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Biological monitoring --- Environmental monitoring --- Environmental Monitoring.
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Within the context of the ISO/IEEE 11073 family of standards for device communication, a normative definition of the communication between continuous glucose monitor (CGM) devices and managers (e.g., cell phones, personal computers, personal health appliances, set top boxes), in a manner that enables plug-and-play interoperability, is established in this standard. It leverages appropriate portions of existing standards including ISO/IEEE 11073 terminology and information models. It specifies the use of specific term codes, formats, and behaviors in telehealth environments, restricting optionality in base frameworks in favor of interoperability. This standard defines a common core of communication functionality of CGM devices. In this context, CGM refers to the measurement of the level of glucose in the body on a regular (typically 5 minute) basis through a sensor continuously attached to the person.
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Germany has continued to improve its environmental performance over the past decade. It has ambitious climate targets with the aim to reach climate neutrality by 2045 and achieve negative emissions after 2050. Nevertheless, Germany will need to further accelerate climate action, particularly in the buildings and transport sectors, and address the triple crisis of energy, climate and biodiversity in an integrated and holistic manner. As part of its energy crisis response, Germany has taken a series of measures, which are historic in size and scope. They are set to massively accelerate its green energy transition in the coming years. It is also scaling up its engagement on climate change adaptation across all government levels and has initiated an ambitious programme to foster investments in nature-based solutions. This is the fourth OECD Environmental Performance Review of Germany. It provides 28 recommendations to help Germany further improve its environmental performance.
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Earth Observations (EO) encompasses different types of sensors (e.g., SAR, LiDAR, Optical and multispectral) and platforms (e.g., satellites, aircraft, and Unmanned Aerial Vehicles) and enables us to monitor and model geohazards over regions at different scales in which ground observations may not be possible due to physical and/or political constraints. EO can provide high spatial, temporal and spectral resolution, stereo-mapping and all-weather-imaging capabilities, but not by a single satellite at a time. Improved satellite and sensor technologies, increased frequency of satellite measurements, and easier access and interpretation of EO information have all contributed to the increased demand for satellite EO data. EO, combined with complementary terrestrial observations and with physical models, have been widely used to monitor geohazards, revolutionizing our understanding of how the Earth system works.
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Cattle --- Monitoring
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