FISH analysis in patients with clinical diagnosis of Williams syndrome

1998 ◽  
Vol 87 (1) ◽  
pp. 48-53 ◽  
Author(s):  
N. Elçioglu ◽  
C. Mackie-Ogilvie ◽  
M. Daker ◽  
A. C. Berry
2007 ◽  
Vol 87 (1) ◽  
pp. 48-53 ◽  
Author(s):  
N Elçioglu ◽  
C Mackie-Ogilvie ◽  
M Daker ◽  
AC Berry

1995 ◽  
Vol 96 (4) ◽  
Author(s):  
A. Mari ◽  
F. Amati ◽  
R. Mingarelli ◽  
A. Giannotti ◽  
G. Sebastio ◽  
...  

Clinics ◽  
2007 ◽  
Vol 62 (2) ◽  
pp. 159-166 ◽  
Author(s):  
Sofia Mizuho Miura Sugayama ◽  
Cláudio Leone ◽  
Maria de Lourdes Lopes Ferrari Chauffaille ◽  
Thelma Suely Okay ◽  
Chong Ae Kim

1999 ◽  
Vol 9 (5) ◽  
pp. 428-436 ◽  
Author(s):  
Udaya DeSilva ◽  
Hillary Massa ◽  
Barbara J. Trask ◽  
Eric D. Green

Williams syndrome (WS) is a complex developmental disorder resulting from the deletion of a large (∼1.5–2 Mb) segment of human chromosome 7q11.23. Physical mapping studies have revealed that this deleted region, which contains a number of known genes, is flanked by several large, nearly identical blocks of DNA. The presence of such highly related DNA segments in close physical proximity to one another has hampered efforts to elucidate the precise long-range organization of this segment of chromosome 7. To gain insight about the structure and evolutionary origins of this important and complex genomic region, we have constructed a fully contiguous bacterial artificial chromosome (BAC) and P1-derived artificial chromosome (PAC) contig map encompassing the corresponding region on mouse chromosome 5. In contrast to the difficulties encountered in constructing a clone-based physical map of the human WS region, the BAC/PAC-based map of the mouse WS region was straightforward to construct, with no evidence of large duplicated segments, such as those encountered in the human WS region. To confirm this difference, representative human and mouse BACs were used as probes for performing fluorescence in situ hybridization (FISH) to metaphase and interphase chromosomes. Human BACs derived from the nonunique portion of the WS region hybridized to multiple, closely spaced regions on human chromosome 7q11.23. In contrast, corresponding mouse BACs hybridized to a single site on mouse chromosome 5. Furthermore, FISH analysis revealed the presence of duplicated segments within the WS region of various nonhuman primates (chimpanzee, gorilla, orangutan, and gibbon). Hybridization was also noted at the genomic locations corresponding to human chromosome 7p22 and 7q22 in human, chimpanzee, and gorilla, but not in the other animal species examined. Together, these results indicate that the WS region is associated with large, duplicated blocks of DNA on human chromosome 7q11.23 as well as the corresponding genomic regions of other nonhuman primates. However, such duplications are not present in the mouse.


1998 ◽  
Vol 39 (2) ◽  
pp. 183-189 ◽  
Author(s):  
Patricia Howlin ◽  
Mark Davies ◽  
Orlee Udwin

Author(s):  
Tong Wensheng ◽  
Lu Lianhuang ◽  
Zhang Zhijun

This is a combined study of two diffirent branches, photogrammetry and morphology of blood cells. The three dimensional quantitative analysis of erythrocytes using SEMP technique, electron computation technique and photogrammetry theory has made it possible to push the study of mophology of blood cells from LM, TEM, SEM to a higher stage, that of SEM P. A new path has been broken for deeply study of morphology of blood cells.In medical view, the abnormality of the quality and quantity of erythrocytes is one of the important changes of blood disease. It shows the abnormal blood—making function of the human body. Therefore, the study of the change of shape on erythrocytes is the indispensable and important basis of reference in the clinical diagnosis and research of blood disease.The erythrocytes of one normal person, three PNH Patients and one AA patient were used in this experiment. This research determines the following items: Height;Length of two axes (long and short), ratio; Crevice in depth and width of cell membrane; Circumference of erythrocytes; Isoline map of erythrocytes; Section map of erythrocytes.


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