Rapid prototyping (RP) technologies, which are based on computer-aided design and computer-aided manufacturing, are widely employed in traditional industries. They are capable of achieving extensive and detailed control over the architecture of objects to be formed and therefore are increasingly used in the biomedical engineering field. Selective laser sintering (SLS), a versatile RP technique, uses a laser beam to selectively sinter powdered materials to form three-dimensional objects according to designs that can be based on data obtained from computer-based medical imaging technologies. In this article relating to biomedical applications, the principle, materials, machine modification, and parameter optimization for SLS are reviewed. Bio...
Pharmaceutical three-dimensional (3D) printing is a modern fabrication process with the potential to...
Selective laser sintering (SLS) enables the fabrication of complex geometries with the intricate and...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
Selective laser sintering (SLS), a mature and versatile rapid prototyping (RP) technology, uses a la...
This paper discusses two ceramic material systems for selective laser sintering (SLS) that are bein...
From initial biomedical applications in the fields of prosthesis, implants, and surgery planning, th...
AbstractThis study presents a fabrication process of bone scaffold model with titanium biomedical ma...
Selective Laser Sintering (SLS) is used to fabricate tissue engineering scaffold due to its versatil...
Additive manufacturing (also known as 3D printing) process is an emerging technique for the fabricat...
This paper investigates the applicability of selective laser sintering (SLS) for the manufacture of ...
Additive manufacturing technologies (Rapid Prototyping) have been applied in medical engineering for...
Purpose:Selective laser sintering (SLS) is a rapid prototyping technique applied to produce tissue-e...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
Rapid prototyping techniques, originally developed for building components from computer aided desig...
This paper presents an overview of the research work carried out for the rapid manufacture of hydrox...
Pharmaceutical three-dimensional (3D) printing is a modern fabrication process with the potential to...
Selective laser sintering (SLS) enables the fabrication of complex geometries with the intricate and...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
Selective laser sintering (SLS), a mature and versatile rapid prototyping (RP) technology, uses a la...
This paper discusses two ceramic material systems for selective laser sintering (SLS) that are bein...
From initial biomedical applications in the fields of prosthesis, implants, and surgery planning, th...
AbstractThis study presents a fabrication process of bone scaffold model with titanium biomedical ma...
Selective Laser Sintering (SLS) is used to fabricate tissue engineering scaffold due to its versatil...
Additive manufacturing (also known as 3D printing) process is an emerging technique for the fabricat...
This paper investigates the applicability of selective laser sintering (SLS) for the manufacture of ...
Additive manufacturing technologies (Rapid Prototyping) have been applied in medical engineering for...
Purpose:Selective laser sintering (SLS) is a rapid prototyping technique applied to produce tissue-e...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
Rapid prototyping techniques, originally developed for building components from computer aided desig...
This paper presents an overview of the research work carried out for the rapid manufacture of hydrox...
Pharmaceutical three-dimensional (3D) printing is a modern fabrication process with the potential to...
Selective laser sintering (SLS) enables the fabrication of complex geometries with the intricate and...
In recent years, digitizing and automation have gained an important place in fabrication of medical...