发明授权
US5620854A Method for identifying biochemical and chemical reactions and micromechanical processes using nanomechanical and electronic signal identification 失效
使用纳米机电和电子信号识别识别生物化学和化学反应和微机械过程的方法

Method for identifying biochemical and chemical reactions and
micromechanical processes using nanomechanical and electronic signal
identification
摘要:
A scanning probe microscope, such as an atomic force microscope (AFM) or a scanning tunneling microscope (STM), is operated in a stationary mode on a site where an activity of interest occurs to measure and identify characteristic time-varying micromotions caused by biological, chemical, mechanical, electrical, optical, or physical processes. The tip and cantilever assembly of an AFM is used as a micromechanical detector of characteristic micromotions transmitted either directly by a site of interest or indirectly through the surrounding medium. Alternatively, the exponential dependence of the tunneling current on the size of the gap in the STM is used to detect micromechanical movement. The stationary mode of operation can be used to observe dynamic biological processes in real time and in a natural environment, such as polymerase processing of DNA for determining the sequence of a DNA molecule.
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