Carmona Cristian, Alorda Bartomeu, Gracia Luis, Perez-Vidal Carlos, Salinas Antonio
Illes Balears University, Ctra, Valldemossa km 7.5 Ed. Mateu Orfila, 07122 Palma, Spain.
Instituto IDF, Universitat Politecnica de Valencia, 46022 Valencia, Spain.
Undersea Hyperb Med. 2017 May-Jun;44(3):243-256. doi: 10.22462/5.6.2017.5.
This paper presents the replacement of a traditional wired communication link of the hyperbaric chambers with a wireless ZigBee-based system. This move allows a reduction in the costs of seals capable of withstanding the internal pressures and gives rise to a more versatile system. The new system is able to capture and process individual vital signs like the electrocardiography signal, and other analog sources, sending the data to an external computer and allowing analysis, representation and sharing with medical staff. This system solves such problems as the attenuation of the signal produced by the metal walls of the hyperbaric chamber and has a coverage area large enough to manage up to six patients with an effective data rate conversion of 2kHz. Furthermore, a battery-based and multiparameter platform is designed for multipatient hyperbaric chambers.
本文介绍了用基于ZigBee的无线系统取代高压氧舱传统有线通信链路的情况。此举可降低能够承受内部压力的密封件成本,并产生一个更通用的系统。新系统能够采集和处理诸如心电图信号等个体生命体征以及其他模拟源,将数据发送到外部计算机,并允许与医务人员进行分析、呈现和共享。该系统解决了高压氧舱金属壁产生的信号衰减等问题,其覆盖区域足够大,能够管理多达六名患者,有效数据速率转换为2kHz。此外,还为多患者高压氧舱设计了一个基于电池的多参数平台。