Graschew Georgi, Roelofs Theo A, Rakowsky Stefan, Schlag Peter M
Surgical Research Unit OP 2000, Robert-Roessle-Klinik and Max-Delbrueck-Centrum, Charité-University Medicine Berlin, Lindenberger Weg 80, Berlin, Germany.
Stud Health Technol Inform. 2008;131:67-82.
Over the last decade various international Information and Communications Technology networks have been created for a global access to high-level medical care. OP 2000 has designed and validated the high-end interactive video communication system WinVicos especially for telemedical applications, training of the physician in a distributed environment, teleconsultation and second opinion. WinVicos is operated on a workstation (WoTeSa) using standard hardware components and offers a superior image quality at a moderate transmission bandwidth of up to 2 Mbps. WoTeSa / WinVicos have been applied for IP-based communication in different satellite-based telemedical networks. In the DELTASS-project a disaster scenario was analysed and an appropriate telecommunication system for effective rescue measures for the victims was set up and evaluated. In the MEDASHIP project an integrated system for telemedical services (teleconsultation, teleelectro-cardiography, telesonography) on board of cruise ships and ferries has been set up. EMISPHER offers an equal access for most of the countries of the Euro-Mediterranean area to on-line services for health care in the required quality of service. E-learning applications, real-time telemedicine and shared management of medical assistance have been realized. The innovative developments in ICT with the aim of realizing a ubiquitous access to medical resources for everyone at any time and anywhere (u-Health) bear the risk of creating and amplifying a digital divide in the world. Therefore we have analyzed how the objective needs of the heterogeneous partners can be joined with the result that there is a need for real integration of the various platforms and services. A virtual combination of applications serves as the basic idea for the Virtual Hospital. The development of virtual hospitals and digital medicine helps to bridge the digital divide between different regions of the world and enables equal access to high-level medical care. Pre-operative planning, intra-operative navigation and minimally-invasive surgery require a digital and virtual environment supporting the perception of the physician. As data and computing resources in a virtual hospital are distributed over many sites the concept of the Grid should be integrated with other communication networks and platforms.
在过去十年中,已创建了各种国际信息和通信技术网络,以便全球范围内获得高级医疗服务。OP 2000专门为远程医疗应用、在分布式环境中培训医生、远程会诊和提供第二诊疗意见设计并验证了高端交互式视频通信系统WinVicos。WinVicos在使用标准硬件组件的工作站(WoTeSa)上运行,在高达2 Mbps的适度传输带宽下提供卓越的图像质量。WoTeSa / WinVicos已应用于不同的基于卫星的远程医疗网络中的基于IP的通信。在DELTASS项目中,分析了灾难场景,并建立并评估了一个用于为受害者采取有效救援措施的适当电信系统。在MEDASHIP项目中,已在游轮和渡轮上建立了一个用于远程医疗服务(远程会诊、远程心电图、远程超声检查)的集成系统。EMISPHER为欧洲 - 地中海地区的大多数国家提供了以所需服务质量平等访问在线医疗保健服务的机会。电子学习应用、实时远程医疗和医疗援助的共享管理已经实现。旨在实现让每个人在任何时间、任何地点都能普遍获取医疗资源(移动健康)的信息通信技术创新发展,存在在世界上造成和扩大数字鸿沟的风险。因此,我们分析了如何将异构合作伙伴的客观需求结合起来,结果是需要对各种平台和服务进行真正的整合。应用程序的虚拟组合是虚拟医院的基本理念。虚拟医院和数字医学的发展有助于弥合世界不同地区之间的数字鸿沟,并使人们能够平等获得高级医疗服务。术前规划、术中导航和微创手术需要一个支持医生感知的数字和虚拟环境。由于虚拟医院中的数据和计算资源分布在许多站点,因此网格概念应与其他通信网络和平台集成。