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    • 1. 发明授权
    • Removable stent and method of using the same
    • 可拆卸支架及其使用方法
    • US07547321B2
    • 2009-06-16
    • US10190770
    • 2002-07-05
    • Gerard A. SilvestriLutz Freitag
    • Gerard A. SilvestriLutz Freitag
    • A61F2/06A61F2/04
    • A61F2/915A61F2/91A61F2002/041A61F2002/044A61F2002/046A61F2002/065A61F2002/91516A61F2002/91525A61F2002/91533A61F2002/91558A61F2002/91566A61F2230/0054A61F2250/0018A61F2250/0039A61F2250/0067A61L31/022
    • The present invention, in an exemplary embodiment, provides a stent, which combines many of the excellent characteristics of both silicone and metal stents while eliminating the undesirable ones. In particular, it is an objective of a preferred embodiment of the present invention to provide a stent that is easily installed, yet removable. Moreover, the stent does not cause material infections and has the capacity to reduce infection. Therefore, a principal objective of a preferred embodiment in accordance with the present invention is to provide a prosthesis that is suitable for both permanent and temporary use while being easy to insert, reposition and remove. This prosthesis is also suitable for targeted delivery of antimicrobial and chemotherapeutic agents. Additionally, a principal objective in accordance with the present invention is to provide a family of stents where the relative hardness/softness of regions of the stent can differ from other regions of the stent to provide additional patient comfort and resistance to radial forces. An exemplary embodiment also provides a family of stents with novel interstice configurations that facilitate flexibility, durability and/or proper installation.
    • 本发明在一个示例性实施例中提供一种支架,其结合了硅树脂和金属支架的许多优异特性,同时消除了不期望的支架。 特别地,本发明的优选实施例的目的是提供一种易于安装,但可移除的支架。 此外,支架不会引起物质感染并具有减少感染的能力。 因此,根据本发明的优选实施例的主要目的是提供一种适于永久和临时使用的假体,同时易于插入,重新定位和移除。 该假体也适用于抗微生物剂和化学治疗剂的靶向递送。 此外,根据本发明的主要目的是提供一种支架系列,其中支架区域的相对硬度/柔软度可以与支架的其它区域不同以提供额外的患者舒适度和抗径向力。 示例性实施例还提供了具有新颖空隙配置的支架系列,其有助于灵活性,耐久性和/或适当的安装。
    • 4. 发明申请
    • TRACHEAL CATHETER AND PROSTHESIS AND METHOD OF RESPIRATORY SUPPORT OF A PATIENT
    • TRACHEAL导管和患者呼吸辅助的方法和方法
    • US20110209705A1
    • 2011-09-01
    • US13044241
    • 2011-03-09
    • Lutz Freitag
    • Lutz Freitag
    • A61M16/00
    • A61M16/12A61M16/0072A61M16/0465A61M16/0677A61M16/127A61M2016/0021A61M2016/0036A61M2025/0002A61M2202/0208A61M2205/106
    • A method and apparatus is described for supporting the respiration of a patient. The spontaneous respiration of a patient can be detected by sensors and during inhalation an additional amount of oxygen can be administered to the lungs via a jet gas current. If required, during exhalation a countercurrent can be administered to avoid collapse of the respiration paths. This therapy can be realized by an apparatus including a transtracheal catheter, an oxygen pump connected to an oxygen source, spontaneous respiration sensor(s) connected to a control unit for activating the oxygen pump and, if needed, a tracheal prosthesis. The tracheal prosthesis may include a connection for the catheter and the breath sensor(s). The tracheal prosthesis, if used, and the catheter can be dimensioned so the patient can freely breathe, cough, swallow and speak without restriction, and the system can be wearable to promote mobility.
