Although much information about chromosome structure and behaviour has been obtained using light microscopy, greater resolution is needed for a thorough understanding of chromosome organisation. Scanning electron microscopy (SEM) can provide valuable data about these three-dimensional organelles. The introduction of methods using osmium impregnation of methanol-acetic acid-fixed chromosome spreads revolutionised matters, producing life-like images of chromosomes. Nevertheless, it became clear that osmium impregnation introduced various artefacts, although the resulting images were still useful. Methanol-acetic acid-fixed chromosomes are, in fact, flattened on the glass substratum, and the 3-dimensional appearance obtained after osmium impre...
The higher order structure of human chromosomes remains to be elucidated with the 30 nm mystery stil...
Chromosome and chromatid alignment in mitotic configurations remains a topic of interest because the...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
Preparative methods for scanning electron microscopy of chromosomes are dependent on the original so...
Methods for scanning electron microscopy (SEM) of chromosomes have been developed in the last two de...
Three-dimensional mitotic plant chromosome architecture can be investigated with the highest resolut...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
Scanning electron microscopy (SEM), as well as transmission electron microscopy (TEM), has been util...
HeLa metaphase chromosomes were examined by means of "in lens" field emission scanning electron mic...
Whole mount mitotic metaphase chromosomes of different plants and animals were investigated with hig...
The surface structure of mitotic barley chromatin was studied by field-emission scanning electron mi...
none5siThe detailed understanding of the nuclear cell functions requires an accurate knowledge of th...
Methods of preparing chromosomes from human lymphocytes for viewing with the scanning electron micro...
The higher order structure of human chromosomes remains to be elucidated with the 30 nm mystery stil...
Chromosome and chromatid alignment in mitotic configurations remains a topic of interest because the...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
Preparative methods for scanning electron microscopy of chromosomes are dependent on the original so...
Methods for scanning electron microscopy (SEM) of chromosomes have been developed in the last two de...
Three-dimensional mitotic plant chromosome architecture can be investigated with the highest resolut...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
Scanning electron microscopy (SEM), as well as transmission electron microscopy (TEM), has been util...
HeLa metaphase chromosomes were examined by means of "in lens" field emission scanning electron mic...
Whole mount mitotic metaphase chromosomes of different plants and animals were investigated with hig...
The surface structure of mitotic barley chromatin was studied by field-emission scanning electron mi...
none5siThe detailed understanding of the nuclear cell functions requires an accurate knowledge of th...
Methods of preparing chromosomes from human lymphocytes for viewing with the scanning electron micro...
The higher order structure of human chromosomes remains to be elucidated with the 30 nm mystery stil...
Chromosome and chromatid alignment in mitotic configurations remains a topic of interest because the...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...