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    • 4. 发明申请
    • ULTRASOUND MEDIATED DRUG DELIVERY
    • 超声介质药物递送
    • WO2010010473A1
    • 2010-01-28
    • PCT/IB2009/052449
    • 2009-06-09
    • KONINKLIJKE PHILIPS ELECTRONICS, N.V.SHI, WilliamCHIN, Chien, TingHALL, ChristopherRAJU, BalasundaraBOHMER, Marcel
    • SHI, WilliamCHIN, Chien, TingHALL, ChristopherRAJU, BalasundaraBOHMER, Marcel
    • A61M37/00
    • A61K41/0028A61K9/0009A61K9/0019A61K49/223A61M37/0092
    • Described is a method for the delivery of a therapeutic agent to a mammal, particularly a human person, comprising (i) the administration of ultrasound particles that undergo a physical change when subjected to ultrasound; (ii) the administration of the therapeutic agent in an ultrasound dosage form allowing release of the therapeutic agent to be affected by the application of ultrasound, (iii) the application of ultrasound so as to affect a physical change in at least some of the ultrasound particles, and (iv) the application of ultrasound so as to stimulate release of the therapeutic agent. According to the invention the ultrasound particles are subjected to detection of their acoustic responses via echoes and/or emissions. The information thus obtained is processed and the processed information is used to adapt or adjust the ultrasound-mediated delivery of the therapeutic agent. This can be carried out using a single set of particles (that serve both as ultrasound imaging tracers and as drug delivery vehicles) or by applying separate sets of particles.
    • 描述了用于将哺乳动物,特别是人的治疗剂递送的方法,包括(i)施用经受超声的物理变化的超声波颗粒; (ii)以超声波剂量形式施用治疗剂,允许释放待施用超声波的治疗剂,(iii)施加超声波以影响至少一些超声波的物理变化 颗粒,以及(iv)超声波的应用,以刺激治疗剂的释放。 根据本发明,超声波颗粒经由回波和/或发射来检测其声响应。 处理如此获得的信息,并且使用处理的信息来适应或调整超声介导的治疗剂的递送。 这可以使用单组颗粒(既用作超声成像示踪剂又作为药物递送载体)或通过应用单独的颗粒组来进行。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR POSITIONAL TRACKING OF A THERAPEUTIC ULTRASOUND TRANSDUCER
    • 用于治疗超声波传感器的位置跟踪的方法和装置
    • WO2009063421A1
    • 2009-05-22
    • PCT/IB2008/054767
    • 2008-11-13
    • KONINKLIJKE PHILIPS ELECTRONICS, N.V.HALL, Christopher, StephenCHIN, Chien, TingRAJU, BalasundaraSHI, William, TaoSHECHTER, Guy
    • HALL, Christopher, StephenCHIN, Chien, TingRAJU, BalasundaraSHI, William, TaoSHECHTER, Guy
    • A61N7/02A61B19/00
    • A61N7/02A61B34/20A61B34/25A61B2017/00123A61B2090/372A61M37/0092A61N2007/0008
    • A therapeutic ultrasound tracking system (10) includes a first and second plurality of tracking elements ((14, 16, 18),(20,22,24)), a tracking generator (26), and a system controller (28). The first plurality of tracking elements (14, 16, 18) is disposed in a first position and orientation with respect to each another and with respect to an energy emission surface (30) of a therapeutic ultrasound probe (12). The second plurality of tracking elements (20,22,24) is adapted to be coupled to a patient (42) in a second position and orientation with respect to each other and with respect to a target region of the patient which is to receive a therapeutic treatment. The tracking generator (26) emits tracking energy for use in connection with the first and second plurality of tracking elements. The system controller (28) detects whether the probe (12) is positioned within an allowable position and orientation with respect to the target region, and (i) responsive to detecting the probe being within the allowable position and orientation, the system controller enables an energization of the probe to perform one of (i)(a) commence the therapeutic treatment and (i)(b) continue the therapeutic treatment, and (ii) responsive to not detecting the probe being within the allowable position and orientation, the system controller disables the energization of the probe for the therapeutic treatment.
