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May 1, 2011Journal of Diabetes Science and TechnologyOpen Access

Biomechanics of the Sensor-Tissue Interface—Effects of Motion, Pressure, and Design on Sensor Performance and Foreign Body Response—Part II: Examples and Application

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Key result

Biomechanical factors such as acute and chronic motion and pressure impact continuous glucose monitor signals, highlighting the need to optimize mechanical biocompatibility for long-term sensors.

Design

Review

Authors

KHKristen HeltonProfusa (United States)BRBuddy D. RatnerUniversity of AkronNWNatalie WisniewskiUtah State University

Discussion

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Implication

Motion and pressure effects merit attention in CGM troubleshooting; leaves open prospective validation of mechanical biocompatibility optimizations.

Structured PICO

E
Exposure
Continuous glucose sensors
O
Outcome
Sensor performance and foreign body response

Mechanical biocompatibility, including the effects of motion and pressure, is a crucial factor that must be optimized to improve the performance of continuous glucose sensors.

Cite This Study

Helton et al. (2011) conducted a review in Diabetes (continuous glucose monitoring). Continuous glucose sensors was evaluated. Biomechanical factors such as acute and chronic motion and pressure impact continuous glucose monitor signals, highlighting the need to optimize mechanical biocompatibility for long-term sensors.

synapsesocial.com/papers/6aa028979ff3669d7162aa63https://doi.org/10.1177/193229681100500318
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