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  1. ..., Deininger PL. 1999. Recently integrated human Alu repeats: finding needles in the haystack. Genetica 107: 149–161. Salem AH, Ray DA, Batzer MA. 2005a. Identity by descent and DNA sequence variation of human SINE and LINE elements. Cytogenet Genome Res 108: 63–72. Salem AH, Ray DA, Hedges DJ, Jurka J, Batzer...
  2. ...to the Ta subclass ( Dombroski et al. 1993 ; Bleyl et al. 1994 ; Sassaman et al. 1997 ). Given the large background of mobile elements that have amplified in the past within our s, the identification of the more recent events becomes the genomic equivalent of the identification of needles in a haystack...
  3. ...;:Cð j+125Þ and SðiÞ= 1 i +3h j = i#2;3h K½ði jÞ=h#3;:Cð jÞ; respectively. The authors apologize for any confusion this may have caused. Genome Research 15: 1746–1758 (2005) Comparing the human and chimpanzee s: Searching for needles in a haystack Ajit Varki and Tasha K. Altheide The URL in the last...
  4. ..., akin to finding a needle in a haystack. Much biological knowledge can be gleaned from MEDLINE records and their references. Although the knowledge discovery process could be dramatically enhanced by integrating information retrieval with natural language-processing techniques, surprisingly little...
  5. ...approaches and by findings and applications in a broad range of biological areas. Fundamental to these are the mathematical models used to describe the patterns of DNA base substitution and amino acid replacement. These may become some of the basic models for comparative genome research. We discuss...
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