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首页> 外文期刊>Journal of medical engineering & technology >Multi-parameter brain tissue microsensor and interface systems: Calibration, reliability and user experiences of pressure and temperature sensors in the setting of neurointensive care
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Multi-parameter brain tissue microsensor and interface systems: Calibration, reliability and user experiences of pressure and temperature sensors in the setting of neurointensive care

机译:多参数脑组织微传感器和接口系统:神经重症监护环境中压力和温度传感器的校准,可靠性和用户体验

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摘要

The objective was to investigate sensor measurement uncertainty for intracerebral probes inserted during neurosurgery and remaining in situ during neurocritical care. This describes a prospective observational study of two sensor types and including performance of the complete sensor-bedside monitoring and readout system. Sensors from 16 patients with severe traumatic brain injury (TBI) were obtained at the time of removal from the brain. When tested, 40% of sensors achieved the manufacturer temperature specification of 0.1 °C. Pressure sensors calibration differed from the manufacturers at all test pressures in 8/20 sensors. The largest pressure measurement error was in the intraparenchymal triple sensor. Measurement uncertainty is not influenced by duration in situ. User experiences reveal problems with sensor 'handling', alarms and firmware. Rigorous investigation of the performance of intracerebral sensors in the laboratory and at the bedside has established measurement uncertainty in the 'real world' setting of neurocritical care.
机译:目的是调查在神经外科手术期间插入并在神经重症监护期间留在原位的脑内探针的传感器测量不确定度。这描述了对两种传感器类型的前瞻性观察研究,包括完整的传感器床边监测和读出系统的性能。从大脑中取出时,获得了来自16名严重颅脑损伤(TBI)患者的传感器。经过测试,有40%的传感器达到了制造商规定的0.1°C温度。在8/20传感器的所有测试压力下,压力传感器的校准均不同于制造商。最大的压力测量误差是在实质内三重传感器中。测量不确定度不受原位持续时间的影响。用户体验揭示了传感器“处理”,警报和固件方面的问题。在实验室和床旁对脑内传感器性能的严格研究已经在神经重症监护的“现实世界”环境中建立了测量不确定性。

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