Patent classifications
A61F2/0095
SIDE-SPECIFIC ORTHOPAEDIC SURGICAL INSTRUMENT SYSTEMS AND ASSOCIATED METHODS OF USE
A surgical instrument system includes a pair of side-specific orthopaedic surgical instrument assemblies. The right-limb side-specific instrument assembly is kitted so as to be devoid of left-limb side-specific instruments and vice versa.
Corneal graft assemblies for improved surgical operations
Assemblies for storing, handling, transporting, viewing, evaluating, and/or shipping corneal tissue are provided. The assembly includes a corneal tissue carrier within a vial, the transport vial removably coupled to a stabilization base, wherein the ease of access to the graft carrier allows administering the corneal tissue sample to a patient in rapid succession so that more surgeries can be performed by a single surgeon in a single day.
Packaging for surgical implant
A packaging for an implant to hold the implant in a first condition. The packaging including a first packaging tube and a container, wherein the implant is movable from the container into the first tube and maintained within the first tube in a second condition, the implant having a first transverse dimension in the first condition and a second transverse dimension in the second condition, the second transverse dimension being less than the first transverse dimension.
PROTECTIVE PACKAGING STRUCTURE FOR COMPRESSIBLE MATERIALS
A more robust packaging structure for maintaining the integrity of compressible biologically active materials during storage and especially during transportation is provided. These containers protect the materials from shock, vibration, deformation, or separation from agitation. The compressible materials may be in the form of synthetic fibers, and may include a composite of fibers and beads or granules. Suitable materials that may benefit from such a robust packaging structure include synthetic materials that comprise a biologically active ceramic or glass.
DOCK HOLDER, PACKAGING, AND METHODS OF USE
A container configured to receive a dock assembly therein for packaging is disclosed. The container can include: a base defining an engagement surface configured to receive the dock assembly; a lid configured to releasably engage with the base such that at least a portion of the dock assembly is disposed between the base and the lid; and a dock holder affixed to the container and configured to receive a first portion of the dock assembly comprising two or more adjacent coils thereon. The dock holder can comprise a protrusion configured to engage the first portion of the dock assembly and space a second portion of the dock assembly away from the dock holder.
BIODEGRADABLE BONE GLUE
The present invention is directed to bioresorbable polymers to be used as bone and tissue adhesives. The present invention is also directed to the synthesis of bioresorbable polymeric molecules bearing adhesive moieties and the use of such compounds in methods to glue and stabilize fractured bones and damaged tissues. The present invention is also directed to the use of such compounds as adhesive sealants for applications in wound care. The present invention is also directed to the use of such compounds as biodegradable ink for applications in tissue engineering and 3D printing. The present invention also relates to the use of such compounds as drug delivery platforms.
STERILE PACKAGING CONTAINER
The present disclosure in one aspect provides a sterile packaging container comprising a container body with a cross-sectional shape that is constant along the majority of the longitudinal axis, a cover and a closure assembly that inhibits the passage of microbial contaminants. The container is configured such that the interior of the container can be sterilized. The sterile packaging container described herein allows one to manufacture a sterile packaging tube exercising the smallest possible volume.
Method and apparatus for compressing/loading stent-valves
Apparatus (40) for compressing a transcatheter cardiac stent-valve (10) comprises: a hollow channel (42) having an interior surface (50) shaped for progressively compressing the stent-valve in response to longitudinal advancement of the stent-valve within the channel; a driver (46) threadedly engaged on the exterior of the channel for generating a longitudinal driving force in response to rotation; a mover (44) having limbs (56) that project through slots (58) in the channel wall to transmit the driving force to the stent-valve within the channel; and a channel extension (48) removably attachable at the exit (54) to provide a generally cylindrical containment bore (66).
Ionic polymer compositions
The present disclosure pertains to ionic polymer compositions, including semi.- and fully interpenetrating polymer networks, methods of making, such ionic polymer compositions, articles made from such ionic polymer compositions, and methods of making such articles and packaging, for such articles.
Composite packaging facilitating an aseptic presentation of medicinal products
A sterile packaging for sterile medicinal products, in particular implants, forms at least one, or in case of a multiple sterile packaging, at least one first sterile barrier and an outer second sterile barrier, separate and independent from the first sterile barrier, and which is accommodated in an outer packaging. The outer packaging is made of a composite material that includes cardboard and at least one coating or film, and is designed and intended to form the second sterile barrier of the sterile packaging.