IP Library › Granted Patent US 12,508,038
Granted Patent B2
US 12,508,038 · App. 18/556,413 · Granted Dec 30, 2025

Surgical insertion guide

Inventor: Emmanuel Micault (Caen, FR)
Assignee: CENTRE HOSPITALIER UNIVERSITAIRE DE CAEN NORMANDIE
A61B17/1739A61B17/56A61B34/30A61B2017/568
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Quick Facts
Patent No.
US 12,508,038
App. No.
18/556,413
Granted
Dec 30, 2025
Kind
B2
Abstract

A personalized insertion guide for the mini-invasive insertion of a device through a target bone, includes a guide platform securable to a fixation bone, presenting an internal bone contact surface being a matching negative of the fixation bone surface in order to allow one single precise positioning of it. At least one insertion channel is configured to receive the device. At least one bone fixation structure secures the guide platform to the fixation bone. The guide platform is designed by means of a presurgical modelling of the fixation bone, based on a geometrical analysis of its surface. The guide enables, once positioned on the fixation bone, to set the origin of a referential with regards to a biological target element inside the body. The guide platform includes a first part and second part extending in two different plans.

Claims (17)

1 . A personalized surgical insertion guide configured to enable the mini-invasive and precise insertion of an elongated device in, through or beyond a target bone of a patient, said surgical insertion guide comprising:

a guide platform configured to be removably secured to a patient's fixation bone, the guide platform presenting an internal bone contact surface and an external surface, the internal bone contact surface being a matching negative of the fixation bone surface in order to allow one single precise positioning of the guide platform on the fixation bone,

at least one insertion channel extending through the guide platform, the at least one insertion channel being configured to receive the elongated device,

at least one bone fixation structure enabling the safe securing of the guide platform to the patient's fixation bone,

wherein the matching negative of the internal bone contact surface of the guide platform with the fixation bone surface is obtained by means of designing a 3D presurgical modelling of the patient's fixation bone, said modelling being based on a geometrical analysis of the fixation bone surface,

wherein the surgical insertion guide is designed to enable, once positioned on the fixation bone, to set an origin of a 3D insertion referential with regards to a biological target element inside the patient's body, in order to define an insertion axis enabling the mini-invasive and precise insertion of the elongated device, wherein the guide platform comprises a first part and a second part extending in two different planes, the first part being configured to cooperate with the fixation bone surface and the second part being configured to cooperate with a surface of a hole or a cavity comprised or communicating with the fixation bone.

2 . The personalized surgical insertion guide according to claim 1 , wherein the guide platform comprises a third part extending in a third plane different from the two other planes, the third part being configured to cooperate with a second surface of the hole or the cavity comprised or communicating with the fixation bone.

3 . The personalized surgical insertion guide according to claim 1 , wherein the biological target element is the cochlea, the target bone is the bony labyrinth and the fixation bone is the temporal bone of the patient.

4 . The personalized surgical insertion guide according to claim 2 , wherein the first part of the guide platform is configured to cooperate with the temporal bone of the patient, the second part of the guide platform is configured to cooperate with the surface of the external auditive conduct of the patient and the third part of the guide platform is configured to cooperate with the surface of the zygomatic process of the temporal bone of the patient.

5 . The personalized surgical insertion guide according to claim 1 , wherein the biological target element is a spot inside the patient's brain, the target bone is the skull and the fixation bone is the temporal bone of the patient.

6 . The personalized surgical insertion guide according to claim 1 , wherein the insertion channel displays a general U shape.

7 . The personalized surgical insertion guide according to claim 1 , wherein the bone fixation structure comprises three fixation holes formed in the guide platform, said fixation holes being configured to cooperate each one with a fixation screw, in order to screw the guide platform to the fixation bone.

8 . The personalized surgical insertion guide according to claim 1 , wherein the surgical insertion guide, once secured to the fixation bone of the patient, blocks six degrees of freedom defined by the 3D insertion referential for the elongated device to be inserted during an insertion operation.

9 . The personalized surgical insertion guide according to claim 1 , wherein the elongated device to be introduced is a milling bit.

10 . The personalized surgical insertion guide according to claim 1 , wherein the internal bone contact surface and the external surface of the guide platform are two separated elements which can be assembled in order to form the complete guide platform.

11 . The personalized surgical insertion guide according to claim 1 , wherein the external surface of the guide platform comprises a stabilization surface configured to be put under pressure in order to reinforce the contact between the internal bone contact surface and the fixation bone, thus leading to a stabilization of the positioning of the guide platform on the fixation bone.

12 . A personalized surgical insertion system comprising an insertion guide according to claim 1 and an insertion robot aimed at manipulating the elongated device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2023
From: MICAULT, EMMANUEL
To: CENTRE HOSPITALIER UNIVERSITAIRE DE CAEN NORMANDIE
Reel/Frame 065290/0640 →
Priority Claims (1)
EP 21305750 · Jun 3, 2021 · regional
Continuity (1)
Related Publication 20240180564A1 · Jun 6, 2024
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