Contact over-torque with three-dimensional anatomical data
A method is provided for establishing contact of a medical device against a three-dimensional surface geometry within a subject body, the method comprising obtaining a three-dimensional tissue surface geometry of an anatomical region within the subject body, obtaining a target location on the surface for the device to contact, determining local surface geometry information in a neighborhood of the target location, and using this information to determine a change of at least one control variable for effecting an over-torque of the medical device to enhance contact of the device with the target surface.
1. A method for establishing enhanced contact of a medical device against a three-dimensional surface geometry within a subject body, the method comprising:
obtaining a target location on a surface within a subject body for a medical device to contact by using an imaging device,
obtaining local surface geometry information in a neighborhood of the target location, wherein the local surface geometry information includes local surface normal and curvature information determined from at least two points within a local tangent plane containing the target location that are spaced a predetermined distance from the target location, which are used to measure the deviation away from the local tangent plane of a local surface patch;
using the local surface geometry information to determine a change of at least one control variable for effecting an over-torque of the medical device to enhance contact of the medical device with the target location on the surface; and
applying the change of the at least one control variable to effect an over-torque and enhance contact of the medical device against the surface.
2. The method of claim 1 wherein the deviation away from the local tangent plane is found by a stepping process that comprises incrementally moving a minimum distance from the at least two points, and determining whether an image intensity threshold, a point where intensity changes from a low value to a high value, has been crossed to determine if the surface is negatively curved or positively curved.