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Wyszukujesz frazę "vertebroplasty" wg kryterium: Temat


Wyświetlanie 1-2 z 2
Tytuł:
Changes of structure and properties of PMMA-based bone cements with hydroxyapatite after degradation process
Autorzy:
Laska-Leśniewicz, Anna
Raczyńska, Małgorzata
Wrotniak, Maciej
Sobczyk-Guzenda, Anna
Powiązania:
https://bibliotekanauki.pl/articles/286094.pdf
Data publikacji:
2019
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
bone cement
PMMA
hydroxyapatite
vertebroplasty
Opis:
PMMA-based bone cements are commonly used for implant fixation or as bone void fillers. Hydroxyapatite added as a filler to bone cement may positively affect the final properties of the material, in particular its biological properties. In this study, the preparation of poly(methyl methacrylate)-based bone cements with incorporated hydroxyapatite (HAp) is reported. The purpose of this article is to examine the proper-ties of bone cements enriched with HAp filler (the concentration of 3wt% and 6wt%) and reveal the changes in the composites properties (chemical structure, surface morphology and distribution of HAp in the composite matrix, moisture absorption, hardness in Shore D scale) during the long-term incubation in the PBS (phosphate-buffered saline) solution at 37°C. The incubation lasted up to 21 days, but only the period when the changes actually occurred was analysed. The studies have shown that the samples containing HAp absorb more moisture and have a lower hardness. These characteristics vary depending on the concentration of HAp. There is no elution of HAp and ZrO2 from the composite during the incubation. The surface morphology and chemical structure do not change during long-term studies. The obtained bone cements are characterized by high stability in the PBS solution.
Źródło:
Engineering of Biomaterials; 2019, 22, 151; 9-16
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Experimental investigations of the PMMA bone cement distribution inside a model of lumbar vertebrae
Autorzy:
Bonik, Artur
Tyfa, Zbigniew
Ciupik, Lechosław Franciszek
Sobczak, Krzysztof
Kierzkowska, Agnieszka
Obidowski, Damian Stanisław
Witkowski, Dariusz
Pałczyński, Tomasz
Elgalal, Marcin
Komorowski, Piotr
Słoński, Edward
Jóźwik, Krzysztof
Walkowiak, Bogdan
Powiązania:
https://bibliotekanauki.pl/articles/2232172.pdf
Data publikacji:
2022
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
percutaneous vertebroplasty
osteoporotic spinal fractures
spinal cement injection
cement distribution
bone cement preparation
Opis:
The use of bone cement in procedures such as vertebroplasty and kyphoplasty can reduce pain and mechanically support the spine. This study aimed to evaluate whether air entrapped within bone cement affected its distribution in a vertebral body model. The study included 3D printed anatomical models of vertebrae together with their internal trabecular structure. Aeration was achieved by mixing the bone cement using three different altered procedures, whilst the control sample was prepared according to the manufacturer’s instructions. The further two samples were prepared by reducing or increasing the number of cycles required to mix the bone cement. A test rig was used to administer the prepared bone cement and introduce it into the vertebral model. Each time the injection was stopped when either the cement started to flow out of the vertebral model or when the entire cement volume was administered. The computer tomography (CT) scanning was performed to evaluate aerification and its influence on the bone cement distribution in each of the patient-specific models. The large number of small pores visible within the cement, especially in the cannula vicinity, indicated that the cement should not be treated as a homogenous liquid. These results suggest that a high level of aerification can influence the further cement distribution.
Źródło:
Engineering of Biomaterials; 2022, 25, 165; 23--30
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-2 z 2

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