Body cavity fluid sampling device
The body cavity fluid collection device addresses the challenge of determining collection completion by introducing air into the drip tube to adjust the liquid level, enabling precise monitoring and completion confirmation.
Patent Information
- Application Number
- JP2021069145
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-04-15
- Publication Date
- 2025-08-20
- Estimated Expiration
- 2041-04-15
AI Technical Summary
Existing body cavity fluid collection devices face challenges in determining the completion of fluid collection due to the inability to visually confirm the remaining amount of fluid, as movement of the collection bag or patient position can cause the drip tube to fill with fluid, making it difficult to monitor the drip status.
The device incorporates an air inlet in the drip tube to introduce air, allowing the liquid level to be adjusted and visually confirmed, ensuring accurate determination of collection completion.
Enables easy restoration of the liquid level in the drip tube, facilitating precise monitoring of collection pace and completion by visually checking the storage bag volume or replacing it, thus ensuring complete fluid collection.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a body cavity fluid collecting device used to collect body cavity fluid accumulated in the abdominal cavity or pleural cavity from a patient. [Background technology]
[0002] In patients with liver cirrhosis and peritonitis carcinomatosis, fluid leaks from blood vessels, causing ascites to accumulate in the abdominal cavity. When a large amount of ascites accumulates, it puts pressure on the surrounding organs, causing problems such as loss of appetite, decreased kidney function, and respiratory distress. Ascites contains plasma components that have leaked from the blood, including useful proteins such as albumin and globulin.
[0003] In recent years, a treatment called Cell-Free and Concentrated Ascites Reinfusion Therapy (CART) has been proposed, in which ascites fluid extracted from a patient is filtered and concentrated, and the useful components are returned to the patient (see, for example, Patent Document 1). More specifically, in CART, ascites fluid extracted from a patient is stored in a storage bag, and this storage bag is connected to a CART circuit that includes a filter and a concentrator. As the ascites fluid in the storage bag passes through the filter and concentrator, bacteria, cancer cells, and the like are removed, and useful components such as albumin are concentrated. The treated ascites fluid is returned to the patient via intravenous drip or other means. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Publication No. 2019-134984 Summary of the Invention [Problem to be solved by the invention]
[0005] When initially collecting body cavity fluids, such as ascites, from a patient using CART, a collection bag is connected to the outer end of the catheter, which extends from the patient's body cavity to the outside of the body, via a collection device consisting of a tube and a drip tube. The collection bag is then positioned vertically below the patient, allowing gravity to collect the patient's body cavity fluid into the collection bag. When administering fluid to the patient, the completion of the procedure can be determined by visually checking the amount of fluid in the electrolyte bag. However, when collecting body cavity fluids, the remaining amount of fluid in the body cannot be visually confirmed. Therefore, the completion of collection must be determined by monitoring the drip rate of the body cavity fluid in the drip tube.
[0006] However, if the patient changes position or the storage bag position changes during collection of body cavity fluid, the drip tube may become filled with body cavity fluid. For example, unlike known transfusion circuits, when collecting body cavity fluid, the collection storage bag is placed below the patient lying in bed. The storage bag must then be lifted to check the volume of body cavity fluid or to replace it with a new bag during collection. This presents a unique problem: movement of parts of the circuit other than the drip tube can cause the fluid level to rise, filling the drip tube with body cavity fluid. This makes it impossible to monitor the drip status of the body cavity fluid and determine when collection is complete.
[0007] Therefore, an object of the present disclosure is to solve the above-mentioned problems specific to body cavity fluid collection devices. [Means for solving the problem]
[0008] The body cavity fluid collection device according to the present disclosure is a body cavity fluid collection device for collecting body cavity fluid from the abdominal cavity or thoracic cavity of a patient, and comprises: a collection tube whose upstream end is connected to a catheter extending from the patient; an inlet to which the downstream end of the collection tube is connected; a storage space for temporarily storing body cavity fluid that has flowed in from the inlet; and a drip tube having a delivery outlet for discharging the body cavity fluid stored in the storage space, and the collection tube or the drip tube is provided with an air inlet for introducing air into the storage space.
