IL53134A

Apparatus for controlling intravenous administration of fluid to a patient

Abstract

This record has no abstract on file.

IL53134A, drawing sheet 1
Sheet 1 of 6

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

67 claims: 9 independent, 58 dependent

  1. 1
    A method of controlling the dispensing of a desired dose of fluid from a source of fluid providing a hydrostatic pressure for intravenous administration during a determined time period, which comprises the steps of:(a) determining the size of each of a number of predetermined volumetric increments of fluid to be dispensed;(b) determining desired time intervals for dispensing of each predetermined volumetric increment so that the number of volumetric increments required to comprise the desired dosage can be dispensed in the determined time period;( C ) *sequentially filling and draining a metering chamber having irovable means in the metering chamber for varying the fluid capacity of the metering chamber in response to fluid being received and drained from the metering chamber without air passing through the metering chamber, the metering chamber being filled and drained with each one of the predetermined volumetric increments of fluid without adding substantial pressure to the hydrostatic pressure during different ones of the time intervals until the desired dosage has been dispensed;and (d) controlling the filling and draining of the metering chamber by a control unit separate from the metering chamber and out of contact with the fluid passing through the metering chamber.
  2. 2
    A method according to Claim 1 for controlling the rate of dispensing of a desired dose of a fluid from a source of fluid providing a hydrostatic pressure for intravenous administration during a predetermined time period, which comprises the steps of:(a) providing a metering chamber of predetermined volume having movable means in the receptacle for varying fluid capacity of the receptacle in response to fluid received frcm the source of fluid in a predetermined increment determined by the receptacle corresponding to the predetermined volume, the fluid being filled and drained from the receptacle without adding substantial pressure to the hydrostatic pressure and without air passing through the chamber. (b) providing desired time intervals for dispensing of each of .the predetermined volumetric increments frem.the chamber;(c) sequentially filling and draining the chamber with each one of the predetermined volumetric increments frem the source of fluid during different ones of the time intervals;and (d) controlling the filling and draining of the chamber by a control .unit separate from the chamber and out of contact with the fluid passing through it.
  3. 3
    The method of Claim 2 in which the filling of the chamber with fluid in step (c) is by gravity flow from the source.
  4. 4
    The method of Claim 3 in which the filling of the chamber and the draining thereof during each of the time intervals is performed by filling the chamber during a time period within each of the time intervals which is less than a time period within each of the time intervals provided for draining the chamber of fluid.
  5. 5
    The method of Claim 3 in which the filling and draining of the ' predetermined volumetric increments in step (c) is performed by supplying a predetermined .number of volumetric increments, which form a desired dose of fluid from the source of fluid, at above a predetermined hydrostatic pressure that is sufficient to charge the chamber to the predetermined volumetric increment and supplying the remainder of fluid from the source of fluid at below the predetermined hydrostatic pressure so that the chamber is charged with fluid to a reduced volumetric increment during each of the tirre intervals, whereby a reduction of the rate of administration of the fluid is provided after the desired dose has been administered from the source of fluid.
  6. 6
    A method according to Claim 1 which comprises the steps of:(a) measuring the fluid from the source into predetermined volumetric increments for dispensing the fluid;(b) providing sequentially, first time intervals for measuring and second time intervals for dispensing of each one of the predetermined volumetric increnents of fluid;(c) repetitively filling and draining the metering chamber having a fluid capacity of predetermined volumetric increments and having movable means in the metering chamber for varying the fluid capacity of the metering chamber in response to fluid being received and drained from the metering chamber without air passing through the metering chamber, the metering chamber being filled and drained with each of the ones of the predetermined volumetiic increments of fluid without adding substantial pressure to the hydrostatic pressure during different ones of the first and second time intervals to administer the desired dose of fluid;and (d) controlling the filling and draining of the netering chamber by a control unit separate from the metering chamber and out of contact with the fluid passing through the metering chamber.
  7. 7
    The method of Claim 6 in which the second time intervals is variable in length, to change the rate of administration of the desired dose.
  8. 8
    A disposable metering unit for use in controlling the intravenous administration of fluid to a patient by the method of any of Claims 1-7, comprising:(a) a metering chamber for receiving a predetermined increment of fluid from a source of fluid at a hydrostatic pressure and for emptying the predetermined increment of fluid without adding substantial pressure to the hydrostatic pressure;(b) conduit means for delivering fluid from the source of fluid having a supply of predetermined increments of fluid to the metering chamber;and (c) valve means actuatable for regulating the receiving and emptying of each of the predetermined increments of fluid by the metering chamber to be administered to the patient at a predetermined rate of administration.
