Results 201 to 210 of about 10,428 (253)
Case Report: Expanding the diagnostic spectrum of non-invasive prenatal testing to structural chromosomal abnormalities. [PDF]
Kim JC +10 more
europepmc +1 more source
Detection of Chromosomal Aneuploidy Using Exome Sequencing. [PDF]
Al-Hamed MH +9 more
europepmc +1 more source
Non-Invasive Prenatal Testing (NIPT): A Paradigm Shift in Prenatal Care. [PDF]
Garg RK, Kumar Y, Niwas R, Singh J.
europepmc +1 more source
Plenary Abstracts Session & Oral Presentations
HemaSphere, Volume 10, Issue S1, June 2026.
wiley +1 more source
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Journal of Intellectual Disability Research, 1980
On one hundred consecutive clinically referred patients, a total of 3,175 cells was fully analysed. The parameters of culture and analysis were the same for all patients, and a breakdown of cells showed 258 cells (8.1 per cent) with hypomodal counts and sixty-two cells (1.9 per cent) with hypermodal counts.
A, Smith, G, Elliott
openaire +2 more sources
On one hundred consecutive clinically referred patients, a total of 3,175 cells was fully analysed. The parameters of culture and analysis were the same for all patients, and a breakdown of cells showed 258 cells (8.1 per cent) with hypomodal counts and sixty-two cells (1.9 per cent) with hypermodal counts.
A, Smith, G, Elliott
openaire +2 more sources
Journal of Cellular Biochemistry, 2007
AbstractThe cell's euploid status is influenced by, amongst other mechanisms, an intact spindle assembly checkpoint (SAC), an accurate centrosome cycle, and proper cytokinesis. Studies in mammalian cells suggest that dysregulated SAC function, centrosome cycle, and cytokinesis can all contribute significantly to aneuploidy.
Ya-Hui, Chi, Kuan-Teh, Jeang
openaire +2 more sources
AbstractThe cell's euploid status is influenced by, amongst other mechanisms, an intact spindle assembly checkpoint (SAC), an accurate centrosome cycle, and proper cytokinesis. Studies in mammalian cells suggest that dysregulated SAC function, centrosome cycle, and cytokinesis can all contribute significantly to aneuploidy.
Ya-Hui, Chi, Kuan-Teh, Jeang
openaire +2 more sources

