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    • 3. 发明申请
    • METHOD AND APPARATUS FOR RUPTURING TARGETED CELLS
    • 破坏目标细胞的方法和装置
    • US20020029034A1
    • 2002-03-07
    • US09188915
    • 1998-11-09
    • PROSERFINA R. TORTALGRACE TORTAL-QUIRONGROLANDO A. QUIRONGELEAZAR R. TORTALJOCELYN FONACIER TORTAL
    • A61B018/02
    • A61B18/02A61B2018/0262Y10S128/27
    • A probe contacts targeted tissue, sometimes while positioned adjacent to nontargeted live tissues. In preferred forms, the probe includes a support that only minimally conducts heat from nontargeted tissues. A very conductive targeted-tissue-contacting element, at an end of the support, is immersed in a liquid cryogen (preferably nitrogen) and then removed for contacting with (e. g., insertion into) the targeted tissue. An ultrathin highly thermoconductive polymeric tubing holds both a very conductive, cold material, forming the targeted-tissue-contacting element, and fine insulating material (e. g. highly insulating elastomer) forming part of the support. The targeted-tissue-contacting element is fashioned to fit the targeted tissue in at least one dimension, and the support to fit nontargeted live tissues (if any) adjacent to which the probe is positioned while contacting the targeted tissue. The probe provides for confined heat exchange with the targeted tissue - as by matching dimensions of probe and targeted tissue, or of support and nontargeted tissue, or insulating the support against heat flow into the probe or from nontargeted tissues; and preferably all of these. The best targeted-tissue-contacting element is a solid cryogen, roughly at liquid-nitrogen temperature; ideally it is solid carbon dioxide, particularly super-sublimated carbon dioxide - cooled to a temperature range characterized by extremely tight crystal bonds.
    • 探针接触目标组织,有时位于非靶向活组织附近。 在优选形式中,探针包括仅从非靶向组织最低限度地传导热量的支架。 将支撑体末端的非常导电的靶向组织接触元件浸入液体冷冻剂(优选氮气)中,然后除去以与(例如,插入)目标组织接触。 超薄高导热聚合物管保持形成目标组织接触元件的非常导电的冷材料和形成支撑体的一部分的精细绝缘材料(例如高度绝缘的弹性体)。 靶向组织接触元件的形状是将目标组织装配在至少一个维度上,并且支撑件适合与探针定位的邻近的非靶向活组织(如果有的话)接触目标组织。 探针提供与目标组织的局限热交换,如通过匹配探针和靶组织,支撑和非靶向组织的尺寸,或绝缘支撑物抵抗探针或非靶向组织的热流; 并且优选所有这些。 最好的靶组织接触元件是固体冷冻剂,大致处于液氮温度; 理想情况下,它是固体二氧化碳,特别是超升华的二氧化碳,被冷却到以非常紧密的结晶键为特征的温度范围。
    • 4. 发明授权
    • System and method for stabilizing and removing tissue
    • 用于稳定和去除组织的系统和方法
    • US6015390A
    • 2000-01-18
    • US96807
    • 1998-06-12
    • David N. Krag
    • David N. Krag
    • A61B17/00A61B18/02A61B19/00A61B5/00
    • A61B18/02A61B90/17A61B2017/00084A61B2090/374A61B2090/3908A61B34/10Y10S128/27
    • A system (8) and method for stabilizing a tissue mass, using temperature sensors (10), a scanner (80), and a cryoprobe (220). The sensors provide temperature information with respect to a tissue portion adjacent thereto. The sensors include an identification (ID) code and an ID decoder. The ID decoder compares the sensor ID code to an ID code contained in an interrogation signal provided by the scanner. If the codes match, the sensor transmits the temperature information to the scanner, which processes and displays the temperature information in a humanly recognizable form. The method includes the step of inserting a cryoprobe into a tissue volume to be stabilized so that a portion of the cryoprobe projects therefrom. Then, the tissue volume is frozen while monitoring the size or temperature of the tissue volume. Freezing is terminated when the tissue volume is frozen (or reaches a first temperature level), and then removed while grasping the cryoprobe so as to stabilize the tissue volume.
