生物微机电系统

分類: 图书,自然科学,生物科学,生物科学的理论与方法,
作者: (德)厄本编
出 版 社: 科学出版社
出版时间: 2007-8-1字数: 457000版次: 1页数: 373印刷时间: 2007/08/01开本:印次:纸张: 胶版纸I S B N : 9787030188489包装: 平装内容简介
微系统技术领域的飞速发展为许多重点学科(从微电子到生命科学)引入了极具前景的产品,特别是生命科学和卫生保健业,一直是人们期望的微系统技术产品的主要市场。毫无疑问,生物学和微纳科学的结合将会制造一场新的科技革命。器件的微型化,直到纳米级别,接近生物组织的大小,将是生命科学成功的必备条件。从长远角度来看,生物技术和微纳技术的结合将使人们对细胞和整个生物体的功能有更深的见解。本书对生物微系统进行了简单的回顾,并把微纳米技术广泛渗透到生物和医学领域,这对未来科学和生命科学新产品的发展进程是十分必要的。
本书适于生命科学、系统生物学、生物工程学和微纳米系统工程等相关领域的大专院校教师、高年级学生、研究生及科技人员阅读参考。
目录
Contributing Authors
Preface
EARLY BIOMEMS MULTI-SENSOR NEUROPROBES
1.INIRODUCTION
2.EVOLUTION OF MICRO-SENSOR ARRAY DESIGNS
2.1 Electrical signal monitoring
2.2 Sensor Design monitoring
2.3 Chamber Type of Electrochemical 2D to 3D
3.OTHER APPLICATIONS-THE FIRST MICRO-FLUIDIC DEVICE
4.CONCLUSION
5.REFERENCES
MULTI-PARAMETER BIOMEMS FOR CLINICAL MONITORING
1.INTRODUCTION
2.BIOSENSORS
2.1 Prinsiple of Biosensors
2.2 Amperometric Biosensors
3.CLINICAL MONITORING
3.1 Multi-analyte measurement
3.2 Micro-dialysis
3.3 BioMEMS for clinical monotoring
3.4 Multi-parameter monitoring
3.5 Application
3.5.1 Monitoring of glucose and lactate with a micro-dialysis probe
3.5.2 Ammonia monitoring
4.CONCLUSIONS AND OUTLOOK
5.REFERENCES
NEURAL IMPLANTS IN CLINICAL PRACTICE
Interfacing neurons for neuro-modulation, limb control,
and to restore vision-Part I
1.INTRODUCTION TO NEURAL IMPLANTS
2.ANATOMICAL AND BIOPHYSICAL FUNDAMENTALS
2.1 Preipheral Nerve Anatomy
2.2 Mechanisms of peripheral Nerve Damage
2.3 Extra-celluar Stimulation of Nerve Fibres
2.4 Electrical Modelling of the Nerve Membrane
2.5 Propagation of Action potentials
2.6 Extra-cellular Stimulation of Nerve Fibress
2.7 Selective Activation of Neve Fibress
……
BIOMEDICAL MICRODEVICES FOR NEURAL IMPLANTS
Interfacing neurons for neuromodulation, limb control,
and to restore vision-Part II
MICRO-FLUIDIC PLATFORMS
DNA BASED BIO-MICRO-ELECTRONIC
MECHANICAL SYSTEMS
SEPARATION AND DETECTION ON A CHIP
PROTEIN MICROARRAYS: TECHNOLOGIES
AND APPLICATIONS
LAB-ON-A-CHIP SYSTEMS FOR CELLULAR ASSAYS
NETWORK ON CHIPS
Spatial and temporal activity dynamics of functional networks
in brain slices and cardiac tissue
BIO-NANO-SYSTEMS
Overview and Outlook