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    • 3. 发明授权
    • Electrical probe for microsurgery
    • 显微手术电探针
    • US07527624B2
    • 2009-05-05
    • US11096414
    • 2005-03-31
    • Steffen DubnackDirk Preuss
    • Steffen DubnackDirk Preuss
    • A61B18/18
    • A61B18/1402A61B2090/306A61B2218/007A61F9/00736A61F9/0079
    • In order to develop an electric probe for microsurgery, which is provided in particular in ophthalmology for intraocular treatments of the eye, in such a way that the probe is constructed in a simple manner, can be produced inexpensively, is easy and safe to handle, and at the same time can be used for multiple functions as an illuminated intraocular probe, it is suggested that the electric probe comprises an outer electrode, an inner electrode and a light guide. The inner electrode has a contoured electrode end face and projects out over a front end of the light guide or is embedded in the light guide so as to terminate with it. When the electrodes and light guide are constructed cylindrically, the hollow space remaining between the electrodes and the light guide is provided as a suction channel for sucking out tissue particles, and in various embodiment forms, including an embodiment as an illuminating endoprobe, the electric probe is connected to an operating and controlling device by which pre.-defined, changeable parameter sets which are adapted depending on the probe characteristics can be adjusted and retrieved.
    • 为了开发用于显微外科的电探头,其特别是在眼睛的眼内治疗的眼科中以使得探针以简单的方式构造的方式提供,可以廉价地生产,易于和安全地处理, 并且同时可以用作照明眼内探针的多种功能,因此建议电探针包括外电极,内电极和光导。 内部电极具有轮廓电极端面并且突出在导光体的前端之上,或者嵌入光导中以便与光导体终止。 当电极和导光体被构造成圆柱形时,留在电极和光导之间的中空空间被设置为用于吸出组织颗粒的抽吸通道,并且在各种实施例中形成包括作为照明端探针的实施例的电探针 连接到操作和控制设备,通过该操作和控制设备可以调整和检索根据探头特性适配的预定义的可变参数集。
    • 4. 发明申请
    • Electrical probe for microsurgery
    • 显微手术电探针
    • US20060069386A1
    • 2006-03-30
    • US11096414
    • 2005-03-31
    • Steffen DubnackDirk Preuss
    • Steffen DubnackDirk Preuss
    • A61B18/14
    • A61B18/1402A61B2090/306A61B2218/007A61F9/00736A61F9/0079
    • In order to develop an electric probe for microsurgery, which is provided in particular in ophthalmology for intraocular treatments of the eye, in such a way that the probe is constructed in a simple manner, can be produced inexpensively, is easy and safe to handle, and at the same time can be used for multiple functions as an illuminated intraocular probe, it is suggested that the electric probe comprises an outer electrode, an inner electrode and a light guide. The inner electrode has a contoured electrode end face and projects out over a front end of the light guide or is embedded in the light guide so as to terminate with it. When the electrodes and light guide are constructed cylindrically, the hollow space remaining between the electrodes and the light guide is provided as a suction channel for sucking out tissue particles, and in various embodiment forms, including an embodiment as an illuminating endoprobe, the electric probe is connected to an operating and controlling device by which pre-defined, changeable parameter sets which are adapted depending on the probe characteristics can be adjusted and retrieved.
    • 为了开发用于显微外科的电探头,其特别是在眼睛的眼内治疗的眼科中以使得探针以简单的方式构造的方式提供,可以廉价地生产,易于和安全地处理, 并且同时可以用作照明眼内探针的多种功能,因此建议电探针包括外电极,内电极和光导。 内部电极具有轮廓电极端面并且突出在导光体的前端之上,或者嵌入光导中以便与光导体终止。 当电极和导光体被构造成圆柱形时,留在电极和光导之间的中空空间被设置为用于吸出组织颗粒的抽吸通道,并且在各种实施例中形成包括作为照明端探针的实施例的电探针 连接到操作和控制装置,通过该操作和控制装置可以调整和检索根据探针特性适应的预定义的可变参数组。
    • 7. 发明授权
    • Process and arrangement for monitoring and controlling the treatment parameters in an ophthalmic treatment device
    • 用于监测和控制眼科治疗装置中的治疗参数的方法和装置
    • US06312422B1
    • 2001-11-06
    • US09263620
    • 1999-03-05
    • Steffen Dubnack
    • Steffen Dubnack
    • A61B1818
    • B23K26/03A61F9/008A61F9/009A61F2009/00855A61F2009/00863A61N5/0601A61N5/062
    • A process for monitoring and controlling the adjustment of treatment parameters in an ophthalmic treatment device which comprises a radiation source generating at least a treatment beam and, optionally, a target beam and an applicator which is connected with the radiation source via at least one optical element and can be attached to a slip lamp, wherein the following steps are provided: a) the irradiation parameters such as intensity, magnification of the contact lens placed on the eye, radiation dose per unit area, and spot size on the retina are adjusted by the operator at the radiation source; b) first parameters to be adjusted at the applicator are calculated on the basis of patient-related influencing variables such as contact lens magnification and the size of the spot to be realized on the retina, so that a determined spot size and intensity of the treatment beam to be applied can be realized at the treatment site on the retina; and c) parameters adjusted at the applicator are compared with the first parameters by means of a computer and the adjusted parameters are made to coincide with the first parameters representing reference values, and the parameters serving as reference values are realized and maintained constant for the duration of irradiation. An arrangement for carrying out the process employing an ophthalmic treatment device is also disclosed.
