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    • 2. 发明申请
    • AUTOMATED ABDOMINOJUGULAR REFLUX TESTING
    • 自动化腹腔镜检查
    • WO2017184215A1
    • 2017-10-26
    • PCT/US2016/068626
    • 2016-12-26
    • GOOGLE INC.
    • DEBUSSCHERE, Brian, Derek
    • A61B5/00A61B5/02A61B5/022
    • A61B5/4884A61B5/0013A61B5/0077A61B5/02028A61B5/02233A61B5/024A61B5/486A61B5/6823A61B5/684A61B5/6898A61B5/742A61B2576/02A61H9/0092A61H2205/083
    • This document describes automated abdominojugular reflux (AJR) testing. To automate AJR tests, a pressure cuff wrapped around a person's abdomen applies pressure while video of their neck is captured. By way of example, a medical professional wraps a pressure cuff around the person's abdomen and records video of the person's neck using a smartphone, which communicates with the pressure cuff to synchronize the application of pressure with video capture. The video is processed to detect and track the response of jugular venous pulse (JVP), which is compared to AJR test thresholds to determine test results. While determining JVP, and thereby results of AJR tests, from reconstructed videos may not result in data that is as accurate as invasive intra-heart tests, it requires little if any risk to patients and is easy for medical professionals to perform. Further, these techniques enable AJR tests to be performed automatically and without relying on estimates made by skilled medical professionals.
    • 本文件描述了自动化腹股沟回流(AJR)测试。 为了使AJR测试自动化,缠绕在人腹部的压力袖带施加压力,同时捕捉他们颈部的视频。 举例来说,医疗专业人员在人的腹部包裹压力袖带并使用智能手机记录人的脖子的视频,该智能手机与压力袖带进行通信以使压力的施加与视频捕捉同步。 处理视频以检测和追踪颈静脉脉搏(JVP)的反应,将其与AJR测试阈值进行比较以确定测试结果。 虽然通过重建视频确定JVP并从而确定AJR测试结果可能无法获得与侵入式心内测试一样准确的数据,但对患者而言,它几乎不需要任何风险,并且对医疗专业人员来说很容易执行。 此外,这些技术可以自动执行AJR测试,而无需依赖熟练医疗专业人员的估计。
    • 3. 发明申请
    • IMPROVED WEARABLE TONOMETER
    • 改进的可穿戴式计时器
    • WO2017175120A1
    • 2017-10-12
    • PCT/IB2017/051904
    • 2017-04-04
    • WINMEDICAL S.R.L.
    • VALDASTRI, PietroDE NEGRI, Ferdinando
    • A61B5/021A61B5/022A61B5/00A61B5/0402
    • A61B5/02225A61B5/021A61B5/02108A61B5/02125A61B5/022A61B5/02233A61B5/0402A61B5/681A61B5/6831A61B5/6843A61B5/6844A61B5/7203A61B2562/0247A61B2562/04A61B2562/043A61B2562/046A61B2562/14
    • An improved tonometer (1) for continuously monitoring the arterial blood pressure of a patient for a predetermined period of time comprises a bracelet (10) configured in such a way to be applied to a wrist of a patient (100). It is, furthermore, provided a detection group (20) mounted on the bracelet (10) and arranged to detect a pressure signal. The detection group (20) comprises a plurality of pressure sensors (25) arranged to detect a respective pressure signal associated to the blood pressure wave of the patient (100). At least one pressure sensor (25) is positioned, in use, in proximity of the radial artery of the patient (100), at the opposite side of the radial bone. It is, also, provided a touching group (60) that is interposed, in use, between the detection group (20) and the radial artery of the patient and equipped with a plurality of protuberant members (65a-65d), each of which associated to a respective pressure sensor (25) and arranged to be positioned, in use, into contact with the skin of the patient, in such a way to exert a predetermined force F on the radial artery.