  9. 9
    The metering unit of Claim 8 in which the valve means is actuatable between a first condition for having the metering chamber receive one predetermined increment of fluid and a second condition for having the netering chamber empty the one predetermined increment of fluid.
  10. 10
    The metering unit of Claim 8 in which the metering chamber has a fluid capacity which determines the size of each of the predetermined increments of fluid.
  11. 11
    The metering unit of Claim 8 in which the unit includes a rigid body portion and a cover portion with a cavity formed in the unit to provide the metering chamber, the size of the cavity determining the capacity for the predetermined increments of fluid. r 53134/2
  12. 12
    . The metering unit of Claim 8 in which the unit has a rigid body with a cavity therein forming at least part of the metering chamber, the unit further including a movable wall member in the metering chamber for varying the size of the metering chamber in response to receiving and emptying fluid.
  13. 13
    The metering unit of Claim 12 in which the movable wall member is resilient to conform to the shape of the cavity.
  14. 14
    The metering unit of Claim 8 in which the unit has a rigid body with, a cavity, therein forming at least part of the metering chamber, and the valve means includes a resilient element movable between a position to open the valve means and a position to close the valve.means by cooperating with the metering unit body. 15 ־ The metering unit of Claim 8 in which the valve means includes an inlet valve connected with one part of the metering chamber and an outlet.valve connected with another part of the metering chamber.
  15. 15
    16. The metering unit of Claim 15 in which the inlet valve includes a resilient element movable between a position in which the inlet valve is open and a position in which the inlet valve is closed.
  16. 16
    17. The metering unit of Claim 15 in which the outlet valve includes , a., resilient element movable between a position in which the outlet valve is open and a position in which the outlet valve is closed.
  17. 17
    18. The metering unit of Claim 15 in which the metering chamber includes a resilient diaphragm providing a movable wall for varying the size of. the metering chamber in response to fluid being received by the .metering chamber and errptied from the metering chamber.
  18. 18
    19. The metering unit of Claim 15 wherein an integral resilient rrember forms part of the inlet valve, the outlet valve and the metering chamber;the resilient member portion of the inlet valve being movable between a position in which the inlet valve is open and a position in which the inlet valve is closed;the resilient member portion of the outlet valve being movable between a position in which the outlet valve is open and, a position in which the outlet valve is closed;and the resilient number portion of the metering chamber providing a movable wall for varying the size of the metering chamber in response to fluid being received by the metering chamber and emptied, from the metering chamber.
  19. 19
    20. The metering unit of Claim 15 in which the inlet valve and outlet valve are actuated by control means which cooperate with each of the valves without contacting the fluid received and emptied by the metering unit.
  20. 20
    21. The metering unit of Claim 8 in which the unit includes a rigid body portion and a cover portion with an arcuate-shaped cavity formed in the body portion and a communicating arcuate-shaped cavity formed in the cover portion to provide the metering chamber.
  21. 21
    22. The metering unit of any of Claims 18, 19 and 21 in which the resilient diaphragm extends through the metering chamber and is held between the body portion and cover portion, the diaphragm providing a movable wall for varying the size of the metering chamber in response to fluid being received by .the metering chamber and emptied fran the metering chamber.
  22. 22
    23. The metering unit of Claim.22 in which the diaphragm has an arcuate-shaped portion which conforms to the arcuate-shaped cavity of one of the body and cover portions.
  23. 23
    24. The metering unit of Claim 12 in which the size of the metering chamber determines the fluid capacity of metering unit, and the metering chamber with the movable wall member therein providing the active fluid capacity for receiving the predetermined increment of fluid, at the hydrostatic pressure, by the metering chamber.
  24. 24
    25. The metering unit of Claim 8 or 24 in which the fluid capacity of the metering chamber is less than one cubic centimeter.
  25. 25
    26. The metering unit of Claims 8 or 25 in which the valve means is actuated to provide the predetermined rate of administration of fluid in the range of two tenths milliliter per minute to ten milliliters per minute.
  26. 26
    27. The metering unit of Claim 8 further including hydraulic means with a fluid chamber for receiving fluid from the metering chamber and moving said fluid into the metering chamber to cause air in the metering chamber to be expelled through the conduit means, when the metering unit is in operative relationship.
  27. 27
    28. The metering unit of Claim 8 further including a reservoir or drip chamber adapted to receive a portion of the increments of fl njd from the source at a first hydrostatic pressure and to hold the fluid at a second hydrostatic pressure, the metering chamber receiving the predetermined increment of fluid from the reservoir chamber and siptying the predetermined increment of fluid without adding substantial pressure to the second hydrostatic pressure.
