A complete tool chain starting with stereo photogrammetry based digitization of artifacts, their refinement, collection and management with other multimedia data, and visualization using virtual and augmented reality is presented. Our system provides a one-stop-solution for museums to create, manage and present both content and context for virtual exhibitions. Interoperability and standards are also key features of our system allowing both small and large museums to select components and build a bespoke system suited to their needs. For example, museums can build a tool set focused on the whole solution or just the visualization.
We describe a system which addresses all the processes involved in digitally acquiring, modelling, storing, manipulating and creating virtual exhibitions from 3D museum artefacts. More specifically, we examine the significance of metadata in enabling and supporting all of these processes and describe the extensive facilities provided for authoring, maintaining and managing metadata. The development of the system has been heavily influenced by factors relating to interoperability, standards, museum best practice and feedback from two museum pilot sites. Finally, we briefly consider the system in the wider context of applications such at virtual learning environments (VLEs) and distributed repositories of archives.
Access to palliative care is commonly considered as solely a health services challenge rather than a community challenge. Successive healthcare reports continue to pose the question of access and its solution in terms that ask what a service can do rather than what an ally a service can become. However, the question is not what can we do for disadvantaged communities, but rather, what can we do together with them as fellow providers of palliative care. The first part of this article reviews the most common recommendations offered for increasing access to palliative care. The second part advocates an alternative way to address this challenge by employing the key practice methods of a new public health / health promotion approach to palliative care.
Long-term users of engineering product data are hampered by the ephemeral nature of CAD file formats and the applications that work with them. STEP, the Standard for the Exchange of Product Model Data (ISO 10303), promises to help with meeting this challenge, but is not without problems of its own. We present a complementary solution based on the use of lightweight file formats to preserve specific aspects of the product data, in conjunction with a registry of relevant representation information as defined by the Open Archival Information System Reference Model (ISO 14721). This registry is used to identify suitable destination file formats for different purposes, and provides a resource to aid in the recovery of information from these formats in the future.
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