    • 一种用于连续监测患者的动脉血压达预定时间段的改进的眼压计(1),包括手镯(10),该手镯(10)被配置为施加到患者的手腕 (100)。 此外,还提供了安装在表带(10)上并布置成检测压力信号的检测组(20)。 检测组(20)包括布置成检测与患者(100)的血压波相关联的相应压力信号的多个压力传感器(25)。 在使用中,至少一个压力传感器(25)定位在患者(100)的桡动脉附近,在桡骨的相对侧。 还提供了在使用中介于检测组(20)和患者的桡动脉之间并且配备有多个突起构件(65a-65d)的接触组(60),每个突起构件(65a-65d) ,其与相应的压力传感器(25)相关联并且被布置成在使用中定位成与患者的皮肤接触,从而在桡动脉上施加预定的力F.
    • 4. 发明申请
    • CLAMPING DEVICE, SYSTEM AND METHOD FOR CONTROLLING VENOUS BLOOD FLOW, IMPROVING VENOUS DILATION AND EFFECTING BLOOD PRESSURE MEASUREMENT
    • 夹紧装置,系统和方法,用于控制呼吸流量,改善呼吸暂停和影响血液压力测量
    • WO2017054043A1
    • 2017-04-06
    • PCT/AU2016/050911
    • 2016-09-29
    • WAVE BIOTECH PTY LTD
    • VAN SPARRENTAK, NielsWHITE, Rohan
    • A61B5/022A61B5/021A61B5/0225A61B5/107
    • A61B5/107A61B5/02007A61B5/02208A61B5/02233A61B5/6824A61B5/6828A61B5/702
    • A clamping device for applying pressure to a human limb. The device comprises a first rigid part having a first inner profile and a second rigid part generally facing the first inner profile. The first and second inner profiles are arranged to apply clamping pressure against the human limb when the device is in the clamped position and thereby apply clamping pressure to blood vessels in the limb. The device further comprises a coupling portion that couples the first and second rigid parts together while allowing relative movement of the first and second parts between a clamped position and an unclamped position. An expandable element is arranged at least partly along at least one of the first inner profile and the second inner profile. The expandable element is inflatable to apply additional pressure to the limb, and deflatable to reduce the additional pressure, when the clamping device is positioned on the limb. The device further comprises at least one sensing component.
    • 用于向人体肢体施加压力的夹紧装置。 该装置包括具有第一内部轮廓的第一刚性部分和大致面对第一内部轮廓的第二刚性部分。 第一和第二内部轮廓被布置成当装置处于夹紧位置时对人肢施加夹紧压力,从而对肢体中的血管施加夹紧压力。 该装置还包括耦合部分,其将第一和第二刚性部分耦合在一起,同时允许第一和第二部分在夹紧位置和松开位置之间的相对运动。 至少部分地沿着第一内轮廓和第二内轮廓中的至少一个布置可扩张元件。 可膨胀元件可充气以在肢体上施加额外的压力,并且当夹紧装置位于肢体上时可膨胀以减小附加压力。 该装置还包括至少一个感测部件。
    • 5. 发明申请
    • BLOOD PRESSURE MEASURING APPARATUS
    • 血压测量仪
    • WO2017013878A1
    • 2017-01-26
    • PCT/JP2016/003403
    • 2016-07-20
    • NIHON KOHDEN CORPORATION
    • NOMURA, EiUSUDA, Takashi
    • A61B5/022
    • A61B5/02141A61B5/02233A61B2503/045
    • A pressurizing/depressurizing section (4) performs at least one of air feeding to a cuff (20) by way of an air way (3) and air discharging by way of the air way (3) to thereby increase or decrease an internal pressure of the cuff (20). A first controlling section (5) causes the pressurizing/depressurizing section (4) to initiate the air feeding while performing the air discharging to thereby cause the internal pressure to transit from a pressure transient state to a pressure steady state or from the pressure steady state to the pressure transient state. A determining section (6) determines whether the internal pressure has transited to the pressure steady state by way of the pressure transient state. A second controlling section (7) causes the pressurizing/depressurizing section (4) to suppress or stop the air discharging while continuing the air feeding, in accordance with determination made by the determining section (6).