    • 一种用于监测和控制眼科治疗装置中治疗参数调整的方法,该方法包括产生至少一种治疗束的辐射源,以及可选地,靶靶和施加器,其经由至少一个光学元件与辐射源连接 并且可以附接到滑动灯,其中提供以下步骤:a)通过以下步骤来调整照射参数,例如放置在眼睛上的隐形眼镜的强度,放大倍数,单位面积的辐射剂量,以及视网膜上的斑点大小等照射参数,通过 辐射源的操作员; b)基于与患者相关的影响因素(例如隐形眼镜放大率和要在视网膜上实现的斑点的大小)计算在施用器上要调节的第一参数,使得确定的斑点大小和处理强度 可以在视网膜的处理部位实现应用的光束; 和c)通过计算机将在施加器处调整的参数与第一参数进行比较,并且调整的参数与表示参考值的第一参数一致,并且用作参考值的参数在持续时间内被实现并保持恒定 的照射。 还公开了一种用于执行使用眼科治疗装置的方法的装置。
    • 8. 发明授权
    • Arrangement for the measurement of optical radiation of radiation sources
    • 辐射源光辐射测量装置
    • US06177988B1
    • 2001-01-23
    • US09398750
    • 1999-09-17
    • Steffen DubnackStefan ErnspergerFrank LuemkemannHeino Weigand
    • Steffen DubnackStefan ErnspergerFrank LuemkemannHeino Weigand
    • G01J156
    • G01J1/04G01J1/0271G01J1/4257
    • An arrangement for measuring the power or energy of optical radiation of radiation sources, especially laser radiation is disclosed. It comprises a module defining an open or at least partially closed hollow space, wherein the inner walls or outer walls of the module are entirely or partially occupied by detectors for generating measurement signals which are proportional to the measured parameters of the radiation sources. The detectors are connected together in such a way that their generated measurement signals are further processed to form at least one resultant sum signal or the detectors are connected to a downstream processing device to form at least one resultant sum signal. This at least one resultant sum signal is relatively independent from the position, arrangement and radiating characteristic of the examined radiation source in the module. At least one opening or guide-through is provided in the module for inserting the radiation source to be examined.
    • 公开了一种用于测量辐射源,特别是激光辐射的光辐射的功率或能量的装置。 其包括限定开放或至少部分闭合的中空空间的模块,其中模块的内壁或外壁完全或部分地被检测器占据,用于产生与所测量的辐射源的参数成比例的测量信号。 检测器以这样的方式连接在一起,使得它们产生的测量信号被进一步处理以形成至少一个合成和信号,或者检测器连接到下游处理装置以形成至少一个结果和信号。 该至少一个结果和信号与模块中所检查的辐射源的位置,布置和辐射特性相对独立。 在模块中提供至少一个开口或引导件用于插入待检查的辐射源。
    • 10. 发明申请
    • Method and arrangement for the wireless control of a device, in particular in the field of medicine
    • 用于无线控制装置的方法和装置,特别是在医学领域
    • US20060210277A1
    • 2006-09-21
    • US11090580
    • 2005-03-24
    • Steffen DubnackMartin Wiechmann
    • Steffen DubnackMartin Wiechmann
    • H04B10/00
    • G08C17/02G08C23/04
    • Method and arrangement for the wireless control of a device, in particular in the field of medicine. The present invention is directed to a solution for the operation of devices to be controlled, wherein signals required for controlling and monitoring are transmitted wirelessly. In the arrangement for the wireless control of a device, the control is carried out by a separate operating unit. The operating unit and the device to be controlled each have their own transmitting unit and receiving units. Signals are sent from the transmitting unit of the device to be controlled at a high repeat rate. The operating unit is activated by these signals and generates its power supply therefrom. Coded signals are generated by the operating unit for the different operating commands and sent to the device to be controlled. The solution that was developed for medical instruments can also be applied to many other technical fields. This type of operating console can be used very flexibly because it has no troublesome cables. Due to the absence of an internal power supply, it can be used continuously and for long periods of time.
    • 用于无线控制装置的方法和装置,特别是在医学领域。 本发明涉及用于控制装置的操作的解决方案,其中控制和监视所需的信号是无线传输的。 在用于设备的无线控制的布置中,控制由单独的操作单元执行。 操作单元和要被控制的设备各具有它们自己的发送单元和接收单元。 信号从要重新控制的设备的发送单元发送。 操作单元被这些信号激活并从其产生电源。 编码信号由操作单元为不同的操作命令生成,并发送到要控制的设备。 为医疗仪器开发的解决方案也可以应用于许多其他技术领域。 这种操作控制台可以非常灵活地使用,因为它没有麻烦的电缆。 由于没有内部电源,可以连续使用长时间。