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Dive into the research topics where Guenther Schmelzeisen-Redeker is active.

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Featured researches published by Guenther Schmelzeisen-Redeker.


Journal of diabetes science and technology | 2017

Analysis of the Accuracy and Performance of a Continuous Glucose Monitoring Sensor Prototype: An In-Silico Study Using the UVA/PADOVA Type 1 Diabetes Simulator:

Marc D. Breton; Rolf Hinzmann; Enrique Campos-Náñez; Susan Riddle; Michael Schoemaker; Guenther Schmelzeisen-Redeker

Background: Computer simulation has been shown over the past decade to be a powerful tool to study the impact of medical devices characteristics on clinical outcomes. Specifically, in type 1 diabetes (T1D), computer simulation platforms have all but replaced preclinical studies and are commonly used to study the impact of measurement errors on glycemia. Method: We use complex mathematical models to represent the characteristics of 3 continuous glucose monitoring systems using previously acquired data. Leveraging these models within the framework of the UVa/Padova T1D simulator, we study the impact of CGM errors in 6 simulation scenarios designed to generate a wide variety of glycemic conditions. Assessment of the simulated accuracy of each different CGM systems is performed using mean absolute relative deviation (MARD) and precision absolute relative deviation (PARD). We also quantify the capacity of each system to detect hypoglycemic events. Results: The simulated Roche CGM sensor prototype (RCGM) outperformed the 2 alternate systems (CGM-1 & CGM-2) in accuracy (MARD = 8% vs 11.4% vs 18%) and precision (PARD = 6.4% vs 9.4% vs 14.1%). These results held for all studied glucose and rate of change ranges. Moreover, it detected more than 90% of hypoglycemia, with a mean time lag less than 4 minutes (CGM-1: 86%/15 min, CGM-2: 57%/24 min). Conclusion: The RCGM system model led to strong performances in these simulation studies, with higher accuracy and precision than alternate systems. Its characteristics placed it firmly as a strong candidate for CGM based therapy, and should be confirmed in large clinical studies.


Archive | 2000

System for withdrawing body fluid

Guenther Schmelzeisen-Redeker; Thomas Weiss; Frank Deck; Klaus Peter Ebert


Archive | 2006

Analysis apparatus and analysis method for body fluids

Joachim Hoenes; Hans List; Uwe Kraemer; Karl Miltner; Juergen Rasch-Menges; Guenther Schmelzeisen-Redeker; Volker Zimmer; Peter Hess; Paul Jansen


Archive | 2003

System for pain-reduced withdrawal of blood

Claus-Dieter Garthe; Peter Ruschke; Guenther Schmelzeisen-Redeker; Claudio Immekus; Uschi Wolf; Klemens Masuch; Hans List


Archive | 2007

Integrated device for diagnostic purposes

Frank Deck; Joachim Doepper; Christian Hoerauf; Rudolf Pachl; Juergen Rasch-Menges; Joerg Scherer; Guenther Schmelzeisen-Redeker; Wilfried Schmid; Jochen Schulat; Bruno Thoes; Sven Winheim


Archive | 2001

System for removing body fluid

Frank Deck; Klaus-Peter Ebert; Guenther Schmelzeisen-Redeker; Thomas Weiss


Archive | 2004

Analysegerät und analyseverfahren für körperflüssigkeiten

Peter Hess; Joachim Hoenes; Paul Jansen; Uwe Kraemer; Hans List; Karl Miltner; Juergen Rasch-Menges; Guenther Schmelzeisen-Redeker; Volker Zimmer


Archive | 2008

Analysis system with user-friendly display element

Guenther Schmelzeisen-Redeker; Wolfgang Heck; Stefan Kalveram; Andreas Menke; Wilfried Schmid; Friedrich Ziegler


Archive | 2000

System for improved determination of the level of glucose in interstitial fluid

Guenther Schmelzeisen-Redeker; Heinrich Fruhstorfer; Alexander Fink


Archive | 2005

Blutentnahmesystem zur entnahme von blut für diagnosezwecke

Joerg Scherer; Guenther Schmelzeisen-Redeker; Wilfried Schmid; Jürgen Rasch-Menges; Rudolf Pachl; Jochen Schulat; Christian Hoerauf; Frank Deck; Bruno Thoes; Joachim Doepper; Sven Winheim

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