Abstract
Mobile medical devices, such as infusion pumps, provide an important therapeutic function. They are also valuable sources of information about treatment patterns at the point of care. However, these mobile devices have been independent islands of valuable information, unable to share the data they gather with other hospital information resources on a real time basis. Although data from these devices can provide significant improvements for medical safety and vital information needed for clinical best practice development, gathering that data poses significant challenges when interfacing with hospital information systems. Mobile medical devices move from place to place as independent actors, raising a series of security and identification issues when they need to be disconnected and reconnected using traditional tethered cable connections. The continuing lack of accepted communications protocol standards, in spite of the concentrated efforts of organizations like the IEEE and the Medical Information Bus (IEEE 1073) to establish them, has made integration into the hospital information system a complex and non-standard task. The rapid spread in availability and adoption of high-speed 802.11 wireless systems in hospitals offers a realistic connectivity solution for mobile medical devices. Inspite of this, the 802.11 standard is still evolving, and current security methods designed for user-based products like PDAs and laptop computers are not ideal for unmanned mobile medical devices because they assume the availability of a human operator to authenticate a wireless session. In the absence of accepted standards, manufacturers have created practical and innovative solutions to support the collection of clinical data from mobile medical devices and the integration of that data with hospital information systems. This paper will explore the potential benefits of integrating mobile medical devices into the hospital information system, and describe the challenges in developing connectivity for such system based on actual experience with the implementation of wired, wireless, and hybrid systems in active medical environments.
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