2 options
Biomedical engineering : bridging medicine and technology / W. Mark Saltzman.
LIBRA R856 .S25 2009
Available from offsite location
- Format:
- Book
- Author/Creator:
- Saltzman, W. Mark.
- Series:
- Cambridge texts in biomedical engineering
- Language:
- English
- Subjects (All):
- Biomedical engineering.
- Physical Description:
- xxi, 633 pages, 16 unnumbered pages of plates : illustrations (some color), maps (some color) ; 27 cm.
- Place of Publication:
- Cambridge ; New York : Cambridge University Press, 2009.
- Summary:
- This is an ideal text for an introduction to biomedical engineering. The book presents the basic science knowledge used by biomedical engineers at a level accessible to all students and illustrates the first steps in applying this knowledge to solve problems in human medicine.
- Biomedical engineering now encompasses a range of fields of specialization including bioinstrumentation, bioimaging, biomechanics, biomaterials, and biomolecular engineering. This introduction to bioengineering assembles foundational resources from molecular and cellular biology and physiology and relates them to various subspecialties of biomedical engineering.
- The first two parts of the book present basic information in molecular/cellular biology and human physiology; quantitative concepts are stressed in these sections. Comprehension of these basic life science principles provides the context in which biomedical engineers interact. The third part of the book introduces the subspecialties in biomedical engineering and emphasizes - through examples and profiles of people in the field - the types of problems biomedical engineers solve.
- Contents:
- 1 Introduction: What Is Biomedical Engineering? 1
- 1.1 Prelude 1
- 1.2 Engineering in modern medicine 4
- 1.3 What is biomedical engineering? 6
- 1.4 Biomedical engineering in the future 20
- 1.5 How to use this book 22
- Profile of the Author: W. Mark Saltzman 24
- Part 1 Molecular and Cellular Principles
- 2 Biomolecular Principles 31
- 2.1 Prelude 31
- 2.2 Bonding between atoms and molecules 33
- 2.3 Water: The medium of life 36
- 2.4 Biochemical energetics 38
- 2.5 Importance of pH 44
- 2.6 Macromolecules: Polymers of biological importance 49
- 2.7 Lipids 62
- Profiles in BME: Veronique V. Tran 70
- 3 Biomolecular Principles: Nucleic Acids 82
- 3.1 Prelude 82
- 3.2 Overview: Genetics and inheritance 86
- 3.3 Molecular basis of genetics 93
- 3.4 The central dogma: Transcription and translation 101
- 3.5 Control of gene expression 107
- 3.6 Recombinant DNA technology 110
- Profiles in BME: Tiffanee M. Green 126
- 4 Biomolecular Principles: Proteins 141
- 4.1 Prelude 141
- 4.2 Protein structure 143
- 4.3 Modification and processing of polypeptides 150
- 4.4 Enzymes 154
- Profiles in BME: Brenda K. Mann 161
- 5 Cellular Principles 168
- 5.1 Prelude 168
- 5.2 Cell structure and function 170
- 5.3 ECM 174
- 5.4 Molecules in the cell membrane 175
- 5.5 Cell proliferation 182
- 5.6 Cell differentiation and stem cells 186
- 5.7 Cell death 188
- 5.8 Cell culture technology 189
- Profiles in BME: E.E. "Jack" Richards II 194
- Part 2 Physiological Principles
- 6 Communication Systems in the Body 205
- 6.1 Prelude 205
- 6.2 Signaling fundamentals 210
- 6.3 The nervous system 214
- 6.4 The endocrine system 222
- 6.5 The adaptive immune system 227
- 6.6 Connections to biomedical engineering 234
- Profiles in BME: Douglas Lauffenburger 237
- 7 Engineering Balances: Respiration and Digestion 247
- 7.1 Prelude 247
- 7.2 Introduction to mass balances 249
- 7.3 Respiratory physiology 260
- 7.4 Digestion and metabolism 276
- 8 Circulation 299
- 8.1 Prelude 299
- 8.2 The circulating fluid 300
- 8.3 The blood vessels 303
- 8.4 The heart 316
- Profiles in BME: Curtis G. Neason 322
- 9 Removal of Molecules from the Body 329
- 9.1 Prelude 329
- 9.2 Examples of elimination of molecules from the body 331
- 9.3 Biotransformation and biliary excretion 334
- 9.4 Elimination of molecules by the kidneys 336
- Part 3 Biomedical Engineering
- 10 Biomechanics 361
- 10.1 Prelude 361
- 10.2 Mechanical properties of materials 362
- 10.3 Mechanical properties of tissues and organs 369
- 10.4 Cellular mechanics 378
- 11 Bioinstrumentation 389
- 11.1 Prelude 389
- 11.2 Overview of measurement systems 392
- 11.3 Types of sensors 395
- 11.4 Instruments in medical practice 402
- 11.5 Instruments in the research laboratory 416
- 11.6 Biosensors 420
- 11.7 Biomicroelectromechanical systems and lab-on-a-chip devices 421
- Profiles in BME: Bill Hawkins 425
- 12 Bioimaging 432
- 12.1 Prelude 432
- 12.2 X-rays and CT 436
- 12.3 Ultrasound imaging 443
- 12.4 Nuclear medicine 446
- 12.5 Optical bioimaging 451
- 12.6 MRI 456
- 12.7 Image processing and analysis 459
- 13 Biomolecular Engineering I: Biotechnology 472
- 13.1 Prelude 472
- 13.2 Drug delivery 474
- 13.3 Tissue engineering 482
- 13.4 Nanobiotechnology 492
- 13.5 Other areas of biomolecular engineering 495
- Profiles in BME: Robert Langer 497
- 14 Biomolecular Engineering II: Engineering of Immunity 507
- 14.1 Prelude 507
- 14.2 Antigens, Abs, and mAbs 509
- 14.3 What are Abs? 511
- 14.4 How can specific Abs be manufactured? 514
- 14.5 Clinical uses of Abs 516
- 14.6 Vaccines 519
- Profiles in BME: Eliah R. Shamir 532
- 15 Biomaterials and Artificial Organs 537
- 15.1 Prelude 537
- 15.2 Biomaterials 538
- 15.3 Hemodialysis 544
- 15.4 Membrane oxygenators 553
- 15.5 Artificial heart 554
- 15.6 Biohybrid artificial organs 558
- 16 Biomedical Engineering and Cancer 572
- 16.1 Prelude 572
- 16.2 Introduction to cancer 573
- 16.3 Surgery 574
- 16.4 Radiation therapy 576
- 16.5 Chemotherapy 584
- 16.6 Hormonal and biological therapies 589
- 16.7 Systems biology, biomedical engineering, and cancer 593.
- Notes:
- Includes bibliographical references and index.
- Local Notes:
- Acquired for the Penn Libraries with assistance from the Sabin W. Colton, Jr., Memorial Fund.
- Acquired for the Penn Libraries with assistance from the Louis A. Duhring Fund.
- ISBN:
- 9780521840996
- 0521840996
- OCLC:
- 263409098
The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.