    • 描述了一种支持患者呼吸的方法和装置。 患者的自发呼吸可以由传感器检测,并且在吸入期间,可以通过喷射气流向肺施用额外量的氧。 如果需要,在呼气期间可以施用逆流以避免呼吸路径的塌陷。 该治疗可以通过包括经气管导管,连接到氧源的氧气泵,连接到用于启动氧气泵的控制单元的自发呼吸传感器以及如果需要的气管假体的装置来实现。 气管假体可以包括用于导管和呼吸传感器的连接。 气管假体(如果使用)和导管的尺寸可以使患者能够自由呼吸,咳嗽,吞咽和说话而不受限制,并且该系统可穿戴以促进移动。
    • 5. 发明授权
    • Systems, methods and apparatus for respiratory support of a patient
    • 用于患者呼吸支持的系统,方法和装置
    • US07533670B1
    • 2009-05-19
    • US11523519
    • 2006-09-20
    • Lutz FreitagGregory KapustAnthony Wondka
    • Lutz FreitagGregory KapustAnthony Wondka
    • A61M16/00
    • A61M16/0465A61M16/0006A61M16/0063A61M16/024A61M16/0468A61M2016/0021A61M2016/0027A61M2016/0413
    • Spontaneous respiration is detected by sensors. An additional amount of oxygen is administered to the lungs via a jet gas current at the end of an inhalation procedure. Breathing volume, absorption of oxygen during inhalation, and clearance of carbon dioxide during exhalation are improved. If required, the exhalation procedure of the patient can be arrested or slowed by a countercurrent to avoid a collapse of the respiration paths. An apparatus including an oxygen pump can be connected to an oxygen source and includes a tracheal prosthesis that can be connected via a catheter. The respiration detections sensors are connected to a control unit for activating the oxygen pump. The tracheal prosthesis includes a tubular support body with a connection for the catheter, and the sensors are associated with the support body. The tracheal prosthesis and jet catheter are dimensioned so the patient can freely breathe and speak without restriction.
    • 传感器检测到自发呼吸。 在吸入程序结束时通过喷射气流向肺部施加额外量的氧气。 吸入期间吸气量,吸氧量,呼气过程中二氧化碳清除率有所提高。 如果需要,患者的呼气程序可以通过逆流来阻止或减慢,以避免呼吸路径的崩溃。 包括氧气泵的装置可以连接到氧源并且包括可以经由导管连接的气管假体。 呼吸检测传感器连接到用于激活氧气泵的控制单元。 气管假体包括具有用于导管的连接的管状支撑体,并且传感器与支撑体相关联。 气管假体和喷气导管的尺寸使患者能够自由地呼吸并且无限制地说话。
    • 6. 发明申请
    • Method and arrangement for reducing the volume of a lung
    • 降低肺容积的方法和装置
    • US20050061322A1
    • 2005-03-24
    • US10981346
    • 2004-11-03
    • Lutz Freitag
    • Lutz Freitag
    • A61M16/04A62B7/00
    • A61M16/04A61M16/0404
    • The invention relates to a method and an arrangement for reducing the volume of a patient's lung. A bronchial catheter (2) is introduced into a hyperexpanded lung area, and air is aspirated from there by means of an aspiration device (3). The associated segmental bronchus is then closed. According to the invention, the patient's spontaneous respiration is recorded by sensors (5), and aspiration of the air is carried out in synchrony with the patient's inhalation action. In order to prevent collapse of the associated segmental bronchus, a pressure generator is provided with which the associated segmental bronchus can be widened, by a compressed gas pulse, in synchrony with the aspiration. The pressure generator can be activated as a function of the aspirated air stream, which is monitored with a measuring device.