    • 治疗性超声跟踪系统(10)包括第一和第二多个跟踪元件((14,16,18),(20,22,24)),跟踪发生器(26)和系统控制器(28)。 第一组多个跟踪元件(14,16,18)相对于彼此并且相对于治疗性超声波探头(12)的能量发射表面(30)设置在第一位置和方向上。 第二组多个跟踪元件(20,22,24)适于以相对于彼此并且相对于要接收患者的目标区域的第二位置和取向联接到患者(42) 治疗方法。 跟踪发生器(26)发射用于与第一和第二多个跟踪元件结合使用的跟踪能量。 系统控制器(28)检测探头(12)是否位于相对于目标区域的允许位置和方位之内,以及(i)响应于探测器在允许的位置和方向上的检测,系统控制器 (i)(a)中的一个的通电开始治疗处理,(i)(b)继续治疗,以及(ii)响应于不检测探针在允许的位置和方向内,系统 控制器禁用用于治疗治疗的探针通电。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR ELEVATION FOCUS CONTROL OF ACOUSTIC WAVES
    • 用于高音重点控制声波的方法和装置
    • WO2007125500A3
    • 2008-01-10
    • PCT/IB2007051582
    • 2007-04-27
    • KONINKL PHILIPS ELECTRONICS NVHALL CHRISTOPHER SCHIN CHIEN TINGSUIJVER FREEKHENDRIKS BERNARDUS H WKUIPER STEIN
    • HALL CHRISTOPHER SCHIN CHIEN TINGSUIJVER FREEKHENDRIKS BERNARDUS H WKUIPER STEIN
    • G10K11/30
    • G10K11/30
    • An acoustic probe (100) includes an acoustic transducer (20) including a plurality of acoustic transducer elements arranged in a one-dimensional array; and a variably- refracting acoustic lens (10) coupled to the acoustic transducer. The variably-refracting acoustic lens has at least a pair of electrodes (150, 160) adapted to adjust the focus of the variably-refracting acoustic lens in response to a selected voltage applied across the electrodes. In one embodiment, the variably-refracting acoustic lens includes a cavity, first and second fluid media (141, 142) disposed within the cavity, and the pair of electrodes. The speed of sound of an acoustic wave in the first fluid medium is different than the speed of sound of the acoustic wave in the second fluid medium. The first and second fluid media are immiscible with respect to each other, and the first fluid medium has a substantially different electrical conductivity than the second fluid medium.
    • 声探针(100)包括声换能器(20),其包括以一维阵列排列的多个声换能器元件; 以及耦合到声换能器的可变折射声透镜(10)。 可变折射声透镜具有至少一对电极(150,160),其适于响应于施加在电极上的选定电压来调节可变折射声透镜的焦点。 在一个实施例中,可变折射声透镜包括空腔,设置在空腔内的第一和第二流体介质(141,142)和一对电极。 第一流体介质中声波的声速不同于第二流体介质中声波的声速。 第一和第二流体介质相对于彼此是不混溶的,并且第一流体介质具有与第二流体介质基本上不同的导电性。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR STEERING ULTRASOUND THERAPY BEAM
    • 用于转向超声治疗束的方法和装置
    • WO2009001297A1
    • 2008-12-31
    • PCT/IB2008/052516
    • 2008-06-24
    • KONINKLIJKE PHILIPS ELECTRONICS, N.V.RAJU, BalasundaraHALL, Christopher StephenCHIN, Chien TingSHI, William Tao
    • RAJU, BalasundaraHALL, Christopher StephenCHIN, Chien TingSHI, William Tao
    • A61N7/02
    • A61N7/02A61N2007/0078
    • An apparatus and methodology for medically treating at least one region of interest of a patient is disclosed utilizing an ultrasound therapy array transducer for generating a therapy beam of given amplitude at one or more focal point locations of the at least one region of interest; a memory storage device for storing information regarding transducer beam amplitude as a function of focal point location of the beams, the device including a processor for computing beam amplitudes as a function of focal location in real time; a positioning system that is connected to the transducer for translating or rotating the position of the transducer, the positioning system being capable of changing the position of the transducer by utilizing electronic beam steering and/or mechanical re-positioning; a controller for determining whether mechanical repositioning of the transducer is needed, the controller being connected to the positioning system and being capable of causing translation or rotation of the transducer position; a user interface that couples to the controller, the user interface being capable of receiving input from the user of the desired size, shape and location of the at least one region of interest; and optionally a signaling device connected to the controller for indicating to the user that mechanical re -positioning of the transducer is needed.
