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Smart Secure Systems - IoT and Analytics Perspective - Second International Conference on Intelligent Information Technologies. ICIIT 2017, Chennai, India, December 20-22, 2017, Proceedings (Paperback, 1st ed. 2018)
Guru Prasadh Venkataramani, Karthik Sankaranarayanan, Saswati Mukherjee, Kannan Arputharaj, Swamynathan Sankara Narayanan
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R1,576
Discovery Miles 15 760
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Ships in 10 - 15 working days
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This volume constitutes the refereed proceedings of the Second
International Conference on Intelligent Information Technologies,
ICIIT 2017, held in Chennai, India, in December 2017. The 20 full
papers and 7 short papers presented were carefully reviewed and
selected from 117 submissions. They feature research on the
Internet of Things (IoT) and are organized in the following topical
sections: IoT enabling technologies; IoT security; social IoT; web
of things; and IoT services and applications.
This protocol book provides detailed procedures for the isolation
of cyanobacteria, extraction, quantification, and detection of
cyanotoxins. It illustrates the sampling and processing of
toxin-producing cyanobacteria in water and aquatic animal samples,
detection of cyanotoxins from Anabaena, Anabaenopsis,
Cylindrospermopsis, Microsystis, Microcystis, Nodularia, Nostoc,
Schizotrix, Lyngbya, Raphidiopsis, Oscillatoria, Planktothrix in
aquatic resources. It also covers toxicity analysis by various
bioassay protocols, and in vitro and insilico analysis methods. The
book also reviews the methods for cyanotoxin extraction, detection,
and quantification by various tools including LC-MS/MS, HPLC, NMR,
PCR, and HESI-MS/MS. A separate section is dedicated to the
advanced methods in Cyanotoxin analysis including the Molecular
Imprinting Method (MIM), Cellular signaling biosensor,
Electrochemical sensor, Nanosensors, and screening of Polyketide
synthase gene. The analysis of various toxin-producing genes like
sxtA and mcy is also accounted for in the proposed book. In a
nutshell, the book gives comprehensive procedures about the basics
and preliminary processes that are involved in sample collection to
advanced methods incorporated into the well-explored and unexplored
Cyanobacterial toxin. Consequently, the proposed manual is useful
for both beginners and advanced researchers, including postgraduate
students, academicians, researchers, and scientists in the field of
Cyanobacterial research. ​
Surface modification of magnesium and its alloys for biomedical
applications: Biological interactions, mechanical properties and
testing, the first of two volumes, is an essential guide on the use
of magnesium as a degradable implant material. Due to their
excellent biocompatibility and biodegradability, magnesium based
degradable implants provide a viable option for the permanent
metallic implants. This volume focuses on the fundamental concepts
of surface modification of magnesium, its biological interactions,
mechanical properties and, in vitro and in vivo testing. The
contents of volume 1 is organized and presented in three parts.
Part 1 reviews the fundamental aspects of surface modification of
magnesium, including surface design, opportunities, challenges and
its role in revolutionizing biodegradable biomaterials. Part 2
addresses the biological and mechanical properties covering an in
vivo approach to the bioabsorbable behavior of magnesium alloys,
mechanical integrity and, the effects of amino acids and proteins
on the performance of surface modified magnesium. Part 3 delves in
to testing and characterization, exploring the biocompatibility and
effects on fatigue life alongside the primary characteristics of
surface modified magnesium. All chapters are written by experts,
this two volume series provides systematic and thorough coverage of
all major modification technologies and coating types of magnesium
and its alloys for biomedical applications.
The development of biodegradable implants which can remain in the
human body to fix a problem and subsequently dissolve, or be
absorbed, consumed or excreted, without warranting a secondary
surgery, is very appealing to scientists. Due to their excellent
biocompatibility and biodegradability, magnesium implants provide a
viable option many problems associated with permanent metallic
implants such as, restenosis, thrombosis, permanent physical
irritation, and inability to adapt to growth and changes in human
body. Volume 2 of this important new book explores practical issues
of magnesium and magnesium alloys, physical and mechanical
modification and coatings to enhance this material for biomedical
applications.
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