IP Library Patent Application 18255375
Patent Application
App. No. 18/255,375

ROBOTIC DRIVE SYSTEM FOR A CATHETER-BASED PROCEDURE SYSTEM

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/255,375
Abstract

A robotic drive system for a catheter-based procedure system includes a positioning system coupled to a patient table, the patient table having a front side and a rear side. The rear side of the patient table has a rail. The robotic drive system further includes a linear member coupled to the positioning system at a connection point and at least three device modules coupled to the linear member. Each device module is independently controllable and includes a drive module having a front side and a cassette mounted on the drive module. The cassette has a front side and is configured to support an elongated medical device having a longitudinal device axis. The cassette is mounted on the drive module in a vertical orientation so that the front side of the cassette is parallel to the front side of the drive. In addition, a width defined between the longitudinal device axis of the elongated medical device and the connection point of the linear member to the positioning system is equal to or less than a distance between an insertion point for the elongated medical device to a patient and the rail on the rear side of the patient table.

Claims (38)

1 . A robotic drive system for a catheter-based procedure system, the robotic drive system comprising:

a positioning system coupled to a patient table, the patient table having a front side and a rear side, the rear side of the patient table having a rail;

a linear member coupled to the positioning system at a connection point; and

at least three device modules coupled to the linear member, each device module independently controllable and comprising:

a drive module having a front side; and

a cassette mounted on the drive module, the cassette having a front side and configured to support an elongated medical device having a longitudinal device axis, wherein the cassette is mounted on the drive module in a vertical orientation so that the front side of the cassette is parallel to the front side of the drive module;

wherein a width defined between the longitudinal device axis of the elongated medical device and the connection point of the linear member to the positioning system is equal to or less than a distance between an insertion point for the elongated medical device to a patient and the rail on the rear side of the patient table.

2 . The robotic drive system according to claim 1 , wherein the linear member comprises a drive mechanism to provide linear motion for each of the plurality of device modules and the drive mechanism is a rack and pinion linear actuator.

3 . The robotic drive system according to claim 1 , wherein the linear member comprises a drive mechanism to provide linear motion for each of the plurality of device modules and the drive mechanism is a screw.

4 . The robotic drive system according to claim 2 , wherein the linear member further comprises a rail positioned above the rack.

5 . The robotic drive system according to claim 4 , further comprising a plurality of stages moveably coupled to the rail wherein each stage in the plurality of stages is coupled to one of the plurality of device modules.

6 . The robotic drive according to claim 5 , wherein the rack and pinion linear actuator includes a plurality of pinions wherein each pinion is coupled to one of the stages in the plurality of stages and each stage includes a motor coupled to the pinion associated with the stage.

7 . The robotic drive system according to claim 1 , wherein each device module further comprises a bottom surface and a distance between the longitudinal device axis and the bottom surface of the device module is less than 20 mm.

8 . The robotic drive system according to claim 1 , wherein the insertion point for the elongated medical device is a femoral artery of the patient.

9 . A robotic drive system for a catheter-based procedure system, the robotic drive system comprising:

a linear member; and

at least one device module coupled to the linear member, the at least one device module independently controllable and comprising:

a drive module comprising:

a housing having a front side including a recess;

a motor having a shaft, the motor disposed within the housing and the shaft positioned in the recess of the front side of the housing; and

a capstan directly mounted to the motor shaft; and

a cassette mounted on the drive module, the cassette having a front side and configured to support an elongated medical device having a longitudinal device axis, wherein the cassette is mounted on the drive module in a vertical orientation so that the front side of the cassette is parallel to the front side of the drive module and the cassette is coupled to the capstan.

10 . The robotic drive system according to claim 9 , wherein the capstan is directly mounted to the motor shaft using a laser weld.

11 . The robotic drive system according to claim 9 , further comprising a positioning system coupled to a patient table, the patient table having a front side and a rear side, the rear side of the patient table having a rail, wherein the linear member is coupled to the positioning system at a connection point and wherein a width defined between the longitudinal device axis of the elongated medical device and the connection point of the linear member to the positioning system is equal to or less than a distance between an insertion point for the elongated medical device to a patient and the rail on the rear side of the patient table.

12 . The robotic drive system according to claim 9 , wherein the linear member comprises a drive mechanism to provide linear motion for each of the plurality of device modules and the drive mechanism is a rack and pinion linear actuator.

13 . The robotic drive system according to claim 9 , wherein the linear member comprises a drive mechanism to provide linear motion for each of the plurality of device modules and the drive mechanism is a screw.

14 . A robotic drive system for a catheter-based procedure system, the robotic drive system comprising:

a positioning system coupled to a patient table, the patient table having a front side and a rear side, the rear side of the patient table having a rail;

a linear member coupled to the positioning system at a connection point, the linear member having a distal end and a proximal end; and

at least three device modules coupled to the linear member, each device module independently controllable and configured to support an elongated medical device having a longitudinal device axis;

wherein the positioning system is configured to position the linear member and the at least three device modules at a pitch angle defined between a horizontal axis parallel to the patient table and the proximal end of the linear member, wherein the pitch angle is less than 10 degrees.

15 . The robotic drive system according to claim 14 , wherein each device module comprises:

a drive module having a front side; and

a cassette mounted on the drive module, the cassette having a front side and configured to support an elongated medical device having a longitudinal device axis, wherein the cassette is mounted on the drive module in a vertical orientation so that the front side of the cassette is parallel to the front side of the drive module.

16 . The robotic drive system according to claim 14 , wherein the linear member comprises a drive mechanism to provide linear motion for each of the plurality of device modules and the drive mechanism is a rack and pinion linear actuator.

17 . The robotic system according to claim 14 , wherein a width defined between the longitudinal device axis of the elongated medical device and the connection point of the linear member to the positioning system is equal to or less than a distance between an insertion point for the elongated medical device to a patient and the rail on the rear side of the patient table.

18 . The robotic drive system according to claim 17 , wherein the insertion point for the elongated medical device is a left femoral artery of the patient.

19 . The robotic system according to claim 14 , wherein the pitch angle is in the range of 3-6 degrees.

Assignments (2)
CHANGE OF NAME Recorded Nov 8, 2024
From: CORINDUS, INC.
To: SIEMENS HEALTHINEERS ENDOVASCULAR ROBOTICS, INC.
Reel/Frame 069333/0219 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2023
From: CANALE, CAMERON; SAEEDI, KODY; SOKHANVAR, SAEED; SEOW, CHI MIN; CLARK, ANDREW; SABER, OMID; KLEM, ERIC; BLACKER, STEVEN J.
To: CORINDUS, INC.
Reel/Frame 063818/0601 →