KLAST statistics

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Citations per year

Number of citations per year for the bioinformatics software tool KLAST

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KLAST specifications


Unique identifier OMICS_04615
Software type Package/Module
Interface Command line interface
Restrictions to use Academic or non-commercial use
Operating system Unix/Linux, Mac OS, Windows
Programming languages C++, Java
License Commercial
Computer skills Advanced
Stability Stable
Maintained Yes


No version available


  • person_outline Patrick Durand

KLAST citations


A multi stage drop the losers design for multi arm clinical trials

Stat Methods Med Res
PMCID: 5302074
PMID: 25228636
DOI: 10.1177/0962280214550759

[…] the sums Sj,k,k∈Ij-1.After the data-gathering part of stage j, the treatment kj* with the lowest Sj,k for k∈Ij-1 is eliminated, leaving Ij=Ij-1\{kj*} After the penultimate stage K − 1, one treatment, klast say, remains in IK-1 and this treatment and the control are observed in the final stage, K. After stage K, the statistic including the final-stage data is SK,klast. If SK,klast>c H0:δklast≤0 is […]


Genome wide identification of pathogenicity factors of the free living amoeba Naegleria fowleri

BMC Genomics
PMCID: 4082629
PMID: 24950717
DOI: 10.1186/1471-2164-15-496

[…] be differentially expressed proteins between the two conditions.For annotation, the differentially expressed ORFs were subjected to searches with the next-generation sequence similarity search tool ngKLAST (http://www.korilog.com). A KLASTp search was run against the annotated Swissprot database under default settings. KLAST hits with a bit score greater than or equal to 50 were considered signifi […]


Self adaptive robot training of stroke survivors for continuous tracking movements

PMCID: 2850909
PMID: 20230610
DOI: 10.1186/1743-0003-7-13

[…] r, is activated intermittently whereas the force field generator is activated continuously. In summary, the control architecture is characterised by the following pseudo-code:Session_start:   set K = Klast_session + ΔKBlock_start:   set SCORE = 0 &DURATION = 0Iterate:       for each TURN (1:NT) & each CONTROL_POINT (1:NC)            compute E = |xH - xC|            if E

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