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Файл:Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_5612_Библиотеки_им_академика_М_И_Перельмана
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362 Index
Poly (lactide-co-glycolide) (PLGA),
235–236, 317
Poly(L-lactic acid) (PLLA), 52–53
Poly(1,3-trimethylene carbonate) (PTMC),
53–54, 235–236
Polyglycolides (PGAs), 124
Poly-b-hydroxybutyrates (PHBA), 124
Polymer-based coatings, 107–108
Polymer coatings, 52–55, 54f
Proteins
biological addition, 207–209, 209t
effect on magnesium corrosion
performance, 214–218
coated magnesium performance, 216–218
uncoated magnesium performance,
214–215, 214f–217f
-induced corrosion, buffer and atmosphere
effect on, 219–226, 219f–224f, 226f
role in biocorrosion, 206–209
Q
Quality assessment, 336
Quality management system, 332–333
Quality of coating, 52, 57, 59, 267
mechanical features, 269
R
Rare-earth elements
influence on stress corrosion cracking, 190
pharmacophysiology of, 147
Resorbable polymer-based implants, 155,
156t
Roller burnishing, 294–295
S
Scandium oxide, 30, 72
Scanning electron microscopy (SEM)
in vivo biocompatibility of magnesium
alloys, 149
in vivo biodegradation of magnesium
alloys, 138–139, 140f
Self-assembled monolayers (SAM), 36–38,
37f
Self-passivation, 30–32, 31f–32f
Severe plastic deformation (SPD) processes,
295–297, 296f
Shot peening, 290–292, 291f–292f, 294t
advantages and drawbacks of, 294t
Silane coatings, 48–50, 49f
Slow strain rate tensile (SSRT) testing, for
stress corrosion cracking, 190,
191f–194f
Sodium bicarbonate-based conversion
coatings, 38–39
Sodium
dodecanoate, 36–37
Sodium palmitate, 36–37
Sodium stearate, 36–37
Sol-gel coatings, 44–48
Solution heat treatment (SHT), 9–10
Sputtering, 62, 94–95
Sputter ion plating (SIP), 95–96
SS 316L, mechanical properties, 264t
Standard, definition of, 335–336
Sterilization of medical devices, 342t–344t
Stiffness, 315
Strength, 315
retention, 317
Stress corrosion cracking (SCC), 183–184,
317
hydrogen-assisted, 192–193
intergranular, 185–187
of magnesium alloys
alloying elements, influence of, 187–190,
188f–189f
biomedical perspective, 184–185
dissolution mechanisms, 186–187, 186f
fracture mechanics-based approach,
195–198, 195f–197f
mechanical fracture mechanisms, 187
phenomenology of, 185–198
slow strain rate tensile testing for, 190,
191f–194f
prevention of, 198–199
transgranular, 185, 187
Surface design, of biodegradable
magnesium alloys. See
Biodegradable magnesium alloys,
surface design of
Surface energy, 268
Surface modification
chemical, 35–55
effect on implant performance, 318–319
internal stresses, 319
surface chemistry, 319
surface structure, 319
electrochemical, 55–59
goals of, 318–319
laser, 65–69

Index 363
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
layer, degradation resistance of, 247
plasma, 59–64
techniques, 89–97
chemical conversion coatings, 92–94
electrochemical deposition, 90–92
physical vapor deposition, 94–97
Surface-modified magnesium-based metals,
average degradation rate of, 247–249
T
Tafel extrapolation, 12–13
Tantalum, mechanical properties of, 264t
Tartrate-resistant acid phosphatase,
148–149
Temporary implants, 198
Temporary surface, 89, 100–102,
110, 114
Three-point bending tests, 158–159
Ti alloy, mechanical properties, 264t
Titanate-based conversion coatings, 38–39
Titania, 44–46
biocompatibility and biodegradability of,
234t
-containing coatings, on biodegradable
Mg-based metals, 235
Titanium dioxide (TiO
) coating, 44–45
2
Tolerance limit, for Mg castings, 4–5
Fe tolerance limit, 6, 7f–8f, 11, 12f
Toluidine blue, 148
Toughness, 316
Transgranular stress corrosion cracking
(TGSCC), 185, 187
Tricalcium phosphate (TCP), 124
Tubular slot balloon expandable stent, 265f
U
Ultra-pure magnesium, 9–11
V
Van Gieson’s stain, 148
Volumetry, 137, 138f–139f
W
Wear resistance, 318
Weight loss, corrosion rate measurement, 6
determination of, 137–138
experiments, 11–12, 14f
X
X-ray diffraction (XRD)
measurement, 32–33
pattern, 105f
Y
Yttrium
ion implantation, 109
oxide, 30, 72
Yttrium–Al–garnet (YAG), 65
Z
Zinc
influence on stress corrosion cracking, 189
pharmacophysiology of, 147
ZX50 alloy, 104
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