Strasser Torsten, Peters Tobias, Jägle Herbert, Zrenner Eberhart
Institute for Ophthalmic Research, University of Tuebingen, Elfriede-Aulhorn-Str. 7, 72076, Tübingen, Germany.
Department of Ophthalmology, University Hospital Regensburg, Regensburg, Germany.
Doc Ophthalmol. 2018 Feb;136(1):75-92. doi: 10.1007/s10633-017-9618-6. Epub 2017 Nov 11.
The ISCEV standards and recommendations for electrophysiological recordings in ophthalmology define a set of protocols with stimulus parameters, acquisition settings, and recording conditions, to unify the data and enable comparability of results across centers. Up to now, however, there are no standards to define the storage and exchange of such electrophysiological recordings. The aim of this study was to develop an open standard data format for the exchange and storage of visual electrophysiological data (ElVisML).
We first surveyed existing data formats for biomedical signals and examined their suitability for electrophysiological data in ophthalmology. We then compared the suitability of text-based and binary formats, as well as encoding in Extensible Markup Language (XML) and character/comma-separated values.
The results of the methodological consideration led to the development of ElVisML with an XML-encoded text-based format. This allows referential integrity, extensibility, the storing of accompanying units, as well as ensuring confidentiality and integrity of the data. A visualization of ElVisML documents (ElVisWeb) has additionally been developed, which facilitates the exchange of recordings on mailing lists and allows open access to data along with published articles.
The open data format ElVisML ensures the quality, validity, and integrity of electrophysiological data transmission and storage as well as providing manufacturer-independent access and long-term archiving in a future-proof format. Standardization of the format of such neurophysiology data would promote the development of new techniques and open software for the use of neurophysiological data in both clinic and research.
国际临床视觉电生理学会(ISCEV)的眼科电生理记录标准和建议定义了一组包含刺激参数、采集设置和记录条件的协议,以统一数据并实现各中心结果的可比性。然而,截至目前,尚无定义此类电生理记录存储和交换的标准。本研究的目的是开发一种用于视觉电生理数据交换和存储的开放标准数据格式(ElVisML)。
我们首先调查了生物医学信号的现有数据格式,并检查了它们对眼科电生理数据的适用性。然后我们比较了基于文本和二进制格式的适用性,以及可扩展标记语言(XML)编码和字符/逗号分隔值的编码。
方法学考量的结果促成了采用基于XML编码的文本格式的ElVisML的开发。这允许参照完整性、可扩展性、伴随单位的存储,以及确保数据的保密性和完整性。此外还开发了ElVisML文档的可视化工具(ElVisWeb),这便于在邮件列表上交换记录,并允许与已发表文章一起开放获取数据。
开放数据格式ElVisML确保了电生理数据传输和存储的质量、有效性和完整性,同时以一种面向未来的格式提供独立于制造商的访问和长期存档。这种神经生理学数据格式的标准化将促进新技术和开放软件的开发,以便在临床和研究中使用神经生理学数据。