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    • 31. 发明申请
    • APPARATUS AND METHOD FOR MEDICALLY TREATING A TATTOO
    • 用于医疗治疗TATTOO的装置和方法
    • US20080154248A1
    • 2008-06-26
    • US11615140
    • 2006-12-22
    • Robert J. Dunki-Jacobs
    • Robert J. Dunki-Jacobs
    • A61B18/20
    • A61B18/203A61B90/361A61B2017/00057A61B2017/00769A61B2018/00452A61B2018/20351A61B2018/2065
    • Apparatus for medically treating a tattoo includes a scanned light beam unit having a light beam source assembly adapted to emit light pulses at different wavelengths, a scanner, light detector(s), and a controller operatively connected to the light beam source assembly and the scanner. The controller is adapted: to control the scanned light beam unit to illuminate a first light-pulse-sized region of the tattoo using the light beam source assembly at different wavelengths and at relatively low power; to use the light detector(s) to detect a least-reflecting wavelength of the illumination of the first light-pulse-sized region of the tattoo; and to control the scanned light beam unit to medically treat the first light-pulse-sized region of the tattoo using the light beam source assembly at a wavelength substantially equal to the least-reflecting wavelength and at relatively high power. A method is disclosed for medically treating a tattoo which uses the apparatus.
    • 用于医疗处理纹身的装置包括具有适于发射不同波长的光脉冲的光束源组件的扫描光束单元,扫描器,光检测器和可操作地连接到光束源组件和扫描器的控制器 。 控制器适于:使用不同波长和相对低功率的光束源组件来控制扫描光束单元照亮纹身的第一光脉冲大小区域; 使用光检测器来检测纹身的第一光脉冲大小区域的照明的最小反射波长; 并且控制扫描光束单元以基本上等于最小反射波长和相对高功率的波长使用光束源组件来医疗地治疗纹身的第一光脉冲大小的区域。 公开了用于医​​疗处理使用该装置的纹身的方法。
    • 32. 发明授权
    • Imaging and therapeutic procedure for carpal tunnel syndrome
    • 腕管综合征的成像和治疗程序
    • US07303555B2
    • 2007-12-04
    • US10881409
    • 2004-06-30
    • Inder Raj S. MakinConrad Lee KlotzSarah E. StephensRobert J. Dunki-Jacobs
    • Inder Raj S. MakinConrad Lee KlotzSarah E. StephensRobert J. Dunki-Jacobs
    • A61B18/18
    • A61N7/02A61B8/14A61B2090/374A61B2090/378A61N2007/0078
    • A system, method and/or apparatus is provided for visualization or imaging of the transverse carpal ligament and surrounding structures/features of a hand of a patient, and treatment of the transverse carpal ligament, particularly, but not necessarily, for performing non-invasive carpal tunnel release. The subject invention utilizes ultrasound waves preferably, but not necessarily, in the high frequency range and cavitations to image the transverse carpal ligament (TCL), record its location in three-dimensional space, and perform precision treatment on the transverse carpal ligament. Treatment may range from stretching or lengthening the TCL to complete tissue ablation or dissection of a portion or portions of the TCL (as is performed in a standard carpal tunnel release procedure) in order to release pressure within the carpal tunnel. Particularly, high temperature conditions are generated at target tissue of the TCL resulting in elongation or necrosis/dissection. The subject system, apparatus and/or method provides the surgeon to relieve a patient of carpal tunnel syndrome symptoms in a bloodless, efficient, and accurate manner.
