The probe-sample force in tapping mode scanning force microscopy was evaluated using the phenomenon of sublimation of organic benzamide crystal and the assumption that the equal rate of sublimation in both tapping and contact modes is caused by the equal probe-sample force. Contact force was estimat
Force Microscopy || Scanning Probe Microscopy of Plant Cell Wall and Its Constituents
β Scribed by Jena, Bhanu P.; Hrber, J. K. Heinrich
- Publisher
- John Wiley & Sons, Inc.
- Year
- 2006
- Tongue
- English
- Weight
- 858 KB
- Edition
- 1
- Category
- Article
- ISBN
- 0471396281
No coin nor oath required. For personal study only.
β¦ Synopsis
A complete examination of the uses of the atomic force microscope in biology and medicine
This cutting-edge text, written by a team of leading experts, is the first detailed examination of the latest, most powerful scanning probe microscope, the atomic force microscope (AFM). Using the AFM, in combination with conventional tools and techniques, readers gain a profound understanding of the cell, subcellular organelles, and biomolecular structure and function.
The text begins with three chapters describing the molecular machinery and mechanism of cell secretion and membrane fusion in cells, using approaches that combine AFM, electron microscopy, X-ray diffraction, photon correlation spectroscopy, molecular biology, biochemistry, and electrophysiology. The discovery of a new cellular structure the "porosome" or fusion poreβthe cells secretory machinery, the molecular mechanism of membrane fusion in cells, and the expulsion of intravesicular contents during cell secretion are outlined in the first three chapters. The book also covers:
* Identification of the "porosome" in the growth hormone secreting cell of the pituitary gland
* Probing the structural and physical properties of microbial cell surfaces
* Scanning probe microscopic characterization of the higher plant cell wall and its components
* Case studies of nano drug delivery systems using engineered dendrimers
* AFM techniques for studying living cells
* Investigating the intermolecular forces of leukocyte adhesion molecules
* Protein-protein interactions
* Micromechanical properties of lipid bilayers and vesicles
The text concludes with four chapters that examine new and emerging approaches in the use of force microscopy in biology and medicine.
This text is ideal for advanced undergraduate and graduate students and researchers in cell and molecular biology, genetics, genomics, physiology, neuroscience, biophysics, and biochemistry. Not only does it provide the theory, but also practical considerations such as the selection of the right tools and approach.
π SIMILAR VOLUMES
Scanning Force Microscopy (SFM) is utilized to study living confluent 3T6 cells. Images based on mechanical contrast are obtained and related morphological details, mostly regarding the cell cytoskeleton, are analyzed. Moreover, numerical estimates of the local mechanical properties of the living ce
Compositional mapping of a polyester film surface, Mylar D, was performed utilizing a combination of scanning force microscopy techniques. Lateral force microscopy revealed that additives embedded in the surface had a lower coefficient of friction than the surrounding polymeric material. Force-volum
The structure, morphology and surface topography of multilayer carbon nanotubes have been studied by transmission electron microscopy (TEM) and atomic force microscopy (AFM). The carbon nanotube three-dimensional structure, and especially that near the cap regions, is resolved by use of these two co