USRE43860E1 - Reusable pulse oximeter probe and disposable bandage apparatus - Google Patents
Reusable pulse oximeter probe and disposable bandage apparatus Download PDFInfo
- Publication number
- USRE43860E1 USRE43860E1 US12/917,433 US91743310A USRE43860E US RE43860 E1 USRE43860 E1 US RE43860E1 US 91743310 A US91743310 A US 91743310A US RE43860 E USRE43860 E US RE43860E
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- US
- United States
- Prior art keywords
- probe
- housings
- receptacles
- bandage
- patient
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/145—Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value ; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid or cerebral tissue
- A61B5/1455—Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value ; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid or cerebral tissue using optical sensors, e.g. spectral photometrical oximeters
- A61B5/14551—Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value ; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid or cerebral tissue using optical sensors, e.g. spectral photometrical oximeters for measuring blood gases
- A61B5/14552—Details of sensors specially adapted therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/68—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
- A61B5/6801—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
- A61B5/6813—Specially adapted to be attached to a specific body part
- A61B5/6825—Hand
- A61B5/6826—Finger
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/68—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
- A61B5/6801—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
- A61B5/683—Means for maintaining contact with the body
- A61B5/6838—Clamps or clips
Definitions
- the present invention relates to a method of making and affixing a reusable probe to a patient by means of disposable bandage apparatus so that there is no contact between the costly, reusable portion of the probe and the patient.
- the contaminated bandage apparatus which is relatively inexpensive, can then be discarded after single patient use and the probe can be re-used with a new bandage apparatus.
- pulse oximeter probes have been limited to the use of a costly reusable probe, which is contaminated by use on a patient, or cheaper, single-use probes, which, in the aggregate, amount to a considerable expenditure for a health care institution.
- the present invention not only solves the problems outlined above, but offers an alternative that is cheap to manufacture and easy to use.
- the present invention is directed to improving the form and affixation method of a reusable pulse oximeter sensor. It comprises a reusable pulse oximeter probe with at least one light emitting diode and one photocell detector wherein said emitter and detector are enclosed in plastic housings, one housing having an aperture or radiation transparent window aligned with said emitter, and the other housing having an aperture or radiation transparent window aligned with said detector. Also included is a disposable bandage apparatus which is at least one bandage strip having adhesive on at least a portion of at least one face thereof and at least two plastic receptacles mounted thereon, each receptacle having at least one aperture or radiation transparent window located therein.
- the probe housings can matedly engage said bandage receptacles and transmit and receive light through the apertures or radiation transparent windows of said mated housings and receptacles, and through the appendage of a patient.
- the housings of the reusable pulse oximeter probe may also be made of a material selected from plastic, rubber, metal, wood, or other composite material.
- the receptacles of the disposable bandage apparatus may also be made of a material selected from plastic, rubber, metal, wood, or other composite material. Additionally, the apertures of said receptacles are large enough to accept the tubular protrusions of the housings for the purpose of concentric location and alignment of the housings to the receptacles and the proper transmission and reception of light therethrough.
- the bandage apparatus Sandwiched between the adhesive strip and the receptacles attached thereto, are translucent silicone windows or windows of another radiation transparent material for isolation of the reusable probe assembly from the patient.
- the bandage apparatus may be discarded after single patient use and the reusable probe may be used again on another patient in conjunction with another bandage apparatus.
- the receptacles of the bandage apparatus may have a concave surface on one side thereof in order to seat conformably on a human digit, or they may have a flat surface on at least one side thereof in order to attach conformably to a human foot, nose, or ear.
- the housings and receptacles also contain “mushroom hook” type hook and loop material for the purpose of adhering and detaching said housings to and from said receptacles. Additionally, the housings and receptacles have recessed areas for adhesion of the “mushroom hook” hook and loop material.
- the receptacle of the disposable bandage apparatus may be the mushroom hook material itself which may be attached directly to the adhesive strip for the selective engagement of the housings of the probe assembly.
- the housings of the pulse oximeter probe may be affixed to the receptacles of the disposable bandage apparatus by means of a “ring and groove” type snap-on connector.
