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Susan T Lord

Showing results (31-40 of 44) with videos related to

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Biochemistry|March 3, 2004
Calcium-binding site beta 2, adjacent to the "b" polymerization site, modulates lateral aggregation of protofibrils during fibrin polymerizationMichael S Kostelansky, Karim C Lounes, Li Fang Ping, et al.
Biophysical Journal|November 4, 2010
Evidence that αC region is origin of low modulus, high extensibility, and strain stiffening in fibrin fibersJohn R Houser, Nathan E Hudson, Lifang Ping, et al.
Blood|November 15, 2003
Severe hypodysfibrinogenemia in compound heterozygotes of the fibrinogen AalphaIVS4 + 1G>T mutation and an AalphaGln328 truncation (fibrinogen Keokuk)Phil Lefebvre, Pauline T Velasco, Amy Dear, et al.
Biophysical Journal|April 23, 2010
Stiffening of individual fibrin fibers equitably distributes strain and strengthens networksNathan E Hudson, John R Houser, E Timothy O'Brien, et al.
Blood|August 11, 2005
The alphaC domains of fibrinogen affect the structure of the fibrin clot, its physical properties, and its susceptibility to fibrinolysisJean-Philippe Collet, Jennifer L Moen, Yuri I Veklich, et al.
Thrombosis and Haemostasis|March 23, 2012
Fibrinogen residue γAla341 is necessary for calcium binding and 'A-a' interactionsRojin Park, Lifang Ping, Jaewoo Song, et al.
Thrombosis and Haemostasis|December 11, 2012
An engineered fibrinogen variant AαQ328,366P does not polymerise normally, but retains the ability to form α cross-linksRojin Park, Lifang Ping, Jaewoo Song, et al.
Blood|April 17, 2007
Functional analysis of fibrin {gamma}-chain cross-linking by activated factor XIII: determination of a cross-linking pattern that maximizes clot stiffnessKristina F Standeven, Angela M Carter, Peter J Grant, et al.
Blood|September 9, 2010
Increased thrombosis susceptibility and altered fibrin formation in STAT5-deficient miceSarah M Nordstrom, Brian A Holliday, Brandon C Sos, et al.
Biophysical Journal|June 25, 2013
Submillisecond elastic recoil reveals molecular origins of fibrin fiber mechanicsNathan E Hudson, Feng Ding, Igal Bucay, et al.
Pageof 5

Showing results (31-40 of 44) with videos related to

Sort By:
Pageof 5
Biochemistry|March 3, 2004
Calcium-binding site beta 2, adjacent to the "b" polymerization site, modulates lateral aggregation of protofibrils during fibrin polymerizationMichael S Kostelansky, Karim C Lounes, Li Fang Ping, et al.
Biophysical Journal|November 4, 2010
Evidence that αC region is origin of low modulus, high extensibility, and strain stiffening in fibrin fibersJohn R Houser, Nathan E Hudson, Lifang Ping, et al.
Blood|November 15, 2003
Severe hypodysfibrinogenemia in compound heterozygotes of the fibrinogen AalphaIVS4 + 1G>T mutation and an AalphaGln328 truncation (fibrinogen Keokuk)Phil Lefebvre, Pauline T Velasco, Amy Dear, et al.
Biophysical Journal|April 23, 2010
Stiffening of individual fibrin fibers equitably distributes strain and strengthens networksNathan E Hudson, John R Houser, E Timothy O'Brien, et al.
Blood|August 11, 2005
The alphaC domains of fibrinogen affect the structure of the fibrin clot, its physical properties, and its susceptibility to fibrinolysisJean-Philippe Collet, Jennifer L Moen, Yuri I Veklich, et al.
Thrombosis and Haemostasis|March 23, 2012
Fibrinogen residue γAla341 is necessary for calcium binding and 'A-a' interactionsRojin Park, Lifang Ping, Jaewoo Song, et al.
Thrombosis and Haemostasis|December 11, 2012
An engineered fibrinogen variant AαQ328,366P does not polymerise normally, but retains the ability to form α cross-linksRojin Park, Lifang Ping, Jaewoo Song, et al.
Blood|April 17, 2007
Functional analysis of fibrin {gamma}-chain cross-linking by activated factor XIII: determination of a cross-linking pattern that maximizes clot stiffnessKristina F Standeven, Angela M Carter, Peter J Grant, et al.
Blood|September 9, 2010
Increased thrombosis susceptibility and altered fibrin formation in STAT5-deficient miceSarah M Nordstrom, Brian A Holliday, Brandon C Sos, et al.
Biophysical Journal|June 25, 2013
Submillisecond elastic recoil reveals molecular origins of fibrin fiber mechanicsNathan E Hudson, Feng Ding, Igal Bucay, et al.
Pageof 5