  28. 28
    29. The metering unit of Claim 28 in which means is provided for supporting the resevoir chamber with respect to the metering chamber so that when the source of fluid has been drained below a predetermined level, the second hydrostatic pressure of the fluid in the reservoir chamber is only sufficient to have the metering chamber receive a portion of a predetermined increment of fluid from the reservoir chamber to be emptied from the metering chamber.
  29. 29
    30. Apparatus for controlling the intravenous administration of fluid to a patient, comprising:(a) conduit means for delivering fluid at a hydrostatic pressure from a source of fluid, the source of fluid having a supply of predetermined increments of fluid;(b) metering means comprising a disposable metering unitaccording to Claim 8 } ίθΓ receiving a predetermined increment of fluid from the conduit means and for emptying the predetermined increment of fluid without adding substantial pressure to the hydrostatic pressure, the metering means having a metering chamber with movable means in the meteringchamber for varying the size of the metering chamber so that the metering means is operable in receiving and emptying the increments of fluid without air passing through the metering chamber;and (c) control means for actuating the metering means between a first condition for receiving one predetermined increment of fluid and a second condition for emptying the one predetermined increment of fluid, said control means being separate from the metering means and operating without contacting the fluid, said control means providing a first time interval for the metering means in its first condition receiving fluid at the hydrostatic pressure to fill the mM-eri ng means with the predetermined increment of fluid and providing a second time interval for the metering means in its second condition to allow administration of the predetermined increment of fluid frcm the metering neats for having a desiredbose of fluid administered to the patient at a predetermined rate.
  30. 30
    31. Apparatus according to Claim 30 wherein said control means repetitively activates the metering means between the first and second conditions for having a dose of fluid from the source of fluid administered to the patient at a predetermined rate of administration.
  31. 31
    32. The apparatus of Claim 30 wherein the metering unit comprises valve means for regulating the receiving and emptying of fluid by the metering chamber.
  32. 32
    33. The apparatus of Claim 32 in which the valve means includes an inlet valve connected with one part of the metering chamber and an outlet valve connected with another part of the metering chamber operable in ' response to actuation from the control means to permit the metering chamber to receive and empty the predetermined increments of fluid.
  33. 33
    34. The apparatus of Claim 33 in which the control means includes electro-magnetic means for actuating the inlet valve and the outlet valve to cause the metering chamber to receive and empty the increments of fluid.
  34. 34
    35. The apparatus of Claim 34 therein the elctro-magnetic means includes means for providing two stable conditions, one in which the inlet valve is open and the outlet valve is closed and another in which the inlet valve is closed and the outlet valve is open.
  35. 35
    36. The apparatus of Claim 34 wherein the control means further includes timer means for sequentially providing a time interval in which the inlet valve permits passage of fluid into the metering chamber and the electroiragnetic means is responsive to the timer means to actuate the outlet valve to prevent passage of fluid and providing a time interval in which the - electro-magnetic means is responsive to the timer means to actuate the inlet valve to prevent passage of fluid and the outlet valve permits emptying of the predetermined increment of fluid fran the metering chamber.
  36. 36
    37. The apparatus of Claim 33 wherein the control means includes timer ireans for sequentially providing a time interval in which the inlet valve permits passage of fluid into the metering chamber for filling the metering chamber and the outlet valve prevents the passage of fluid and providing a time interval in which the inlet valve prevents passage of fluid into the metering chamber and the outlet valve permits emptying of the predetermined increment of fluid fran the metering chamber.
  37. 37
    38. The apparatus of Claim 37 in which the timer means further includes adjustable means for permitting changes in the length of the tune intervals.
  38. 38
    39. The apparatus of Claim 32 in which one of the metering means and the control means includes releasable fastening means cooperating with the other of the metering means and control means together in fixed operative relationship for having the valve means responsive to the control means.
  39. 39
    40. The apparatus of Claim 39 in which the metering means and the control means cooperate together in operative relationship for dispensing the fluid with the movable means including a resilient manber forming a wall providing a fluid barrier to prevent fluid passing through the metering means from contacting the control means.
  40. 40
    41. The apparatus of Claim 39 in which the control unit includes the fastening means and the fastening means is provided by manually releasable retaining and positioning means for holding the metering means in fixed operative position with the control means.
  41. 41
    42. The apparatus of Claim 41 wherein the controlmeans has a portion adapted to interfit with the metering means in a first position in which the retaining and positioning means receives the metering means and a second position in which the retaining and positioning means is actuated to hold the metering fixed in operative position with the control means.