- the housings of the reusable pulse oximeter probe may be affixed to the receptacles of the disposable bandage apparatus by means of a “twist and lock” type connector.
- the housings of the pulse oximeter probe may be affixed to the receptacles of the disposable bandage apparatus by means of a “threaded flange” type of connector.
- the light emitting diode and photocell detector of the probe assembly may be mounted in modular housings with locking levers which can engage an indentation or slot in the receptacles of the disposable bandage apparatus and securely lock the housings into proper position within the receptacles, thus allowing the transmission and reception of infrared light through the mated housings and receptacles and through the appendage of a patient.
- the levers and indentations are reversed, and the light emitting diode and photocell detector of the probe assembly may be mounted in modular housings having indentations therein, and the receptacles of the disposable bandage apparatus may have the locking lever located on them.
- the locking levers of the bandage receptacles lockingly engage the slots or indentations in the probe housings, thus locking them into place within the receptacles and allowing the transmission and reception of infrared light through the mated probe housings and bandage receptacles, and through the appendage of a patient.
- the radiation transparent windows may be of hard plastic and may be mounted against the skin of a patient, thus being used to secure the receptacles on the opposite side of the bandage strip. This is accomplished by the incorporation of locking levers on the radiation transparent windows which are pushed through holes or slots in the bandage and engage holes in the receptacles mounted on the opposite side of the bandage, thus sandwiching the bandage in between.
- a foam strip with holes in it may also be adhered to said radiation transparent windows in order for them to rest comfortably on a patient's appendage.
- the bandage receptacles may be secured to the bandage through the use of small plastic protrusions or “heat stakes” mounted on the receptacles themselves. These protrusions can be pushed through slots in the bandage and can be melted on the other side of the bandage strip by means of an ultrasonic welding machine, thus locking the receptacles into position on the bandage strip.
- a radiation transparent window may then be adhered to the underside of the bandage strip and the heat stakes and radiation transparent windows may then be overlaid with a foam pad with holes in it, the purpose of which is to allow for the transmission and reception of infrared light through the holes while aiding in patient comfort.
- FIG. 1 is an exploded view of the reusable pulse oximeter probe and disposable bandage apparatus incorporating the invention
- FIG. 2 is a view of the reusable pulse oximeter probe and disposable bandage apparatus shown individually as components of the invention
- FIG. 3 illustrates the invention in use on a human finger or digit
- FIG. 4 illustrates an exploded view of another embodiment of the invention in which the “mushroom hook” material itself is used as the receptacle of the disposable bandage apparatus;
- FIG. 5 illustrates an assembled view of another embodiment of the invention in which the housings of the pulse oximeter probe are affixed to the receptacles of the disposable bandage apparatus by means of ring and groove type, snap-on connectors;
- FIG. 6 illustrates an assembled view of another embodiment of the invention in which the housings of the pulse oximeter probe are affixed to the receptacles of the disposable bandage apparatus by means of “twist and lock” type connectors;
- FIG. 7 illustrates an assembled view of another embodiment of the invention in which the housings of the of the pulse oximeter probe are affixed to the receptacles of the disposable bandage apparatus by means of a “threaded flange” type of connector;
- FIG. 8 illustrates an exploded view of the first preferred embodiment of the reusable pulse oximeter probe in which the light emitting diode and photocell detector of the probe are encased in housings having a radiation transparent window therein and locking levers for affixing the reusable pulse oximeter probe to the disposable bandage apparatus;
- FIG. 9 illustrates an exploded view of the first preferred embodiment of the disposable bandage apparatus in which the receptacle tops incorporate a slot for engaging the locking levers of the modular probe housings, and wherein the radiation transparent windows are mounted on the opposite side of the bandage strip thus sandwiching and securing the bandage in between the two receptacle halves by means of locking tabs or heat stakes that can be ultrasonically welded;
- FIG. 10 illustrates the first preferred embodiment of the invention as it would appear ready for use on a human digit
- FIG. 11 illustrates an exploded view of the second preferred embodiment of the invention in which the probe housings have a slot or indentation incorporated therein and the bandage receptacles have a locking lever for securing the housings to the receptacles;
- FIG. 12 illustrates an assembled view of the second preferred embodiment of the invention in which the probe housings have a slot or indentation incorporated therein and the bandage receptacles have a locking lever for securing the housings to the receptacles.
