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<pubDate>Fri, 25 Jul 2008 15:35:41 BST</pubDate>


	<title>CiteULike: matthewhflamm kinetics</title>
	<description>CiteULike: matthewhflamm kinetics</description>


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<item rdf:about="http://www.citeulike.org/user/matthewhflamm/article/2683083">
    <title>Stochastic Modeling of Blood Coagulation Initiation</title>
    <link>http://www.citeulike.org/user/matthewhflamm/article/2683083</link>
    <description>&lt;i&gt;Pathophysiology of Haemostasis and Thrombosis, Vol. 34, No. 2-3. (2005), pp. 80-90.&lt;/i&gt;&lt;br /&gt;&lt;br /&gt;A kinetic Monte Carlo simulation was developed using the deterministic reaction network developed by the Mann laboratory for tissue-factor (TF)-initiated blood coagulation. The model predicted thrombin dynamics in recalcified whole blood (3-fold diluted) pretreated with convulxin (platelet GPVI activator) and picomolar levels of TF (0-14 pM). The model did not accurately predict coagulation times at low TF (0-0.7 pM). The simulation revealed that ~0.2 pM TF was the critical concentration to cause 50% of reactions containing 3-fold diluted whole blood to reach a clotting threshold of 0.05 U/ml thrombin by 1 h. Simulations of 1 nl of blood (5 pM TF) revealed small stochastic variations in thrombin initiation time, while 16.6 pl simulations were highly stochastic at this level of TF (50 molecules/16.6 pl). Further experiment and simulation will require evaluation of mechanisms of coagulation kinetics at subpicomolar levels of TF.</description>
    <dc:title>Stochastic Modeling of Blood Coagulation Initiation</dc:title>

    <dc:creator>Ken Lo</dc:creator>
    <dc:creator>William Denney</dc:creator>
    <dc:creator>Scott Diamond</dc:creator>
    <dc:source>Pathophysiology of Haemostasis and Thrombosis, Vol. 34, No. 2-3. (2005), pp. 80-90.</dc:source>
    <dc:date>2008-04-17T18:01:15-00:00</dc:date>
    <prism:publicationYear>2005</prism:publicationYear>
    <prism:publicationName>Pathophysiology of Haemostasis and Thrombosis</prism:publicationName>
    <prism:volume>34</prism:volume>
    <prism:number>2-3</prism:number>
    <prism:startingPage>80</prism:startingPage>
    <prism:endingPage>90</prism:endingPage>
    <prism:category>coagulation</prism:category>
    <prism:category>fluorescence</prism:category>
    <prism:category>kinetics</prism:category>
    <prism:category>thrombin</prism:category>
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