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公开(公告)号:US11951046B1
公开(公告)日:2024-04-09
申请号:US18052049
申请日:2022-11-02
Applicant: BAROMEDICAL RESEARCH INSTITUTE, LTD.
Inventor: Keith Van Meter , John Engle
CPC classification number: A61G10/026 , A61B1/267 , A61B5/022 , A61B5/14542 , A61B34/30 , A61H31/004 , A61M5/142 , A61M16/04 , A61G2200/325 , A61G2210/30
Abstract: A resuscitation chamber apparatus for administering hyperbaric oxygen to a patient. More particularly, the present invention relates to a hyperbaric oxygen compatible critical care chamber apparatus preferably for use in emergency departments and/or prehospital ambulance management of patients. In a preferred embodiment of the present invention, the apparatus is a resuscitation monoplace hyperbaric chamber preferably used in critical care management of acutely ill or injured patients in prehospital emergency medical services (EMS) settings or in hospital emergency departments. The apparatus preferably allows a critical care shock or arrested patient to be pressurized preferably without compromise for application of best medical equipment, medications and human resuscitating intervention.
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公开(公告)号:US20230226387A1
公开(公告)日:2023-07-20
申请号:US17579398
申请日:2022-01-19
Applicant: Bruce Elgin McKeeman
Inventor: Bruce Elgin McKeeman
CPC classification number: A62B31/00 , A61G10/026 , A61G2220/00
Abstract: A portable and compact hyperbaric chamber includes an inflatable chamber, a weighted base, a dump valve, at least one auxiliary port, an external pressure gage, a plurality of fill valves, and a plurality of pressure relief valves. The access opening is integrated into a lateral panel of the inflatable chamber and provide in and out access to the inflatable chamber. The weighted base is mounted to the base panel and functions as a stable base. The plurality of fill valves is in fluid communication with the inflatable chamber to provide compressed air from a compressor so that the inflatable chamber can be pressurized. The plurality of pressure relief valves is in fluid communication with the inflatable chamber to maintain a specific pressure within the inflatable chamber. The dump valve, the auxiliary port, and the external pressure gage are in fluid communication with the inflatable chamber to optimize the functionality.
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公开(公告)号:US09841400B2
公开(公告)日:2017-12-12
申请号:US14856833
申请日:2015-09-17
Applicant: Fike Corporation
Inventor: Jim Vingerhoets , Jan-Bart Seymortier
IPC: G01N27/416 , G08B21/12 , G01N33/00 , A61G10/02 , G08B17/117
CPC classification number: G01N27/416 , A61G10/026 , G01N27/4163 , G01N33/004 , G01N33/0063 , G01N33/007 , G08B17/117 , G08B21/12 , Y02A50/25
Abstract: A system (20) and method (100) using decentralized trace gas sensors (44a, 44b, 44c) and a central control element (46) to detect smoldering material in particulate material processing equipment (26) with continuous air flow (22, 24, 34). First and second sensors (44a, 44c) measure gas concentrations at an air inlet (22) and an air outlet (34), respectively. The control element (46) receives the measurements from the sensors (44a, 44c) simultaneously, considers the first and second concentrations simultaneously to determine an amount of gas being produced in the processing equipment (26), determines whether the amount of gas being produced exceeds a threshold value indicative of smoldering, and if so, activates an alarm. A user interface (48) allows a user to interact with the control element (46), including resetting the alarm, viewing current and stored sensor and system information, and initiating a test of the system by exposing the sensors (44a, 44b, 44c) to gas released from a gas reservoir (50a, 50b, 50c).
