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US20030195495A1 - Transvascular TMR device and method - Google Patents

Transvascular TMR device and method
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Publication number
US20030195495A1
US20030195495A1US10/439,128US43912803AUS2003195495A1US 20030195495 A1US20030195495 A1US 20030195495A1US 43912803 AUS43912803 AUS 43912803AUS 2003195495 A1US2003195495 A1US 2003195495A1
Authority
US
United States
Prior art keywords
catheter
laser
lumen
channeling
deflecting
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US10/439,128
Inventor
Timothy Ryan
Thomas Fogarty
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
THOMAS J FOGARTY MD
Original Assignee
THOMAS J FOGARTY MD
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US08/745,869external-prioritypatent/US6042581A/en
Application filed by THOMAS J FOGARTY MDfiledCriticalTHOMAS J FOGARTY MD
Priority to US10/439,128priorityCriticalpatent/US20030195495A1/en
Publication of US20030195495A1publicationCriticalpatent/US20030195495A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A catheter assembly for performing transmyocardial revascularization through the coronary arteries or veins, and a method of using this assembly for creating TMR channels through the myocardium coronary artery shunts through the myocardium and a device and method for injecting therapeutic agents into TMR channels interoperatively, together with a number of therapeutic agents.

Description

Claims (11)

We claim:
1. A device for making channels in the myocardial tissue of a patient's heart from a coronary blood vessel, said device comprising:
a laser channeling catheter (81) having a distal segment adapted for insertion into a coronary blood vessel, said laser channeling catheter having a longitudinal axis;
said laser channeling catheter comprising a catheter body (82), an optical fiber (83) for carrying laser light housed within the catheter body, said optical fiber having an optical outlet (84) within the distal segment of the catheter, and a laser power source operably connected to the optical fiber:
said device characterized in that:
said optical outlet (84) is aligned to emit laser light in the distal direction substantially parallel to the longitudinal axis of the catheter;
a mirror (86) is disposed within the catheter body, distal to the optical outlet and aligned to reflect laser light from the optical outlet radially outward toward an optical window (87) on the side of the distal segment of the laser channeling catheter; and
said laser power source is operable to deliver laser energy through the optical fiber to the coronary blood vessel and heart sufficient to lase narrow channels through the myocardial tissue.
2. The device ofclaim 1 further characterized by:
a first balloon (90) is disposed on the distal segment of the laser channeling catheter, said balloon being located radially opposite the optical window; and
a first lumen (91) is provided within the laser channeling catheter, said first lumen being in fluid communication with the balloon.
3. The device ofclaim 2 further characterized by:
a second balloon (92) disposed on the distal segment of the laser channeling catheter, said second balloon located proximal to the optical window (87), said second balloon (92) being inflatable to occlude the coronary blood vessel in which the laser channeling catheter is located; and
a second lumen (93) within the laser channeling catheter, said second lumen being in fluid communication with the second balloon.
4. The device ofclaim 3 further characterized by:
a third lumen (93) within the laser channeling catheter, said third lumen being in fluid communication with the exterior of the distal segment of the catheter at the location distal to the second balloon.
5. The device ofclaim 1 characterized by:
a lens assembly (85) disposed between the optical outlet and the mirror (86), said lens assembly comprising a concave lens (98) positioned distal to the optical outlet and a convex lens (99) located distal to the concave lens.
6. The device ofclaim 1 characterized by:
a lens assembly (85) disposed between the optical outlet and the mirror (86), said lens assembly comprising a spherical lens positioned distal to the optical outlet.
7. The device ofclaim 1 further characterized by:
a guidewire lumen (94) adapted to accommodate a guidewire (88), said guidewire lumen passing through the distal segment of the laser channeling catheter at a position radially opposite from the optical window.
8. The device ofclaim 7 further characterized by:
an ultrasound lumen (95) adapted to accommodate an intravascular ultrasound probe (96), said ultrasound lumen passing through the distal segment of the laser channeling catheter at a position radially opposite from the optical window.
9. The device ofclaim 8 further characterized by:
the guidewire lumen (94) and the ultrasound lumen (95) are joined in a common lumen in the distal segment of the laser channeling catheter at a position radially opposite from the optical window (87).
10. The device ofclaim 1 characterized in that the optical fiber (83) has a diameter in the range of 50-200 microns and a numerical aperture in the range of 0.12 to 0.26.
11. The device ofclaim 1 characterized in that the laser power source is operable to deliver laser energy of approximately 30-60 mJ/mm2to the myocardial tissue.
US10/439,1281996-11-082003-05-15Transvascular TMR device and methodAbandonedUS20030195495A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US10/439,128US20030195495A1 (en)1996-11-082003-05-15Transvascular TMR device and method

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US08/745,869US6042581A (en)1996-11-081996-11-08Transvascular TMR device and method
US08/819,948US6053911A (en)1996-11-081997-03-18Transvascular TMR device and method
US09/557,628US6565555B1 (en)1996-11-082000-04-25Transvascular TMR device and method
US10/439,128US20030195495A1 (en)1996-11-082003-05-15Transvascular TMR device and method

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US09/557,628ContinuationUS6565555B1 (en)1996-11-082000-04-25Transvascular TMR device and method

Publications (1)

Publication NumberPublication Date
US20030195495A1true US20030195495A1 (en)2003-10-16

Family

ID=27114527

Family Applications (2)

Application NumberTitlePriority DateFiling Date
US09/557,628Expired - LifetimeUS6565555B1 (en)1996-11-082000-04-25Transvascular TMR device and method
US10/439,128AbandonedUS20030195495A1 (en)1996-11-082003-05-15Transvascular TMR device and method

Family Applications Before (1)

Application NumberTitlePriority DateFiling Date
US09/557,628Expired - LifetimeUS6565555B1 (en)1996-11-082000-04-25Transvascular TMR device and method

Country Status (6)

CountryLink
US (2)US6565555B1 (en)
EP (1)EP0984727A4 (en)
JP (1)JP2001503301A (en)
AU (1)AU730720C (en)
CA (1)CA2270921A1 (en)
WO (1)WO1998019614A1 (en)

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Also Published As

Publication numberPublication date
US6565555B1 (en)2003-05-20
AU7000298A (en)1998-05-29
AU730720B2 (en)2001-03-15
AU730720C (en)2001-11-08
EP0984727A1 (en)2000-03-15
CA2270921A1 (en)1998-05-14
JP2001503301A (en)2001-03-13
WO1998019614A1 (en)1998-05-14
EP0984727A4 (en)2000-05-24

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