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1 n skin, along with markedly decreased tissue tensile strength.
2 fibril spacing and for maintaining cell wall tensile strength.
3 panied by a shortened lifetime and a lowered tensile strength.
4 ng that gives collagen fibrils much of their tensile strength.
5 with reduced stiffness but also reduced scar tensile strength.
6 ference may partly explain the site-specific tensile strength.
7 in the wall during growth for maintenance of tensile strength.
8 icant stability under shock, indicating high tensile strength.
9 ries in water content, refractive index, and tensile strength.
10  but have fragile skin with markedly reduced tensile strength.
11 milarly did not cause a decrease in membrane tensile strength.
12 ent increment of the elastic modulus and the tensile strength.
13  collagen fibrillogenesis, organization, and tensile strength.
14   Adding fat induced a twice decrease of the tensile strength.
15 igands that interlock as spacers and provide tensile strength.
16 aortas with increased compliance and reduced tensile strength.
17 ties, with unrivalled extensibility and high tensile strength.
18 oad (+17%, P = 0.03 vs. RestTx) and ultimate tensile strength (+10%, P = 0.15 vs. RestTx).
19 better mechanical properties, such as higher tensile strength (27.5 MPa) and elongation at break (17.
20 rm the keratinized gingiva to have increased tensile strength (3.94 +/- 1.19 MPa) and stiffness (Youn
21 lf-heal at room temperature with a recovered tensile strength 4 MPa, which is 30% of its original val
22 rial cellulose macrofibers yield record high tensile strength (826 MPa) and Young's modulus (65.7 GPa
23 it to have exceptional damage tolerance with tensile strengths above 1 GPa and fracture toughness val
24 , regulate collagen fibrillogenesis and skin tensile strength, affect tumor cell growth and invasion,
25 aintained approximately 12% of their initial tensile strength after 14 days of incubation in vitro.
26                        They possess specific tensile strength and a modulus of toughness higher than
27  against a cause-effect relationship between tensile strength and cell shape.
28 wn dentin in human third molars for ultimate tensile strength and collagen biochemistry.
29 eservation significantly affects the overall tensile strength and elasticity of the vessel (i.e., Ep
30 ggrecan and hyaluronan, giving cartilage its tensile strength and elasticity.
31     Cross-linked canna starch could increase tensile strength and elongation of rice noodles.
32               At La content of 1.0 wt.%, the tensile strength and elongation of the alloy was maximum
33                                              Tensile strength and elongation were measured by means o
34  and a resultant decrease in the engineering tensile strength and elongation.
35 his increase in starch content increased the tensile strength and extensibility of the composite film
36                                          The tensile strength and failure strain of IL-1alpha-treated
37  strength, and a somewhat higher resilience, tensile strength and fatigue strength.
38 ceptional mechanical properties such as high tensile strength and great extensibility, making it one
39 ers especially in terms of low density, high tensile strength and high elongation until breaking.
40 nts, they had decreased aortic stiffness and tensile strength and hyperextensible skin with decreased
41                                              Tensile strength and in vitro cytotoxicity showed no sig
42                The acetylation decreased the tensile strength and increased the elongation of the fil
43 l orders of magnitude higher than the retina tensile strength and load-carrying capability reported i
44 d biomechanical properties by increasing its tensile strength and load.
45  had increased stiffness, providing a higher tensile strength and lower elongation when compared to f
46           The nanoreinforcement improved the tensile strength and modulus of films when added at up t
47 pecific elasticity, contractility, adhesion, tensile strength and occlusivity.
48 rce spectroscopy, we probed in situ both the tensile strength and off-rate of single P-selectin molec
49 f the nanowire, as well as estimates for the tensile strength and persistence length.
50  the key protein for maintaining aortic wall tensile strength and stability.
51 ffold was developed and characterized by its tensile strength and stiffness as a function of time in
52 al organization simultaneously achieves high tensile strength and strain at breaking by taking advant
53                             We find that the tensile strength and the lifetime of single E-cadherin/E
54 interfacial fracture properties, such as the tensile strength and work of separation, using atomistic
55                 The HMT starch increased the tensile strength and WVP of the starch films compared to
56  frame at an optimal weight ratio boosts the tensile strength and Young's modulus of the buckypaper/P
57                                  The average tensile strength and Young's modulus of the CNTs investi
58 hosphonate-treated bone demonstrated reduced tensile strength and Young's Modulus.
59 d to low fatigue limits (some ~1/20 of their tensile strengths) and highly variable fatigue lives.
