Publication | Closed Access
A Minimally Invasive Blood‐Extraction System: Elastic Self‐Recovery Actuator Integrated with an Ultrahigh‐ Aspect‐Ratio Microneedle
50
Citations
19
References
2012
Year
Medical ElectronicsEngineeringMechanical EngineeringInvasive Blood-extraction SystemMicroelectromechanical SystemsBiomedical EngineeringMicroactuatorMicromachinesSoft RoboticsBiomechanicsBlood ExtractionBiomedical DevicesMicrofluidicsBiomimetic ActuatorUltrahigh‐ Aspect‐ratio MicroneedleActuationElastic Self-recovery ActuatorMicrofabricationBioelectronics
A minimally invasive blood-extraction system is fabricated by the integration of an elastic self-recovery actuator and an ultrahigh-aspect-ratio microneedle. The simple elastic self-recovery actuator converts finger force to elastic energy to provide power for blood extraction and transport without requiring an external source of power. This device has potential utility in the biomedical field within the framework of complete micro-electromechanical systems.
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