    • 本发明涉及一种减轻患者肺部体积的方法和装置。 将支气管导管(2)引入超声肺部区域,并通过抽吸装置(3)从那里吸出空气。 然后关联的节段性支气管闭合。 根据本发明,患者的自发呼吸由传感器(5)记录,空气抽吸与患者的吸入动作同步进行。 为了防止相关联的节段性支气管的塌陷,提供压力发生器,通过与抽吸同步的压缩气体脉冲,相关联的节段性支气管可以被加宽。 压力发生器可以作为吸气空气流的功能而被激活,该气流由测量装置监控。
    • 7. 发明申请
    • Tracheal catheter and prosthesis and method of respiratory support of a patient
    • 气管导管和假体以及患者呼吸支持的方法
    • US20050034721A1
    • 2005-02-17
    • US10771803
    • 2004-02-04
    • Lutz Freitag
    • Lutz Freitag
    • A61M16/00A61M16/04A61M16/12A61M25/00A61M15/00
    • A61M16/12A61M16/0072A61M16/0465A61M16/0677A61M16/127A61M2016/0021A61M2016/0036A61M2025/0002A61M2202/0208A61M2205/106
    • The invention is relative to a method and an apparatus for supporting the respiration of a patient and to a tracheal prosthesis. According to the invention the spontaneous respiration of a patient is detected by sensors and at the end of an inhalation procedure an additional amount of oxygen is administered to the lungs via a jet gas current. This improves the absorption of oxygen during inhalation. If required, the exhalation procedure of the patient can be arrested or slowed by a countercurrent in order to avoid a collapse of the respiration paths in this manner. This procedure is realized by an apparatus comprising an oxygen pump that can be connected to an oxygen source and comprising a tracheal prosthesis that can be connected via a catheter. The spontaneous respiration of the patient is detected by sensors connected to a control unit for activating the oxygen pump. The tracheal prosthesis comprises a tubular support body with a connection for the catheter and two of the sensors are associated with the support body. The tracheal prosthesis and the jet catheter that is integrated or can be introduced are dimensioned so that the patient can freely breath and speak without restriction.
    • 本发明涉及一种支持患者和气管假体的呼吸的方法和装置。 根据本发明,患者的自发呼吸由传感器检测,并且在吸入程序结束时,额外量的氧经由喷射气流施用于肺。 这可以改善吸入过程中吸氧。 如果需要,可以通过逆流来阻止或减慢患者的呼气程序,以避免呼吸路径以这种方式崩溃。 该过程通过包括氧气泵的设备来实现,所述氧气泵可以连接到氧气源并且包括可经由导管连接的气管假体。 通过连接到用于激活氧气泵的控制单元的传感器来检测患者的自发呼吸。 气管假体包括具有用于导管的连接的管状支撑体,并且两个传感器与支撑体相关联。 整合或可以引入的气管假体和喷气导管的尺寸使得患者可以自由地呼吸并且无限制地说话。
    • 8. 发明授权
    • Method and apparatus for controlling a pressure level in a respirator
    • 用于控制呼吸器中的压力水平的方法和装置
    • US4520812A
    • 1985-06-04
    • US479145
    • 1983-03-28
    • Lutz FreitagMichael WendtFranz J. Dankwart
    • Lutz FreitagMichael WendtFranz J. Dankwart
    • A61M16/00
    • A61M16/0096
    • A method of and apparatus for producing a controlled pressure level in a respirator for human patients which is equipped with a tracheal tube 3 connected to the respirator and connectable to the trachea, comprises producing an oscillatory gas stream by means of two opposite gas jets in an attachment tube 4 which has two end openings. By controlling the pressure and/or frequency of the gas jets, a varying pressure level propagating into the tracheal tube is modulated onto the gas stream. The respirator for carrying out the method comprises two gas jet pipes 20, 21 having nozzle tips 24, 25 of which one discharges or points within the attachment tube 4 substantially in the direction of the tracheal tube 3 and the other substantially in the opposite direction.
    • 一种用于在用于人类患者的呼吸器中产生受控压力水平的方法和装置,其配备有连接到呼吸器并可连接到气管的气管管3,包括通过两个相对的气体射流产生振荡气流 连接管4具有两个端部开口。 通过控制气体射流的压力和/或频率,传播到气管管的变化的压力水平被调制到气流上。 用于执行该方法的呼吸器包括两个具有喷嘴尖端24,25的气体喷射管道20,21,喷嘴尖端24,25基本上沿着气管管3的方向排出或指向附件管4内,而另一个基本上沿相反方向排出。