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15篇 您的检索式:作者名="Kreplak L"
    题名 作者 年代 出处 被引量
1Atomic force reveals defects within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide显示文摘Green JD Kreplak L Goldsbury C 2004J Biol Chem2004,342,:1
2Intermediate filaments: from cell architecture to nanomechanics显示文摘HERRMANN H B?R H KREPLAK L 2007Nat Rev Mol Cell Biol2007,8,7:1
3Exploring the mechanical behavior of single intermediate filaments显示文摘Kreplak L Bar H Leterrier JF 0,,:1
4Atomic force microscopy reveals defeats within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide显示文摘Green JD Kreplak L Goldsbury C 2004Mol Biol2004,342,3:1
5Atomic force microscopy reveals defeats within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide显示文摘Green JD Kreplak L Goldsbury C 2004J Mol Biol2004,342,3:1
6查看详情显示文摘Liao K C Ismail A G Kreplak L Schwartz J Hill I G 0,,:1
7Investigation of human hair cuticle structure by microdiffraction:direct observation of cell membrane complex swellinga显示文摘Kreplak L Merigoux C Briki F 2001Biochimica et biophysica acta2001,1547,2:1
8Atom ic force reveals defects within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide显示文摘Green JD Kreplak L Goldsbury C 2004J Biol Chem2004,342,:1
9Assessing the flexibility of intermediate filaments by atomic force microscopy显示文摘MUCKE N KREPLAK L KIRMSC R 2004J Mol Biol2004,335,5:1
10Investigation of Human Hair Cuticle Structure by Microdiffraction: Direct Observation of Cell Membrane Complex Swelling 显示文摘KREPLAK L MeRIGOUX C BRIKI F 2001Biochimica et Biophysica Acta (BBA)-Protein Structure and Molecular Enzymology2001,1547,2:1
11Exploring the mechanical properties of single vimentin intermediate filaments by atomic force microscopy显示文摘Guzman C Jeney S Kreplak L 2006J Mol Biol2006,360,3:1
12Atomic force microscopy reveals defeats within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide显示文摘Green JD Kreplak L Goldsbury C 2004J Mol Biol2004,342,3:1
13Atomic Forcemicroscopy Reveals Defeats within Mica Supposed Lipid Bilayers Induced by the Amyloidogenic Human Amylin Peptide显示文摘Green JD Kreplak L Goldsbury C 2004J MolBiol2004,342,3:1
14Assessing the flexibility of intermediate filaments by atomic force microscopy显示文摘Mticke N Kreplak L Kirmse R Wedig T Herrmaml H Aebi U Langowski J 2004Journal of Molecular Bi-ology2004,335,5:1
15Atomic force microscopy reveals defects within mica supported lipid bilayers induced by the amyloidogenic human amylin peptide 显示文摘Green J D Kreplak L Goldsbury C 2004J Mol Biol2004,342,3:1
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