Page 168 - Glucose Monitoring Devices
P. 168
References 169
[18] Boyne M, Silver D, Kaplan J, Saudek C. Timing of changes in interstitial and venous
blood glucose measured with a continuous subcutaneous glucose sensor. Diabetes
2003;52:2790e4.
[19] Kulcu E, Tamada JA, Reach G, Potts RO, Lesho MJ. Physiological differences between
interstitial glucose and blood glucose measured in human subjects. Diabetes Care 2003;
26:2405e9.
[20] Stout PJ, Racchini JR, Hilgers ME. A novel approach to mitigating the physiological lag
between blood and interstitial fluid glucose measurements. Diabetes Technology and
Therapeutics 2004;6:635e44.
[21] Wentholt IME, Hart AAM, Hoekstra JBL, DeVries JH. Relationship between interstitial
and blood glucose in type 1 diabetes patients: delay and the push-pull phenomenon
revisited. Diabetes Technology and Therapeutics 2004;9:169e75.
[22] Wientjes KJ, Schoonen AJ. Determination of time delay between blood and interstitial
adipose tissue glucose concentration change by microdialysis in healthy volunteers. The
International Journal of Artificial Organs 2001;24:884e9.
[23] Aussedat B, Dupire-Angel M, Gifford R, Klein JC, Wilson GS, Reach G. Interstitial
glucose concentration and glycemia: implications for continuous subcutaneous
glucose monitoring. American Journal of Physiology Endocrinology and Metabolism
2000;278:E716e28.
[24] Basu A, Dube S, Slama M, Errazuriz I, Amezcua JC, Kudva YC, Peyser T, Carter RE,
Cobelli C, Basu R. Time lag of glucose from intravascular to interstitial compartment in
humans. Diabetes 2013;62:4083e7.
[25] Basu A, Dube S, Veettil S, Slama M, Kudva YC, Peyser T, Carter RE, Cobelli C,
Basu R. Time lag of glucose from intravascular to interstitial compartment in type 1
diabetes. Journal of Diabetes Science and Technology 2014. https://doi.org/10.1177/
1932296814554797.
[26] Kovatchev BP, Clarke WL. Peculiarities of the continuous glucose monitoring data
stream and their impact on developing closed-loop control technology. Journal of Dia-
betes Science and Technology 2008;2:158e63.
[27] Clarke WL, Kovatchev BP. Continuous glucose sensors: continuing questions about
clinical accuracy. Journal of Diabetes Science and Technology 2007;1:669e75.
[28] The Diabetes Research in Children Network (DirecNet) Study Group. The accuracy of
the GuardianÒ RT continuous glucose monitor in children with type 1 diabetes. Dia-
betes Technology and Therapeutics 2008;10:266e72.
[29] Kovatchev BP, Anderson SM, Heinemann L, Clarke WL. Comparison of the numerical
and clinical accuracy of four continuous glucose monitors. Diabetes Care 2008;31:
1160e4.
[30] Garg SK, Smith J, Beatson C, Lopez-Baca B, Voelmle M, Gottlieb PA. Comparison of
accuracy and safety of the SEVEN and the navigator continuous glucose monitoring
systems. Diabetes Technology and Therapeutics 2009;11:65e72.
[31] Christiansen M, Bailey T, Watkins E, Liljenquist D, Price D, Nakamura K, Boock R,
Peyser T. A new-generation continuous glucose monitoring system: improved accuracy
and reliability compared with a previous-generation system. Diabetes Technology and
Therapeutics 2013;15:881e8.