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    • 41. 发明授权
    • Device and method for treatment of wounds with nitric oxide
    • 用一氧化氮治疗伤口的装置和方法
    • US07520866B2
    • 2009-04-21
    • US11487600
    • 2006-07-13
    • Alex StenzlerChris C Miller
    • Alex StenzlerChris C Miller
    • A61M37/00A61M1/00A01N59/02
    • A61M35/00A61B90/40A61H33/14A61K33/00A61L2/0094A61L15/18A61L15/44A61L2300/114A61L2300/602A61M1/0031A61M1/0088A61M13/003A61M13/006A61M2202/0275A61M2205/3334A61K2300/00
    • Topical exposure of nitric oxide gas to wounds such as chronic non-healing wounds may be beneficial in promoting healing of the wound and in preparing the wound bed for further treatment and recovery. Nitric oxide gas may be used, for example, to reduce the microbial infection and burden on these wounds, manage exudate secretion by reducing inflammation, upregulate expression of endogenous collagenase to locally debride the wound, and regulate the formation of collagen. High concentration of nitric oxide ranging from about 160 to 400 ppm may be used without inducing toxicity in the healthy cells around a wound site. Additionally, exposure to the high concentration for a first treatment period reduces the microbial burden and inflammation at the wound site and increase collagenase expression to debride necrotic tissue at the wound site. After a first treatment period with high concentration of nitric oxide, a second treatment period at a lower concentration of nitric oxide preferably ranging from about 5-20 ppm may to provided to restore the balance of nitric oxide and induce collagen expression to aid in the closure of the wound.
    • 一氧化氮气体局部暴露于伤口如慢性非愈合伤口可能有益于促进伤口愈合和制备伤口床进一步治疗和恢复。 例如,可以使用一氧化氮气体来减少这些伤口的微生物感染和负担,通过减少炎症,上调内源性胶原酶的表达来局部清创伤口并调节胶原的形成来控制渗出物分泌。 可以使用约160至400ppm范围内的高浓度一氧化氮,而不会在伤口部位周围的健康细胞中引起毒性。 此外,在第一次治疗期间暴露于高浓度可减少伤口部位的微生物负担和炎症,并增加胶原酶表达以清除伤口部位的坏死组织。 在具有高浓度一氧化氮的第一次治疗期后,可提供较低浓度的一氧化氮优选约5-20ppm的第二治疗期以恢复一氧化氮的平衡并诱导胶原表达以帮助闭合 的伤口。
    • 43. 发明授权
    • Device and method for treatment of wounds with nitric oxide
    • 用一氧化氮治疗伤口的装置和方法
    • US07122018B2
    • 2006-10-17
    • US11021109
    • 2004-12-23
    • Alex StenzlerChris C Miller
    • Alex StenzlerChris C Miller
    • A61M37/00A61M1/00A01N59/02
    • A61M35/00A61B90/40A61H33/14A61K33/00A61L2/0094A61L15/18A61L15/44A61L2300/114A61L2300/602A61M1/0031A61M1/0088A61M13/003A61M13/006A61M2202/0275A61M2205/3334A61K2300/00
    • Topical exposure of nitric oxide gas to wounds such as chronic non-healing wounds may be beneficial in promoting healing and preparing the wound bed for further treatment and recovery. Nitric oxide gas may be used to reduce the microbial infection, manage exudates secretion by reducing inflammation, upregulate expression of endogenous collagenase to locally debride the wound, and regulate the formation of collagen. High concentration of nitric oxide ranging from 160–400 ppm may be used without inducing toxicity in the healthy cells around a wound site. Exposure to the high concentration for a first treatment period reduces the microbial burden and inflammation, and increases collagenase expression to debride necrotic tissue at the wound site. After a first treatment period, a second treatment period at a lower concentration of nitric oxide, preferably ranging from 5–20 ppm may be used to restore the balance of nitric oxide and induce collagen expression aiding in the wound closure.
    • 一氧化氮气体局部暴露于伤口如慢性非愈合伤口可能有益于促进愈合和制备伤口床进一步治疗和恢复。 可以使用一氧化氮气体来减少微生物感染,通过减少炎症,上调内源性胶原酶的表达来局部清创伤口,调节胶原蛋白的形成来控制渗出物的分泌。 可以使用160-400ppm范围内的高浓度一氧化氮,而不会在伤口部位周围的健康细胞中引起毒性。 在第一次治疗期间暴露于高浓度会降低微生物负担和炎症,并增加胶原酶表达以清除伤口部位的坏死组织。 在第一次治疗期后,可以使用较低浓度的一氧化氮,优选5-20ppm的第二治疗期,以恢复一氧化氮的平衡并诱导帮助伤口闭合的胶原表达。
    • 46. 发明授权
    • Portable isocapnia circuit and isocapnia method
    • 便携式isocapnia电路和isocapnia方法
    • US06612308B2
    • 2003-09-02
    • US10093797
    • 2002-03-08
    • Joseph FisherAlex VeselyHiroshi SasanoSteve IscoeAlex Stenzler
    • Joseph FisherAlex VeselyHiroshi SasanoSteve IscoeAlex Stenzler
    • A62B700
    • A61M16/12A61M16/0045A61M16/08
    • A portable isocapnia circuit and an isocapnia method. A breathing port of the circuit allows a subject to inhale and exhale. Connected to the breathing port, a bifurcate conduit has a first conduit branch and a second conduit branch. The first conduit branch has an atmospheric air inlet, from which the atmospheric air is provided for inhalation, an inspiratory check valve to allow a one-way flow of the atmospheric air, and an atmospheric air aspirator. The second conduit branch has a one-way expiratory check valve and a expiratory gas reservoir. A one-way check valve is used to interconnect the first and second conduit branch, from which the expiratory gas stored in the expiratory gas reservoir flows to the first conduit branch to mix with the atmospheric air when the minute ventilation exceeds the atmospheric air.
    • 便携式异卡路里电路和异味法。 电路的呼吸口允许受试者吸入并呼气。 连接到呼吸端口,分叉导管具有第一导管支路和第二导管支路。 第一管道分支具有大气空气入口,大气从该空气入口提供用于吸入,吸气止回阀允许大气空气的单向流动,以及大气抽气器。 第二导管分支具有单向呼气止回阀和呼气气体储存器。 单向止回阀用于互连第一和第二导管分支,当微小通气超过大气时,从呼吸气体储存器中吸入的呼吸气体流向第一导管支路与大气混合。