- the Reusable Pulse Oximeter Sensor constitutes a “Y” style pulse oximeter probe shown as FIG. 1 , Item F.
- Said probe incorporates two plastic housings shown as FIG. 1 , Items G, said housings containing apertures or radiation transparent windows therein, said apertures or windows shown as FIG. 1 , Items L.
- One housing contains the light emitting diode of the probe, FIG. 1 , item H, and the other contains the photocell detector, FIG. 1 , Item I.
- the emitter and detectors are aligned with the apertures or windows of said housings in order to transmit and receive light through a human appendage. Seated within a recessed area of each housing, and attached permanently thereto, is a “mushroom hook” adhesive-backed pad, FIG.
- FIG. 1 Item K.
- the purpose of these pads is to selectively engage the “mushroom hook” pads, FIG. 1 , Items J, attached permanently to the plastic discs, FIG. 1 , Items D, and to attach the reusable probe assembly to the Disposable Bandage Apparatus.
- the Reusable Pulse Oximeter Sensor is shown assembled as FIG. 2 , Item A.
- the light emitting diode and photocell detector of the reusable pulse oximeter-sensor are enclosed in housings ( FIG. 5 , Items A) having a groove on the inner diameter of the housings that is designed to matedly engage rings ( FIG. 5 , Items B) located on the outer diameter of the disposable bandage apparatus, thus securing and locking the sensor housings to the bandage receptacles.
- the light emitting diode and photocell detector of the reusable pulse oximeter sensor are enclosed in housings ( FIG. 6 , Items A) which are designed to enter the bandage receptacles ( FIG. 6 , Items B) and to twist 90 degrees thus locking the sensor housings to the bandage receptacles.
- the light emitting diode and photocell detector of the reusable pulse oximeter sensor are enclosed in housings ( FIG. 7 , Items A) having a threaded flange ( FIG. 7 , Items B) that threadedly engages the bandage receptacles, ( FIG. 7 , Items C) thus securing and locking the sensor housings to the bandage receptacles.
- the light emitting diode ( FIG. 8 , Item A) and photocell detector ( FIG. 8 , Item B) of the probe assembly are housed in modular receptacles ( FIG. 8 , Items C) having locking levers, ( FIG. 8 , Items D) for engaging the receptacles ( FIG. 9 , Items A) of the disposable bandage apparatus, and locking them into place.
- the light emitting diode ( FIG. 11 , Item A) and the photocell detector ( FIG. 11 , Item B) are encased in modular housings having a radiation transparent bottom ( FIG. 11 , Items C) and having opaque housing tops ( FIG. 11 , Items D). These housing tops and bottoms are ultrasonically welded together thus encapsulating the light emitting diode and photocell detector of the probe assembly.
- the housing tops incorporate indentations or slots ( FIG. 11 , Items E) designed to matedly engage a protrusion on the locking levers of the bandage receptacles thus snapping into place and securing the probe housings within the bandage receptacles.
- the components of the apparatus include an adhesive-backed, strip, shown as FIG. 1 , item A, said strip incorporating two oval protrusions centered thereon and shown as FIG. 1 , Item B. Said strip also incorporates two apertures, centrally located within said oval protrusions, FIG. 1 , Item C, each aperture having a diameter sufficient in size to accommodate the transmission and reception of light from a light emitting diode and photocell detector of a pulse oximeter probe.
- FIG. 1 Item D
- FIG. 1 Item D
- Said plastic discs are affixed to the adhesive planar strip by means of a permanent adhesive.
- Seated in a recessed area on top of each plastic disc is a “mushroom hook”, adhesive backed pad shown as FIG. 1 , Item J.
- the purpose of the “mushroom hook” pads is to selectively engage the “mushroom hook” pads attached to the probe, FIG. 1 , Items K, and to attach the probe to the disposable bandage apparatus.
