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    • 1. 发明授权
    • Occlusal adjustment system
    • 咬合调整系统
    • US09173724B2
    • 2015-11-03
    • US13168234
    • 2011-06-24
    • Takeshi MoriyamaYusei Kadobayashi
    • Takeshi MoriyamaYusei Kadobayashi
    • A61C9/00A61C13/00A61C13/10A61C11/00
    • A61C13/0024A61C11/00A61C13/0004A61C13/0006A61C13/10
    • Occlusal-surface shape data and occlusal-surface position data of dentures are acquired on a dentist side, and the occlusal-surface shape data and the occlusal-surface position data are then transmitted to a grinding data provider side. Maxillomandibular occlusal state data is reproduced from the occlusal-surface shape data and the occlusal-surface position data on the grinding data provider side. A maxillomandibular occlusal adjustment portion is determined by changing a maxillomandibular occlusal vertical dimension on the grinding data provider side. Cutting data including the maxillomandibular occlusal adjustment portion and the occlusal-surface position data is prepared on the grinding data provider side, and the cutting data is transmitted to the dentist side. An occlusal adjustment is carried out on the dentist side by cutting the dentures by a grinding machine based on the cutting data.
    • 在牙医一侧获得假牙的咬合面形状数据和咬合面位置数据,然后将咬合面形状数据和咬合面位置数据传送给研磨数据提供者侧。 根据研磨数据提供者侧的咬合面形状数据和咬合面位置数据再现颌下牙咬合状态数据。 通过改变研磨数据提供者侧的上颌下颌垂直尺寸来确定上颌颌关节咬合调整部分。 在研磨数据提供者侧准备包括上颌骨咬合调整部和咬合面位置数据的切削数据,将切削数据发送到牙医一侧。 通过基于切割数据的研磨机切割义齿,在牙医一侧进行咬合调整。
    • 3. 发明授权
    • Denture grinding machine
    • 义齿磨床
    • US08682463B2
    • 2014-03-25
    • US13168044
    • 2011-06-24
    • Takeshi MoriyamaYusei Kadobayashi
    • Takeshi MoriyamaYusei Kadobayashi
    • G06F19/00
    • A61C13/0024A61C11/00A61C13/0004A61C13/0006A61C13/10
    • A denture grinding machine includes: a denture-holding table for holding dentures; a grinding tool for grinding the dentures held on the denture-holding table; a main body for holding the grinding tool; a moving mechanism for causing relative movement between the denture-holding table and the main body; and a driving mechanism for relatively driving the main body and the denture-holding table. The moving mechanism moves relatively the denture-holding table and the main body in three-dimensional coordinate directions based on grinding portion data, and the grinding tool performs grinding of the denture occlusal surface from a direction perpendicular to the occlusal surface.
    • 义齿磨床包括:用于保持义齿的义齿托架; 用于研磨保持在义齿托架上的义齿的研磨工具; 用于保持研磨工具的主体; 移动机构,用于使所述假牙保持台与所述主体之间产生相对运动; 以及用于相对地驱动主体和假牙保持台的驱动机构。 移动机构基于磨削部分数据相对于义齿保持台和主体在三维坐标方向上移动,并且研磨工具从垂直于咬合面的方向进行义齿咬合面的研磨。
    • 4. 发明授权
    • Method for calculating grinding portion of pre-grinding denture
    • 磨前义齿研磨部分的计算方法
    • US08423166B2
    • 2013-04-16
    • US13168213
    • 2011-06-24
    • Takeshi MoriyamaYusei Kadobayashi
    • Takeshi MoriyamaYusei Kadobayashi
    • G06F19/00
    • A61C13/0024A61C11/00A61C13/0004A61C13/0006A61C13/10
    • A jaw-relation reproduction condition is determined by measuring a jaw movement of a patient, and reproducing a jaw state of the patient on an occlusion-state reproducing apparatus in accordance with the jaw-relation reproduction condition. Dentures are arranged on the apparatus in accordance with the jaw-relation reproduction condition to prepare pre-grinding dentures. Denture data with reference points which is three-dimensional image data containing reference points that represents a positional relationship between the jaw-relation reproduction condition and the dentures and an occlusal surface of the dentures. An occlusion state of the denture data with the reference points is reproduced by using the jaw-relation reproduction condition on a three-dimensional image. Grinding data of a grinding portion is determined under a dynamic condition or set condition from a portion surrounded by an image of upper and lower jaws on the three dimensional image in a reproduced occlusal state.