[0009] As a result, even if the amount of body cavity fluid in the drip tube becomes large, the amount of body cavity fluid in the drip tube can be reduced by introducing air into the storage space through the air inlet, so the liquid level in the drip tube can be easily restored and the position of the liquid level can be easily adjusted.
[0010] An air inlet tube for passing air may be connected to the air inlet port, and the air inlet tube may be provided with an opening / closing device or a hydrophobic filter for restricting the flow of body cavity fluid.
[0011] This allows air to be introduced into the drip tube while preventing leakage of body cavity fluid from the body cavity fluid collection device.
[0012] The air introduction tube may be provided with a connector for connecting to a syringe or a pump.
[0013] This allows a syringe or pump to be easily connected to the body cavity fluid collection device, and air can be introduced into the drip tube using these. [Effects of the Invention]
[0014] According to the body cavity fluid collection device of the present disclosure, even if the drip tube is filled with body cavity fluid and the liquid level is lost, the liquid level in the drip tube can be easily restored and the liquid level can be easily adjusted by checking the content volume of the storage bag below the patient or replacing the bag during collection of body fluid, making it possible to realize a body cavity fluid collection device. [Brief explanation of the drawings]
[0015] [Figure 1] FIG. 1 is a schematic diagram of a CART circuit that processes body cavity fluid collected by a body cavity fluid collecting device according to the first embodiment. [Figure 2] FIG. 2 is a diagram showing a schematic diagram of the collection process. [Figure 3] FIG. 3 is a diagram showing a body cavity fluid collection device. [Figure 4] FIG. 4 is an enlarged cross-sectional view of a portion of the body cavity fluid collecting device of FIG. [Figure 5] FIG. 5 is a diagram showing the configuration of a body cavity fluid collecting device according to the second embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0016] (Embodiment 1) First, a CART circuit will be described as an example of a body cavity fluid processing circuit for processing body cavity fluid collected using a body cavity fluid collecting device according to the present invention.
[0017] [CART circuit] FIG. 1 is a schematic diagram of a CART circuit for treating ascites, which is body cavity fluid collected using a body cavity fluid collection device according to an embodiment of the present disclosure. As shown in FIG. 1, this CART circuit 10 includes a flexible tubing line through which ascites flows, extending from a body cavity fluid storage bag 1, through a filter 2 and a concentrator 3, to a collection bag 4. Specifically, a line L1 for carrying ascites extends from the body cavity fluid storage bag 1, which is suspended from a hanging bracket F attached to the top of a stand or the like, to the bottom of the filter 2, via a first pump P1. A line extending from a bag 5 containing physiological saline joins this line L1, between the body cavity fluid storage bag 1 and the first pump P1. A line extending from a pressure gauge 6, which measures the pressure of the ascites flowing through line L1, joins this line L1, between the first pump P1 and the filter 2.
[0018] A line L2, through which ascites fluid from which foreign matter has been removed by the filter 2 flows, extends from the side of the filter 2 via the second pump P2 to the bottom of the concentrator 3. A line L3, through which ascites fluid that has been dehydrated and concentrated by the concentrator 3 flows, extends from the top of the concentrator 3 to the inlet port of the collection bag 4. A line L4, which circulates the concentrated ascites fluid to further concentrate it, extends from the outlet port of the collection bag 4, and this line L4 merges with the line L2 between the filter 2 and the second pump P2.
[0019] Meanwhile, a line L5 extends from the top of the filter 2 for appropriately discharging foreign matter removed from the ascites by the filter 2. Furthermore, a line L6 extends from the side of the concentrator 3 for appropriately discharging water removed from the ascites by the concentrator 3.
[0020] In the case of this CART circuit 10, ascites collected from a patient and stored in a body cavity fluid storage bag 1 has unnecessary components removed by a filter 2 and is concentrated to an appropriate concentration by a concentrator 3, becoming filtered and concentrated ascites, which is then collected in a collection bag 4. The filtered and concentrated ascites thus produced is returned to the patient via intravenous drip injection.
