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    • 1. 发明授权
    • Method for automatically fabricating a dental superstructure for attachment to an implant
    • 用于自动制造用于附着到植入物的牙齿上层结构的方法
    • US08480396B2
    • 2013-07-09
    • US13447995
    • 2012-04-16
    • Gunter SaligerBernd RothenbergerReinhard Pieper
    • Gunter SaligerBernd RothenbergerReinhard Pieper
    • A61C5/00
    • A61C8/0048A61C8/0001A61C8/005A61C8/0068A61C9/004A61C13/0001A61C13/0004A61C13/0022
    • A system for a dental superstructure to be attached to an implant using a digital model description of a shape of the superstructure, the superstructure including first and second elements. The system comprises a computing device arranged to (a) analyze a recorded real clinical situation or shaped clinical situation of an implant axis and insertion axis, (b) compute a shape of the dental superstructure based at least in part on the determined implant axis, (c) generate digital data representing the shape of the superstructure, and (d) separate the computed shape into first digital data representing a shape of the first element to be connected to the implant and second digital data representing a shape of the second element to be connected to the first element, the shape of the first element being optimized, at least in part, based on a tilt angle between the determined implant axis and insertion axis.
    • 用于使用上层建筑物的形状的数字模型描述将牙齿上层建筑物附接到植入物的系统,所述上部结构包括第一和第二元件。 该系统包括计算装置,其被布置成(a)分析植入物轴线和插入轴线的记录的真实临床情况或形状的临床情况,(b)至少部分地基于所确定的植入物轴线计算牙齿上部结构的形状, (c)产生表示上层建筑形状的数字数据,以及(d)将计算出的形状分离成表示要连接到植入物的第一元件的形状的第一数字数据和表示第二元件的形状的第二数字数据 连接到第一元件,第一元件的形状被优化,至少部分地基于所确定的植入物轴线和插入轴线之间的倾斜角度。
    • 2. 发明授权
    • Method for automatically fabricating a dental superstructure for attachment to an implant
    • 用于自动制造用于附着到植入物的牙齿上层结构的方法
    • US08167617B2
    • 2012-05-01
    • US13015646
    • 2011-01-28
    • Gunter SaligerBernd RothenbergerReinhard Pieper
    • Gunter SaligerBernd RothenbergerReinhard Pieper
    • A61C13/00
    • A61C8/0048A61C8/0001A61C8/005A61C8/0068A61C9/004A61C13/0001A61C13/0004A61C13/0022
    • A system for a dental superstructure to be attached to an implant using a digital model description of a shape of the superstructure, the superstructure including first and second elements. The system comprises a computing device arranged to (a) analyze a recorded real clinical situation or shaped clinical situation of an implant axis and insertion axis, (b) compute a shape of the dental superstructure based at least in part on the determined implant axis, (c) generate digital data representing the shape of the superstructure, and (d) separate the computed shape into first digital data representing a shape of the first element to be connected to the implant and second digital data representing a shape of the second element to be connected to the first element, the shape of the first element being optimized, at least in part, based on a tilt angle between the determined implant axis and insertion axis.
    • 用于使用上层建筑物的形状的数字模型描述将牙齿上层建筑物附接到植入物的系统,所述上部结构包括第一和第二元件。 该系统包括计算装置,其被布置成(a)分析植入物轴线和插入轴线的记录的真实临床情况或形状的临床情况,(b)至少部分地基于所确定的植入物轴线计算牙齿上部结构的形状, (c)产生表示上层建筑形状的数字数据,以及(d)将计算出的形状分离成表示要连接到植入物的第一元件的形状的第一数字数据和表示第二元件的形状的第二数字数据 连接到第一元件,第一元件的形状被优化,至少部分地基于所确定的植入物轴线和插入轴线之间的倾斜角度。
    • 5. 发明申请
    • METHOD FOR AUTOMATICALLY FABRICATING A DENTAL SUPERSTRUCTURE FOR ATTACHMENT TO AN IMPLANT
    • 用于自动制造用于附着于植入物的牙科超级结构的方法
    • US20110125305A1
    • 2011-05-26
    • US13015646
    • 2011-01-28
    • Günter SaligerBernd RothenbergerReinhard Pieper
    • Günter SaligerBernd RothenbergerReinhard Pieper
    • G06F17/50
    • A61C8/0048A61C8/0001A61C8/005A61C8/0068A61C9/004A61C13/0001A61C13/0004A61C13/0022
    • A system for a dental superstructure to be attached to an implant using a digital model description of a shape of the superstructure, the superstructure including first and second elements. The system comprises a computing device arranged to (a) analyze a recorded real clinical situation or shaped clinical situation of an implant axis and insertion axis, (b) compute a shape of the dental superstructure based at least in part on the determined implant axis, (c) generate digital data representing the shape of the superstructure, and (d) separate the computed shape into first digital data representing a shape of the first element to be connected to the implant and second digital data representing a shape of the second element to be connected to the first element, the shape of the first element being optimized, at least in part, based on a tilt angle between the determined implant axis and insertion axis.