60 rsional ultimate strength, a 29% increase in tensile strength, and a 24% increase in energy to failur
61  greater contraction, cell density, ultimate tensile strength, and elastic modulus than those seeded
62  Interstitial collagen gives fetal membranes tensile strength, and membrane rupture has been attribut
63  orders of magnitude increases in stiffness, tensile strength, and tensile toughness compared to its
64 ndings, the skin was fragile and had reduced tensile strength, and the tail was unusually flexible.
65                         The Young's modulus, tensile strength, and thermal stability of the SWNT-rein
66 were found to be exceptionally strong with a tensile strength approaching that of hard ceramics.
67 F films had excellent mechanical properties (tensile strength approximately 50MPa, elongation at brea
68                                  The highest tensile strength (approximately 540 MPa), elongation (ap
69 alveolins, however, G2 contributes little to tensile strength, arguing against a cause-effect relatio
70 C-null adult mice had approximately half the tensile strength as that of wild-type skin.
71 mposite, in addition to a 27% improvement in tensile strength at 2 wt% addition.
72                                       The LV tensile strength at day 3 post-MI, however, was similar
73 n with marked hyperextensibility and reduced tensile strength at high strain but not at low strain.
74 here was no significant difference in median tensile strength between the FS and stapled groups.
75 dings, including graft alignment and motion, tensile strength between the grafts and surrounding tiss
76 ittle phenotype does not result from loss of tensile strength but from loss in flexibility that cause
77 of these mice showed increased stiffness and tensile strength but no altered collagen cross-links.
78 fibrillar orientation, packing, and ultimate tensile strength can be increased by stretching.
79 nt of wound repair, as evidenced by enhanced tensile strength, can be markedly improved in tissues tr
80 sity, high electrical conductivity, and good tensile strength, can be synthesized by a method combini
81 anisms in one material, leading to twice the tensile strength compared to a single-phase HEA with sim
82 tion and WVP values in addition to increased tensile strength compared to the native starch films.
83                   Tendons have uniquely high tensile strength, critical to their function to transfer
84 e-epithelialization, collagen deposition, or tensile strength during wound closure in mice.
85                                              Tensile strength for gelatin film significantly increase
86 e of cellulolytic decomposition, via loss in tensile strength, for 31 streams in the Ashdown Forest o
87                  Yet it has astonishing mean tensile strength ([Formula: see text]150 MPa) and fractu
88 ombine desired mechanical properties such as tensile strength, fracture toughness, and elasticity int
89 sisted nucleation of alpha resulting in high tensile strength, greater than any current commercial ti
90                                Early MA silk tensile strength improved rapidly with the origin of GGX
91 0 mum and widths exceeding 50 mm and biaxial tensile strength in excess of 3 MPa, were produced by pu
92 antly accelerated closure time and increased tensile strength in mice, and was validated in the porci
93 lized specimens showed significantly greater tensile strength in root than in crown.
94                                          The tensile strength in the nonfixed group was significantly
95 nts were phenotypically normal and exhibited tensile strength in their inflorescence stems comparable
96 ferate in site, and assist wounds in gaining tensile strength in whole-body irradiated mice with or w
97 Direct correlation was obtained between bulk tensile strength, in vitro binding to everted intestinal
98 n content, and prevented skin thickening and tensile strength increase after bleomycin challenge.
99                                              Tensile strength increased from 0.018N/mm(2) in the cont
100                  Symptomatic of this loss of tensile strength is an abnormal swelling of the cells at
101                          The decrease of the tensile strength is coupled with a decrease of the work
102 is preserved in the final product, while the tensile strength is increased by a factor of 5.
103 , the single-phase CrMnFeCoNi alloy displays tensile strength levels of approximately 1 GPa, excellen
104 ngle-molecule force spectroscopy, we map the tensile strengths, lifetimes, and energy barriers of ind
105 n, we observed MMP-13 and COL1A2 expression, tensile strength, macrophage infiltration, and wound his
106                                              Tensile strength measurements of etiolated hypocotyls re
107 diminished cross-linking as detected by both tensile strength measurements using whole corneas and ge
108 microscopy, scanning electron microscopy and tensile strength measurements.
