Medical instrument with sensor for use in a system and method for electromagnetic navigation
First Claim
1. A medical instrument, comprising:
- a base non-conductive layer on a distal portion of the medical instrument;
a sensor printed on the base non-conductive layer, the sensor including a first conductive coil, a second conductive coil, and a non-conductive layer disposed between the first conductive coil and the second conductive coil;
a proximal conductive layer printed circumferentially around a proximal portion of the medical instrument;
a proximal non-conductive layer printed on the proximal conductive layer; and
at least one pair of contacts electrically connected to at least one of the first conductive coil or the second conductive coil of the sensor and coupled to the proximal conductive layer, the proximal conductive layer connectable to a measurement device configured to sense an induced electrical signal in the sensor based on a magnetic flux change of an electromagnetic field,wherein a location of the medical instrument in a coordinate system of the electromagnetic field is identified based on the induced electrical signal in the sensor.
1 Assignment
0 Petitions
Accused Products
Abstract
A medical instrument includes a printed sensor, a surface, at least one non-conductive material, and at least one pair of contacts. The sensor has at least one coil formed on a conductive material. The surface is suitable for receiving the printed sensor and can be placed in an EM field. The at least one non-conductive material covers the at least one coil of the sensor. The medical instrument contains multiple conductive and nonconductive layers. The at least one pair of contacts are electrically connected to the at least one coil and connectable to the conductive layer, the conductive layer coupled to a measurement device, which senses an induced electrical signal based on a magnetic flux change of the EM field. The location of the medical instrument in a coordinate system of the EM filed is identified based on the induced electrical signal in the sensor.
-
Citations
20 Claims
-
1. A medical instrument, comprising:
-
a base non-conductive layer on a distal portion of the medical instrument; a sensor printed on the base non-conductive layer, the sensor including a first conductive coil, a second conductive coil, and a non-conductive layer disposed between the first conductive coil and the second conductive coil; a proximal conductive layer printed circumferentially around a proximal portion of the medical instrument; a proximal non-conductive layer printed on the proximal conductive layer; and at least one pair of contacts electrically connected to at least one of the first conductive coil or the second conductive coil of the sensor and coupled to the proximal conductive layer, the proximal conductive layer connectable to a measurement device configured to sense an induced electrical signal in the sensor based on a magnetic flux change of an electromagnetic field, wherein a location of the medical instrument in a coordinate system of the electromagnetic field is identified based on the induced electrical signal in the sensor. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12)
-
-
13. A sensor, comprising:
-
a first conductive coil positioned at a distal portion of a medical instrument; a non-conductive layer positioned on at least a portion of the first conductive coil at the distal portion of the medical instrument; and a second conductive coil positioned on at least a portion of the non-conductive layer at the distal portion of the medical instrument, wherein the first conductive coil is spaced apart from the second conductive coil along a direction orthogonal to a surface of the non-conductive layer facing the first conductive coil. - View Dependent Claims (14, 15)
-
-
16. A medical instrument, comprising:
-
a sensor positioned at a distal portion of the medical instrument, the sensor comprising; a first conductive coil positioned at the distal portion of the medical instrument; a non-conductive layer positioned on at least a portion of the first conductive coil; and a second conductive coil positioned on at least a portion of the non-conductive layer; and a tracking device configured to sense an induced electrical signal in the sensor based on a variation of an electromagnetic field, wherein a location of the sensor in a coordinate system of the electromagnetic field is configured to be determined by the tracking device based on the induced electrical signal in the sensor. - View Dependent Claims (17, 18, 19, 20)
-
Specification