目录 Preface Chapter 1 The Photoelectric Detection at the Single Cell Level 1.1 Introduction 1.2 Dielectrophoresis 1.3 Optical Tweezers 1.4 Microfluidics 1.5 Microelectrodes 1.6 Conclusions References Chapter 2 Development of Multiple Transmission-Reflection Infrared Spectroscopy 2.1 Introduction of Infrared Absorption Methodologies for Thin Films 2.2 Optical Theory 2.3 Grazing Angle Mirror-Backed Reflection 2.4 Multiple Transmission-Reflection Infrared Spectroscopy 2.5 Orientation Analyses with IR Spectroscopy 2.6 Summary References Chapter 3 Molecular Interactions at Model Cell Membranes Investigated Using Nonlinear Optical Spectroscopy 3.1 Introduction 3.2 Sum Frequency Generation Vibrational Spectroscopy 3.3 Interactions Between Model Cell Membranes and Small Drug Molecules 3.4 Interactions Between Model Cell Membranes and Nanomaterials 3.5 Interactions Between Model Cell Membranes and Peptides 3.6 Interactions of Membrane Associated Proteins 3.7 Conclusions and Outlooks 3.8 Acknowledgement References Chapter 4 Microparticle Based Biochips Preliminary Subsections 4.1 Introduction 4.2 Plain Microparticles 4.3 Encoded Microparticles 4.4 Microparticles and Chips 4.5 Instrumentation for Microparticles Analysis 4.6 Conclusions and Prospective References Chapter 5 Biomedical Applications of Zwitterionic Antifouling Polymers Based Nanoparticles 5.1 Introduction 5.2 Biomedical Applications of Zwitterionic Nanoparticles 5.3 Conclusions and Outlooks References Chapter 6 Nucleosome Organization Around Transcriptional Sites and Its Role in Gene Regulation 6.1 Introduction 6.2 Nucleosome Depletion Upstream of Transcription Start Sites 6.3 Nucleosome Occupancy Around Transcriptional Splice Sites 6.4 Nucleosome Positioning in the Vicinity of Transcription Termination Sites 6.5 Nucleosome Occupancy Patterns Around Transcription Factor Binding Sites 6.6 Conclusions References Chapter 7 Virtual and Augmented Reality in Medical and Biomedical Education 7.1 Introduction 7.2 Reality-Virtuality Continuum 7.3 Virtual and Augmented Reality Applications in Medical and Biomedical Education 7.4 Curriculum and User Studies 7.5 Challenges 7.6 Conclusions 7.7 Acknowledgement References Chapter 8 Relating Information in EEGs to Neurocognitive Processes 8.1 The Importance of EEG in Cognitive Neuroscience 8.2 Significant Findings in Attention, Language, and So Cognition 8.3 Summary References Chapter 9 Detection, Processing, and Application of Neural Signals 9.1 Introduction to the Nervous System 9.2 Electrical Properties of Nerves and Propagation of Action Potentials 9.3 Detection and Recording of Neural Signals 9.4 Neural Signal Processing and Pattern Recognition 9.5 Functional Electrical Stimulation of Nerves 9.6 Microelectronic Neural Signal Regeneration 9.7 Summary Chapter 10 Cerebral Glioma Grading Using Bayesian Network with Features Extracted from Multi-modal MRI 10.1 Introduction 10.2 Methods 10.3 Results 10.4 Discussion 10.5 Conclusions 10.6 Acknowledgement References Chapter 11 Histotripsy: Image-guided, Non-invasive Ultrasound Surgery for Cardiovascular and Cancer Therapy 11.1 Introduction 11.2 Physics 11.3 Image Guidance 11.4 Congenital Heart Disease Application 11.5 Thrombolysis Application 11.6 Liver Cancer Application 11.7 Summary and Future Work 11.8 Acknowledgement References Color Inset
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