低温环境不会改变耐力训练自行车运动员的皮下腹部脂肪组织脂肪分解和血流量。

IF 3 3区 医学 Q2 NUTRITION & DIETETICS International journal of sport nutrition and exercise metabolism Pub Date : 2024-02-08 Print Date: 2024-05-01 DOI:10.1123/ijsnem.2023-0150
Christopher W Bach, Patrick G Saracino, Daniel A Baur, Brandon D Willingham, Brent C Ruby, Michael J Ormsbee
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引用次数: 0

摘要

本研究旨在探讨耐力训练自行车运动员在进行稳态耐力运动时,寒冷环境温度对皮下腹部脂肪组织(SCAAT)脂肪分解和血流量的影响。十名男性(年龄:23 ± 3 岁;峰值耗氧量:60.60 ± 4.84 m/s)参加了这项研究:60.60 ± 4.84 ml-kg-1-min-1;体脂:18.4% ± 3.5%)参加了基线乳酸阈值(LT)和峰值耗氧量测试、两次熟悉试验和两次实验试验。实验测试包括在低温(3 °C;42% 相对湿度)和中性(NEU;19 °C;39% 相对湿度)温度下骑自行车。运动包括在 70% LT 和 90% LT 下各骑行 25 分钟。通过微透析测量原位 SCAAT 脂肪分解和血流量。此外,还测量了心率、体温、碳水化合物和脂肪氧化、血糖和血乳酸。心率、体温、耗氧量和血乳酸随运动而增加,但在 COLD 和 NEU 之间没有差异。SCAAT 血流从静止到运动时没有变化,在 COLD 和 NEU 之间也没有变化。间质甘油在运动过程中增加(p < .001),COLD 和 NEU 之间无差异。脂肪氧化作用在运动开始时增加(p < .001),此后保持升高,但中性粒细胞减少症和东北大学之间没有差异。碳水化合物氧化随着运动强度的增加而增加,在 70% LT 时,与 NEU 相比,COLD 的碳水化合物氧化更高(p = .030)。其他变量在不同条件下均无差异。骑自行车运动增加了 SCAAT 脂肪分解,但没有增加血流量。环境温度不会改变训练有素的自行车运动员的SCAAT代谢、SCAAT血流或脂肪氧化,尽管在较低的运动强度下,暴露在寒冷环境中会增加全身碳水化合物的氧化。
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Cold Ambient Temperature Does Not Alter Subcutaneous Abdominal Adipose Tissue Lipolysis and Blood Flow in Endurance-Trained Cyclists.

This study sought to investigate the effect of cold ambient temperature on subcutaneous abdominal adipose tissue (SCAAT) lipolysis and blood flow during steady-state endurance exercise in endurance-trained cyclists. Ten males (age: 23 ± 3 years; peak oxygen consumption: 60.60 ± 4.84 ml·kg-1·min-1; body fat: 18.4% ± 3.5%) participated in baseline lactate threshold (LT) and peak oxygen consumption testing, two familiarization trials, and two experimental trials. Experimental trials consisted of cycling in COLD (3 °C; 42% relative humidity) and neutral (NEU; 19 °C; 39% relative humidity) temperatures. Exercise consisted of 25 min cycling at 70% LT and 25 min at 90% LT. In situ SCAAT lipolysis and blood flow were measured via microdialysis. Heart rate, core temperature, carbohydrate and fat oxidation, blood glucose, and blood lactate were also measured. Heart rate, core temperature, oxygen consumption, and blood lactate increased with exercise but were not different between COLD and NEU. SCAAT blood flow did not change from rest to exercise or between COLD and NEU. Interstitial glycerol increased during exercise (p < .001) with no difference between COLD and NEU. Fat oxidation increased (p < .001) at the onset of exercise and remained elevated thereafter with no difference between COLD and NEU. Carbohydrate oxidation increased with increasing exercise intensity and was greater at 70% LT in COLD compared to NEU (p = .030). No differences were observed between conditions for any other variable. Cycling exercise increased SCAAT lipolysis but not blood flow. Ambient temperature did not alter SCAAT metabolism, SCAAT blood flow, or fat oxidation in well-trained cyclists, though cold exposure increased whole-body carbohydrate oxidation at lower exercise intensities.

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来源期刊
CiteScore
5.00
自引率
8.00%
发文量
50
审稿时长
6-12 weeks
期刊介绍: The International Journal of Sport Nutrition and Exercise Metabolism (IJSNEM) publishes original scientific investigations and scholarly reviews offering new insights into sport nutrition and exercise metabolism, as well as articles focusing on the application of the principles of biochemistry, physiology, and nutrition to sport and exercise. The journal also offers editorials, digests of related articles from other fields, research notes, and reviews of books, videos, and other media releases. To subscribe to either the print or e-version of IJSNEM, press the Subscribe or Renew button at the top of your screen.
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