IP Library › Patent Application 16722141
Patent Application
App. No. 16/722,141

DISTRACTION DEVICE WITH REFLECTOR

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Quick Facts
Patent No.
US None
App. No.
16/722,141
Abstract

The present invention relates to a system for evaluating the evolution of the structure of a bone of a subject, said system comprising an implantable medical device comprising a distraction body and at least one reflector coupled to the distraction body, said distraction body being configured to distract osteotomically separated bone section bodies and comprising a first block for implantation and attachment to a first bone section, a second block for implantation and attachment to a second bone section separated from the first bone section by an osteotomy, an actuator configured to adjust the space between the first block and the second block when activated, enabling distraction between the first bone section and the second bone section, wherein said at least one reflector is configured to reflect an electromagnetic signal and is embedded in a surrounding tissue of the subject when the distraction body is attached to the bone of the subject, a calculation module configured to compute a parameter representative of the structure of the bone of the subject surrounding the bone distraction device, said parameter being computed from a reflected signal corresponding to a reflection, on the reflector embedded in the surrounding tissue of the subject, of an excitation signal comprising at least one frequency in the characteristic frequency range of the reflector, said reflected signal being representative of a dielectric constant of the surrounding tissue.

Claims (22)

1 . A system for evaluating the evolution of the structure of a bone of a subject, said system comprising:

an implantable medical device comprising a distraction body and at least one reflector coupled to the distraction body, said distraction body being configured to distract osteotomically separated bone section bodies and comprising:

a first block for implantation and attachment to a first bone section,

a second block for implantation and attachment to a second bone section separated from the first bone section by an osteotomy,

an actuator configured to adjust the space between the first block and the second block when activated, enabling distraction between the first bone section and the second bone section,

wherein said at least one reflector is configured to reflect an electromagnetic signal and is embedded in a surrounding tissue of the subject when the distraction body is attached to the bone of the subject,

a calculation module configured to compute a parameter representative of the structure of the bone of the subject surrounding the bone distraction device, said parameter being computed from a reflected signal corresponding to a reflection, on the reflector embedded in the surrounding tissue of the subject, of an excitation signal comprising at least one frequency in the characteristic frequency range of the reflector, said reflected signal being representative of a dielectric constant of the surrounding tissue.

2 . The system according to claim 1 , further comprising:

an emitting module configured to emit the excitation signal comprising at least one frequency in the characteristic frequency range of the reflector;

a receiving module configured to receive the reflected signal corresponding to a reflection of the excitation signal emitted by the emitting module on the reflector embedded in the surrounding tissue of the subject.

3 . The system according to claim 2 , wherein at least two modules among the emitting module, the receiving module and the calculation module are integrated in one external non-invasive device.

4 . The system according to claim 1 , wherein the reflector has a plane shape.

5 . The system according to claim 1 , wherein the reflector has a bent shape.

6 . The system according to claim 1 , wherein the calculation module is configured to compute a geometric mapping of the parameter representative of the structure of the bone of the subject from the reflected signal associated to different reflectors and their respective positions relative to the distraction body.

7 . The system according to claim 1 , wherein the parameter representative of the structure of the bone of the subject is computed from a comparison between the reflected signal and a model establishing a correlation between, on one hand, a reflected signal on said reflector and its surrounding tissue and, on the other hand, said parameter representative of the structure of the bone.

8 . The system according to claim 1 , wherein the parameter representative of the structure of the bone of the subject is computed from a comparison between the reflected signal and a reflected signal obtained previously.

9 . The implantable medical device according to claim 1 , wherein the reflector is fixed to the distraction body either to the first block, the second block or the actuator.

10 . The implantable medical device according to claim 1 , further comprising a drive rod having a first end received in a first chamber bore defined by the first block and a second end, opposite to said first end, received in a second chamber bore defined by the second block, the drive rod being able to adjust the space between the first block and the second block, wherein the first chamber bore is a drive chamber bore and the second chamber bore is a threaded bore, the second end of the drive rod being a threaded end threadably received in the threaded bore of the second block, and wherein the actuator cooperates with the drive rod to rotate the drive rod, said drive rod being able to adjust the space between the first block and the second block.

11 . A method for evaluating the evolution of the structure of a bone of a subject using a system according claim 1 with an implant body intended to be attached to the bone of the subject and at least one reflector coupled to said implant body, said reflector being configured to reflect an electromagnetic signal in a characteristic frequency range between 1 MHz and 50 GHz, said reflector being embedded in a surrounding tissue of the subject when the implant body is attached to the bone of the subject, said method comprising the steps of:

emitting an excitation signal comprising at least one frequency in the characteristic frequency range of the reflector;

receiving a reflected signal corresponding to a reflection of the excitation signal emitted by the emitting module on the reflector embedded in the surrounding tissue of the subject, said reflected signal being representative of a dielectric constant of the surrounding tissue;

computing, from the received reflected signal, a parameter representative of the structure of the bone of the subject.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2022
From: SMALL BONE LENGTHENING, LLC
To: NUVASIVE, INC.
Reel/Frame 062012/0199 →
CORRECT TYPOGRAPHICAL SPELLING ERROR IN NAME OF ASSIGNEE SMALL BONE LENGTHENING LLC IN COVER SHEET RECORDED AT REEL/FRAME 059257/0978 Recorded Nov 17, 2022
From: ENDOTACT
To: SMALL BONE LENGTHENING LLC
Reel/Frame 061961/0415 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2022
From: CHEVALIER, ÉRIC; KERSPERN, VALENTIN
To: ENDOTACT
Reel/Frame 061146/0969 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2022
From: ENDOTACT
To: SMALLL BONE LENGTHENING LLC
Reel/Frame 059257/0978 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2020
From: CHEVALIER, ÉRIC; KERSPERN, VALENTIN
To: ENDOTACT
Reel/Frame 052637/0532 →