in skeletal muscle has not been described. We tested the association between HbA(1c) and a measure of microvascular exchange capacity (K(f)) in skeletal muscle in people with central obesity at risk of developing Type 2 diabetes.
methodsMicrovascular function was measured in 28 women and 19 men [mean (+/- sd) age 51 +/- 9 years] with central obesity who did not have diabetes. We estimated insulin sensitivity by hyperinsulinaemic-euglycaemic clamp, visceral and total fatness by magnetic resonance imaging, fitness (VO(2) max by treadmill testing), physical activity energy expenditure [metabolic equivalents of tasks (METS) by use of the SenseWear Pro armband] and skeletal muscle microvascular exchange capacity (K(f)) by venous occlusion plethysmography.
resultsIn regression modelling, age, sex and fasting plasma glucose accounted for 30.5% of the variance in HbA(1c) (r(2) = 0.31, P = 0.001). Adding K(f) to this model explained an additional 26.5% of the variance in HbA(1c) (r(2) = 0.57, P = 0.0001 and K(f) was strongly and independently associated with HbA(1c) (standardized B coefficient -0.45 (95% confidence interval -0.19, -0.06), P = 0.001).
conclusionsWe found a strong negative independent association between a measure of skeletal muscle microvascular exchange capacity (K(f)) and HbA(1c). K(f) was associated with almost as much of the variance in HbA(1c) as fasting plasma glucose.
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