نتایج جستجو برای: degradable scaffolds

تعداد نتایج: 21347  

In this study, mechanical properties and apatite formation ability of synthesized fluorapatite-hardystonite (FA-HT) nanocomposite scaffolds were investigated. Hardystonite (HT; 5 and 10 wt.%) as a reinforcement phase was incorporated into the FA scaffold. FA was mixed with HT for 4 h under argon gas at 220 °C. A space holder method was used for fabricating porous FA-HT scaffolds. Sodium chlorid...

1993
Nitin H. Vaidya

Achieving traditional Byzantine agreement in the presence of arbitrary faults requires that the total number of nodes be larger than three times the number of faulty nodes. Two approaches have been proposed in the literature to circumvent this requirement: (i) hybrid fault model approach 4, 7] considers three types of faults of varying degree of severity, and (ii) degradable agreement approach ...

2013
Chia-Ying LIN ChengYu LIN Scott J. HOLLISTER

The current study proposed a topology optimization method accounting for base material degradation and create a degradable device that retains sufficient stiffness through the degradation process to provide load bearings for tissue regeneration in orthopaedic applications. Degradable materials are less stiff than permanent materials and suffer further stiffness reduction through time when consi...

2011
Youngkyung Ko NamRyang Kim Seojin Park Jun-Beom Park

BACKGROUND Soft tissue augmentation is a widely used procedure in partially and fully edentulous patients to increase soft tissue volume. Polyurethanes have been used for scaffolds in a variety of implantable devices. Artelon(®) is a degradable polyurethane that has been manufactured as fibers, films, and porous scaffolds to be used for various purposes. In this review, the characteristics of A...

2015
Luis M. Alvarez Jaime J. Rivera Linda Stockdale Sunil Saini Richard T. Lee Linda G. Griffith Masaya Yamamoto

Transplantation of freshly-aspirated autologous bone marrow, together with a scaffold, is a promising clinical alternative to harvest and transplantation of autologous bone for treatment of large defects. However, survival proliferation, and osteogenic differentiation of the marrow-resident stem and progenitor cells with osteogenic potential can be limited in large defects by the inflammatory m...

Journal: :avicenna journal of medical biotechnology 0

cartilage is an avascular, aneural, and alymphatic connective tissue with a limited capacity caused by low mitotic activity of its resident cells, chondrocytes. natural repair of full thickness cartilage defects usually leads to the formation of fibrocartilage with lower function and mechanical force compared with the original hyaline cartilage and further deterioration can occur. tissue engine...

Journal: :iranian biomedical journal 0
مهدی کاظم زاده نربت mehdi kazemzadeh narbat فریبا اورنگ fariba orang مهران صولتی هشتجین mehran solati hashtjin آزاده گودرزی azadeh goudarzi

background: engineering new bone tissue with cells and a synthetic extracellular matrix represents a new approach for the regeneration of mineralized tissues compared with the transplantation of bone (autografts or allografts). methods: in this study, to mimic the mineral and organic component of natural bone, hydroxapatite (ha) and gelatin (gel) composite scaffolds were prepared. the raw mater...

Journal: :Journal of orthopaedic research : official publication of the Orthopaedic Research Society 2002
Saadiq F El-Amin Mohamed Attawia Helen H Lu Asist K Shah Richard Chang Noreen J Hickok Rocky S Tuan Cato T Laurencin

The use of biodegradable polymers in the field of orthopaedic surgery has gained increased popularity, as surgical pins and screws, and as potential biological scaffolds for repairing cartilage and bone defects. One such group of polymers that has gained considerable attention are the polyesters, poly(lactide-co-glycolide) (PLAGA) and polylactic acid (PLA), because of their minimal tissue infla...

2008
Toby S. Cubitt Mary Beth Ruskai Graeme Smith

Degradable quantum channels are among the only channels whose quantum and private classical capacities are known. As such, determining the structure of these channels is a pressing open question in quantum information theory. We give a comprehensive review of what is currently known about the structure of degradable quantum channels, including a number of new results as well as alternate proofs...

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