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Visible and near-infrared, known as VIS-NIR spectroscopy has emerged as a highly promising alternative to conventional laborious wet chemistry methods for qualitative and quantitative analysis of samples. VIS-NIR spectroscopy has successfully been employed in the analysis of a wide variety of applications from food quality analysis to environmental monitoring, medical diagnosis and even in arts and archaeology. This book presents the state-of-the-art method for profiling cancerous cells using the VIS-NIR spectra between 400 nm and 1100 nm. What makes our book truly exceptional? The cell culture techniques, spectroscopic experimental setup and statistical methods are presented in detail, conveniently allowing readers to replicate the study. In this book, the study was specifically conducted on mouse skin fibroblast (L929), human cervix adenocarcinoma (HeLa) and human prostate carcinoma (DU145) cell lines. These cell selections are commonly used in cytotoxicity, anti-cancer, antiproliferative and diagnosis research. Whether you're a student specializing in cell studies or a researcher immersed in optical-based instrumentation and measurement techniques, this book is your essential companion for success.
This volume of original chapters written by experts in the field offers a snapshot of how historical built spaces, past cultural landscapes, and archaeological distributions are currently being explored through computational social science. It focuses on the continuing importance of spatial and spatio-temporal pattern recognition in the archaeological record, considers more wholly model-based approaches that fix ideas and build theory, and addresses those applications where situated human experience and perception are a core interest. Reflecting the changes in computational technology over the past decade, the authors bring in examples from historic and prehistoric sites in Europe, Asia, and the Americas to demonstrate the variety of applications available to the contemporary researcher.
International Academic Conferences: Teaching, Learning and E-learning (VIAC-TLEl) Management, Economics and Marketing (VIAC-MEM) Transport, Logistics, Tourism and Sport Science (VIAC-TLTS) Engineering, Robotics, IT and Nanotechnology (VIAC-ERITN)
Northern Ontario waterways and the land bordering them are the source of many values, among them recreation or logging. A methodology that includes geographic information system (GIS) and field photogrammetry technologies and addresses the operational requirements of resource managers was developed to identify potential areas of conflict between visual and other values and to assist in the development of alternatives for integrated resource management planning efforts. A project was conducted in Thistle Township to the north and west of Thistle Lake and Red Cedar Lake in the North Bay District. An initial GIS assessment of forested areas theoretically visible from the lakes was made and demonstration materials prepared to explain project concepts to stakeholder groups during the values assessment process and to prepare for the field exercise. Interviews were conducted with three key stakeholder groups. Potential conflict areas were identified and a detailed analysis of them was made. This report describes the methods used and provides recommendations on streamlining the process and improving the technology.