    • 一种使用温度传感器(10),扫描器(80)和冷冻探针(220)来稳定组织块的系统(8)和方法。 传感器提供关于与其相邻的组织部分的温度信息。 传感器包括识别(ID)码和ID解码器。 ID解码器将传感器ID代码与扫描器提供的询问信号中包含的ID码进行比较。 如果代码匹配,传感器将温度信息传送到扫描仪,扫描仪以人类可识别的形式处理和显示温度信息。 该方法包括将冷冻探针插入要稳定的组织体积中以使得一部分冷冻探针从其突出的步骤。 然后,在监测组织体积的大小或温度的同时冷冻组织体积。 当组织体积冷冻(或达到第一温度水平)时,冷冻终止,然后在抓住冷冻探针时移除,以便稳定组织体积。
    • 9. 发明授权
    • High efficiency liquid oxygen system
    • 高效液氧系统
    • US06742517B1
    • 2004-06-01
    • US09696170
    • 2000-10-26
    • Mark R. FryeLeonardo S. TomaRichard A. Davis
    • Mark R. FryeLeonardo S. TomaRichard A. Davis
    • A62B706
    • F17C7/02F17C2201/0114F17C2201/0119F17C2201/058F17C2203/0391F17C2205/0146F17C2205/0332F17C2221/011F17C2223/0123F17C2223/0153F17C2223/033F17C2250/043F17C2250/072F17C2270/025Y10S128/27
    • A high-efficiency liquid oxygen, (LOX) storage/delivery system utilizes a portable LOX/delivery apparatus with a portable LOX container. A portable-unit LOX transfer connector is connected to the portable LOX container and is connectable to a main source of LOX in a primary reservoir LOX container. A portable-unit oxygen gas transfer connector is provided for transferring oxygen gas from the portable LOX container to an oxygen gas delivery device for delivering oxygen gas to a patient. An inter-unit oxygen gas transfer connector also is provided for connecting the portable apparatus to a stationary source of oxygen gas in the primary reservoir container, for transferring oxygen gas to the portable apparatus. A portable-unit primary relief valve is connected to the portable LOX container for venting oxygen gas out of the portable LOX container when pressure in the portable LOX container reaches a predetermined level. When the inter-unit oxygen gas transfer connector of the portable container is connected to the stationary source of oxygen in the primary reservoir container, oxygen gas can be transferred to the oxygen gas delivery device for delivery to the patient from the portable LOX container while oxygen gas is transferred to the portable container from the stationary source of gas in the primary reservoir LOX container.
    • 高效液氧(LOX)储存/输送系统利用便携式LOX /输送装置与便携式LOX容器。 便携式单元LOX传输连接器连接到便携式LOX容器,并且可连接到主容器LOX容器中的主要LOX源。 提供便携式氧气输送连接器,用于将氧气从便携式LOX容器转移到用于将氧气输送给患者的氧气输送装置。 还提供一种单元间氧气传输连接器,用于将便携式设备连接到主储存容器中的固定的氧气源,用于将氧气输送到便携式设备。 便携式主安全阀连接到便携式LOX容器,用于在便携式LOX容器中的压力达到预定水平时将氧气排出便携式LOX容器。 当便携式容器的单元间氧气传输连接器连接到主储存容器中的固定的氧气源时,可以将氧气转移到氧气输送装置,以从便携式LOX容器输送到患者,同时氧气 气体从主容器LOX容器中的固定气体源转移到便携式容器。
    • 10. 发明授权
    • Method and apparatus for rupturing targeted cells
    • 用于破坏靶细胞的方法和装置
    • US06508814B2
    • 2003-01-21
    • US09188915
    • 1998-11-09
    • Proserfina R. TortalGrace Tortal-QuirongRolando A. QuirongEleazar R. TortalJocelyn F. Tortal
    • Proserfina R. TortalGrace Tortal-QuirongRolando A. QuirongEleazar R. TortalJocelyn F. Tortal
    • A61B1818
    • A61B18/02A61B2018/0262Y10S128/27
    • A probe contacts targeted tissue, sometimes while positioned adjacent to nontargeted live tissues. In preferred forms, the probe includes a support that only minimally conducts heat from nontargeted tissues. A very conductive targeted-tissue-contacting element, at an end of the support, is immersed in a liquid cryogen (preferably nitrogen) and then removed for contacting with (e. g., insertion into) the targeted tissue. An ultrathin highly thermoconductive polymeric tubing holds both a very conductive, cold material, forming the targeted-tissue-contacting element, and fine insulating material (e. g. highly insulating elastomer) forming part of the support. The targeted-tissue-contacting element is fashioned to fit the targeted tissue in at least one dimension, and the support to fit nontargeted live tissues (if any) adjacent to which the probe is positioned while contacting the targeted tissue. The probe provides for confined heat exchange with the targeted tissue—as by matching dimensions of probe and targeted tissue, or of support and nontargeted tissue, or insulating the support against heat flow into the probe or from nontargeted tissues; and preferably all of these. The best targeted-tissue-contacting element is a solid cryogen, roughly at liquid-nitrogen temperature; ideally it is solid carbon dioxide, particularly super-sublimated carbon dioxide—cooled to a temperature range characterized by extremely tight crystal bonds.
    • 探针接触目标组织,有时位于非靶向活组织附近。 在优选形式中,探针包括仅从非靶向组织最低限度地传导热量的支架。 将支撑体末端的非常导电的靶向组织接触元件浸入液体冷冻剂(优选氮气)中,然后除去以与(例如,插入)目标组织接触。 超薄高导热聚合物管保持形成目标组织接触元件的非常导电的冷材料和形成支撑体的一部分的精细绝缘材料(例如高度绝缘的弹性体)。 靶向组织接触元件的形状是将目标组织装配在至少一个维度上,并且支撑件适合与探针定位的邻近的非靶向活组织(如果有的话)接触目标组织。 探针提供与目标组织的局限热交换,如通过匹配探针和靶组织或支撑和非靶向组织的尺寸,或绝缘支撑件抵抗热流入探针或非靶向组织; 并且优选所有这些。 最好的靶组织接触元件是固体冷冻剂,大致处于液氮温度; 理想情况下,它是固体二氧化碳,特别是超升华的二氧化碳,冷却到特征在于非常紧密的结晶键的温度范围。