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Ditemukan 2134 dokumen yang sesuai dengan query
cover
Halliwell, Barry
Oxford: Oxford University Press, 2015
616.070 154 HAL f
Buku Teks  Universitas Indonesia Library
cover
Neuhauser, Claudia
New Jersey: Prentice-Hall, 2000
515 NEU c
Buku Teks  Universitas Indonesia Library
cover
Neuhauser, Claudia
New Jersey: Pearson Prentice Hall, 2004
515 NEU c
Buku Teks  Universitas Indonesia Library
cover
Hobbie, Russell K.
New York: John Wiley & Sons, 1978
530.02 HOB i
Buku Teks  Universitas Indonesia Library
cover
Davidovits, Paul
New Jersey: Prentice-Hall, 1975
571.4 DAV p
Buku Teks  Universitas Indonesia Library
cover
Boca Raton : CRC Pres, 2010
571.4 HAN
Buku Teks  Universitas Indonesia Library
cover
Neuhauser, Claudia
Boston: Pearson, 2011
515 NEU c
Buku Teks  Universitas Indonesia Library
cover
Davidovits, Paul
Boston: Elsevier/Academic Press, 2013
571.4 DAV p
Buku Teks  Universitas Indonesia Library
cover
Hobbie, Russell K.
"This classic text has been used in over 20 countries by advanced undergraduate and beginning graduate students in biophysics, physiology, medical physics, neuroscience, and biomedical engineering. It bridges the gap between an introductory physics course and the application of physics to the life and biomedical sciences. Extensively revised and updated, the fifth edition incorporates new developments at the interface between physics and biomedicine. New coverage includes cyclotrons, photodynamic therapy, color vision, x-ray crystallography, the electron microscope, cochlear implants, deep brain stimulation, nanomedicine, and other topics highlighted in the National Research Council report BIO2010. As with the previous edition, the first half of the text is primarily biological physics, emphasizing the use of ideas from physics to understand biology and physiology, and the second half is primarily medical physics, describing the use of physics in medicine for diagnosis (mainly imaging) and therapy. Among the many topics carried forward are thorough treatments of forces in the skeletal system, fluid flow, the logistic equation, scaling, equilibrium in statistical mechanics, the chemical potential and free energy, transport, membranes and osmosis, magnetic and electrical signals from nerves and the heart, membranes and gated channels in membranes, biological magnetic fields, linear and nonlinear feedback systems, including biological clocks and chaotic behavior, biological signal analysis, hearing and medical ultrasound, atoms and light, optical coherence tomography, radiometry and photometry, the interaction of photons and charged particles in tissue, radiological physics and the use of x-rays in diagnosis and therapy, nuclear medicine, and magnetic resonance imaging. Discussion of theory is closely linked to experiment. Prior courses in physics and in calculus are assumed."
Switzerland: Springer International Publishing, 2015
e20509994
eBooks  Universitas Indonesia Library
cover
Nolte, David D.
"This book presents the fundamental physics of optical interferometry as applied to biophysical, biological and medical research. Interference is at the core of many types of optical detection and is a powerful probe of cellular and tissue structure in interfererence microscopy and in optical coherence tomography. It is also the root cause of speckle and other imaging artefacts that limit range and resolution. For biosensor applications, the inherent sensitivity of interferometry enables ultrasensitive detection of molecules in biological samples for medical diagnostics. In this book, emphasis is placed on the physics of light scattering, beginning with the molecular origins of refraction as light propagates through matter, and then treating the stochastic nature of random fields that ultimately dominate optical imaging in cells and tissue. The physics of partial coherence plays a central role in the text, with a focus on coherence detection techniques that allow information to be selectively detected out of incoherent and heterogeneous backgrounds.
Optical Interferometry for Biology and Medicine is divided into four sections. The first covers fundamental principles, and the next three move up successive scales, beginning with molecular interferometry (biosensors), moving to cellular interferometry (microscopy), and ending with tissue interferometry (biomedical).
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New York: Springer, 2012
e20425274
eBooks  Universitas Indonesia Library
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