日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Submillisecond elastic recoil reveals molecular origins of fibrin fiber mechanics

亚毫秒级弹性回弹揭示纤维蛋白纤维力学的分子起源

Hudson, Nathan E; Ding, Feng; Bucay, Igal; O'Brien, E Timothy 3rd; Gorkun, Oleg V; Superfine, Richard; Lord, Susan T; Dokholyan, Nikolay V; Falvo, Michael R

Stiffening of individual fibrin fibers equitably distributes strain and strengthens networks

单个纤维蛋白纤维的硬化能够均匀地分散应力并增强网络结构。

Hudson, Nathan E; Houser, John R; O'Brien, E Timothy 3rd; Taylor, Russell M 2nd; Superfine, Richard; Lord, Susan T; Falvo, Michael R

Evidence that αC region is origin of low modulus, high extensibility, and strain stiffening in fibrin fibers

证据表明,αC区是纤维蛋白纤维低模量、高延展性和应变硬化的根源。

Houser, John R; Hudson, Nathan E; Ping, Lifang; O'Brien, E Timothy 3rd; Superfine, Richard; Lord, Susan T; Falvo, Michael R