    • 用于使用上层建筑物的形状的数字模型描述将牙齿上层建筑物附接到植入物的系统,所述上部结构包括第一和第二元件。 该系统包括计算装置,其被布置成(a)分析植入物轴线和插入轴线的记录的真实临床情况或形状的临床情况,(b)至少部分地基于所确定的植入物轴线计算牙齿上部结构的形状, (c)产生表示上层建筑形状的数字数据,以及(d)将计算出的形状分离成表示要连接到植入物的第一元件的形状的第一数字数据和表示第二元件的形状的第二数字数据 连接到第一元件,第一元件的形状被优化,至少部分地基于所确定的植入物轴线和插入轴线之间的倾斜角度。
    • 6. 发明申请
    • METHOD FOR AUTOMATICALLY FABRICATING A DENTAL SUPERSTRUCTURE FOR ATTACHMENT TO AN IMPLANT
    • 用于自动制造用于附着于植入物的牙科超级结构的方法
    • US20120203366A1
    • 2012-08-09
    • US13447995
    • 2012-04-16
    • Günter SaligerBernd RothenbergerReinhard Pieper
    • Günter SaligerBernd RothenbergerReinhard Pieper
    • G06F17/50
    • A61C8/0048A61C8/0001A61C8/005A61C8/0068A61C9/004A61C13/0001A61C13/0004A61C13/0022
    • A system for a dental superstructure to be attached to an implant using a digital model description of a shape of the superstructure, the superstructure including first and second elements. The system comprises a computing device arranged to (a) analyze a recorded real clinical situation or shaped clinical situation of an implant axis and insertion axis, (b) compute a shape of the dental superstructure based at least in part on the determined implant axis, (c) generate digital data representing the shape of the superstructure, and (d) separate the computed shape into first digital data representing a shape of the first element to be connected to the implant and second digital data representing a shape of the second element to be connected to the first element, the shape of the first element being optimized, at least in part, based on a tilt angle between the determined implant axis and insertion axis.
    • 用于使用上层建筑物的形状的数字模型描述将牙齿上层建筑物附接到植入物的系统,所述上部结构包括第一和第二元件。 该系统包括计算装置,其被布置成(a)分析植入物轴线和插入轴线的记录的真实临床情况或形状的临床情况,(b)至少部分地基于所确定的植入物轴线计算牙齿上部结构的形状, (c)产生表示上层建筑形状的数字数据,以及(d)将计算出的形状分离成表示要连接到植入物的第一元件的形状的第一数字数据和表示第二元件的形状的第二数字数据 连接到第一元件,第一元件的形状被优化,至少部分地基于所确定的植入物轴线和插入轴线之间的倾斜角度。
    • 9. 发明授权
    • Distance measuring optoelectronic safety sensor and method of monitoring a monitored zone
    • 测量光电安全传感器的距离和监控区域的方法
    • US08933593B2
    • 2015-01-13
    • US13087537
    • 2011-04-15
    • Manfred HabererBernd Rothenberger
    • Manfred HabererBernd Rothenberger
    • H02H11/00G01S17/02F16P3/14G01S7/481G01S17/42G01S17/87
    • G01S17/026F16P3/14F16P3/144G01S7/4817G01S17/42G01S17/87
    • A distance measuring optoelectronic safety sensor (10) for monitoring a monitored zone (18) having at least one protected zone (48) is provided, wherein the safety sensor (10) has a light receiver (24) for generating a received signal on light reception from the monitored zone (18) as well as an evaluation unit (30, 32) which is designed to detect objects (52) in the monitored zone (18) with the aid of the received signal and to determine their position, including their distance from the safety sensor (10), and to output a securing signal on recognition of an unpermitted object intrusion (52) into a protected zone (48). In this respect, the evaluation unit (30, 36) is designed to determine and output the distance of detected objects (52) from the protected zone (48).
