Megias-Alguacil David, Keller Thierry, Lutz Kai, Barlow Ashley P, Ettlin Dominik A
Automatic Control Laboratory, ETH Zurich, 8092 Zurich, Switzerland.
Rev Sci Instrum. 2008 Jan;79(1):014301. doi: 10.1063/1.2823329.
We present the design, construction, and performance of a novel multi-injector gas jet delivery capable of operating in a magnetic resonance imaging environment. This apparatus is computer controlled and built with two separate pneumatic circuits enabling gas jet applications at variable sites through four independently activated injectors. Gas jet delivery is fully controllable in terms of pressure, flow rate, gas temperature, application time, and duration of interstimulus interval. We characterized these parameters, considering effects such as pressure drop by flow transport, transient effects, and delays in activation. The system offers new possibilities for use in various biomedical contexts such as, e.g., quantitative sensory testing or dental hypersensitivity assessment.
我们展示了一种新型多注射器气体喷射装置的设计、构造及性能,该装置能够在磁共振成像环境中运行。此设备由计算机控制,采用两个独立的气动回路构建,通过四个独立激活的注射器可在不同部位进行气体喷射应用。气体喷射输送在压力、流速、气体温度、应用时间以及刺激间隔持续时间方面完全可控。我们对这些参数进行了表征,考虑了诸如流动传输造成的压降、瞬态效应以及激活延迟等影响。该系统为各种生物医学应用提供了新的可能性,例如定量感觉测试或牙齿过敏评估。