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This book presents a systematic approach to analyzing the
challenging engineering problems posed by the need for security and
privacy in implantable medical devices (IMD). It describes in
detail new issues termed as lightweight security, due to the
associated constraints on metrics such as available power, energy,
computing ability, area, execution time, and memory requirements.
Coverage includes vulnerabilities and defense across multiple
levels, with basic abstractions of cryptographic services and
primitives such as public key cryptography, block ciphers and
digital signatures. Experts from Computer Security and Cryptography
present new research which shows vulnerabilities in existing IMDs
and proposes solutions. Experts from Privacy Technology and Policy
will discuss the societal, legal and ethical challenges surrounding
IMD security as well as technological solutions that build on the
latest in Computer Science privacy research, as well as lightweight
solutions appropriate for implementation in IMDs.
The application of circuits and systems and engineering principles
to problems in the medicine has led to the emergence of biomedical
circuits and systems as an exciting and rapidly growing area of
research. Nanotechnology provides new nano-structured materials
with amazing properties. The properties offered by nanomaterials
can be applied to develop advanced instrumentation for biomedical
diagnostics and personalized therapy, as well as bio-sensing in the
environment. Biotechnology provides new biochemical materials with
novel properties to be applied to develop new performances in
sensing techniques. These advancements in Nano- and Bio-
technologies will lead to new concepts and applications for
nano-bio-sensing systems. This book offers an invaluable reference
to the state-of-the-art applications of nano-bio-sensing. It brings
together expertise of researchers from the fields of
nano-electronics and bio-technology, providing multidisciplinary
content from nano-structures fabrication to bio-sensing
applications.
This textbook demonstrates new paradigms for the interface between
CMOS circuits and the biological world. A deep theoretical
description of such an interface is defined and discussed, while
various real applications are demonstrated by also discussing
several analog CMOS circuits. Electrochemical techniques are
proposed in detail to learn how to design integrated biosensors.
Biological materials are described to provide devices selectivity.
Nanoscale materials are discussed to provide device sensitivity.
CMOS circuits are analyzed to provide real applications. Extensive
examples with solutions are provided, as well as exercises at the
end of each chapter. This book introduces students to the
state-of-the-art in Bio/CMOS interfaces, describing leading-edge
research in CMOS design and VLSI development for applications
requiring intimate integration of biological molecules onto the
chip. It provides multidisciplinary content ranging from
biochemistry to CMOS design in order to address Bio/CMOS interface
co-design in biosensing applications.
This book presents a systematic approach to analyzing the
challenging engineering problems posed by the need for security and
privacy in implantable medical devices (IMD). It describes in
detail new issues termed as lightweight security, due to the
associated constraints on metrics such as available power, energy,
computing ability, area, execution time, and memory requirements.
Coverage includes vulnerabilities and defense across multiple
levels, with basic abstractions of cryptographic services and
primitives such as public key cryptography, block ciphers and
digital signatures. Experts from Computer Security and Cryptography
present new research which shows vulnerabilities in existing IMDs
and proposes solutions. Experts from Privacy Technology and Policy
will discuss the societal, legal and ethical challenges surrounding
IMD security as well as technological solutions that build on the
latest in Computer Science privacy research, as well as lightweight
solutions appropriate for implementation in IMDs.
The application of CMOS circuits and ASIC VLSI systems to problems
in medicine and system biology has led to the emergence of Bio/CMOS
Interfaces and Co-Design as an exciting and rapidly growing area of
research. The mutual inter-relationships between VLSI-CMOS design
and the biophysics of molecules interfacing with silicon and/or
onto metals has led to the emergence of the interdisciplinary
engineering approach to Bio/CMOS interfaces. This new approach,
facilitated by 3D circuit design and nanotechnology, has resulted
in new concepts and applications for VLSI systems in the bio-world.
This book offers an invaluable reference to the state-of-the-art in
Bio/CMOS interfaces. It describes leading-edge research in the
field of CMOS design and VLSI development for applications
requiring integration of biological molecules onto the chip. It
provides multidisciplinary content ranging from biochemistry to
CMOS design in order to address Bio/CMOS interface co-design in
bio-sensing applications.
The application of circuits and systems and engineering principles
to problems in the medicine has led to the emergence of biomedical
circuits and systems as an exciting and rapidly growing area of
research. Nanotechnology provides new nano-structured materials
with amazing properties. The properties offered by nanomaterials
can be applied to develop advanced instrumentation for biomedical
diagnostics and personalized therapy, as well as bio-sensing in the
environment. Biotechnology provides new biochemical materials with
novel properties to be applied to develop new performances in
sensing techniques. These advancements in Nano- and Bio-
technologies will lead to new concepts and applications for
nano-bio-sensing systems. This book offers an invaluable reference
to the state-of-the-art applications of nano-bio-sensing. It brings
together expertise of researchers from the fields of
nano-electronics and bio-technology, providing multidisciplinary
content from nano-structures fabrication to bio-sensing
applications.
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Nano-Net - 4th International ICST Conference, Nano-Net 2009, Lucerne, Switzerland, October 18-20, 2009, Proceedings (Paperback, 2010 ed.)
Alexandre Schmid, Sanjay Goel, Wei Wang, Valeriu Beiu, Sandro Carrara
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R1,542
Discovery Miles 15 420
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Ships in 10 - 15 working days
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This book constitutes the proceedings of the 4th International
Conference on Nano-Networks, Nano-Net 2009, held in Lucerne,
Switherland, in October 2009. The 36 invited and regular papers
address the whole spectrum of Nano-Networks and spans topis like
modeling, simulation, statdards, architectural aspects, novel
information and graph theory aspects, device physics and
interconnects, nanorobotics as well as nano-biological systems. The
volume also contains the workshop on Nano-Bio-Sensing Paradigms as
well as the workshop on Brain Inspired Interconnects and Circuits.
This wide-ranging summary of bioelectronics provides the state of
the art in electronics integrated and interfaced with biological
systems in one single book. It is a perfect reference for those
involved in developing future distributed diagnostic devices, from
smart bio-phones that will monitor our health status to new
electronic devices serving our bodies and embedded in our clothes
or under our skin. All chapters are written by pioneers and
authorities in the key branches of bioelectronics and provide
examples of real-word applications and step-by-step design details.
Through expert guidance, you will learn how to design complex
circuits whilst cutting design time and cost and avoiding mistakes,
misunderstandings, and pitfalls. An exhaustive set of recently
developed devices is also covered, providing the implementation
details and inspiration for innovating new solutions and devices.
This all-inclusive reference is ideal for researchers in
electronics, bio/nanotechnology, and applied physics, as well as
circuit and system-level designers in industry.
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