    • 加压减压部(4)通过空气通路(3)进行至袖带(20)的空气供给和通过空气通路(3)的空气排出中的至少一种,从而增加或减少内部压力 的袖带(20)。 第一控制部(5)使得加压/减压部(4)在进行空气排出的同时开始空气供给,从而使内部压力从压力过渡状态转变为压力稳定状态或从压力稳定状态 到压力瞬态。 确定部分(6)通过压力瞬态状态确定内部压力是否已转移到压力稳定状态。 第二控制部(7)根据由判定部(6)的判定,使加压减压部(4)抑制或停止排气,同时继续供气。
    • 8. 发明申请
    • BLOOD PRESSURE MONITOR WITH VALVE-CHAMBER ASSEMBLY
    • 带阀门组件的血压监护仪
    • WO2015020911A2
    • 2015-02-12
    • PCT/US2014049490
    • 2014-08-01
    • CERCACOR LAB INC
    • LAMEGO MARCELO MKIANI MASSI JOE EDALVI CRISTIANOPOEZE JEROENVO HUNG
    • A61B5/0235
    • A61B5/0235A61B5/02233F16K1/302F16K1/303F16K13/04
    • A blood pressure measurement system is provided that includes an inflatable cuff, a valve assembly and chamber assembly. The chamber assembly can house a gas canister for providing gas to the inflatable cuff. The valve assembly can include a valve having a high pressure cavity, a low pressure cavity, and a channel providing a gas pathway between the high pressure cavity and the low pressure cavity. The valve assembly can further include a channel cover and spring in the high pressure cavity. The spring can exert a force on the channel cover to create a seal between the high pressure cavity and the channel. The valve assembly can further include a rod extending through the channel and exerting a force on the channel cover to create a gas pathway between the high pressure cavity and the channel.
    • 提供了一种血压测量系统,其包括可充气袖带,阀组件和腔室组件。 腔室组件可以容纳用于将气体提供给可充气袖带的气体罐。 阀组件可以包括具有高压腔,低压腔和在高压腔和低压腔之间提供气体通路的通道的阀。 阀组件还可以包括在高压腔中的通道盖和弹簧。 弹簧可以在通道盖上施加力,以在高压腔和通道之间形成密封。 阀组件还可以包括延伸穿过通道并且在通道盖上施加力以在高压腔和通道之间产生气体通路的杆。
    • 9. 发明申请
    • GUIDED SINUS LIFT
    • 引导SINUS LIFT
    • WO2014199332A1
    • 2014-12-18
    • PCT/IB2014/062168
    • 2014-06-12
    • MAXILLENT LTD.
    • FOSTICK, GideonUCHITEL, IlanBETTER, HadarGROSS, Yossi
    • A61B17/16A61C3/02A61C8/00A61C1/00
    • A61C8/0092A61B5/02233A61C1/084A61C19/04G06F19/00G16H50/50
    • A method and apparatus are herein provided, the method including: receiving a three dimensional virtual model of a maxillary alveolar bone of a patient, and a digital dental implant plan that defines a planned dental implant site of the maxillary bone; receiving a set of values consisting of predefined distances; creating a virtual model of a surgical guide stent for placement against an occlusal surface, wherein the virtual model of the surgical guide stent defines: a hole through the surgical guide stent at a site corresponding to the planned dental implant site defined in the digital dental implant plan, and an inferior surface surrounding the hole; and outputting the virtual model of the surgical guide stent in association with the one of the predefined distances.
    • 本文提供了一种方法和装置,所述方法包括:接收患者的上颌牙槽骨的三维虚拟模型和限定上颌骨的计划的牙植入位置的数字牙植入物计划; 接收一组由预定距离组成的值; 创建用于放置在咬合面上的外科手术引导支架的虚拟模型,其中所述手术引导支架的虚拟模型限定:穿过所述手术引导支架的孔,其位于对应于在所述数字牙植入物中限定的所述计划的牙植入部位 计划,以及围绕孔的下表面; 并且与所述预定距离之一相关联地输出所述手术引导支架的虚拟模型。