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Featured researches published by Difei Yang.


Diabetes Technology & Therapeutics | 1999

Fluorescein Kinetics in Interstitial Fluid Harvested from Diabetic Skin during Fluorescein Angiography: Implications for Glucose Monitoring

Alan Smith; Difei Yang; Harry K. Delcher; Jonathan A. Eppstein; Deidre Williams; Shelby Wilkes

BACKGROUND Glucose monitoring based on sampling skin interstitial fluid (ISF) is being developed as an alternative to fingerstick blood glucose monitoring. Time delays between rapidly changing levels of glucose in blood and interstitial fluid have been reported in the literature to be between 5 and 20 minutes. This study investigated the time delay between the injection of a small molecular weight fluorescent tracer into the circulation and interstitial fluid. METHODS Diabetic subjects undergoing fluorescein angiography were studied. Skin ISF was sampled using a proprietary microporation and harvesting process. ISF was drawn through micropores created in the stratum corneum. After intravenous injection of sodium fluorescein, samples of ISF were drawn from 2 sites for 30 seconds over a period of 20 minutes. Fluorescence levels in ISF were measured with a fluorometer and used to create ISF fluorescein concentration versus time profiles. RESULTS The ISF fluorescein versus time profiles were characterized by a rapid rise followed by a slow decay. The time to peak of the ISF fluorescein concentration ranged from 2-4 minutes for the patients studied. CONCLUSIONS Intravenous injection of a bolus of low molecular weight fluorescent tracer was used to estimate the time delay between changing glucose levels in blood and ISF. The results indicate that the ISF sampling technology utilized here is capable of tracking rapidly rising levels of blood glucose.


Archive | 1996

Microporation of human skin for monitoring the concentration of an analyte

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang


Archive | 1996

Microporation of human skin for drug delivery and monitoring applications

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang


Archive | 2002

Integrated tissue poration, fluid harvesting and analysis device, and method therefor

Jonathan A. Eppstein; Mark A. Samuels; Michael R. Hatch; Difei Yang


Archive | 1999

Photothermal structure for biomedical applications, and method therefor

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang


Archive | 2002

System and method for monitoring or treating a health condition

Mark L Faupel; Raulee Marcus; Alan Smith; Difei Yang


Archive | 2006

Microporation of human skin for drug delivery and monitoring

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang; エイ. エプステイン ジョナサン; ヤング ディフェイ; アール. ハッチ マイケル


Archive | 1996

Mikroporation der menschlichen haut zur arzneimittelabgabe und überwachungsanwendungen

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang


Archive | 1996

Realisation de micropores sur la peau humaine pour l'administration de medicaments et les applications de monitorage

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang


Archive | 1996

Mikroperforation von menschlicher Haut zur Medikamentenverabreichung und Überwachungsanwendungen

Jonathan A. Eppstein; Michael R. Hatch; Difei Yang

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