Soft tissue engineering presents significant challenges compared to other tissue engineering disciplines such as bone, cartilage or skin engineering. The very high cell density in most soft tissues, often combined with large implant dimensions, means that the supply of oxygen is a critical factor in the success or failure of a soft tissue scaffold. A model is presented for oxygen diffusion in a 15-60 mm diameter dome-shaped scaffold fed by a blood vessel loop at its base. This model incorporates simple models for vascular growth, cell migration and the effect of cell density on the effective oxygen diffusivity. The model shows that the dynamic, homogeneous cell seeding method often employed in small-scale applications is not applicable in t...
Nutrients supply especially like nutrients and oxygen play vital role in tissue engineering process....
Oxygen and nutrients cannot be delivered to cells residing in the interior of large-volume scaffolds...
Tissue formation within tissue engineering (TE) scaffolds is preceded by growth of the cells through...
Abstract The supply of oxygen to proliferating cells within a scaffold is a key factor for the succe...
Tissue engineering scaffolds are designed to support tissue self-healing within physiological enviro...
The paper presents a transient, continuum, two‐phase model of the tissue engineering in fibrous scaf...
Tissue Engineering holds the promise to repair damaged human tissues and organs by engineering tissu...
Tissue engineered vascular grafts were fabricated using human umbilical vein smooth muscle cells gro...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This study aims to establish a new computational framework that allows modeling transient oxygen dif...
Oxygen is necessary for maintaining cell proliferation and viability and extracellular matrix (ECM) ...
The aim of this study was to maximize oxygen diffusion within a three-dimensional scaffold in order ...
Nutrients supply especially like nutrients and oxygen play vital role in tissue engineering process....
Oxygen and nutrients cannot be delivered to cells residing in the interior of large-volume scaffolds...
Tissue formation within tissue engineering (TE) scaffolds is preceded by growth of the cells through...
Abstract The supply of oxygen to proliferating cells within a scaffold is a key factor for the succe...
Tissue engineering scaffolds are designed to support tissue self-healing within physiological enviro...
The paper presents a transient, continuum, two‐phase model of the tissue engineering in fibrous scaf...
Tissue Engineering holds the promise to repair damaged human tissues and organs by engineering tissu...
Tissue engineered vascular grafts were fabricated using human umbilical vein smooth muscle cells gro...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This article investigates heterogeneous proliferation within a seeded three-dimensional scaffold str...
This study aims to establish a new computational framework that allows modeling transient oxygen dif...
Oxygen is necessary for maintaining cell proliferation and viability and extracellular matrix (ECM) ...
The aim of this study was to maximize oxygen diffusion within a three-dimensional scaffold in order ...
Nutrients supply especially like nutrients and oxygen play vital role in tissue engineering process....
Oxygen and nutrients cannot be delivered to cells residing in the interior of large-volume scaffolds...
Tissue formation within tissue engineering (TE) scaffolds is preceded by growth of the cells through...