Abstract:
A bioactive-type of hydrophilic dental implant which is made of titanium or titanium alloy having a rough surface, wherein a coating layer of a mixed solution comprising i) an organic pH buffering agent and/or inorganic pH buffering agent and ii) an organic amphiphilic having sulfonic group is formed on the rough surface which was pre-treated to remove a contaminant. The present invention has effects preventing that the dental implant is exposed to air before it is inserted into the alveolar bone and the implant surface is re-contaminated; improving the biocompatibility of the implant, fluid- and blood-affinity, and the initial osseointegration performance; and shortening the osseointegration period, and the surface of the dental implant can be maintained as being hydrophilic for at least 3 years by using a mixed solution of pH buffering agent and organic amphiphilic substance having sulfonic group as a surface coating solution.
Abstract:
Disclosed is an artificial implant comprising: a silicone shell; and a filler filling the interior of the shell, wherein at least a portion of the shell is a rupture-prevention part comprising two or more silicone layers and one or more reinforcing material layers interposed therebetween.
Abstract:
Disclosed are an artificial implant and a method for manufacturing same, the artificial implant comprising: a silicone shell consisting of an upper portion, a lower portion, and a side portion; and a filler injected into the silicone shell, wherein the silicone shell includes at least one silicone layer and at least one reinforcing layer, the reinforcing layer being provided on at least a portion of the lower portion and the side portion of the silicone shell, or the silicone shell includes a layered structure having a step.
Abstract:
Disclosed are an artificial implant and a method for manufacturing same, the artificial implant comprising: a silicone shell consisting of an upper portion, a lower portion, and a side portion; and a filler injected into the silicone shell, wherein the silicone shell includes at least one silicone layer and at least one reinforcing layer, the reinforcing layer being provided on at least a portion of the lower portion and the side portion of the silicone shell, or the silicone shell includes a layered structure having a step.
Abstract:
A dental implant and a method for manufacturing same which assure early stability and fixation power of an implant by suppressing early osteolysis after an implant procedure, and allowing better bone coherence of the implant surface during an osteogenic period by controlling the speed of bone remodeling.
Abstract:
Disclosed is a surface processing method for a dental implant, the surface processing method including: (a) laser-processing a surface of an implant; (b) etching the laser-processed surface of the implant; and (c) washing the etched implant, wherein a macro surface including one or more first grooves is formed at the surface of the implant by step (a), a micro surface including one or more second grooves is formed at the surface of the implant by step (b), an outer circumferential surface of the implant includes a top portion and a bottom portion, and at least one of an average width and an average depth of the first grooves is formed to be greater at the top portion of the outer circumferential surface of the implant than at the bottom portion of the outer circumferential surface of the implant.
Abstract:
A method for forming a coating film of a material for enhancing bioactivity, such as a water-soluble vitamin, on a surface of a dental implant, and a dental implant produced by the method, in order to overcome the limitations in improving osseointegration capability, which result from existing physical surface treatments, such as RBM and SLA surface treatments. The methods enable the SLA-pretreated implant surface to have blood affinity and an enhanced bioactive function, thereby providing a method for producing a dental implant which has excellent biocompatibility and high osseointegration capability after the implant procedure and thus has enhanced bioactivity, and a dental implant produced by the method. The surface of the dental implant, from which organic pollutants have been removed, are coated with a bioactive material, thereby enhancing blood affinity and bioactivity of the implant and thus improving initial osseointegration capability of the implant.
Abstract:
A fluorine coating agent having enhanced dental tubule permeability and coating endurance, and a method for preparing the same. The fluorine coating agent applied on the surface of a tooth is enhanced in abrasion resistance to increase a period of time during which a coating membrane lasts, thereby preventing dental caries. Further, the curing time of the fluorine coating agent can be controlled to allow the agent to permeate and thus block the dental tubule.
Abstract:
A hydrogel and a method for manufacturing the same. The hydrogel, which can be freely used during treatment irrespective of the shape of a bone defect region, has a decomposition rate capable of being regulated in situ and can thus be rapidly decomposed over a certain time, i.e., after the completion of bone regeneration. Furthermore, a hydrogel membrane using the hydrogel which is applied to a bone defect region irrespective of the shape thereof, and a method for manufacturing the same.