  42. 42
    43. The apparatus of Claim 42 wherein the control means has alignment ireans and the metering means has mating guide means for aligning and positioning the control means and metering means so that the units interfit together in only one operable orientation with the retaining and positioning neans holding the metering means in the second position with the control ireans.
  43. 43
    44. The apparatus of Claim 32 wherein the metering means includes hydraulic means as defined in Claim 27 to cause air in the metering chamber to be expelled through the conduit means when the metering means is positioned in operative relationship with the control means.
  44. 44
    45. The apparatus of Claim 44 wherein the control means includes actuating means cooperable with the hydraulic means to actuate the hydraulic neans to move fluid in the fluid chamber into the metering chamber when the metering means is positioned in operative relationship with the control means.
  45. 45
    46. The apparatus of Claims 41 and 45 wherein the control means further includes interlock sensor means for sensing fluid in the fluid chamber and preventing the fastening means from having the metering means in the fixed operative relationship with the control neans when a predetermined volume of fluid is not present in the fluid chamber for being moved into the metering chamber by the actuating means cooperating with the hydraulic means.
  46. 46
    47. The apparatus of Claim 30 in which the movable means of the metering unit includes a resilient diaphragm in the metering chamber providing a movable wall for varying the size of the fluid capacity of the metering chamber, the metering chamber with the diaphragm providing the active fluid capacity for receiving the predetermined increment of fluid at the hydrostatic pressure.
  47. 47
    48. The apparatus of Claim 30in which the movable means of the metering unit includes a resilient diaphragm in the metering chamber providing a movable wall for varying the size of the fluid capacity of the metering chamber, the metering chamber with the diaphragm providing the active fluid capacity for receiving the predetermined increments of fluid,' and the metering chamber being shaped to limit the fluid capacity with the diaphragm’to the predetermined increment of fluid.
  48. 48
    49. The apparatus of any of Claims 30 to 48 in which the metering means includes an inlet conduit connected with the metering chamber for receiving fluid and an outlet conduit for emptying fluid from the metering chamber, a first valve means associated with the inlet conduit and a second valve means associated with the outlet conduit.
  49. 49
    50. The apparatus of Claim 49 wherein the first valve means has a resilient element in the inlet conduit movable between a position in which -סרס inlet conduit is open and a position in which the inlet conduit is closed in response to operation of the control means .
  50. 50
    51. The apparatus of Claim 50 wherein the resilient element is formed to be normally biased in a position in which the inlet conduit is open and is actuated to close the inlet conduit.
  51. 51
    52. The apparatus of Claim 49 wherein the second valve means has a resilient element in the outlet conduit movable between a position in which the outlet conduit is open and a position in which the outlet conduit is closed in response to operation of the control means.
  52. 52
    53. The apparatus of Claim 52 wherein the resileint element is formed to be normally biased in a position in which the outlet conduit is open and is actuated to close the outlet conduit.
  53. 53
    54. The apparatus of Claim 49 wherein the metering unit has an integral resilient member as claimed in Claim 19.
  54. 54
    55. The apparatus of Claim 49 in which the control means has first valve actuator means cooperable with the first valve means and second valve actuator means cooperable with the second valve means for regulating the receiving and emptying of fluid by the metering chamber;and wherein an integral resilient manber forms part of the first valve means, the second valve means and the movable means in the metering chamber;the resilient member being in the inlet conduit and comprising part of the first valve means and movable between a position in which the inlet conduit is open and a position in which the inlet conduit is closed in response to operation of the first valve actuator means;the resilient member being in the outlet conduit and comprising part of the second valve means and movable between a position in which the outlet conduit is open and a position in which the outlet conduit is closed in response to operation of the second valve actuator means;the resilient member in the metering chamber providing a movable wall for varying the size of the metering chamber in response to fluid being received by the metering chamber and emptied from the metering chamber.
  55. 55
    56. The apparatus of Claim 30 further comprising means for purging air from the metering chamber when the metering means and control means are positioned in operative relationship.
  56. 56
    57. The apparatus of Claim 50 in which the means for purging air from the metering chamber includes hydraulic means for moving fluid into the metering chamber to cause air to be expelled through the conduit means/ as claimed in Claim 27. . Th e apparatus of Claim 30 in which the metering means and the control means cooperate together in operative relationship for dispensing the fluid with the movable means including a resilient member forming a wall providing a fluid barrier to prevent fluid passing through the metering means from contacting the control means.
