IP Library Patent Application 17769108
Patent Application
App. No. 17/769,108

MEDICAL GUIDEWIRE ASSEMBLY AND/OR ELECTRICAL CONNECTOR

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.
17/769,108
Abstract

Disclosed is a flexible medical guide wire assembly configured to be inserted into a confined space defined by a living body. A sensor assembly is securely supported by the flexible medical guidewire assembly. This is done in such a way that the sensor assembly and the flexible medical guidewire assembly are movable along the confined space defined by the living body once the flexible medical guidewire assembly is inserted into, and moved along, the confined space defined by the living body. Also disclosed is an electrical-connector assembly having a connector terminal. The connector terminal is configured to be electrically connectable with a terminal portion of a flexible medical guidewire assembly. The terminal portion is electrically connected, via an electrical wire, to a sensor assembly of the flexible medical guidewire assembly.

Claims (68)

1 - 74 . (canceled)

75 . An apparatus, comprising:

a flexible medical guidewire assembly configured to be inserted into a confined space defined by a living body; and

a sensor assembly being securely supported by the flexible medical guidewire assembly in such a way that the sensor assembly and the flexible medical guidewire assembly are movable along the confined space defined by the living body once the flexible medical guidewire assembly is inserted into, and moved along, the confined space defined by the living body.

76 . The apparatus of claim 75 , wherein:

the flexible medical guidewire assembly includes a core element being electrically conductive; and

the flexible medical guidewire assembly also includes at least one electrical wire extending along a length of the flexible medical guidewire assembly; and

the sensor assembly is electrically connected, via said at least one electrical wire, to a proximal terminal portion of the flexible medical guidewire assembly; and

said sensor assembly and said at least one electrical wire are electrically isolated from the core element.

77 . The apparatus of claim 75 , wherein:

the sensor assembly includes at least one electrode.

78 . The apparatus of claim 75 , further comprising:

a radio frequency emitter supported by the flexible medical guidewire assembly; and

the radio frequency emitter is configured to cauterize tissue.

79 . The apparatus of claim 78 , wherein:

the flexible medical guidewire assembly includes a tip portion; and

the radio frequency emitter is mounted to the tip portion.

80 . The apparatus of claim 79 , further comprising:

a sharp mounted to the tip portion, the sharp configured to cut tissue.

81 . The apparatus of claim 75 , wherein:

the flexible medical guidewire assembly includes:

a core element; and

a jacket element surrounding the core element; and

the core element and the jacket element extend along an elongated length of the flexible medical guidewire assembly.

82 . The apparatus of claim 81 , wherein:

the flexible medical guidewire assembly includes Society of Automotive Engineering Type stainless steel.

83 . The apparatus of claim 81 , wherein:

the core element is electrically conductive.

84 . The apparatus of claim 81 , wherein:

the core element includes a hollow tube configured to receive and house an electrical wire.

85 . The apparatus of claim 75 , wherein:

the sensor assembly includes:

a magnetic sensor device or an electrical sensor device.

86 . The apparatus of claim 75 , wherein:

the sensor assembly includes:

an electrical sensor device configured to transmit an electrical signal.

87 . The apparatus of claim 75 , wherein:

the flexible medical guidewire assembly includes an electrical wire extending along a length of the flexible medical guidewire assembly; and

the electrical wire is electrically connected to the sensor assembly; and

the electrical wire extends from the sensor assembly toward a terminal end of the flexible medical guidewire assembly, and terminates at a terminal contact positioned at the terminal end of the flexible medical guidewire assembly.

88 . The apparatus of claim 75 , further comprising:

a sensor-interface system configured to interface with the sensor assembly; and

the sensor-interface system also configured to exchange a signal with the sensor assembly;

a signal measurement system; and

wherein the sensor-interface system also configured to be electrically connectable to the signal measurement system.

89 . The apparatus of claim 75 , wherein:

the flexible medical guidewire assembly comprises a distal electrode; and

the distal electrode comprises a radio frequency emitter, in which the radio frequency emitter is configured to provide energy of an amount to puncture adjacently positioned tissue of the living body positioned adjacent to the distal electrode, once the flexible medical guidewire assembly is inserted into the confined space defined by the living body, and once the distal electrode is activated; and

the sensor assembly comprises a plurality of electrical sensor devices being spaced apart from each other, and being fixedly positioned along a longitudinal length of the flexible medical guidewire assembly; and

a plurality of terminal portions are positioned as a proximal end of the flexible medical guidewire assembly; and

the plurality of terminal portions are electrically coupled to respective one of the plurality of electrical sensor devices; and

the plurality of terminal portions are configured to be selectively electrically connectable to, and removable from, an electrical-connector assembly.

90 . A method of utilizing a flexible medical guidewire assembly, comprising:

providing the flexible medical guidewire assembly configured to be inserted into a confined space defined by a living body, in which there is a sensor assembly securely supported by the flexible medical guidewire assembly; and

inserting, at least in part, the sensor assembly and the flexible medical guidewire assembly into the confined space defined by the living body; and

moving, at least in part, the sensor assembly and the flexible medical guidewire assembly along the confined space defined by the living body once the flexible medical guidewire assembly is inserted into the confined space defined by the living body.

91 . The method of claim 90 , wherein:

the flexible medical guidewire assembly includes a core element being electrically conductive; and

the flexible medical guidewire assembly also includes at least one electrical wire extending along a length of the flexible medical guidewire assembly; and

the sensor assembly is electrically connected, via said at least one electrical wire, to a proximal terminal portion of the flexible medical guidewire assembly; and

said sensor assembly and said at least one electrical wire are electrically isolated from the core element.

92 . The method of claim 90 , wherein:

the sensor assembly includes at least one electrode.

93 . The method of claim 90 , wherein:

the sensor assembly includes a plurality of electrodes.

94 . The method of claim 90 , wherein:

a radio frequency emitter is supported by the flexible medical guidewire assembly; and

the radio frequency emitter is configured to cauterize tissue.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2022
From: BAYLIS MEDICAL COMPANY INC.
To: BOSTON SCIENTIFIC MEDICAL DEVICE LIMITED
Reel/Frame 060938/0731 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2022
From: URBANSKI, JOHN PAUL; DAVIES, GARETH
To: BAYLIS MEDICAL COMPANY INC.
Reel/Frame 059601/0566 →