Y10S606/915

Implants for creating connections to tissue parts, in particular to skeletal parts, as well as device and method for implantation thereof

A method for locating a material having thermoplastic properties in pores of bone tissue includes providing a pin having the material having thermoplastic properties and a core, wherein the material having thermoplastic properties is arranged on the circumferential surface of the core constituting an outer region of the pin. An opening is provided in the bone tissue, and the pin is positioned at least partly in the opening. The outer region of the pin is then impinged with mechanical vibration energy for a time sufficient for liquefying at least part of the material having thermoplastic properties, and, in a liquefied state, pressing it into the pores of the bone tissue surrounding the opening. The vibration energy is stopped for a time sufficient for re-solidification of the liquefied material, and then the core is removed.

IMPLANTS FOR CREATING CONNECTIONS TO TISSUE PARTS, IN PARTICULAR TO SKELETAL PARTS, AS WELL AS DEVICE AND METHOD FOR IMPLANTATION THEREOF

A method for locating a material having thermoplastic properties in pores of bone tissue includes providing a pin having the material having thermoplastic properties and a core, wherein the material having thermoplastic properties is arranged on the circumferential surface of the core constituting an outer region of the pin. An opening is provided in the bone tissue, and the pin is positioned at least partly in the opening. The outer region of the pin is then impinged with mechanical vibration energy for a time sufficient for liquefying at least part of the material having thermoplastic properties, and, in a liquefied state, pressing it into the pores of the bone tissue surrounding the opening. The vibration energy is stopped for a time sufficient for re-solidification of the liquefied material, and then the core is removed.

Implants for creating connections to tissue parts, in particular to skeletal parts, as well as device and method for implantation thereof

A method for locating a material having thermoplastic properties in pores of bone tissue includes providing a pin having the material having thermoplastic properties and a core, wherein the material having thermoplastic properties is arranged on the circumferential surface of the core constituting an outer region of the pin. An opening is provided in the bone tissue, and the pin is positioned at least partly in the opening. The outer region of the pin is then impinged with mechanical vibration energy for a time sufficient for liquefying at least part of the material having thermoplastic properties, and, in a liquefied state, pressing it into the pores of the bone tissue surrounding the opening. The vibration energy is stopped for a time sufficient for re-solidification of the liquefied material, and then the core is removed.

Physeal tethering device with non-invasive unlocking apparatus for cessation of guided growth modulation
12433648 · 2025-10-07 ·

The present disclosure is directed to a system for guided growth where the implanted physeal tether device can be unlocked using a non-invasive, transcutaneous technique. In one embodiment, a guided growth implant device, consisting of at least two locked pieces at time of surgical implant, can be non-surgically unlocked in-situ, thus halting the guided growth process on demand without requiring additional surgery. In another embodiment, a guided growth implant device can be unlocked using a magnetic or electromagnetic coupling technique. In another embodiment, a guided growth system consists of a device that is implanted to constrain/tether physeal growth and an external actuator tool that is used to non-invasively, non-surgically unlock the implanted device thus halting the guided growth process.