Accuracy of Handheld Blood Glucose Meters at High Altitude

被引:23
作者
de Mol, Pieter [1 ]
Krabbe, Hans G. [2 ]
de Vries, Suzanna T. [3 ]
Fokkert, Marion J. [2 ]
Dikkeschei, Bert D. [2 ]
Rienks, Rienk [4 ]
Bilo, Karin M. [5 ]
Bilo, Henk J. G. [5 ,6 ]
机构
[1] Canisius Wilhelmina Hosp, Dept Internal Med, Nijmegen, Netherlands
[2] Isala Clin, Dept Clin Chem, Zwolle, Netherlands
[3] Isala Clin, Dept Cardiol, Zwolle, Netherlands
[4] Dutch Airforce, Ctr Human Aviat, Soesterberg, Netherlands
[5] Isala Clin, Dept Internal Med, Zwolle, Netherlands
[6] Univ Groningen, Univ Med Ctr Groningen, Dept Internal Med, NL-9713 AV Groningen, Netherlands
来源
PLOS ONE | 2010年 / 5卷 / 11期
关键词
PERFORMANCE; SYSTEMS;
D O I
10.1371/journal.pone.0015485
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Due to increasing numbers of people with diabetes taking part in extreme sports (e. g., high-altitude trekking), reliable handheld blood glucose meters (BGMs) are necessary. Accurate blood glucose measurement under extreme conditions is paramount for safe recreation at altitude. Prior studies reported bias in blood glucose measurements using different BGMs at high altitude. We hypothesized that glucose-oxidase based BGMs are more influenced by the lower atmospheric oxygen pressure at altitude than glucose dehydrogenase based BGMs. Methodology/Principal Findings: Glucose measurements at simulated altitude of nine BGMs (six glucose dehydrogenase and three glucose oxidase BGMs) were compared to glucose measurement on a similar BGM at sea level and to a laboratory glucose reference method. Venous blood samples of four different glucose levels were used. Moreover, two glucose oxidase and two glucose dehydrogenase based BGMs were evaluated at different altitudes on Mount Kilimanjaro. Accuracy criteria were set at a bias <15% from reference glucose (when >6.5 mmol/L) and <1 mmol/L from reference glucose (when <6.5 mmol/L). No significant difference was observed between measurements at simulated altitude and sea level for either glucose oxidase based BGMs or glucose dehydrogenase based BGMs as a group phenomenon. Two GDH based BGMs did not meet set performance criteria. Most BGMs are generally overestimating true glucose concentration at high altitude. Conclusion: At simulated high altitude all tested BGMs, including glucose oxidase based BGMs, did not show influence of low atmospheric oxygen pressure. All BGMs, except for two GDH based BGMs, performed within predefined criteria. At true high altitude one GDH based BGM had best precision and accuracy.
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页数:7
相关论文
共 9 条
[1]  
Bilen H., 2007, Journal of Medical Engineering & Technology, V31, P152, DOI 10.1080/03091900600861590
[2]  
CHAN AYW, 1989, CLIN CHEM, V35, P315
[3]   EVALUATING CLINICAL ACCURACY OF SYSTEMS FOR SELF-MONITORING OF BLOOD-GLUCOSE [J].
CLARKE, WL ;
COX, D ;
GONDERFREDERICK, LA ;
CARTER, W ;
POHL, SL .
DIABETES CARE, 1987, 10 (05) :622-628
[4]  
Fink Kenneth S, 2002, Diabetes Technol Ther, V4, P627, DOI 10.1089/152091502320798259
[5]  
GAULTIER JF, 1996, DIABETES CARE, V19, P1430
[6]  
Ginsberg Barry H, 2009, J Diabetes Sci Technol, V3, P903
[7]   Extreme altitude mountaineering and Type 1 diabetes; the Diabetes Federation of Ireland Kilimanjaro Expedition [J].
Moore, K ;
Vizzard, N ;
Coleman, C ;
McMahon, J ;
Hayes, R ;
Thompson, CJ .
DIABETIC MEDICINE, 2001, 18 (09) :749-755
[8]   Performance of glucose dehydrogenase- and glucose oxidase-based blood glucose meters at high altitude and low temperature [J].
Öberg, D ;
Östenson, CG .
DIABETES CARE, 2005, 28 (05) :1261-1261
[9]   Effects of exposure at an altitude of 3,000 m on performance of glucose meters [J].
Pecchio, O ;
Maule, S ;
Migliardi, M ;
Trento, M ;
Veglio, M .
DIABETES CARE, 2000, 23 (01) :129-131