- FIG. 1 Sandwiched between the two plastic discs and the planar adhesive strip are two translucent silicone windows, FIG. 1 , Item E. Said windows are designed to permit the passage of infrared light and yet prevent contact between probe and patient, and consequently, contamination of the reusable probe itself.
- the Disposable Bandage Apparatus may be configured as in FIG. 4 of the drawings.
- FIG. 4 there is an exploded view of the apparatus in which the “mushroom hook” pads of the bandage apparatus, FIG. 4 , Items J, are bonded directly to the adhesive planar strip, FIG. 4 , Item A, for the selective engagement of the “mushroom hook” pads of the probe, FIG. 4 , Items K, said pads being attached permanently to the housings of the probe, FIG. 4 , Items G.
- the bandage may have mounted thereon receptacles having means of matedly engaging the housings of the reusable pulse oximeter sensor by way of “ring and groove” snap-on type connectors ( FIG. 5 , Items B); “Twist and Lock” type connectors ( FIG. 6 , Items B); or “threaded flange” type connectors ( FIG. 7 , Items C).
- the bandage strip ( FIG. 9 , Item B) is sandwiched between interlocking receptacle halves.
- the top halves of the receptacles ( FIG. 9 , Items A) each contain 4 holes ( FIG. 9 , Items C) that are designed to matingly engage locking tabs ( FIG. 9 , Items D) on the bottom half of the receptacles ( FIG. 9 , Items E) that are pushed through slots cut in the bandage strip ( FIG. 9 , Items F) thus securing and locking the bandage in between.
- the bandage strip contains two apertures or radiation transparent windows ( FIG. 9 , Items G) allowing for the transmission and reception of light from the light emitting diode and photocell detector of the pulse oximeter sensor which are encased in modular housings having locking levers ( FIG. 8 , Items D) wherein said levers_engage slots in the receptacles ( FIG. 9 , Items H) thereby locking the housings into place within the receptacles.
- the bottom halves of the receptacles FIG. 9 , Items E
- the disposable bandage apparatus may also incorporate a foam strip ( FIG. 9 , Item J) in order to cushion a patient's appendage from any discomfort caused by the bottom half of the bandage receptacles.
- the complete Reusable Pulse Oximeter Sensor, engaged in the disposable Bandage Apparatus, and ready for use on a human appendage, is shown in FIG. 10 .
- the bandage receptacles ( FIG. 11 , Items G) are secured to the bandage ( FIG. 11 , Item K) by means of four protrusions or “heat Stakes” ( FIG. 11 , Items H) which are pushed through slots ( FIG. 11 , Items J) on the bandage ( FIG. 11 , Item K) and are ultrasonically welded on the other side, thus securing the receptacles to the bandage.
- a radiation transparent window ( FIG. 11 , Item M) is then adhered to the underside of the bandage and the radiation transparent windows and melted heat stakes are then overlaid by a foam pad ( FIG. 11 , Item L) to aid in patient comfort.
- This foam pad also incorporates two holes which are in alignment with the two holes on the bandage itself, and when the foam pad is overlaid on the underside of the bandage, the radiation transparent windows are sandwiched in between.
- the probe housings are designed to matedly engage the bandage receptacles ( FIG. 11 , Items G) and are held in place: within the receptacles by means of protrusions ( FIG. 11 , Items F) on the locking levers ( FIG. 11 , Items I) which snap into place when the probe housings are pushed into the bandage receptacles.
- the probe housings are locked into place within the bandage receptacles the light emitting diode and photocell detector are in alignment with the holes in the bandage and the foam overlay, and the probe is then able to transmit and receive light through the mated housings and receptacles, through the holes contained in the bandage and foam overlay, and through the appendage of a patient.
- the probe is affixed in the following manner:
- the backing is removed from the adhesive strip of the Disposable Bandage Apparatus.
- One of the apertures of the apparatus is visually positioned on the center of the nail bed of the patient's appendage and one side of the adhesive strip and the oval protrusions are adhered to the patient's digit.
- the rest of the strip is then looped over the end of the patient's appendage, and the plastic disc is aligned so as to exactly oppose the plastic disc already attached to the other side of the digit.