    • 通过测量患者的颌运动,并根据颚关系再现条件在闭塞状态再现装置上再现患者的颌状态来确定颌关系再现条件。 根据颚关系再现条件将假牙布置在装置上以制备预研磨假牙。 具有参考点的虚拟数据是三维图像数据,其包含表示颌关系再现条件与义齿之间的位置关系的参考点和假牙的咬合面。 通过使用三维图像上的颚关系再现条件来再现具有参考点的义齿数据的遮挡状态。 磨削部分的磨削数据在动态条件或设定条件下由再生咬合状态下的三维图像上的上下钳口的图像围绕的部分确定。
    • 5. 发明申请
    • OCCLUSAL ADJUSTMENT SYSTEM
    • 国际调整系统
    • US20120003604A1
    • 2012-01-05
    • US13168234
    • 2011-06-24
    • Takeshi MORIYAMAYusei Kadobayashi
    • Takeshi MORIYAMAYusei Kadobayashi
    • A61C9/00B24B51/00
    • A61C13/0024A61C11/00A61C13/0004A61C13/0006A61C13/10
    • Occlusal-surface shape data and occlusal-surface position data of dentures are acquired on a dentist side, and the data is then transmitted to a grinding data provider side. A maxillomandibular occlusal state data is reproduced from the occlusal-surface shape data and the occlusal-surface position data on the grinding data provider side. A maxillomandibular occlusal adjustment portion is determined by changing a maxillomandibular occlusal vertical dimension by the grinding data provider side. Cutting data including the occlusal adjustment portion data and the occlusal-surface position data are prepared on the grinding data provider side, and the data is transmitted to the dentist side. An occlusal adjustment is carried out by cutting the dentures by a grinding machine based on cutting data on the dentist side.
    • 在牙医一侧获取假牙的咬合面形状数据和咬合面位置数据,然后将数据传送到研磨数据提供者侧。 从咬合面形状数据和磨削数据提供者侧的咬合面位置数据再现上颌骨咬合状态数据。 通过由磨削数据提供者侧改变上颌下颌垂直尺寸来确定上颌颌关节咬合调整部分。 在磨削数据提供者侧准备包括咬合面调整部分数据和咬合面位置数据的切削数据,将数据传送给牙医一侧。 通过基于牙医侧切割数据的研磨机切割假牙来进行咬合调整。
    • 10. 发明申请
    • Artificial teeth
    • 人造牙
    • US20100035208A1
    • 2010-02-11
    • US12461101
    • 2009-07-31
    • Yusei Kadobayashi
    • Yusei Kadobayashi
    • A61C13/10
    • A61C13/097
    • The invention enables to arrange teeth at appropriate positions depending on the oral cavity environment of each patient without requiring advanced techniques or experiments. In artificial molar teeth to be arranged on bases 33, 34 which are mounted in an oral cavity as a dental prosthetic appliance, an occlusal surfaces of the teeth 1, 2, 5, 6 are provided with side grooves 29 to 32 extending toward a buccal side or lingual side, and intersecting portions (tops 29a to 32a) of the side grooves 29 to 32 with the outer circumference of the occlusal surface, and a contact point 35 are formed on a plane parallel to the mesical distal direction. Or the teeth 1, 2, 5, 6 are configured such that the bottom ends of fossae 25, 27 on the occlusal surface and the contact point 35 are formed on a plane parallel to the mesical distal direction. Alternatively, mutually parallel flat frictional contact portions 9 to 12 are provided around cusps 13A, 13B to 16, 17A, 17B to 20 mutually contacting with maxillary molar teeth 1, 2 and mandibular molar teeth 5, 6, respectively.
    • 本发明能够根据每个患者的口腔环境将牙齿排列在适当的位置,而不需要先进的技术或实验。 在配置在作为牙科修复器具的口腔中的基座33,34上的人造臼齿中,齿1,2,5,6的咬合面设置有朝向颊部延伸的侧槽29至32 侧面或舌侧,以及具有咬合面的外周的侧槽29至32的相交部分(顶部29a至32a)和接触点35形成在与视线远端方向平行的平面上。 或者齿1,2,5,6被构造成使得咬合面上的窝骨25,27的底端和接触点35形成在平行于视觉远端方向的平面上。 或者,相互平行的平面摩擦接触部分9至12分别设置在与上颌齿轮1,2和下颌齿臼齿5,6相互接触的尖头13A,13B至16,17A,17B至20周围。