109 ions distal to the muscle and show increased tensile strength, modulus, and energy stored per unit st
110 mpressive properties such as remarkable unit tensile strength, modulus, and resistance to heat, flame
111 cadherin/gamma-catenin junction provides the tensile strength necessary to establish and maintain str
112                   As a result, an ultra-high tensile strength of 2.4-2.6 GPa, a significant elongatio
113 grees C) and superior mechanical properties (tensile strength of 250 MPa) are achieved due to the int
114            The yield strength of 244 MPa and tensile strength of 274 MPa were achieved in the composi
115 shaped specimens yielded an average ultimate tensile strength of 6.60 MPa and an average failure stra
116  cell growth and migration, and enhances the tensile strength of artificial tissue constructs; ligati
117 ngth and hyperextensible skin with decreased tensile strength of both normal and wounded skin.
118                                          The tensile strength of CBPLP-Cys film ranged from 3.25 +/-
119 ng sulfation on CD44s modestly decreases the tensile strength of CD44s-fibrin(ogen) binding, which is
120      The apparent area expansion modulus and tensile strength of egg phosphatidylcholine (EPC) membra
121 ecombinant GH, enhances collagen content and tensile strength of engineered ligaments, in association
122                  For this model to work, the tensile strength of Europa's ice crust must be less than
123 rillar bridges, which slightly decreased the tensile strength of fibers.
124                                          The tensile strength of fibrillar collagens depends on stabl
125                                          The tensile strength of films significantly decreased and el
126 ork that causes stresses far beyond the bulk tensile strength of gold.
127 asurements highlight the instability and low tensile strength of gp120-receptor bonds, uncover a syne
128 ys including time to closure of open wounds, tensile strength of healed incisional wounds, wound hist
129                         However, neither the tensile strength of incisional skin wounds nor the rate
130          Tensiometry was used to measure the tensile strength of incisional wounds over a 60-day time
131 enhanced collagen accumulation and increased tensile strength of incisional wounds.
132 0 microM ouabain also increased the ultimate tensile strength of neo-tissue by 56-86% at 4 weeks.
133 ty of 2.58 mWh g(-1) or 3.6 mWh cm(-3), high tensile strength of over 1000 MPa, and bearable pressure
134                                          The tensile strength of P-selectin binding to a novel O-link
135 h is evident in the hardness of diamonds and tensile strength of polymeric fibres; on the single-mole
136                                          The tensile strength of pure EPC membrane is 9.4 mN m-1 wher
137       Even though the fast kinetics and high tensile strength of selectin-ligand bonds are primarily
138                                  We measured tensile strength of skin incisions at 11-21 d in both no
139 malities that coincide with markedly reduced tensile strength of the affected zoites, indicating the
140 dulus, higher stiffness modulus, and maximum tensile strength of the aorta was 34% to 38% higher than
141 glycans and sulfation also contribute to the tensile strength of the CD44-HA bond.
142 P also provides a mechanism for lowering the tensile strength of the dust layer and aiding dust relea
143                                          The tensile strength of the electrospun sutures decreased as
144               After ionic cross-linking, the tensile strength of the film containing 10% of DCC was i
145 bly, e.g. addition of 15% of NFC increased a tensile strength of the film from 70.02 to 97.97 MPa.
146                                          The tensile strength of the film was significantly lower but
147                                          The tensile strength of the graphene fiber reaches 1080 mega
148 while improving the collagen composition and tensile strength of the healed wound.
149                                     When the tensile strength of the ice is reached, a crack may occu
150      When normalized by weight, the specific tensile strength of the macrofiber is as high as 598 MPa
151 cyclic stress amplitudes much lower than the tensile strength of the materials involved.
152  to the apparent area expansion modulus, the tensile strength of the membrane decreases with the incr
153 eriments at stress amplitudes lower than the tensile strength of the metal, we report a history-indep
154 ng buffers (pH < 9) in order to preserve the tensile strength of the polyimide coated fused-silica ca
155                                          The tensile strength of the prepared multilayers approached
156 rm that salt bridges primarily determine the tensile strength of the protein-to-protein bond, and tha
157                                          The tensile strength of the resultant fibers reaches ~729 MP
158 M241385 decreased scar size and enhanced the tensile strength of the scar.
159 e and provide an explanation for the reduced tensile strength of the skin.
160 udin lowered PR to multiple agonists and the tensile strength of the TIP-FCS, 2 measurements strongly
161 onfirmed increased deformability and reduced tensile strength of their skin.
162                            The stiffness and tensile strength of these multilayer composites are one
163                                          The tensile strength of these wounds was also reduced compar
164 t layer ("sword-in-sheath" failure), and the tensile strength of this layer ranged from 11 to 63 giga
165 o determine whether the collagen content and tensile strength of tissue-engineered ligaments is enhan
166 hat decorin incorporation increases ultimate tensile strength of uncross-linked fibers.