    • 提供了一种用于监视具有至少一个保护区域(48)的监控区域(18)的距离测量光电子安全传感器(10),其中所述安全传感器(10)具有用于在光线上产生接收信号的光接收器(24) 来自被监视区域(18)的接收以及评估单元(30,32),该评估单元被设计成借助于接收到的信号来检测被监视区域(18)中的对象(52)并确定它们的位置,包括它们的位置 与安全传感器(10)的距离,并且在将未经许可的物体入侵(52)识别到保护区域(48)中时输出固定信号。 在这方面,评估单元(30,36)被设计成确定并输出检测对象(52)与保护区域(48)的距离。
    • 10. 发明申请
    • Apparatus for the recognition of the presence of an object in space
    • 用于识别空间中物体的存在的装置
    • US20100007870A1
    • 2010-01-14
    • US12458354
    • 2009-07-08
    • Manfred HabererBernd Rothenberger
    • Manfred HabererBernd Rothenberger
    • G01C3/08
    • G01S7/497G01S7/4811G01S7/4972G01S17/026G01S17/10G01S17/42G01S2007/4975G02B26/105
    • The invention relates to an apparatus (10) for the recognition of the presence of an object (110) in space (100) in accordance with the pulsed time-of-flight method having a pulsed laser (20) which transmits light pulses into the space (100) in a controlled manner, having a photoreceiver arrangement (40) which receives the light pulses reflected back from the object (110) present in the space, having an evaluation circuit which determines a distance signal characteristic for the distance (d) of the object (110) from the pulsed laser (20) from the time (t) between the transmission and the reception of a light pulse, and having a first light deflection apparatus (50) which outputs a first angular position signal representative of its instantaneous angular position to the evaluation circuit, wherein the first light deflection apparatus (50) is arranged rotatably or pivotably about a first axis of rotation (90) and is made for the transmission of light pulses following one another at changing angles in a first plane (95), wherein a second light deflection apparatus (60) is arranged between the first light deflection apparatus (50) and an energy supply of the first light deflection apparatus (50) which outputs a second angular position signal representative of its instantaneous angular position to the evaluation circuit and which has a deflection plate (62) which is arranged rotatably or pivotably about a second axis of rotation (92) and which is made for the changing of the angular position of the first plane (95), with the evaluation circuit determining the position of the object (110) in the space (100) from the first angular position signal, the second angular position signal and the distance signal, and with the apparatus (10) being arranged in a housing (140) having a window 142)
    • 本发明涉及一种用于根据脉冲飞行时间方法来识别空间(100)中物体(110)的存在的装置(10),所述脉冲时间飞行方法具有脉冲激光(20),其将光脉冲传输到 空间(100),具有接收从存在于该空间中的物体(110)反射回来的光脉冲的光接收器装置(40),具有确定距离(d)的距离信号特性的评估电路, 从光脉冲的发送和接收之间的时间(t)到来自脉冲激光器(20)的物体(110)的第一光偏转装置(50),其中第一光偏转装置(50)输出代表其的第一角位置信号 对所述评估电路的瞬时角度位置,其中所述第一光偏转装置(50)围绕第一旋转轴线(90)可旋转地或可枢转地布置,并且被制成用于沿着彼此相对的光脉冲的透射 第一平面(95)中的第一角度位置信号(95),其中第二光偏转装置(60)布置在第一光偏转装置(50)和第一光偏转装置(50)的能量供应之间,第一光偏转装置 代表其对评估电路的瞬时角度位置,并且具有偏转板(62),偏转板(62)围绕第二旋转轴线(92)可旋转地或可枢转地布置,并且其用于改变第一平面的角位置( 95),评估电路从第一角位置信号,第二角位置信号和距离信号确定空间(100)中物体(110)的位置,并且将装置(10)布置在 具有窗口142的壳体(140)