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    • 1. 发明授权
    • Graphical user interface for radiation therapy treatment apparatus
    • 放射治疗仪的图形用户界面
    • US06222544B1
    • 2001-04-24
    • US08953780
    • 1997-10-17
    • Randall V. TarrMark G. Wofford
    • Randall V. TarrMark G. Wofford
    • G06F314
    • A61N5/103A61N5/1042Y10S715/961Y10S715/97
    • A graphical user interface (1000) for use in a patient treatment system. The graphical user interface (1000) permits graphical display and editing of individual treatment parameters, including machine (2, 4, 6) positions and field shapes. Multiple fields grouped sequentially as an intensity modulated field (IMG) may be viewed as a superimposed graphical composite (1020, 1022, 1024, 1026). In addition, a pictorial representation of the radiation beams (1026) incident on a particular target is provided. A graphic representation of field shape (1030) is provided; the graphics change as treatment progresses. Finally, manipulation of graphics permits editing of treatment information, while allowing immediate feedback as to the result of the change.
    • 用于患者治疗系统的图形用户界面(1000)。 图形用户界面(1000)允许图形显示和编辑各个处理参数,包括机器(2,4,6)位置和场形状。 作为强度调制场(IMG)顺序分组的多个区域可以被视为叠加的图形复合物(1020,1022,1024,1026)。 此外,提供了入射在特定目标上的辐射束(1026)的图示。 提供场形(1030)的图形表示; 随着治疗进展,图形变化。 最后,操纵图形允许编辑治疗信息,同时允许立即反馈关于变化的结果。
    • 2. 发明授权
    • Fractional monitor unit radiation delivery control using dose rate modulation
    • 使用剂量率调制的分数监视器单元辐射传送控制
    • US06249565B1
    • 2001-06-19
    • US09100457
    • 1998-06-18
    • Randall V. Tarr
    • Randall V. Tarr
    • A61N516
    • A61N5/1048H05G1/44
    • Method and system aspects for achieving more accurate radiation delivery during radiation treatment by a radiation-emitting system are described. In a method aspect, and system for achieving same, the method includes providing a table of dose rate values for accumulated dosages in a treatment unit of the radiation emitting system, and controlling a dose rate of radiation emitted from the radiation emitting system through utilization of the table of dose rates. Controlling further includes determining an accumulated dosage at a sampling point, and comparing the accumulated dosage to a total desired dosage. The dose rate is adjusted based on the table of dose rate values and the determined accumulated dosage, with the dose rate ramped down as the accumulated dosage nears the total desired dosage. Accumulated dosages include fractional numbers of monitor units.
    • 描述了通过辐射发射系统在辐射处理期间实现更准确的辐射传递的方法和系统方面。 在方法方面和用于实现其的系统中,该方法包括提供辐射发射系统的处理单元中累积剂量的剂量率值表,以及通过利用辐射发射系统控制从辐射发射系统发射的辐射的剂量率 剂量率表。 控制进一步包括确定采样点的累积剂量,并将累积剂量与总的所需剂量进行比较。 剂量率根据剂量率值和确定的累积剂量表进行调整,剂量率随着累积剂量接近总需要剂量而下降。 累计剂量包括监视器单位的分数。
    • 5. 发明授权
    • Non-invasive blood glucose measurement system and method using
stimulated Raman spectroscopy
    • 非侵入性血液葡萄糖测量系统和使用刺激拉曼光谱的方法
    • US5243983A
    • 1993-09-14
    • US627631
    • 1990-12-14
    • Randall V. TarrPaul G. Steffes
    • Randall V. TarrPaul G. Steffes
    • A61B3/10A61B3/12A61B5/00A61B5/145A61B5/1455G01N21/65
    • A61B5/1455A61B5/14532
    • Stimulated Raman spectroscopy is used to non-invasively measure the concentration of an Raman active molecule, preferably D-glucose in the ocular aqueous humor of living being. The apparatus and method make use of two monochromatic laser beams, a pump laser beam and a probe laser beam. The output power of the pump laser beam is amplitude modulated, combined with the probe laser beam and directed into the ocular aqueous humor. The introduction of the laser beams into the ocular aqueous humor induces scattered Raman radiation, which causes a portion of the energy at the pump frequency to shift over to the probe frequency. The pump and probe laser beams are then detected as they exit the ocular aqueous humor. The probe laser beam is filtered, converted into an electrical signal and amplified. It is then compared to the modulation signal to generate an electrical signal representative of the concentration of D-glucose in the ocular aqueous humor.
    • 受激拉曼光谱法用于非侵入性地测量活体眼水族中的拉曼活性分子,优选D-葡萄糖的浓度。 该装置和方法利用两个单色激光束,一个泵激光束和一个探针激光束。 将泵激光束的输出功率进行幅度调制,并与探针激光束结合并引导到眼睛的房水中。 将激光束引入眼睛房水中会引起散射的拉曼辐射,这导致泵频率下的一部分能量转移到探针频率。 然后在泵和探针激光束离开眼睛房水时检测。 探头激光束被滤波,转换为电信号并放大。 然后将其与调制信号进行比较,以产生代表眼睛房水中D-葡萄糖浓度的电信号。
    • 6. 发明授权
    • Fractional monitor unit radiation delivery control using dose rate modulation
    • 使用剂量率调制的分数监视器单元辐射传送控制
    • US06577709B2
    • 2003-06-10
    • US09850464
    • 2001-05-07
    • Randall V. Tarr
    • Randall V. Tarr
    • H05G144
    • A61N5/1048H05G1/44
    • Method and system aspects for achieving more accurate radiation delivery during radiation treatment by a radiation-emitting system are described. In a method aspect, and system for achieving same, the method includes providing a table of dose rate values for accumulated dosages in a treatment unit of the radiation emitting system, and controlling a dose rate of radiation emitted from the radiation emitting system through utilization of the table of dose rates. Controlling further includes determining an accumulated dosage at a sampling point, and comparing the accumulated dosage to a total desired dosage. The dose rate is adjusted based on the table of dose rate values and the determined accumulated dosage, with the dose rate ramped down as the accumulated dosage nears the total desired dosage. Accumulated dosages include fractional numbers of monitor units.
    • 描述了通过辐射发射系统在辐射处理期间实现更准确的辐射传递的方法和系统方面。 在方法方面和用于实现其的系统中,该方法包括提供辐射发射系统的处理单元中累积剂量的剂量率值表,以及通过利用辐射发射系统控制从辐射发射系统发射的辐射的剂量率 剂量率表。 控制进一步包括确定采样点的累积剂量,并将累积剂量与总的所需剂量进行比较。 剂量率根据剂量率值和确定的累积剂量表进行调整,剂量率随着累积剂量接近总需要剂量而下降。 累计剂量包括监视器单位的分数。