[0021] [Body cavity fluid sampling device] Next, we will explain the body cavity fluid collection device used to collect body cavity fluid from a patient to be treated in the CART circuit 10 as described above. Figure 2 is a diagram schematically illustrating the collection process. As shown in Figure 2, body cavity fluid collection device 30 has a collection tube 31, a drip tube 32, an air introduction tube 33, and a delivery tube 34. This body cavity fluid collection device 30 is interposed between patient 20 and storage bag 1, and guides body cavity fluid in the abdominal cavity or thoracic cavity of patient 20 into storage bag 1.
[0022] More specifically, one end 21a of catheter 21 is placed in the abdominal cavity or thoracic cavity of the patient. The upstream end 31a of collection tube 31 is connected to the other end 21b of catheter 21 via connector 40. A drip tube 32 is connected to the downstream end 31b of collection tube 31, and the upstream end 34a of delivery tube 34 is also connected to drip tube 32. Furthermore, the inlet tube 12 of storage bag 1 is connected to the downstream end 34b of delivery tube 34 via connector 41. As a result, the patient's body cavity fluid is guided into storage bag 1 through catheter 21 and body cavity fluid collection device 30. Note that catheter 21 may be a plastic needle or a metal needle.
[0023] The storage bag 1 has a transparent and flexible bag body 11, as well as an inlet tube 12, an injection tube 13, and an outlet tube 14 that communicate between the inside and outside of the bag body 11. The inlet tube 12 is a port that introduces body cavity fluid into the bag body 11 when the body cavity fluid is collected, the injection tube 13 is a port that injects a medicinal solution into the body cavity fluid collected in the bag body 11, and the outlet tube 14 is a port that discharges the body cavity fluid from the bag body 11 during CART processing.
[0024] Next, the body cavity fluid collection device 30 will be described in more detail. Fig. 3 is a diagram showing the body cavity fluid collection device 30, and Fig. 4 is an enlarged cross-sectional view of a portion of the body cavity fluid collection device 30 of Fig. 3. As shown in Fig. 3, the collection tube 31 is a long tube made of a transparent and flexible synthetic resin. A connector 40 is attached to the upstream end 31a of the collection tube 31, and is connectable to the end 21b of the catheter 21. A roller clamp 42 is attached midway along the collection tube 31 as a flow rate regulator for the body cavity fluid. Note that a clamp other than the roller clamp 42 may be attached as a flow rate regulator.
[0025] The drip tube 32 is roughly cylindrical and includes a cylindrical body 50, an upstream cap 51 that closes one end of the cylindrical body 50, and a downstream cap 52 that closes the other end of the cylindrical body 50. Of these, the cylindrical body 50 is made of a relatively hard synthetic resin that has transparency and is cylindrical in shape.
[0026] As shown in Figure 4, the upstream cap 51 is generally cylindrical, and is provided with a first connector 60 and a second connector 61 at one axial end (the upstream side in the direction of collection of body cavity fluid). Of these, the first connector 60 is connected to the collection tube 31. For this purpose, the first connector 60 is cylindrical and has an inner diameter approximately the same as the outer diameter of the collection tube 31. The opening of the first connector 60 forms an inlet 62 to which the downstream end 31b of the collection tube 31 is connected. The open end of the inlet 62 on the cylindrical body 50 side forms an opening surface 62a that is inclined with respect to the axial direction of the inlet 62.
[0027] The air inlet tube 33 is connected to the second connecting part 61. For this purpose, the second connecting part 61 is cylindrical with an inner diameter that is approximately the same as the outer diameter of the air inlet tube 33. The opening of the second connecting part 61 forms an air inlet port 63 to which the downstream end 33b of the air inlet tube 33 is connected. The open end of the air inlet port 63 on the cylindrical body 50 side forms an opening surface 63a that is approximately perpendicular to the axial direction of the air inlet port 63.
[0028] The other axial end of upstream cap 51 forms an outer fitting portion 65 that fits onto one end of cylindrical body 50. That is, outer fitting portion 65 has an inner diameter that is approximately the same as the outer diameter of one end of cylindrical body 50, and the two are connected by being fitted onto one end of cylindrical body 50.
