Titanium (Ti)-6Al-4V alloy, which is widely used in spinal instrumentation with a pedicle screw (PS) system. However, significant clinical problems, including loosening and back-out of PSs, persist. During the last decade, a novel technology that produces bioactive Ti from chemical and heat treatments has been reported that induces the spontaneous formation of a hydroxyapatite (HA) layer on the surface of Ti materials. The purpose of this study was to study the effect of bioactivation of Ti-6Al-4V PSs on the ability of HA formation in vitro and its biocompatibility and bone-bonding ability in vivo.Ti-6V-4Al alloy PSs were prepared and bioactivated by NaOH-CaCl2-heat-water treatments. The HA-forming ability of bioactive PSs in simulated body...
Screws for ligament reconstruction are nowadays mostly made of poly-L-lactide (PLLA). However, magne...
In this study, we prepared nano-hydroxyapatite/polyamide 66/glass fibre (n-HA/PA66/GF) bioactive bon...
Purpose: Ultraviolet-mediated photofunctionalization is a new technology to improve bone and titaniu...
Titanium (Ti)-6Al-4V alloy, which is widely used in spinal instrumentation with a pedicle screw (PS)...
Background: The success of orthopedic implants depends on strong anchorange of the device to skeleta...
<p>A: Field emission scanning electron microscopy (FE-SEM), Bar = 10 μm. B: Thin Film (TF)-XRD patte...
[[abstract]]The interference screw fixation method is used to secure a graft in the tibial tunnel du...
Loosening of implants is a frequent complication in orthopaedic surgery. The aim of this thesis was ...
<div><p>Background</p><p>Polyetheretherketone (PEEK) is a widely accepted biomaterial, especially in...
Cement augmentation of pedicle screws is one of the most promising approaches to enhance the anchori...
Sandén, B. 2001. Fixation of spinal implants. Clinical and experimental studies on the effects of hy...
3D printed porous titanium cage is believed with physiology mechanical properties and biocompatibili...
Prophylactic local treatment involving percutaneous vertebral augmentation using bioactive materials...
<p>Field emission scanning electron microscopy (FE-SEM) showed significant HA-formation on the surfa...
Prophylactic local treatment involving percutaneous vertebral augmentation using bioactive materials...
Screws for ligament reconstruction are nowadays mostly made of poly-L-lactide (PLLA). However, magne...
In this study, we prepared nano-hydroxyapatite/polyamide 66/glass fibre (n-HA/PA66/GF) bioactive bon...
Purpose: Ultraviolet-mediated photofunctionalization is a new technology to improve bone and titaniu...
Titanium (Ti)-6Al-4V alloy, which is widely used in spinal instrumentation with a pedicle screw (PS)...
Background: The success of orthopedic implants depends on strong anchorange of the device to skeleta...
<p>A: Field emission scanning electron microscopy (FE-SEM), Bar = 10 μm. B: Thin Film (TF)-XRD patte...
[[abstract]]The interference screw fixation method is used to secure a graft in the tibial tunnel du...
Loosening of implants is a frequent complication in orthopaedic surgery. The aim of this thesis was ...
<div><p>Background</p><p>Polyetheretherketone (PEEK) is a widely accepted biomaterial, especially in...
Cement augmentation of pedicle screws is one of the most promising approaches to enhance the anchori...
Sandén, B. 2001. Fixation of spinal implants. Clinical and experimental studies on the effects of hy...
3D printed porous titanium cage is believed with physiology mechanical properties and biocompatibili...
Prophylactic local treatment involving percutaneous vertebral augmentation using bioactive materials...
<p>Field emission scanning electron microscopy (FE-SEM) showed significant HA-formation on the surfa...
Prophylactic local treatment involving percutaneous vertebral augmentation using bioactive materials...
Screws for ligament reconstruction are nowadays mostly made of poly-L-lactide (PLLA). However, magne...
In this study, we prepared nano-hydroxyapatite/polyamide 66/glass fibre (n-HA/PA66/GF) bioactive bon...
Purpose: Ultraviolet-mediated photofunctionalization is a new technology to improve bone and titaniu...