Markolf Niemz, Medical Faculty Mannheim, University of Heidelberg, Mannheim,
Germany
V. Adrian Parsegian, Physical Science Laboratory, National Institutes of Health,
Bethesda, MD, USA
Linda S. Powers, University of Arizona, Tucson, AZ, USA
Earl W. Prohofsky, Department of Physics, Purdue University, West Lafayette, IN,
USA
Tatiana K. Rostovtseva, NICHD, National Institutes of Health, Bethesda, MD, USA
Andrew Rubin, Department of Biophysics, Moscow State University, Moscow,
Russia
Michael Seibert, National Renewable Energy Laboratory, Golden, CO, USA
Nongjian Tao, Biodesign Center for Bioelectronics, Arizona State University,
Tempe, AZ, USA
David Thomas, Department of Biochemistry, University of Minnesota Medical
School, Minneapolis, MN, USA
This series is intended to be comprehensive, covering a broad range of topics
important to the study of the physical, chemical and biological sciences. Its goal is
to provide scientists and engineers with textbooks, monographs, and reference works
to address the growing need for information. The fields of biological and medical
physics and biomedical engineering are broad, multidisciplinary and dynamic. They
lie at the crossroads of frontier research in physics, biology, chemistry, and
medicine.
Books in the series emphasize established and emergent areas of science including molecular, membrane, and mathematical biophysics; photosynthetic energy
harvesting and conversion; information processing; physical principles of genetics;
sensory communications; automata networks, neural networks, and cellular automata. Equally important is coverage of applied aspects of biological and medical
physics and biomedical engineering such as molecular electronic components and
devices, biosensors, medicine, imaging, physical principles of renewable energy
production, advanced prostheses, and environmental control and engineering.
More information about this series at http://www.springer.com/series/3740
Germany
V. Adrian Parsegian, Physical Science Laboratory, National Institutes of Health,
Bethesda, MD, USA
Linda S. Powers, University of Arizona, Tucson, AZ, USA
Earl W. Prohofsky, Department of Physics, Purdue University, West Lafayette, IN,
USA
Tatiana K. Rostovtseva, NICHD, National Institutes of Health, Bethesda, MD, USA
Andrew Rubin, Department of Biophysics, Moscow State University, Moscow,
Russia
Michael Seibert, National Renewable Energy Laboratory, Golden, CO, USA
Nongjian Tao, Biodesign Center for Bioelectronics, Arizona State University,
Tempe, AZ, USA
David Thomas, Department of Biochemistry, University of Minnesota Medical
School, Minneapolis, MN, USA
This series is intended to be comprehensive, covering a broad range of topics
important to the study of the physical, chemical and biological sciences. Its goal is
to provide scientists and engineers with textbooks, monographs, and reference works
to address the growing need for information. The fields of biological and medical
physics and biomedical engineering are broad, multidisciplinary and dynamic. They
lie at the crossroads of frontier research in physics, biology, chemistry, and
medicine.
Books in the series emphasize established and emergent areas of science including molecular, membrane, and mathematical biophysics; photosynthetic energy
harvesting and conversion; information processing; physical principles of genetics;
sensory communications; automata networks, neural networks, and cellular automata. Equally important is coverage of applied aspects of biological and medical
physics and biomedical engineering such as molecular electronic components and
devices, biosensors, medicine, imaging, physical principles of renewable energy
production, advanced prostheses, and environmental control and engineering.
More information about this series at http://www.springer.com/series/3740