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公开(公告)号:US09622931B2
公开(公告)日:2017-04-18
申请号:US14107180
申请日:2013-12-16
Applicant: Bruce Elgin McKeeman
Inventor: Bruce Elgin McKeeman
CPC classification number: A61G10/026 , A61M16/20 , A61M16/209 , A61M2202/0208
Abstract: A portable hyperbaric chamber with a vertical mounting system includes an inflatable enclosure which is vertically positioned by a rigid base. An internal frame also functions as an additional mounting system so that the inflatable enclosure can be vertically positioned during pressurized and not pressurized instances. A plurality of fill valves allows the inflatable enclosure to be pressurized from externally positioned compressors, and the inside pressure of the inflatable enclosure is measured and displayed through a pressure gauge. The inside pressure can be controlled from a dump valve, a low pressure relief valve, and a high pressure relief valve so that the proper operating pressure can be maintained with the hyperbaric chamber.
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公开(公告)号:US20170100294A1
公开(公告)日:2017-04-13
申请号:US15290195
申请日:2016-10-11
Applicant: Efrain Acevedo , Kenneth Wright
Inventor: Efrain Acevedo , Kenneth Wright
IPC: A61G10/02
CPC classification number: A61G10/026
Abstract: A pressured hybrid-construction hyperbaric chamber and method of using same are disclosed. The present invention provides for the fabrication and building of hybrid-construction, solid or semi-flexible wall, exoskeleton reinforced, hybrid hyperbaric chambers suitable for office and/or home use in providing oxygen rich therapies.
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公开(公告)号:US09498396B2
公开(公告)日:2016-11-22
申请号:US14111179
申请日:2011-04-14
Applicant: Jeffrey Bradford
Inventor: Jeffrey Bradford
CPC classification number: A61G10/023 , A61G10/026 , B63C11/325 , E05D15/00 , E05F1/04 , E06B3/34
Abstract: The present invention describes a medical, supply or transfer lock (120) for a pressure vessel (100) for human occupancy. The medical lock (120) includes a body tube (122), an outer door flange (124) and an outer door (140) in sealing face relation with an inside face (125) of the outer door flange (124). In an embodiment, the outer door (124) has upper rollers (146a) and lower rollers (146b). The upper rollers run on a horizontal rail (160) while the lower rollers run on a slant rail (170), which is mounted below the horizontal rail (160). The ends of the horizontal and slant rails (160,170) are curved (163, 172) so that weight component of the outer door is generated to assist the outer door to close. When pressure in the medical lock (120) is increased, the outer door (140) of this medical lock (120) becomes self-locking and self-sealing.
Abstract translation: 本发明描述了一种用于人类占用的压力容器(100)的医疗,供应或转移锁(120)。 医疗锁(120)包括与外门凸缘(124)的内表面(125)密封面相关的主体管(122),外门凸缘(124)和外门(140)。 在一个实施例中,外门(124)具有上辊(146a)和下辊(146b)。 上滚筒在水平导轨(160)上运行,而下滚轮运行在倾斜导轨(170)上,倾斜导轨安装在水平导轨(160)的下方。 水平和倾斜导轨(160,170)的端部是弯曲的(163,172),从而产生外门的重量部件以帮助外门关闭。 当医疗锁(120)中的压力增加时,该医用锁(120)的外门(140)变为自锁和自密封。
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公开(公告)号:US09351894B2
公开(公告)日:2016-05-31
申请号:US14027474
申请日:2013-09-16
Applicant: CVAC Systems, Inc.
Inventor: Carl E. Linton
CPC classification number: A61G10/026 , A63B2208/053 , A63B2208/056 , A63B2213/006 , A63B2230/06 , A63B2230/207 , A63B2230/30 , A63B2230/50
Abstract: A method and apparatus for cyclic variations in altitude condition that allows a user to rest in a pressure vessel while undergoing rapid variations or transitions between simulated altitudes. The pressure vessel comprises a blower to generate negative pressure, and a proportional valve to allow air back into the pressure vessel in order to relieve the negative pressure. An on-board interface, kiosk controller and master controller are all in electrical communication with each other in order to enable a user to implement a program of cyclic variations in altitude conditioning that is suitable to the specific user, and enables an operator to bill the user for such services, as well as to allow the user to use a different pressure vessel without re-entering data, so long as such data was originally entered and stored, and the different pressure vessel is in electrical communication with the master controller. A user sensor monitors the user during a session, such that the program may be modified or replaced with another program in real time, according to the user's needs.