    • 公开了一种用于医疗治疗患者的至少一个感兴趣区域的装置和方法,其利用超声治疗阵列换能器来产生在所述至少一个感兴趣区域的一个或多个焦点位置处的给定幅度的治疗束; 存储器存储装置,用于存储关于作为所述波束的焦点位置的函数的换能器波束幅度的信息,所述装置包括用于实时地计算作为焦点位置的函数的波束幅度的处理器; 定位系统,其连接到所述换能器,用于平移或旋转所述换能器的位置,所述定位系统能够通过利用电子束转向和/或机械重新定位来改变所述换能器的位置; 用于确定是否需要机械重新定位换能器的控制器,所述控制器连接到所述定位系统并且能够引起所述换能器位置的平移或旋转; 耦合到所述控制器的用户界面,所述用户界面能够从所述用户接收所述至少一个感兴趣区域的期望大小,形状和位置的输入; 以及可选地连接到控制器的信令装置,用于向用户指示换能器的机械重新定位是必需的。
    • 9. 发明申请
    • IN VIVO EXPRESSION ANALYSIS USING ULTRASOUND-INDUCED TRANSFECTION OF REPORTER CONSTRUCTS
    • 使用超声波诱导的报告器结构转移的体检表达分析
    • WO2009007868A1
    • 2009-01-15
    • PCT/IB2008/052572
    • 2008-06-26
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.SANTO, Evan EdwardDIMITROVA, NevenkaCHIN, Chien Ting
    • SANTO, Evan EdwardDIMITROVA, NevenkaCHIN, Chien Ting
    • C12Q1/68
    • C12N15/1086C12Q1/6897C12Q2565/101
    • The invention features compositions and methods for in vivo expression analysis. The data presented herein demonstrates that ultrasound-enhanced delivery and/or expression of a composition for expression analysis comprising microbubbles vectors as well as a genetic payload, comprising a "always-on" promoter, a "reference" reporter gene, a "query" promoter and an "answer" reporter gene, enables in vivo analysis of gene expression both without requiring prior preparation (especially genetic modification) of the test subject (animal or patient) and without causing long term or systemic effects on the subject. Such an invention can be used, for example, to query the epigenotypic or phenotypic response of the individual subject to a foreign effector substance such as a pyrogen, pharmaceutical compound, pharmaceutical lead compound, an allergen, an autoimmunogene, a toxin, a polyclonal antibody, a monoclonal antibody, an antigen, a lipid, a carbohydrate, a peptide, a protein, a protein-complex, an amino acid, a fatty acid, a nucleotide, DNA, RNA, PNA, siRNA and micro RNA.
    • 本发明的特征在于用于体内表达分析的组合物和方法。 本文提供的数据表明包括微泡载体以及遗传有效载荷的用于表达分析的组合物的超声增强递送和/或表达,包括“始终在上”启动子,“参考”报告基因,“查询” 启动子和“答案”报告基因,能够在不需要测试对象(动物或患者)的事先准备(特别是遗传修饰)的情况下进行基因表达的体内分析,并且不会对受试者造成长期或全身影响。 这样的发明可以用于例如查询个体受试者对外源性效应物质如热原,药物化合物,药物引导化合物,变应原,自身免疫原,毒素,多克隆抗体的表型表型或表型反应 ,单克隆抗体,抗原,脂质,碳水化合物,肽,蛋白质,蛋白质复合物,氨基酸,脂肪酸,核苷酸,DNA,RNA,PNA,siRNA和微RNA。