2009 14th National Biomedical Engineering Meeting, BIYOMUT 2009 -- 20 May 2009 through 22 May 2009 -- Balcova, Izmir -- 77541The main purpose of this study is to investigate the increase in osteoblast cells cultured on three different porosity scaffolds in vivo environment. Hence, Collagen + Poly-l-lactic acid (PLLA), Collagen +HA (30 C°), Collagen + HA (37 C°) were studied. During the operation, 20 ml bone marrow was taken for any of patient in sterile conditions. Mesenchymal stem cells were differentiated to osteoblast cells. After the ALP and morphological evaluations were assessed, osteoblast cells were planted on 3 different scaffolds and SEM observations were evaluated. At twenty-fifth day, konfleunt osteoblast cells were observed. Os...
While collagen type I is often used as a substrate for cell culturing and as a coating in biomedical...
Bone tissue engineering using in situ forming 3D scaffolds can be an alternative to surgically treat...
Abstract: Porous materials are highly preferred for bone tissue engineering due to space for blood v...
2009 14th National Biomedical Engineering Meeting, BIYOMUT 2009 -- 20 May 2009 through 22 May 2009 -...
14th National Biomedical Engineering Meeting -- MAY 20-22, 2009 -- Izmir, TURKEYWOS: 000274345400076...
The aim of this thesis is to investigate the behaviour of cells in porous scaffolds. Three types of ...
A common subject in bone tissue engineering is the need for porous scaffolds to support cell and tis...
Optimization of a tissue engineering scaffold for use in bone tissue engineering requires control of...
Bone marrow cells were cultured on in situ photopolymerizable scaffolds based on D,L-lactide and eps...
Tissue engineering was born from the belief that primary cells could be isolated from a patient, exp...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
During the last decades, different materials of both natural and synthetic origin have been develope...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Treatment of bone tissue injuries and diseases is still a great challenge for surgeons, but also for...
While collagen type I is often used as a substrate for cell culturing and as a coating in biomedical...
Bone tissue engineering using in situ forming 3D scaffolds can be an alternative to surgically treat...
Abstract: Porous materials are highly preferred for bone tissue engineering due to space for blood v...
2009 14th National Biomedical Engineering Meeting, BIYOMUT 2009 -- 20 May 2009 through 22 May 2009 -...
14th National Biomedical Engineering Meeting -- MAY 20-22, 2009 -- Izmir, TURKEYWOS: 000274345400076...
The aim of this thesis is to investigate the behaviour of cells in porous scaffolds. Three types of ...
A common subject in bone tissue engineering is the need for porous scaffolds to support cell and tis...
Optimization of a tissue engineering scaffold for use in bone tissue engineering requires control of...
Bone marrow cells were cultured on in situ photopolymerizable scaffolds based on D,L-lactide and eps...
Tissue engineering was born from the belief that primary cells could be isolated from a patient, exp...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
During the last decades, different materials of both natural and synthetic origin have been develope...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Treatment of bone tissue injuries and diseases is still a great challenge for surgeons, but also for...
While collagen type I is often used as a substrate for cell culturing and as a coating in biomedical...
Bone tissue engineering using in situ forming 3D scaffolds can be an alternative to surgically treat...
Abstract: Porous materials are highly preferred for bone tissue engineering due to space for blood v...