The morphology of the fine cuticular structure of human hair has traditionally been investigated using scanning electron microscopy and transmission electron microscopy. Although these techniques are very useful, they require specimens to be coated with metallic films or to be suitably stained. In addition, high vacuum conditions are required that may damage or alter the appearance of delicate cuticular structures. Atomic force microscopy isa relatively new scanning probe technique, capable of imaging surfaces at high resolution under ambient conditions. In this communication, the potential applications of atomic force microscopy for structural investigations of human hair surfaces are discussed. Fine surface structures, such as the exocuti...
The application of surface specific x-ray photoelectron spectroscopy (XPS) and scanning electron mic...
The hair cuticle provides significant protection from external sources, as well as giving rise to ma...
We have observed the internal structure of human hair shafts with a transmission Zernike phase contr...
OBJECTIVE: To investigate the effect of different washing regimes on the surface of human hair at th...
OBJECTIVE: To investigate the effect of different washing regimes on the surface of human hair at th...
The surface topography of human hair, as defined by the outer layer of cellular sheets, termed cutic...
The Atomic Force Microscope (AFM) is able to image the surface properties of all types of materials ...
We have used an atomic force microscope to provide quantitative real-time analysis of human hair mor...
The structural properties of hair are largely determined by the state of the surface. Advanced imagi...
The structural properties of hair are largely determined by the state of the surface. Advanced imagi...
A new method for high-resolution analyses of hair surface charge density under ambient conditions is...
Abstract: Atomic force microscopy integrated with infrared spectroscopy (AFM‐IR) has been used to to...
A new method for morphological hair analysis at high resolution and under ambient conditions is pres...
Atomic force microscopy integrated with infrared spectroscopy (AFM-IR) has been used to topographica...
Atomic force microscopy (AFM) as one the technique of Scanning Probe Microscopy is useful for imagin...
The application of surface specific x-ray photoelectron spectroscopy (XPS) and scanning electron mic...
The hair cuticle provides significant protection from external sources, as well as giving rise to ma...
We have observed the internal structure of human hair shafts with a transmission Zernike phase contr...
OBJECTIVE: To investigate the effect of different washing regimes on the surface of human hair at th...
OBJECTIVE: To investigate the effect of different washing regimes on the surface of human hair at th...
The surface topography of human hair, as defined by the outer layer of cellular sheets, termed cutic...
The Atomic Force Microscope (AFM) is able to image the surface properties of all types of materials ...
We have used an atomic force microscope to provide quantitative real-time analysis of human hair mor...
The structural properties of hair are largely determined by the state of the surface. Advanced imagi...
The structural properties of hair are largely determined by the state of the surface. Advanced imagi...
A new method for high-resolution analyses of hair surface charge density under ambient conditions is...
Abstract: Atomic force microscopy integrated with infrared spectroscopy (AFM‐IR) has been used to to...
A new method for morphological hair analysis at high resolution and under ambient conditions is pres...
Atomic force microscopy integrated with infrared spectroscopy (AFM-IR) has been used to topographica...
Atomic force microscopy (AFM) as one the technique of Scanning Probe Microscopy is useful for imagin...
The application of surface specific x-ray photoelectron spectroscopy (XPS) and scanning electron mic...
The hair cuticle provides significant protection from external sources, as well as giving rise to ma...
We have observed the internal structure of human hair shafts with a transmission Zernike phase contr...