    • 提供了一种系统,方法和/或装置,用于横向腕韧带和患者的手的周围结构/特征的可视化或成像,以及横向腕韧带的治疗,特别地但不一定用于执行非侵入性 腕管释放。 本发明优选但不一定在高频范围内使用超声波,并且对横向腕韧带(TCL)进行成像的空化,将其位置记录在三维空间中,并对横腕腕韧带进行精确的处理。 治疗可以从拉伸或延长TCL到完成组织消融或TCL的一部分或部分的解剖(如在标准腕管释放程序中执行的)以释放腕管内的压力。 特别地,在TCL的靶组织处产生高温条件,导致伸长或坏死/解剖。 受试者系统,装置和/或方法提供外科医生以无血型,有效率和准确的方式缓解患者腕管综合征症状。
    • 33. 发明授权
    • Apparatus and method for medically treating a tattoo
    • 用于医疗治疗纹身的装置和方法
    • US07713265B2
    • 2010-05-11
    • US11615140
    • 2006-12-22
    • Robert J. Dunki-Jacobs
    • Robert J. Dunki-Jacobs
    • A61B18/18
    • A61B18/203A61B90/361A61B2017/00057A61B2017/00769A61B2018/00452A61B2018/20351A61B2018/2065
    • Apparatus for medically treating a tattoo includes a scanned light beam unit having a light beam source assembly adapted to emit light pulses at different wavelengths, a scanner, light detector(s), and a controller operatively connected to the light beam source assembly and the scanner. The controller is adapted: to control the scanned light beam unit to illuminate a first light-pulse-sized region of the tattoo using the light beam source assembly at different wavelengths and at relatively low power; to use the light detector(s) to detect a least-reflecting wavelength of the illumination of the first light-pulse-sized region of the tattoo; and to control the scanned light beam unit to medically treat the first light-pulse-sized region of the tattoo using the light beam source assembly at a wavelength substantially equal to the least-reflecting wavelength and at relatively high power. A method is disclosed for medically treating a tattoo which uses the apparatus.
    • 用于医疗处理纹身的装置包括具有适于发射不同波长的光脉冲的光束源组件的扫描光束单元,扫描器,光检测器和可操作地连接到光束源组件和扫描器的控制器 。 控制器适于:使用不同波长和相对低功率的光束源组件来控制扫描光束单元照亮纹身的第一光脉冲大小区域; 使用光检测器来检测纹身的第一光脉冲大小区域的照明的最小反射波长; 并且控制扫描光束单元以基本上等于最小反射波长和相对高功率的波长使用光束源组件来医疗地治疗纹身的第一光脉冲大小的区域。 公开了用于医​​疗处理使用该装置的纹身的方法。
    • 34. 发明申请
    • DYNAMIC RANGE AND AMPLITUDE CONTROL FOR IMAGING
    • 动态范围和幅度控制成像
    • US20090060381A1
    • 2009-03-05
    • US11848654
    • 2007-08-31
    • Robert J. Dunki-Jacobs
    • Robert J. Dunki-Jacobs
    • G06K9/40G01J1/32
    • G01J1/32A61B1/0008A61B1/00172A61B1/00183A61B1/042G06K9/2009G06K9/2027G06K9/40
    • Systems and methods that enhance imaging by reducing artifacts and providing for dynamic range control. In aspects, the beam of illumination generated by a scanned beam imaging system can be modulated to offset fluctuations in the beam source. In other aspects, an image frame generated by a scanned beam imager can be used to predict whether pixels in future frames are likely to be over or under illuminated. The light source, beam of illumination and/or detectors can be adjusted on a pixel by pixel basis to compensate. In further aspects, localized gamma correction can be used to map image data to a display means. A plurality of regions are defined, such that separate gamma functions or values can be assigned to individual regions of the image.