- the plastic housings of the probe assembly can be easily snapped into place on opposing sides of the digit. The entire assembled probe is shown as it would appear in use on a patient in FIG. 3 .
- the backing is firstly removed from the adhesive strip.
- the strip is then folded in half where indicated on the bandage and the bandage apparatus is adhered to either side of the human digit. Once the bandage apparatus is in place the probe housings are simply snapped, twisted or screwed into place.
- the backing is removed from the adhesive strip.
- the strip is then folded where indicated on the bandage and the strip is then adhered to opposing sides of the human digit.
- the housings of the probe are pushed into the receptacles and locked in place by means of the locking levers.
- the housings of the Reusable Probe are simply unsnapped from the Disposable Bandage Apparatus, the bandage apparatus is thrown away, and the probe can then be reused on a new patient in conjunction with a new bandage apparatus.
- Disposable probes are very costly because of the fact that the cable, connectors and photodiodes are all disposed of after use.
- the present invention accomplishes the same goals as a disposable probe from a cleanliness standpoint, but since only the attachment apparatus is discarded after use, the cost is much less to a healthcare institution.
- the present invention with the concave shape of the plastic discs of the bandage apparatus, when backed by the adhesive strip, is extremely effective in preventing the entrance of extraneous light from the sides of the patient's digit.
- the present invention utilizes an easy snap on, snap off, or modular connector attachment means for attaching the probe to the Disposable Bandage Apparatus.
- Probe-Shield type devices available in the past not only required the modification of the original manufacturer's probe, but required the difficult procedure of inserting a flexible laminated probe into a sheath for each patient.
- Probe-Shield devices because of the lamination process involved, raised some concern over the transmission and reception of infrared light through the laminating material.
- the present invention uses a silicone window for the isolation of the probe from the patient. Infrared light transmission and reception is not affected by passage through translucent silicone.
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Abstract
Description
Claims (22)
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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US11/432,798 USRE41912E1 (en) | 1998-10-15 | 2006-05-11 | Reusable pulse oximeter probe and disposable bandage apparatus |
US12/917,433 USRE43860E1 (en) | 1998-10-15 | 2010-11-01 | Reusable pulse oximeter probe and disposable bandage apparatus |
Applications Claiming Priority (7)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10433298P | 1998-10-15 | 1998-10-15 | |
US09/289,647 US6144868A (en) | 1998-10-15 | 1999-04-12 | Reusable pulse oximeter probe and disposable bandage apparatus |
US09/417,898 US6343224B1 (en) | 1998-10-15 | 1999-10-14 | Reusable pulse oximeter probe and disposable bandage apparatus |
US09/679,828 US6519487B1 (en) | 1998-10-15 | 2000-10-05 | Reusable pulse oximeter probe and disposable bandage apparatus |
US10/237,038 US6735459B2 (en) | 1998-10-15 | 2002-09-09 | Reusable pulse oximeter probe and disposable bandage apparatus |
US11/432,798 USRE41912E1 (en) | 1998-10-15 | 2006-05-11 | Reusable pulse oximeter probe and disposable bandage apparatus |
US12/917,433 USRE43860E1 (en) | 1998-10-15 | 2010-11-01 | Reusable pulse oximeter probe and disposable bandage apparatus |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US10/237,038 Reissue US6735459B2 (en) | 1998-10-15 | 2002-09-09 | Reusable pulse oximeter probe and disposable bandage apparatus |
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USRE43860E1 true USRE43860E1 (en) | 2012-12-11 |
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US11/432,798 Expired - Lifetime USRE41912E1 (en) | 1998-10-15 | 2006-05-11 | Reusable pulse oximeter probe and disposable bandage apparatus |
US12/917,433 Expired - Lifetime USRE43860E1 (en) | 1998-10-15 | 2010-11-01 | Reusable pulse oximeter probe and disposable bandage apparatus |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
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US11/432,798 Expired - Lifetime USRE41912E1 (en) | 1998-10-15 | 2006-05-11 | Reusable pulse oximeter probe and disposable bandage apparatus |
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