The present invention relates to the field of medical technology. More particularly it relates to devices for pleural drainage used to aiding a collapsed lung after injury or surgery to recuperate by draining pleural cavity of excess fluid and air resulting from air leakage from injured lung and from fluid leaving the tissues in question. It also relates to a check valve for such a drainage device.
A device for draining fluid and air from a patient's pleural cavity is known from e.g. WO04110523. Such devices apply a suction pressure in the patients pleural cavity via a tube from the patient's pleural cavity to the draining device. By the draining fluid and applying a pressure healing is improved. An objective of the present invention is to further improve the healing when using a drainage device by modifying the device.
The inventors have investigated the healing process and found that some patients at some point in time during their recovery may heal faster if active suction is replaced with what is referred to in the field as a “water seal”. The inventors have further investigated what the problem actually is and thereafter developed a solution.
According to a first aspect the invention provides a drainage device useable for treating patients with a pulmonary air leak, said device comprising
According to a second aspect is provided a drainage device further provided with suction mode control means, where the pressure sensor is connected to the suction mode control means for supplying a pressure signal representative of the pressure in the collection chamber, and in that the air flow sensor is connected to the suction mode control means to supply a flow signal representative of the flow of air evacuated from the collection chamber, and in that the suction mode control means is arranged to switch between a first suction mode and a second suction mode based on an algorithm involving said flow signal and said pressure signal.
The suction mode control means may comprise a processor and a motor for controlling a three way valve.
The three way valve may be configured to switch between a position where the collection chamber is connected to atmospheric air, and a position where the collection chamber s connected to a suction pressure source.
A special ball valve may be controlled by the suction pressure controlled by the three way valve.
According to a further aspect is provided a method for a drainage device, the method comprising the following steps:
According to still a further aspect is provided a method for a drainage device, the method comprising the following steps:
According to a last aspect of the invention is provided a special ball valve comprising a ball located and moveable between a first tube end and a second tube end, the tube ends are arranged to debouch in a common cavity, and also being arranged substantially opposite each other, and being provided with seats such that when a suction pressure is applied to one of the tubes the ball make contact to a seat and seals off that tube and leaves the other tube open to the cavity. The cavity may be provided with a further opening.
It should be emphasized that the term “comprises/comprising” when used in this specification is taken to specify the presence of stated features, integers, steps or components but does not preclude the presence or addition of one or more other features, elements, integers, steps, components or groups thereof.
Features that are described and/or illustrated with respect to one embodiment may be used in the same way or in a similar way in one or more other embodiments and/or in combination with or instead of the features of the other embodiments.
The invention is described below with the aid of the following drawings in which:
a shows a front cross sectional view of a check valve mechanism for switching between applying a suction pressure and applying a no pressure at all. The mechanism is in a mode of applying suction pressure.
b shows the check valve mechanism of
c shows in a side view the mechanism of
a shows a schematic diagram of a pleural drainage device making use of the mechanism of
b and 2c shows a detail of a special ball valve.
d shows a drainage device similar to the one of
a shows a front cross sectional view of a check valve mechanism 100 for switching between applying a suction pressure and applying a no pressure at all. The mechanism is shown in a mode of applying suction pressure. The mechanism 100 comprises a first connection 105 for connection the mechanism 100 to a suction pressure source. Suction pressure is conveyed via channel opening 143 to a three way valve 125. Direction of flow of air is indicated by arrow 130. Three way valve 125 connects suction pressure to opening 128 or to ball valve upper opening 115 which is provided with a seat 120 being able cooperate with a ball 101 to seal off the ball valve upper opening 115 and, when doing this, open a ball valve lower opening 110 by sucking the ball towards the upper opening 115, as can be seen in figure lb. The upper opening 115 and the lower opening 110 are preferably arranged opposite each other on a common axis 140. A common cavity 107 is in this way connected to either suction pressure from a suction pressure source or to a ball valve cavity 109, which in tum is connected to open air. The ball is preferably manufactured in a material having suitable density for being able to be maneuvered by suction pressure in spite of simultaneously being affected by gravity. This material could be massive or hollow plastic.
b shows the check valve mechanism of
c shows in a side view the mechanism of
a shows a schematic diagram of a pleural drainage device 200 making use of the mechanism of
The drainage device is preferably provided with a special ball valve 270. An advantage of providing a special ball valve is that the pressure a patients breathing musculature has to create to overcome flow resistance of the drainage device when the drainage device is in a “passive mode”, i.e., the collection chamber is connected to the atmosphere, becomes lower than otherwise.
Referring to
d shows a drainage device very similar to the one of
In still a further embodiment (not shown) the motor may be omitted for reducing production costs. Medical staff can rotate three-way valve manually if it is provided with suitable handle, instructed so by the indicator. Such omitting can be applied both to the devices of
However, it is foreseen to be more advantageous if switching is performed automatically as described above, without delay.
In another embodiment is provided a method for indication on an indicator that it is a suitable point in time to manually switch suction mode on a drainage device with a manually operated three way valve, the method comprising the following steps:
It should be understood that indication of if it is suitable to switch from active to passive suction mode, or vice versa, could be achieved by any suitable device connectable to a processor, e.g., a display or a buzzer or other light or sound generating organ.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/SE2007/050483 | 6/29/2007 | WO | 00 | 12/11/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2009/005424 | 1/8/2009 | WO | A |
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Entry |
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Cerfolio, R.J., et al., “Prospective Randomized Trial Compares Suction Versus Water Seal for Air Leaks”, Ann Thorac Surg, 2001, 71:1613-1617. |
Number | Date | Country | |
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20100174270 A1 | Jul 2010 | US |