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公开(公告)号:US20160059009A1
公开(公告)日:2016-03-03
申请号:US14888264
申请日:2014-03-03
Applicant: VOMARIS INNOVATIONS, INC.
Inventor: Jeffry Skiba , Inder Raj S. Makin
CPC classification number: A61N1/0468 , A61F13/00038 , A61F13/00051 , A61F13/00063 , A61F13/02 , A61F2013/0028 , A61G10/026 , A61M1/0088 , A61M35/00 , A61M2202/0208 , A61N1/0428 , A61N1/0464 , A61N1/0476 , A61N1/0492 , A61N1/205 , A61N1/30 , A61N1/325 , A61N1/326
Abstract: A system for wound treatment includes adjunctive wound therapy devices and substrates comprising multiple first reservoirs and multiple second reservoirs. Selected ones of the multiple first reservoirs include a reducing agent, and first reservoir surfaces of selected ones of the multiple first reservoirs are proximate to a first substrate surface. Selected ones of the multiple second reservoirs include an oxidizing agent, and second reservoir surfaces of selected ones of the multiple second reservoirs are proximate to the first substrate surface.
Abstract translation: 用于伤口治疗的系统包括辅助伤口治疗装置和包括多个第一储存器和多个第二储存器的基底。 所述多个第一储存器中的选定的储存器包括还原剂,并且所述多个第一储存器中的所选多个第一储存器中的第一储存器表面靠近第一基板表面。 多个第二储存器中的选定的储存器包括氧化剂,并且多个第二储存器中选定的多个第二储存器的第二储存器表面靠近第一基板表面。
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公开(公告)号:US20150094646A1
公开(公告)日:2015-04-02
申请号:US14394729
申请日:2013-04-18
Applicant: Inotec AMD Limited
Inventor: Melvin Frederick Vinton
IPC: A61M13/00
CPC classification number: A61M13/003 , A61F13/00068 , A61G10/026 , A61H33/14 , A61M1/0084 , A61M35/00
Abstract: An oxygen distributor (1) positionable, in use, in a wound for supplying oxygen to the wound has an oxygen delivery area (17) for, in use, receiving a supply of oxygen. At least one tube (19A) extends from the oxygen delivery area, having a tube wall with an oxygen-permeable, liquid-impermeable section. Oxygen delivered to the oxygen delivery area can flow away from the oxygen delivery area along the, or each, tube.
Abstract translation: 氧气分布器(1)在使用中可定位在用于向伤口供氧的伤口中,具有用于在使用中接收氧气供应的氧气输送区域(17)。 至少一个管(19A)从氧输送区延伸,具有具有透氧的液体不可渗透部分的管壁。 输送到氧气输送区域的氧气可以沿着管子或每个管道从氧气输送区域流出。
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公开(公告)号:US20150059738A1
公开(公告)日:2015-03-05
申请号:US14476717
申请日:2014-09-03
Applicant: MICROBARIC OXYGEN SYSTEMS, LLC
Inventor: Russell E. Peterson , Michael W. Allen , Glenn Butler
CPC classification number: A61G10/04 , A61B5/08 , A61G10/026 , A61K33/40 , A61M16/0627 , A61M16/101 , A61M16/1065 , A61M16/209 , A61M2202/0208 , A61M2205/18 , A61M2205/3358
Abstract: The present invention provides systems, methods, and apparatus for applying a hyperoxic therapy delivery system to a patient; administering hyperoxic gas to the patient according to an oxygen dose-response model; and adjusting the administration of the hyperoxic gas to the patient based upon monitored parameters related to a condition of the patient. Numerous additional features are disclosed.
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