  57. 57
    59. Apparatus for controlling the intravenous administration of fluid to a patient frcm a source of fluid having a supply of predetermined increments of fluid according to ant of Claims 30 to 58, comprising:a reservoir chamber adapted to receive a portion of fluid from the source at a first hydrostatic pressure and to hold the fluid at a second hydrostatic pressure before supplying the fluid to the metering unit having a metering chamber for receiving a predetermined increment of fluid from the reservoir chamber and for emptying the predetermined increment of fluid without adding substantial pressure to the second hydrostatic pressure, the metering unit having movable means in the metering chamber for varying the size of the metering chamber so that the mp-t-pring means is operative in receiving and emptying the increments of fluid without air passing through the metering chamber;inlet means connected between the reservoir chamber and the metering chamber;outlet means connected to the metering chamber for emptying fluid;and a control unit for actuating the metering unit between a condition for the metering chamber to receive one predetermined increment of fluid and a condition for the metering chamber to empty the One predetermined increment of fluid;the metering unit being operable such that, when the first hydrostatic pressure of fluid in the source decreases below a predetermined level as fluid is drained from the source, the second hydrostatic pressure of the fluid in the reservoir chamber is only sufficient to have the metering chamber receive a portion of a predetermined increment of fluid from the reservoir chamber.
  58. 58
    60. The apparatus of Claim 59 in which means is provided for supporting the reservoir chamber with respect to the metering chamber so that when the source of fluid has been drained sufficiently to have the first hydrostatic pressure below a predetermined level, the second hydrostatic pressure of the fluid in the reservoir chamber is only sufficient to have the metering chamber receive a portion of a predetermined increment of fluid fran the reservoir chamber to be emptied from the metering chamber.
  59. 59
    61. The apparatus of Claim 60 in which the reservoir chamber is provided by a drip chamfer in which drops of fluid are fed into the reservoir chamfer from the source to maintain fluid in the reservoir chamber.
  60. 60
    62. apparatus for controlling the intravenous administration of fluid to a patient, corrprising conduit means (a) metering means (b) and control means (c) as defined in Claim 1, said control means repetitively activating the metering neans between the first and second conditions for having a dose of fluid from the source of fluid administered to the patient at a predetermined rate of administration, the hydrostatic pressure of the fluid in the conduit means supplied to the metering means being sufficient to fill the metering means with the predetermined increment of fluid while the metering means is in the first condition.
  61. 61
    63. The apparatus of Claim 62 in which means is provided to support the metering means so that the fluid is supplied to the metering means by gravity flow through the conduit means. f
  62. 62
    64. The apparatus of Claim 62 in which the metering chamber has ireans for receiving each predetermined increment of fluid for defining a volume of less than 1 cubic centimeter for each predetermined increment of fluid.
  63. 63
    65. The apparatus of Claim 62 in which the control means has adjustable» means to vary the actuation of the metering means to provide the predetermined rate of administration of fluid in the range of two tenths milliliters per minute to 10 milliliters per minute.
  64. 64
    66. Apparatus for controlling the intravenous administration of ־F~ln־ici to a patient, according to Claims 30 or 59, comprising. (a) conduit means for delivering fluid at a hydrostatic pressure from a source of fluid by gravity, the source.of fluid having a supply of predetermined increments of fluid to provide a desired dose;and (b) metering means having a metering chamber for receiving a predetermined incranent of fluid fran the conduit means and for emptying the predetermined increment of fluid without adding substantial pressure to the hydrostatic pressure, the metering means having movable means in the metering chamber for varying the size of the metering chamber so that the metering means is operable in receiving and emptying the increments of fluid without air passing through the metering chamber, the metering means being adapted to be positioned with respect to the source of fluid so that the meteri ng chamber receives fluid at a sufficient pressure to fill the metering chamber during each receiving interval while the desired dose is being administered;and (c) control means for actuating the metering means between a first condition for receiving one predetermined increment of fluid and a second condition for emptying the one predetermined increment of fluid, said control means repetitively activating the metering means between the first and second conditions for having a dose of fluid from the source of fluid administered to the patient at a predetermined rate of administration.
  65. 65
    67. Apparatus according to Claim 66 wherein the metering means cooperate with the control means to empty the predetermined increment of fluid while the metering means is in the second condition.
  66. 66
    68. The apparatus of Claim 67 in which support means is provided having the metering means adapted to empty the predetermined increment of fluid to be drained fran the metering chamber while the metering means is in the second condition. י ׳' f
  67. 67
    69. Apparatus according to any of Claims 30 to 68 substantially as described herein with reference to the accompanying drawings.
Independent claims67