Abstract:
A dental implant assembly comprising an elongated inner body substantially resembling a tooth root (1-1) and an outer member for securing to a bone of a patient (1-2) having a heterogeneous porous structure adapted to provide bone growth, the inner body and the outer fixation member being formed in one piece, the fastening element being movable between a stored passive position and an extended active position (1-2).
Abstract:
A dental implant having an anchoring system consisting of foldable fins actuated by an insertion screw; the dental implant is characterised by the following components: an implant body that includes an implant-abutment connection zone, an externally threaded zone, at least one pair of exit openings and an internally threaded zone; an anchoring having at least one pair of foldable fins and a top opening; an insertion screw having a head with an internal hexagonal socket, a stem and a screw thread; when the insertion screw is screwed into the top opening of the anchoring means, the insertion screw pushes the anchoring down into the implant body and causes the foldable fins to extend outwards through the exit openings.
Abstract:
The invention relates to a fastening device for an implant that is elastically deformable by stress, the length of the device in the unstressed state being less than that of the device in the stressed state, and the diameter of the device in the unstressed state being greater than that of the device in the stressed state, and to a kit comprising it.
Abstract:
A method for automated implantation of an implant or for an automated augmentation process of hard tissue and/or hard tissue replacement material using a sheath element is provided. The implantation apparatus includes a casing, a converter operable to generate mechanical vibrations the converter inside the casing and displaceable in a longitudinal direction relative to the casing, and a sonotrode coupled to an output location of the converter. A shaft portion with a retention structure is rotationally coupled to the casing and is equipped for cooperating with a rotationally asymmetric element of the sheath element to rotationally couple the casing to the sheath element. An axial coupling is equipped for locking the casing to the sheath element. The shaft portion, the axial coupling and the sonotrode are mutually arranged so that the distal end of the sonotrode may be introduced into a longitudinal opening of the sheath element.
Abstract:
A medical device is provided, the device, for example, being implantable into a human or animal body or being an augmentation device for strengthening human or animal hard tissue for subsequent implantation of a separate implant. The device includes a sheath element suitable of being brought into contact, during a surgical operation, with live hard tissue and/or with hard tissue replacement material. The sheath element has a, for example, generally elongate shape and a longitudinal bore defining a longitudinal opening reaching from a proximal end of the sheath element into a distal direction, and a plurality of holes in a wall of the opening. Further, the device includes a liquefiable element that is insertable or inserted in the longitudinal opening and at least partly liquefiable by the impact of energy impinging from the proximal side.
Abstract:
The invention relates to an endosseous implant capable of being implanted into osseous tissue. The implant comprises an attachment device (3), comprising: a so-called gripping portion (31) for gripping the osseous tissue, a so-called expansion portion (32), said two portions being mobile in relation to each other, engaging mechanical connection means (33, 33a, 33b), located on the gripping portion (31) on the one hand and on the expansion portion (32) on the other hand, such that the relative mobility of the two portions has at least one degree of freedom, and such that a relative movement of said two portions causes an extension of the gripping portion, said extension causing the gripping portion to engage with the osseous tissue. The endosseous implant can in particular be used in the dental field.
Abstract:
An implant includes a collar configured for disposal within tissue. The collar defines an axial bore. A shaft extends between a first end and a second end. The shaft is configured for disposal with the bore of the collar. A base defines an axial bore having an inner surface configured for engagement with the shaft such that the base is axially movable relative to the shaft. At least one arm extends between the collar and the base. The at least one arm is movable via axial movement of the base relative to the shaft between a first position and a second position such that the at least one arm is expanded in a configuration to engage tissue. Methods of use are also disclosed.
Abstract:
A dental implant system for placement within a jaw of a patient includes an envelope including an outer surface and an inner surface defining a barrel. At least one barrier is located in the barrel. The barrel having a first region on one side of the barrier and a second region on an opposing side of the barrier. An expander member is movable within the barrel along a longitudinal axis of the barrel from the first region to the second region. The barrier prohibits the expander member from moving from the second region to the first region.
Abstract:
An implant includes a body having an upper and lower ends, a longitudinal bore defined by a threaded interior surface, and a threaded exterior surface; at least one stabilizer arm associated with a corresponding longitudinal slot in the body, the stabilizer arm being hingedly attached to the body and having a bone gripping protuberance projecting laterally outward therefrom. The stabilizer arm is movable from a first position wherein the bone gripping protuberance is positioned within the bore and a second fully extended position wherein the bone gripping protuberance is positioned outside the threaded exterior surface of the body. The stabilizer arm is resiliently biased to the first position. A camming member is movable through the bore of the body from an initial position to a final position wherein the stabilizer arm is moved to the second stabilizer arm position.
Abstract:
An expandable dental implant is provided. The dental implant comprises a crown portion, an expandable root and a cam. The expandable root portion has a plurality of members pivotally coupled to the crown portion. The cam is coupled to the crown portion and is slidably engageable with at least a portion of the plurality of members to urge the members to pivot outward and expand the root portion.