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The cell operation which utilizes confocal microscope applications

机译:利用共聚焦显微镜的细胞操作

摘要

(57) Abstract The laser (12) in order to generate the laser beam, to scan this invention, (20) the focus of the laser beam it is the system which for the cell operation which includes the confocal optical machine (27) in order to make the confocal image of the system cause which matches the reversional light from adjusting and systematizing is improved in system. The confocal image is visualized in display (32). The system, doing the operator, includes the controller (30) in order to make the cell 1 or more of system choose in the confocal image which is displayed for surgical remedy. The controller (30) when at least adjusting the focus of the laser beam in one which it is related with the cell where the confocal optical machine (27) system is chosen field, manipulates the laser and the confocal optical machine (27) with the first mode which remedies system, but all other times the laser and the confocal optical machine (27) are manipulated with the second mode which does not damage system. Remedy, to localized being converted, makes the energy of the laser the field concentrate where it includes the cell which is chosen or or as for remedy, the cell which the nonlocalization is done and is chosen, and densely to lay out the energy of the laser it is possible the cell where these are chosen to the field where it includes the cell of mu system. With other feature, the focus of the first laser beam is adjusted through the confocal optical machine (27) to system, the confocal image system (27) which brings the confocal image of system, furthermore the first laser beam and the same axis the device which possesses the remedy system which adjusts the focus of the second laser beam which passes by the confocal optical machine (27) is offered in order to remedy with the region where one or more which is in the midst of systematizing which makes the image is chosen.
机译:(57)<摘要>为了产生激光束,扫描本发明的激光器(12),(20)激光束的焦点是包括共焦光学机(27)在内的用于电池操作的系统)为了使系统的共焦图像与调整和系统化的反向光匹配而在系统中得到改善。共焦图像在显示器(32)中可视化。该系统由操作员操作,包括控制器(30),以使系统中的细胞1或多个系统在显示的共焦图像中选择以进行手术治疗。控制器(30)至少在与选择共焦光学机(27)系统的单元有关的单元中调整激光束的焦点时,通过激光控制激光器和共焦光学机(27)。补救系统的第一模式,但是所有其他时间,激光器和共焦光学机器(27)都以不损害系统的第二模式来操纵。补救措施是对局部进行转换,使激光的能量集中在其所处位置,其中包括所选择的细胞或作为补救措施的细胞,进行非局部化并被选择的细胞,并密集地布置能量。激光可能会将这些单元格选择为包含mu系统单元格的字段。通过其他特征,第一激光束的焦点通过共焦光学机器(27)被调整到系统,共焦图像系统(27)将系统的共焦图像带入系统,此外第一激光束和设备的同一轴提供一种具有补救系统的系统,该补救系统用于调节通过共焦光学机(27)的第二激光束的焦点,以便补救在系统化过程中选择图像的一个或多个区域。 。

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