Peristaltic infusion pump with locking mechanism
10184615 ยท 2019-01-22
Assignee
Inventors
Cpc classification
Y10T137/85978
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/0318
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F17D3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M5/16813
HUMAN NECESSITIES
A61M5/14228
HUMAN NECESSITIES
F04B43/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F17D3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M39/28
HUMAN NECESSITIES
A61M5/168
HUMAN NECESSITIES
Abstract
A medical device includes an interface unit body, which is configured to hold a portion of a flexible infusion tube. A hinge insert is fixed to the interface unit body and is configured to engage a hinge receptacle, which defines a hinge axis, on an infusion pump. A catch insert is fixed to the interface unit body and is configured to lock onto a catch receptacle on the infusion pump upon rotation of the mechanical interface unit about the hinge axis while the hinge insert engages the hinge receptacle, so as to bring the tube into engagement with a peristaltic mechanism of the infusion pump in order to enable the peristaltic mechanism to propel a fluid through the tube.
Claims
1. An infusion system comprising: a removable mechanical interface unit to support in a fixed position a tube through which a fluid flows; a device body comprising a hinge receptacle defining a hinge axis; a catch receptacle configured to receive said mechanical interface unit through which the tube passes; and a peristaltic pump connected to said body and positioned to propel fluid through the tube when the mechanical interface unit is engaged within said receptacle; wherein said mechanical interface unit comprises: an anti-free flow mechanism biased towards a safety default closed state to prevent flow of fluid through the tube when said interface unit is disengaged from said receptacle, and which anti-free flow mechanism is mechanically forced into an opened state by: (a) a key structure functionally associated with said receptacle and which applies a force on said anti-free flow mechanism when said interface unit is engaged, and (b) a manual override structure functionally associated with said anti-free flow mechanism is reconfigured it into a default open state; a hinge insert configured to engage said hinge receptacle; and a catch insert configured to lock onto the catch receptacle upon rotation of the mechanical interface unit about the hinge axis while the hinge insert engages the hinge receptacle, so as to bring the tube into engagement with the peristaltic mechanism.
2. The system of claim 1, further comprising a door configured to prevent axial motion of the tube.
3. The system of claim 1, wherein said key structure is embedded on said catch receptacle.
4. The system of claim 1, wherein said peristaltic pump includes multiple fingers.
5. The system of claim 1, wherein said key is fixed to said body.
6. The system of claim 5, wherein said body encases said catch receptacle and said peristaltic pump.
7. The system of claim 1, further comprising a rim surrounding the peristaltic mechanism.
8. The system of claim 7, further comprising a door, configured to close over the rim so as to enclose the peristaltic mechanism and to prevent unintentional detachment of the mechanical interface unit from the pump body.
9. The system of claim 8, wherein said rim comprises openings shaped to receive the tube so that the tube extends through the openings when said door is closed.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(3)
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DETAILED DESCRIPTION OF EMBODIMENTS
(7)
(8) Tube segments 26 and 28 are connected to a mechanical interface unit 32, which couples to pump 32 in a manner that is shown and explained below in greater detail. Unit 32 contains a tube portion (not shown in
(9) As shown in detail in the figures that follow, mechanical interface unit 32 couples with pump 22 so as to bring the tube into engagement with the peristaltic mechanism of the pump. Typically, unit 32 is supplied as a pre-assembled, disposable kit, along with tube segments 26 and 28. Unit 32 is constructed so as to enable an operator 34 to connect the unit to pump 22 stably and reliably by fitting the unit against the pump and snapping it into place with only light pressure. Because the connection between unit 32 and pump 22 is self-aligning, operators are able to perform this operation with a single hand, after only minimal training. After use, unit 32 may be snapped off pump 22 and discarded together with the tube.
(10) Reference is now made to
(11) Mechanical interface unit 32 comprises a body 38, which hold a portion 58 of the flexible infusion tube. In the embodiment shown in the figures, portion 58 of the tube is connected to segments 26 and 28 by connectors 48 and 50, respectively. Body 38 has an elongated shape, corresponding to the linear configuration of mechanism 36. Mechanism 36 comprises multiple fingers 56, which move up and down to compress and release tube portion 58 in a predetermined cyclic pattern, so as to propel fluid downstream from tube segment 26 to tube segment 28. Details of the operation of this sort of multi-finger peristaltic mechanism are described in the above-mentioned U.S. patent application Ser. No. 11/791,599 and in PCT Patent Applications PCT/IL2007/001398 and PCT/IL2007/001400, filed Nov. 13, 2007, whose disclosures are incorporated herein by reference.
