Claims
- 1. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a contact member including a contact face which is brought into contact with at least one of the affected part and a periphery thereof; a cooler which cools down at least the contact face of the contact member; a sensor which detects at least one of a temperature of a periphery of the contact face made contact with the affected part, a temperature of a predetermined portion of at least one of the contact member and the cooler, a contact state of the contact face with respect to the affected part, and a relative substantially horizontal movement of the contact member with respect to the affected part; and an irradiation controller which controls laser irradiation based on a result of detection by the sensor.
- 2. The laser treatment apparatus according to claim 1, wherein the sensor includes a first temperature sensor which detects the temperature of the periphery of the contact face made contact with the affected part, and
the apparatus further includes a temperature controller which controls cooling operations of the cooler based on a result of detection by the first temperature sensor.
- 3. The laser treatment apparatus according to claim 2, wherein the sensor further includes:
a contact sensor which detects the contact state of the contact face with respect to the affected part; and a second temperature sensor which detects the temperature of the predetermined portion of at least one of the contact member and the cooler; and the temperature controller controls cooling operations of the cooler based on a result of detection by the second temperature sensor when the contact sensor detects that the contact face is apart from at least one of the affected part and the periphery thereof.
- 4. The laser treatment apparatus according to claim 3, wherein the contact sensor detects the contact state of the contact face with respect to the affected part based on the result of detection by the first temperature sensor.
- 5. The laser treatment apparatus according to claim 1, wherein the sensor includes a contact sensor which detects the contact state of the contact face with respect to the affected part, and the irradiation controller enables laser irradiation after a lapse of a predetermined time when the contact sensor detects that the contact face is in contact with at least one of the affected part and the periphery thereof.
- 6. The laser treatment apparatus according to claim 5, wherein the sensor further includes a temperature sensor which detects the temperature of the periphery of the contact face made contact with the affected part, and
the contact sensor detects the contact state of the contact face with respect to the affected part based on a result of detection by the temperature sensor.
- 7. The laser treatment apparatus according to claim 1, wherein the sensor includes a movement sensor which detects a relative moving amount of the contact member in a substantially horizontal direction with respect to the affected part, and
the irradiation controller precludes laser irradiation when the movement sensor detects that the moving amount of the contact member exceeds a predetermined reference.
- 8. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a contact member including a contact face which is brought into contact with at least one of the affected part and a periphery thereof; a cooler which cools down at least the contact face of the contact member; a first temperature sensor which detects a temperature of a periphery of the contact face made contact with the affected part; and a temperature controller which controls cooling operations of the cooler based on a result of detection by the first temperature sensor.
- 9. The laser treatment apparatus according to claim 8 further including:
a contact sensor which detects the contact state of the contact face with respect to the affected part; a second temperature sensor which detects a temperature of a predetermined portion of at least one of the contact member and the cooler; and wherein the temperature controller controls cooling operations of the cooler based on a result of detection by the second temperature sensor when the contact sensor detects that the contact face is apart from at least one of the affected part and the periphery thereof.
- 10. The laser treatment apparatus according to claim 9, wherein the contact sensor detects the contact state of the contact face based on the result of detection by the first temperature sensor.
- 11. The laser treatment apparatus according to claim 1 further including a support member for supporting the laser irradiation unit at a predetermined height on the affected part, the support member including the contact member.
- 12. The laser treatment apparatus according to claim 1 further including a laser transmission member made of material that is good in thermal conductivity and transmittable to the laser beam,
wherein the contact face includes at least a face of the laser transmission member.
- 13. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a cooler which cools down at least one of the affected part and a periphery thereof; a temperature sensor which detects a temperature of at least one of the affected part and the periphery thereof; and an irradiation controller which controls laser irradiation based on a result of detection by the temperature sensor.
- 14. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a contact member which is brought into contact with at least one of the affected part and a periphery thereof; a movement sensor which detects a relative moving amount of the contact member in a substantially horizontal direction with respect to the affected part; and an irradiation controller which controls laser irradiation based on a result of detection by the movement sensor.
- 15. The laser treatment apparatus according to claim 14 further including a support member for supporting the laser irradiation unit at a predetermined height on the affected part, the support member including the contact member.
- 16. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a window unit including a first window member having a contact face which is brought into contact with at least one of the affected part and a periphery thereof and a second window member arranged so as to produce a heat-insulating layer between the first and second window members, the first and second window members each having an optical property of transmitting the laser beam; and a cooler which cools down at least the contact face of the first window member.
- 17. The laser treatment apparatus according to claim 16, wherein the second window member has a lower thermal conductivity than the first window member, and the first and second window members are arranged at a predetermined spacing by a heat-insulating member, thereby forming an enclosed space serving as the heat-insulating layer between the first and second window members.
- 18. The laser treatment apparatus according to claim 16, wherein the laser irradiation unit includes a handpiece head provided with a part of the laser irradiation optical system, and
the window unit includes a plurality of window units having different first window members which are of different-sized contact faces, each of the window units being detachable/attachable to the handpiece head.
- 19. A laser treatment apparatus which is used to treat an affected part of a patient by irradiating a treatment laser beam to the affected part, the apparatus including:
a laser irradiation unit provided with a laser irradiation optical system for delivering the laser beam to the affected part; a window unit including a window member having a contact face which is brought into contact with at least one of the affected part and a periphery thereof and having an optical property of transmitting the laser beam; and a cooler which cools down at least the contact face of the window member; the laser irradiation unit including a handpiece head provided with a part of the laser irradiation optical system, and the window unit including a plurality of window units having different window members which are of different-sized contact faces, each of the window members being detachable/attachable to the handpiece head.
- 20. The laser treatment apparatus according to claim 19, wherein the window unit supports the laser irradiation unit at a predetermined height on the affected part.
Priority Claims (5)
Number |
Date |
Country |
Kind |
2000-32984 |
Feb 2000 |
JP |
|
2000-32985 |
Feb 2000 |
JP |
|
11-151032 |
May 1999 |
JP |
|
2000-139391 |
May 2000 |
JP |
|
2000-139392 |
May 2000 |
JP |
|
Parent Case Info
[0001] This is a continuation-in-part application of U.S. patent application Ser. No. 09/577,828 filed May 25, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09577828 |
May 2000 |
US |
Child |
09774592 |
Feb 2001 |
US |