[0029] The downstream cap 52 that closes the other end of the cylindrical body 50 has a cone-like cylindrical shape with a diameter that is smaller at one end than at the other end. The portion at one end of the downstream cap 52 forms an outer fitting portion 66 that fits onto the other end of the cylindrical body 50. That is, the inner diameter of the outer fitting portion 66 is approximately the same as the outer diameter of the other end of the cylindrical body 50, and the two are connected by being fitted onto the other end of the cylindrical body 50.
[0030] A third connector 67 is provided at the other end of the downstream cap 52. The delivery tube 34 is connected to this third connector 67. For this purpose, the third connector 67 is cylindrical with an inner diameter approximately equal to the outer diameter of the delivery tube 34. The opening of the third connector 67 forms a delivery port 68 to which the upstream end 34a of the delivery tube 34 is connected. The downstream cap 52 has a portion between the outer fitting portion 66 at one end and the third connector 67 at the other end forming a tapered portion 69 in which both the outer diameter and the inner diameter are gradually reduced. When the upstream cap 51 is fitted onto one end of the cylindrical body 50 and the downstream cap 52 is fitted onto the other end as described above, the internal space forms a storage space 50a in which body cavity fluid is temporarily stored in the drip tube 32.
[0031] Meanwhile, the air inlet tube 33, whose downstream end 33b is connected to the second connecting portion 61 of the upstream cap 51, is a long tube made of a transparent and flexible synthetic resin. A connector 43 is provided at the upstream end 33a of this air inlet tube 33, and the air inlet tube 33 can be connected to an air syringe, an air pump, or the like via the connector 43. A tube clamp 44, which is an open / close device, is attached midway along the air inlet tube 33 as an air flow rate regulator. Note that a clamp other than the tube clamp 44 may also be attached as a flow rate regulator.
[0032] [How to use body cavity fluid sampling device] The method of using the body cavity fluid collection device described above will now be described. First, the delivery tube 34 of the body cavity fluid collection device 30 is connected to the inlet tube 12 of the empty storage bag 1 via the connector 41. Next, with the roller clamp 42 and tube clamp 44 closed, the collection tube 31 of the body cavity fluid collection device 30 is connected to the end 21b of the catheter 21 extending from the patient's abdominal or thoracic cavity via the connector 40. Then, the body cavity fluid collection device 30 and the storage bag 1 are placed vertically below the patient. In this state, the roller of the roller clamp 42 is operated to adjust the opening of the collection tube 31, thereby starting the collection of body cavity fluid.
[0033] During collection of body cavity fluid, the collection pace and timing of completion of the collection process are determined based on the body cavity fluid dripping through the collection tube 31 into the storage space 50a of the drip tube 32. However, if the patient changes their posture or the position of the body cavity fluid collection device 30 or the storage bag 1 shifts during collection of body cavity fluid, the storage space 50a of the drip tube 32 may become filled with body cavity fluid. This makes it difficult to determine the collection pace and timing of completion.
[0034] Therefore, in the body cavity fluid collection device 30 according to this embodiment, if the storage space 50a becomes filled with body cavity fluid, the tube clamp 44 is opened and air is introduced into the drip tube 32 via the air introduction tube 33. Air can be introduced, for example, by a syringe or air pump connected to the upstream end 33a of the air introduction tube 33. By introducing an appropriate amount of air into the drip tube 32 in this way, the level of the body cavity fluid in the storage space 50a can be lowered, and the dripping status of the body cavity fluid from the collection tube 31 can be visually confirmed again. As a result, the collection pace and completion timing can be grasped.
[0035] In the above explanation, an example was described in which a clamp such as the tube clamp 44 was provided midway along the air inlet tube 33, but instead of a clamp, a known hydrophobic filter may be provided at the upstream end 33a of the air inlet tube 33. Alternatively, a clamp and a hydrophobic filter may be provided side by side on the air inlet tube 33, which makes it possible to prevent body cavity fluid from leaking through the air inlet tube 33 even if the clamp is forgotten to be closed (or if it is unintentionally not closed completely).
