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1  failure load (FL) was determined by using a mechanical test.
2 s spanning from neutron scattering to static mechanical testing.
3 emale C57BL/6 mice for in vitro vascular and mechanical testing.
4 7-deazaguanine (DeUG) units was evaluated by mechanical testing.
5 ng anterior knee laxity as demonstrated with mechanical testing.
6  it is more flexible and confirmed by direct mechanical testing.
7 higher reliability under mouth-motion cyclic mechanical testing.
8 ing and then characterized by microscopy and mechanical testing.
9 d collagen gel subjected to an off-axis hold mechanical test and subsequently to biaxial extension.
10 use in situ transmission electron microscopy mechanical testing and atomistic simulations to demonstr
11                                      Tensile mechanical testing and compositional analysis reveal tha
12                The material was subjected to mechanical testing and was assayed for in vitro cytotoxi
13                     Finite element modeling, mechanical testing, and immunohistochemical analyses at
14 erties of PLGA have been characterized using mechanical tests, and a finite-element model has been de
15                                       Before mechanical testing, cytochalasin D, acrylamide, or colch
16                  This study aimed to collect mechanical test data from freshly excised lung, obtained
17 d vessel mechanical properties, by combining mechanical testing (distension) of excised porcine coron
18 ansfer, microstructure characterization, and mechanical testing extremely challenging.
19 lysis included radiographs, basic histology, mechanical testing, flow cytometry, and immunohistochemi
20                                              Mechanical testing has revealed that each is elastomeric
21                              By quantitative mechanical tests in an environmental transmission electr
22                                              Mechanical testing indicated inferior material propertie
23                                              Mechanical tests indicated that the constructs could wit
24                                              Mechanical test lung and artificial trachea simulations
25 frequency oscillatory ventilation (HFOV) and mechanical test lung models with respect to delivered ti
26 d on previous statistical measurements while mechanical testing of arteries (n = 5) were performed in
27                                              Mechanical testing of collagenous tissues at different l
28                                              Mechanical testing of degraded samples revealed hard seg
29                                              Mechanical testing of dorsal skin correlates these chang
30 ent with the findings of the recent in vitro mechanical testing of micropatterned neuronal cultures.
31  extensive molecular-dynamics simulations of mechanical testing of model polymer (high-density polyet
32  system for in situ electron microscopy (EM) mechanical testing of nanostructures.
33                                      Ex vivo mechanical testing of SIS-ECM valve tissue showed normal
34                                              Mechanical testing of the femurs demonstrated that loss
35 binding, integrin activation, spreading, and mechanical testing of the surface.
36 atures under ambient pressure, and therefore mechanical tests on (Mg,Fe)SiO3 perovskite are difficult
37  compared with data obtained previously from mechanical tests on adherent cells.
38               We describe a cell culture and mechanical testing protocol for generating freely suspen
39 hen compared with conventional stress-strain mechanical test results.
40                                              Mechanical testing revealed increased repair strength, c
41                                          Our mechanical testing revealed that the compressed MT behav
42                                   Multiscale mechanical testing reveals that as the size, complexity,
43                                              Mechanical testing showed a propensity for skin to tear
44                                              Mechanical testing showed that TNF-alpha decreases the s
45 lly, the results from mechanical and dynamic mechanical tests showed that performances dramatically i
46  In a parallel study, tissue adjacent to the mechanical test specimens was apportioned for each of fi
47 ipulating these lipid vesicles for sampling, mechanical testing, spectroscopic observation, and chemi
48 astin insufficiency was also shown by aortic mechanical testing that demonstrated incrementally abnor
49                         Here, we use in situ mechanical testing to examine how physiologically pertin
50                                              Mechanical testing using microindentation gives a Vicker
51                                              Mechanical testing was performed on corneal flaps from s
52                                              Mechanical tests were conducted to characterize the phys
53                                SEM, FTIR and mechanical tests were further employed to investigate th
54 he requisite use of conventional destructive mechanical testing, which is necessarily retrospective.
55                      Here we perform in situ mechanical testing with synchrotron X-ray computed micro
56             The 80 femurs were fractured via mechanical testing, with random assignment of one femur
57 dulus and the tensile strength with a single mechanical test, without the need for other experimental

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