The authors describe a method for biomolecular force clamp measurements using atomic force microscope (AFM) cantilevers and micromachined membrane-based electrostatic actuators. The actuators comprise of Parylene membranes with embedded side actuation electrodes and are fabricated on a silicon substrate. The devices have a displacement range of 1.8 μm with 200 V actuation voltage, and displacement uncertainty is 0.8 nm, including the noise and drift. The settling time, limited by the particular amplifier is 5 ms, with an inherent range down to 20 μs. A force clamp measurement setup using these actuators in a feedback loop has been used to measure bond life-times between human IgG and anti-human IgG molecules to demonstrate the feasibility o...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
From its invention in the 1970s, the patch clamp technique is the gold standard in electrophysiology...
金沢大学新学術創成研究機構ナノ生命科学研究所Atomic force microscopy (AFM) is a promising tool to visualize biomolecules at...
Atomic force microscopy (AFM)-based dynamic force spectroscopy of single molecular interactions invo...
A novel micromachined, membrane-based probe has been developed and fabricated as assays to enable pa...
A micromachined polymer membrane-based active probe has been developed for biomolecular force spectr...
Abstract—A micromachined polymer membrane-based active probe has been developed for biomolecular for...
We report a modular atomic force microscope (AFM) design for biomolecular experiments. The AFM head ...
The atomic force microscope (AFM) provides a powerful instrument for investigating and manipulating ...
From its invention in the 1970s, the patch clamp technique is the gold standard in electrophysiology...
In this study, a micro-pull-off testing machine is developed for reliable measurement of the adhesiv...
The present invention relates to a biomolecular measurement system (1), which enables to measure the...
Many reports have witnessed the potential of the atomic force microscope as a force sensor for probi...
Single molecule force spectroscopy is an important technique to determine the interaction forces be...
International audienceMonitoring biological reactions using the mechanical response of macromolecule...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
From its invention in the 1970s, the patch clamp technique is the gold standard in electrophysiology...
金沢大学新学術創成研究機構ナノ生命科学研究所Atomic force microscopy (AFM) is a promising tool to visualize biomolecules at...
Atomic force microscopy (AFM)-based dynamic force spectroscopy of single molecular interactions invo...
A novel micromachined, membrane-based probe has been developed and fabricated as assays to enable pa...
A micromachined polymer membrane-based active probe has been developed for biomolecular force spectr...
Abstract—A micromachined polymer membrane-based active probe has been developed for biomolecular for...
We report a modular atomic force microscope (AFM) design for biomolecular experiments. The AFM head ...
The atomic force microscope (AFM) provides a powerful instrument for investigating and manipulating ...
From its invention in the 1970s, the patch clamp technique is the gold standard in electrophysiology...
In this study, a micro-pull-off testing machine is developed for reliable measurement of the adhesiv...
The present invention relates to a biomolecular measurement system (1), which enables to measure the...
Many reports have witnessed the potential of the atomic force microscope as a force sensor for probi...
Single molecule force spectroscopy is an important technique to determine the interaction forces be...
International audienceMonitoring biological reactions using the mechanical response of macromolecule...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
From its invention in the 1970s, the patch clamp technique is the gold standard in electrophysiology...
金沢大学新学術創成研究機構ナノ生命科学研究所Atomic force microscopy (AFM) is a promising tool to visualize biomolecules at...