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SPECTRAL AND 3D CULTURAL HERITAGE DOCUMENTATION USING A MODIFIED CAMERA

机译:使用改良型相机的光谱和3D文化遗产文档

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Spectral and 3D imaging techniques are used for museum imaging and cultural heritage documentation providing complementary information to aid in documenting the condition, informing the care, and increasing our understanding of objects. Specialised devices for spectral and 3D imaging may not be accessible for many heritage institutions, due to cost and complexity, and the modification of a consumer digital camera presents the potential of an accessible scientific tool for 2D and 3D spectral imaging. Consumer digital cameras are optimised for visible light, colour photography, but the underlying sensor is inherently sensitive to near ultraviolet, visible, and near infrared radiation. This research presents the characterisation of a modified camera to investigate the impact of the modification on the spectroradiometric and geometric image quality with the intention of the device being used as a scientific tool for cultural heritage documentation. The characterisation includes the assessment of 2D image quality looking at visual noise, sharpness, and sampling efficiency using the target and software associated with the Federal Agencies Digitization Guidelines Initiative. Results suggest that these modifications give rise to discrepancies in computed surface geometries of the order of ±?0.1?mm for small to medium sized objects used in the study and recorded in the round (maximum dimension 20?cm). Measuring the spectral response quantifies the modified camera as a scientific device for more accurate measurements and provides indications of wavelengths that could improve documentation based on sensitivity. The modification of a consumer digital camera provides a less expensive, high-resolution option for 2D and 3D spectral imaging.
机译:光谱和3D成像技术用于博物馆成像和文化遗产文献记录,提供补充信息,以帮助记录病情,提供护理信息并加深我们对物体的了解。由于成本和复杂性,用于光谱和3D成像的专用设备对于许多遗产机构来说可能无法使用,而对消费者数码相机的修改提出了可用于2D和3D光谱成像的科学工具的潜力。消费类数码相机针对可见光,彩色摄影进行了优化,但是底层传感器对近紫外线,可见光和近红外辐射具有固有的敏感性。这项研究提出了一种经过修改的相机的特性,以研究该修改对光谱辐射和几何图像质量的影响,目的是将该设备用作文化遗产文献的科学工具。表征包括使用与联邦机构数字化指南倡议相关的目标和软件,评估视觉噪声,清晰度和采样效率的2D图像质量。结果表明,这些修改会导致研究中使用的小到中型物体的计算表面几何尺寸差异达到±?0.1?mm数量级,并以圆形记录(最大尺寸为20?cm)。通过测量光谱响应,可以将改进后的摄像机量化为科学的设备,以进行更准确的测量,并提供波长指示,从而可以根据灵敏度改善文档记录。消费类数码相机的修改为2D和3D光谱成像提供了一种较便宜的高分辨率选项。

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