    • 通过减少伪像并提供动态范围控制来增强成像的系统和方法。 在一些方面中,可以调制由扫描束成像系统产生的照明光束以抵消光束源中的波动。 在其他方面,由扫描光束成像器产生的图像帧可以用于预测未来帧中的像素是否可能过度或过度照明。 可以逐个像素地调节光源,照明光束和/或检测器以进行补偿。 在另外的方面,可以使用局部伽马校正来将图像数据映射到显示装置。 定义多个区域,使得可以将单独的伽马函数或值分配给图像的各个区域。
    • 35. 发明授权
    • Imaging and surgical procedure for carpal tunnel syndrome
    • 腕管综合征的成像和外科手术
    • US07135017B2
    • 2006-11-14
    • US10610463
    • 2003-06-30
    • Conrad Lee KlotzSarah Elizabeth StephensRobert J. Dunki-JacobsInderraj S. Makin
    • Conrad Lee KlotzSarah Elizabeth StephensRobert J. Dunki-JacobsInderraj S. Makin
    • A61B18/18A61B8/00
    • A61N7/02A61B2090/378
    • A system, method and/or apparatus is provided for visualization or imaging of the transverse carpal ligament and surrounding structures/features of a hand of a patient, and treatment of the transverse carpal ligament, particularly, but not necessarily, for performing non-invasive carpal tunnel release. The subject invention utilizes ultrasound waves preferably, but not necessarily, in the high frequency range and cavitations to image the transverse carpal ligament (TCL), record its location in three-dimensional space, and perform precision treatment on the transverse carpal ligament. Treatment may range from stretching or lengthening the TCL to complete tissue ablation or dissection of a portion or portions of the TCL (as is performed in a standard carpal tunnel release procedure) in order to release pressure within the carpal tunnel. Particularly, high temperature conditions are generated at target tissue of the TCL resulting in elongation or necrosis/dissection. The subject system, apparatus and/or method provides the surgeon to relieve a patient of carpal tunnel syndrome symptoms in a bloodless, efficient, and accurate manner.
    • 提供了一种系统,方法和/或装置,用于横向腕韧带和患者的手的周围结构/特征的可视化或成像,以及横向腕韧带的治疗,特别地但不一定用于执行非侵入性 腕管释放。 本发明优选但不一定在高频范围内使用超声波,并且对横向腕韧带(TCL)进行成像的空化,将其位置记录在三维空间中,并对横腕腕韧带进行精确的处理。 治疗可以从拉伸或延长TCL到完成组织消融或TCL的一部分或部分的解剖(如在标准腕管释放程序中执行的)以释放腕管内的压力。 特别地,在TCL的靶组织处产生高温条件,导致伸长或坏死/解剖。 受试者系统,装置和/或方法提供外科医生以无血型,有效率和准确的方式缓解患者腕管综合征症状。
    • 36. 发明授权
    • Serial-parallel data transfer system for VLSI data paths
    • 用于VLSI数据路径的并行数据传输系统
    • US4641276A
    • 1987-02-03
    • US663609
    • 1984-10-22
    • Robert J. Dunki-Jacobs
    • Robert J. Dunki-Jacobs
    • G06F15/173G11C7/10H03M9/00H04L12/42G06F13/40
    • H03M9/00G06F15/17337G11C7/1006G11C7/1036H04L12/42
    • Serial data transfer circuitry is provided for transferring data between a multiplicity of functional units of a VLSI semiconductor chip. Each functional unit is provided with a respective data register, the registers being adapted to receive information in parallel from and/or transfer information in parallel to their respective functional units. The registers are each serially connected in a closed loop for serially shifting data from one register to another. Data transfer from one functional unit to another is accomplished by transferring a data word in parallel to a source register from its respective functional unit, serially shifting data from the source register to a destination register and parallelly transferring the data word from the destination register to its respective functional unit. Control of the transfer is provided by a counter which counts the number of shifts required to transfer the data word from the source to the destination register.
    • 提供串行数据传输电路用于在VLSI半导体芯片的多个功能单元之间传送数据。 每个功能单元设置有相应的数据寄存器,该寄存器适于与其各自的功能单元并行地并行地接收和/或传送信息。 这些寄存器各自串联连接在一个闭环中,用于将数据从一个寄存器串行移位到另一个寄存器。 从一个功能单元到另一个功能单元的数据传输是通过将数据字从其各自的功能单元并行地传送到源寄存器来实现的,将数据从源寄存器串行地移位到目的地寄存器,并且将数据字从目的地寄存器并行地传送到 各功能单元。 转移的控制由计数器计数,计数器将数据字从源传送到目的寄存器所需的移位次数。