[0036] (Embodiment 2) 5 is a diagram showing another configuration of the body cavity fluid collection device. This body cavity fluid collection device 30A differs from the body cavity fluid collection device 30 of the first embodiment in that the air introduction tube 33 is connected to the middle of the collection tube 31, rather than to the drip tube 32. However, the other configurations are essentially the same. Therefore, the following will specifically explain these differences, and the same symbols will be used to designate components common to both embodiments, and detailed explanations thereof will be omitted.
[0037] As shown in Figure 5, in the drip tube 32A of this body cavity fluid collection device 30A, the upstream cap 51A has only the first connecting part 60, and does not have the second connecting part 61 as in the first embodiment. Therefore, only the collection tube 31A is connected to the upstream cap 51A. Of course, in the drip tube 32A, there is no restriction on using an upstream cap 51 with the second connecting part 61 closed instead of the upstream cap 51A.
[0038] On the other hand, collection tube 31A has upstream tube 311 and downstream tube 312, and both tubes 311, 312 are connected by three-way branch joint 313. That is, for example, of the three joint parts 313a to 313c of T-shaped three-way branch joint 313, the downstream end of upstream tube 311 and the upstream end of downstream tube 312 are connected to two joint parts 313a, 313b that are aligned in a straight line. Note that roller clamp 42 is provided midway along upstream tube 311.
[0039] The downstream end 33b of the air inlet tube 33 is connected to the remaining joint portion 313c of the three-way branch joint 313. A tube clamp 44 is provided midway along this air inlet tube 33, as in the first embodiment. That is, in the body cavity fluid collection device 30A according to this embodiment, air introduced from the air inlet tube 33 is sent to the storage space 50a of the drip tube 32A through the collection tube 31A (downstream tube 312). Therefore, an air inlet port is provided midway along the collection tube 31A. Note that the tube clamp 44 may be another clamp, and a hydrophobic filter may be provided instead of or together with the clamp, as in the first embodiment.
[0040] The method of use of the body cavity fluid collection device 30A according to this second embodiment is the same as that described for the first embodiment. Therefore, if the patient changes their posture or the position of the body cavity fluid collection device 30 or the collection bag 1 shifts, causing the collection space 50a to fill with body cavity fluid, the level of the body cavity fluid in the collection space 50a can be lowered by introducing air into the drip tube 32A via the air inlet tube 33, allowing the dripping status of the body cavity fluid from the collection tube 31A to be visually confirmed again. As a result, the collection pace and completion timing can be grasped. [Industrial Applicability]
[0041] The present invention can be suitably applied to a body cavity fluid collecting device used to collect body cavity fluid accumulated in the abdominal cavity or thoracic cavity from a patient. [Explanation of symbols]
[0042] 30,30A Body cavity fluid collection device 31,31A Collection tube 32,32A drip tube 33 Air intake tube 34 Delivery tube 43 Connector 44 Tube clamp (opening and closing device) 62 Inlet 63 Air inlet 68 Outlet
Claims
1. A body cavity fluid collection device that is placed vertically below a patient lying on a bed and that collects body cavity fluid from the patient's abdominal cavity or thoracic cavity and stores the fluid in a collection bag, a collection tube having an upstream end connected to a catheter extending from the patient; a drip tube having an inlet to which the downstream end of the collection tube is connected, a storage space for temporarily storing the body cavity fluid that has flowed in from the inlet, and a delivery outlet for delivering the body cavity fluid stored in the storage space to the storage bag; The collection tube or the drip tube is provided with an air inlet for introducing air into the storage space and a connector for connecting to a syringe or a pump, The air introduced from the syringe or the pump is introduced into the storage space through the air inlet, thereby adjusting the liquid level of the body cavity fluid. Body cavity fluid collection device.
2. An air inlet tube through which air passes is connected to the air inlet port, and the air inlet tube is provided with an opening / closing device or a hydrophobic filter that restricts the flow of body cavity fluid. The body cavity fluid collection device according to claim 1 .
3. The air introduction tube is provided with the connector for connecting to the syringe or the pump. The body cavity fluid collection device according to claim 2 .
Citation Information
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