Acquiring and utilizing kinematic information for patient-adapted implants, tools and surgical procedures
Various embodiments of methods for obtaining kinematic information regarding a joint, including information regarding the joint in a weight-bearing position, are disclosed, as well as methods of designing implants, instruments, and surgical repair systems based on the kinematic information.
1. An implant component for treating a knee joint of a patient, the knee joint including a femur and a tibia, the implant component comprising: a joint facing surface including at least one portion having a shape based, at least in part, on patient-specific information regarding the knee joint, wherein the patient-specific information comprises at least one patient-specific kinematic parameter associated with the knee joint in a load-bearing condition, wherein the at least one patient-specific kinematic parameter is obtained using data of loaded flexion positions of the knee joint.
2. The implant component of claim 1 , wherein the patient-specific kinematic parameter comprises a maximum tibial anterior-posterior displacement relative to the femur, and the at least one portion of the joint facing surface has a shape dimensioned to accommodate the maximum tibial anterior-posterior displacement.
3. The implant component of claim 1 , wherein the patient-specific kinematic parameter comprises a maximum tibial internal-external rotation relative to the femur, and the at least one portion of the joint facing surface has a shape dimensioned to accommodate the maximum tibial internal-external rotation.
4. A method of making an implant component for replacing or repairing a knee joint of a patient, comprising: obtaining data of loaded flexion positions of the knee joint, obtaining at least one patient-specific kinematic parameter using the data, and designing a joint facing surface of the implant component using the at least one patient-specific kinematic parameter.