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229 results about "Hip joint replacement" patented technology

For instance, they’re sometimes used if a tumor grows in the hip joint. Hip replacements may also be used in an emergency to fix a fracture in the hip joint or the thighbone. A condition called avascular necrosis of the hip often requires a total hip replacement.

Method and apparatus for positioning a bone prosthesis using a localization system

Methods and apparatus using a surgical navigation system to position the femoral component of a prosthetic hip during hip joint replacement surgery without separately affixing a marker to the femur. The navigation system acquires the center of rotation of the hip joint as well as at least one point on the femur in the pelvic frame of reference. From these two points, the navigation system calculates the position and length of a first line between the center of rotation of the hip joint and the point on the femur. Optionally, a second point on the femur that is not on the first line is palpated. The system can calculate the position and length of a second line that is perpendicular to the first line and that runs from the first line to the second palpated point on the femur. The prosthetic cup is implanted and its center of rotation is recorded. A tool for forming the bore within which the stem of the femoral implant component will be placed is tracked by the navigation system. While the tool is fixed to the femur, the surgeon re-palpates the same point(s) on the femur that were previously palpated. The navigation system calculates the position and length of a first line between the center of rotation of the prosthetic cup and the re-palpated first point. If a second point on the femur was re-palpated, the navigation system also calculates the position and length of a perpendicular line between the first line and the second point. The surgical navigation system uses this information to calculate and display to the surgeon relevant information about the surgery, such as change in the patient's leg length and/or medialization/lateralization of the joint.
Owner:AESCULAP AG

Non-imaging, computer assisted navigation system for hip replacement surgery

The invention includes: a locating system; a computer, interfaced to the locating system and interpreting the positions of tracked objects in a generic computer model of a patient's hip geometry; a software module, executable on the computer, which defines the patient's pelvic plane without reference to previously obtained radiological data, by locating at least three pelvic landmarks; and a pelvic tracking marker, fixable to the pelvic bone and trackable by the locating system, to track in real time the orientation of the defined pelvic plane. Preferably, the system also includes a femoral tracking marker, securely attachable to a femur of the patient by a non-penetrating ligature and trackable by the locating system to detect changes in leg length and femoral offset.
Owner:KINAMED

Modular hip stems and associated method of trialing

A system and method for trialing a modular hip replacement system (10) permits evaluation and replication of the anatomic anteversion rotational angle of the femur. A distal stem component (18) of the hip replacement system (10) includes a proximal portion (34) having a locator feature (35) that is externally accessible when the stem component is mounted within the femur. A proximal trial body assembly (60) is mounted on the proximal portion (34) of the distal stem component (18) to permit rotation of a trial neck component (62). The trial neck component (62) also includes a locator feature(126) that can be externally referenced to determine the anteversion angle.
Owner:DEPUY PROD INC

Periprosthetic bone plates

The present disclosure relates to bone plates that are configured for use with bones having periprosthetic fractures. For example, in the event that a proximal femur is fractured in an area that is adjacent to a prosthetic component, such as a femoral stem used in a hip replacement, the periprosthetic bone plates of the present invention may be used. In one exemplary embodiment, the periprosthetic bone plates include a periprosthetic zone having a plurality of central apertures and a plurality of outer apertures that are offset from the central apertures. The periprosthetic zone may further include a plurality of indentations, each indentation extending longitudinally between adjacent outer apertures to narrow a width of the bone plate.
Owner:ZIMMER GMBH

Adjustable split seat

An adjustable seat that can be selectively adjusted to provide pressure relief for the back of the thighs and buttocks. The seat has two adjustable seat sections placed under the user's thighs. In one embodiment, the seat includes the main support body comprising a flat, horizontally aligned lower surface, a perpendicularly aligned, wide rear surface, a vertically aligned narrow front edge, a diagonally aligned upper support surface, and two equal vertically aligned side members. Disposed over the diagonally aligned support surface are two parallel, elastic wedge-shaped seat sections or two inflatable wedge-shaped seat sections. Each elastic or inflatable wedge-shaped seat section is complementary in shape and may create a flat seating surface on the seat accessory when the two wedge-shaped seat sections are longitudinally aligned over the diagonally aligned support surface. Each wedge-shaped seat section covers approximately one-half the diagonally aligned support surface. When one wedge-shaped seat section is removed from the main support body to accommodate the hip replacement patient's affected hip, which should not exceed 70° in flexion, the obtuse angle of the main support body supports the hip's approximate 70° angle of flexion. An optional attachment means is used to selectively connect each elastic wedge-shaped seat section to the main support body. With inflatable wedge seat sections, an air pump and control switch are also provided.
Owner:ODDERSON IB R

Resilient interpositional hip arthroplasty device

This disclosure is directed to a resilient interpositional arthroplasty implant for application into joints to pad cartilage defects, cushion joints, and replace or restore the articular surface, which may preserve joint integrity, reduce pain and improve function. The implant may endure variable joint compressive and shear forces and cyclic loads. The implant may repair, reconstruct, and regenerate joint anatomy, and thereby improve upon joint replacement alternatives. Rather than using periosteal harvesting for cell containment in joint resurfacing, the walls of this invention may capture, distribute and hold living cells until aggregation and hyaline cartilage regrowth occurs. The implant may be deployed into debrided joint spaces, molding and conforming to surrounding structures with sufficient stability to avoid extrusion or dislocation. Appendages of the implant may repair or reconstruct tendons or ligaments, and an interior of the implant that is inflatable may accommodate motions which mimic or approximate normal joint motion.
Owner:GROTZ R THOMAS
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