167 ligned cellulose nanofibers has a mechanical tensile strength of up to 350 MPa, nearly three times of
168                The constituent solids attain tensile strengths of 1.75 GPa without failure even after
169         At room temperature, the alloy shows tensile strengths of almost 1 GPa, failure strains of ap
170                                              Tensile strengths of approximately 1 GPa, tensile ductil
171                                          The tensile strengths of individual multiwalled carbon nanot
172                                              Tensile strengths of SPI films with rutin and epicatechi
173 pare the entry competency of viral clones to tensile strengths of the individual Env-receptor bonds o
174                Interstitial collagen confers tensile strength on the cap, as it does in skin and tend
175                          For bodies with low tensile strength, our results can explain key morphologi
176 ed that Er:YAG + HF had significantly higher tensile strength (p = 0.00).
177 strength (sigma y) of 1260 MPa, and ultimate tensile strength (sigma UTS) of 1400 MPa.
178  light (UVA; RFUVA) increases corneal stroma tensile strength significantly.
179 ntiation in vitro, and exhibit stiffness and tensile strength similar to existing dental materials.
180  the production of flexible fibres with high tensile strength such as polyester and nylon.
181                           In both locations, tensile strength tested perpendicular to the direction o
182 lectrophoresis, atomic force microscopy, and tensile strength testing.
183                                              Tensile strength tests were conducted after these experi
184 an aminoguanidine in gel electrophoresis and tensile strength tests, confirming recent findings on it
185 e less prone to rupture and display a higher tensile strength than bonds formed by classical type I n
186 er unstressed dissociation rate and a higher tensile strength than CD44s-fibrinogen but is weaker tha
187          The scalpel incisions showed higher tensile strength than free-electron laser wounds from da
188 A adhesives by ethanol wet-bonding exhibited tensile strengths that were not significantly different
189                                              Tensile strength then maximized in basal entelegyne spid
190  important role in the human body, providing tensile strength to connective tissues.
191 type I is a structural protein that provides tensile strength to tendons and ligaments.
192 h lay down the fibrillar collagen that gives tensile strength to the amnion.
193  by intertwining filaments confers shear and tensile strength to the caprock, contributing to its duc
194 gnal regulation of cell behavior and provide tensile strength to the fibrous cap.
195 sional organization most likely confers high tensile strength to the pulley.
196     The inner barrier grants the complex the tensile strength to withstand large pulling forces (>50
197  caused significant increase (p<0.05) in the tensile strength (TS) and elastic modulus, leading to st
198 he addition of NCs to MC films decreased the tensile strength (TS) and the elastic modulus (EM) (p<0.
199                                              Tensile strength (TS) and water vapour permeability (WVP
200             Grouper gelatin films had higher tensile strength (TS) and Young's modulus (YM), but lowe
201     Films containing 20% glycerol had higher tensile strength (TS) but lower elongation at break (EAB
202                                          The tensile strength (TS) increased up to 50% after the inco
203 eak (E) value of the films and decreased the tensile strength (TS) value of the films.
204 gle-molecule force spectroscopy to probe the tensile strength, unstressed bond lifetime, and interact
205 emia virus promoters significantly increased tensile strength up to 80% for 14-21 d after surgery.
206 m-scaled twins (0.7 nm in thickness) exhibit tensile strengths up to 3.12 GPa, near the ideal limit,
207 composing flexible elastomers with different tensile strengths using soft lithographic molding.
208 composition, peaking at 15% strain: ultimate tensile strength (UTS) and tensile modulus increased 47%
209             We present estimates of ultimate tensile strength (UTS) for two engineered beta-solenoid
210 mation of a stable scar verified by constant tensile strength values.
211                                       Tissue tensile strength was affected only in the 1% trypsin gro
212                                      Leaflet tensile strength was evaluated in vitro by using a Vitro
213                                              Tensile strength was quantified with a digital force gau
214 Type II collagen provides cartilage with its tensile strength, whereas the water-binding capacity of
215  property is its considerable mechanical and tensile strength, whilst being flexible enough to accomm
216 to evaluate both the elastic modulus and the tensile strength with a single mechanical test, without
217 ed greater stiffness, increased breaking and tensile strengths, yield load and yield energy, a shift
218                    Compared to PVA/CNTs, the tensile strength, Young's modulus and electrical conduct
219 he water vapour permeability increased while tensile strength, Young's modulus and glass transition t
220 ons thanks to its unique combination of high tensile strength, Young's modulus and structural flexibi

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