(12) Unit 32 comprises a hinge insert 40 at one end of body 38 (in this case, the downstream end) and a catch insert 44 at the other (upstream) end. To assemble unit onto pump 22, the operator first brings hinge insert into engagement with a hinge receptacle 42 on a body 43 of the pump. In this position, unit 32 is aligned in a plane of peristaltic mechanism 36 (i.e., the plane of the page in
(13) The rotational mode of assembly described above is advantageous in that it ensures accurate alignment of tube portion 58 with mechanism 36, even in one-handed operation. Consequently, good flow accuracy is achieved without the need for very careful insertion of the tube into the pump. The inventors have found that the combination of this sort of mechanical interface unit with the type of peristaltic pump described in the above-mentioned patent applications gives better than 2.5% accuracy in flow control over long periods of time.
(14) The position of hinge receptacle 42 may be pre-adjusted so that interface unit 32, when engaged and locked onto pump 22, is properly located relative to fingers 56. For example, the hinge receptacle may be connected to pump body 43 by a single screw (not shown), which permits the receptacle to be moved and then tightened in place in a factory calibration procedure. Because the hinge receptacle is located on the downstream side of mechanism 36, this sort of calibration can be used to find the optimal balance between pressure buildup and energy consumption for propelling fluid at high pressure.
(15) Furthermore, this mode of assembly gives the operator a mechanical advantage in closing the catch insert against the catch receptacle, so that relatively little force is needed to make a secure connection. In a clinical version of system 20, the inventor has found that less than 2 kg of force, typically about 1.2 kg, is sufficient for this purpose.
(16) Another advantage of mechanical interface unit 32 and the mating structure on pump 22 is that they ensure that the tube will be assembled onto the pump in the proper direction: Because one type of mating connector is used at the upstream end of unit 32, and a different type of mating connector is used at the downstream end, it is impossible for the operator to accidentally attach the tube in the reverse direction.
(17) In the embodiment pictured in the figures, hinge receptacle 42 has the form of a split axle, while hinge insert 40 has the form of a split saddle. At the other end of unit 32, catch insert 44 has the form of a split tooth, while catch receptacle 46 comprises a dual, concave catch. Tube portion 58 thus passes through the opening between the sides of insert 40, receptacle 42, insert 44 and receptacle 46. This particular configuration of the hinge and catch parts of pump 22 and unit 32 has been found to provide mechanical stability, durability and ease of assembly.
(18) On the other hand, other configurations of the hinge and catch parts are also possible, as will be apparent to those skilled in the art, and are considered to be within the scope of the present invention. For example, the male and female elements on the interface unit and pump body may be reversed, so that the hinge and catch inserts on the interface unit have the form of an axle and elastic catch, while the hinge and catch receptacles on the pump have the form of a saddle and tooth. Other suitable hinge and catch arrangements are described in the above-mentioned U.S. patent application Ser. No. 11/791,599.
(19) After assembly of interface unit 32 onto pump 22, a cover 54 may be closed against a rim 52 over the unit for added security. A locking mechanism 55 on the cover prevents accidental opening. Pump 22 may comprise a sensor (not shown) for detecting whether cover 54 is closed, such as a magnetic sensor, which detects the proximity of a magnet 57 attached to the cover. Until the operator is ready to close the cover, however, spring-loaded hinges 59 hold the cover open so that it does not interfere with handling of the interface unit.
(20) Interface unit 32 also comprises an anti-free-flow mechanism 60, which closes off tube portion 58 until the interface unit has been securely connected to pump 22, in order to prevent uncontrolled flow of infusion fluid into the patient's body. Mechanism 60 may be opened manually if necessary, and opens automatically when the interface unit is mounted on the pump. A key 61 on the pump body (
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(22) Reference is now made to
(23) Although the embodiment shown in the figures uses a particular type of linear finger-based mechanism, the principles of the present invention may similarly be applied to peristaltic pumps using other types of mechanisms, including cam-based mechanisms, as well as circular mechanisms. It will thus be appreciated that the embodiments described above are cited by way of example, and that the present invention is not limited to what has been particularly shown and described hereinabove. Rather, the scope of the present invention includes both combinations and subcombinations of the various features described hereinabove, as well as variations and modifications thereof which would occur to persons skilled in the art upon reading the foregoing description and which are not disclosed in the prior art.