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Prolonged Exercise in Type 1 Diabetes: Performance of a Customizable Algorithm to Estimate the Carbohydrate Supplements to Minimize Glycemic Imbalances

机译:在1型糖尿病中的长时间运动:一种可定制算法的性能该算法可估算糖补充剂以最大程度地减少血糖失衡

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摘要

Physical activity in patients with type 1 diabetes (T1DM) is hindered because of the high risk of glycemic imbalances. A recently proposed algorithm (named Ecres) estimates well enough the supplemental carbohydrates for exercises lasting one hour, but its performance for prolonged exercise requires validation. Nine T1DM patients (5M/4F; 35–65 years; HbA1c 54±13 mmol·mol-1) performed, under free-life conditions, a 3-h walk at 30% heart rate reserve while insulin concentrations, whole-body carbohydrate oxidation rates (determined by indirect calorimetry) and supplemental carbohydrates (93% sucrose), together with glycemia, were measured every 30 min. Data were subsequently compared with the corresponding values estimated by the algorithm. No significant difference was found between the estimated insulin concentrations and the laboratory-measured values (p = NS). Carbohydrates oxidation rate decreased significantly with time (from 0.84±0.31 to 0.53±0.24 g·min-1, respectively; p<0.001), being estimated well enough by the algorithm (p = NS). Estimated carbohydrates requirements were practically equal to the corresponding measured values (p = NS), the difference between the two quantities amounting to –1.0±6.1 g, independent of the elapsed exercise time (time effect, p = NS). Results confirm that Ecres provides a satisfactory estimate of the carbohydrates required to avoid glycemic imbalances during moderate intensity aerobic physical activity, opening the prospect of an intriguing method that could liberate patients from the fear of exercise-induced hypoglycemia.
机译:1型糖尿病(T1DM)患者的身体活动受到阻碍,因为血糖失衡的风险很高。最近提出的算法(名为Ecres)可以很好地估计持续一小时的运动所需要的补充碳水化合物,但长时间运动的性能需要验证。 9名T1DM患者(5M / 4F; 35-65岁; HbA1c 54±13 mmol·mol -1 )在自由生活条件下进行了3小时的步行,心律储备为30%,每30分钟测量一次胰岛素浓度,全身碳水化合物氧化率(通过间接量热法测定)和补充碳水化合物(93%蔗糖)以及血糖。随后将数据与算法估计的相应值进行比较。在估计的胰岛素浓度和实验室测量值之间没有发现显着差异(p = NS)。碳水化合物的氧化速率随时间显着降低(分别从0.84±0.31降低至0.53±0.24 g·min -1 ; p <0.001),该算法已对其进行了充分估计(p = NS)。估计的碳水化合物需求量实际上等于相应的测量值(p = NS),这两个量之间的差为–1.0±6.1 g,与运动时间的长短无关(时间效应,p = NS)。结果证实,Ecres对中度有氧运动期间避免血糖失衡所需的碳水化合物提供了令人满意的估计,这为人们提供了一种诱人的方法前景,该方法可以使患者摆脱对运动引起的低血糖症的恐惧。

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