The present disclosure relates to a patient-support apparatus, and particularly to a patient-support apparatus having a line management system. More particularly, the present disclosure relates to a patient-support apparatus having a port integrated into an infant enclosure, or in the alternative, a patient-support apparatus having a port integrated into an infant supporting portion.
Thermal support devices, such as infant warmers and incubators, having an isolation chamber and various systems that maintain the isolation chamber at a controlled temperature and humidity to facilitate the development of a premature infant are known. Infant thermal support devices conventionally include a patient-support surface for supporting the infant in the isolation chamber and a set of side guard panels arranged around the patient-support surface. Many thermal support devices have a canopy over the patient-support surface. The canopy cooperates with the set of side guard panels to enclose the isolation chamber.
In such support devices, it is common to have a number of lines, both electronic and fluid, which communicate with the infant. These lines are conduits for electric signals, body fluids, oxygen, or any other substance that might be carried or transmitted either toward or away from the infant. At times, it may be desired to remove one line while leaving the remaining lines undisturbed, and it would therefore be advantageous to have the lines arranged and separated in an organized fashion.
The infant enclosure includes a side panel extending upwardly from the support platform and the door panel is aligned in side-by-side relation with the side panel when the door panel is in the first position. An end panel is also coupled to the support platform. A gap is defined between the door panel and the end panel when the door panel is in the first position, and each of the medical lines supported on the plates extends through the gap.
The infant enclosure further includes a canopy situated above the infant compartment. The canopy has a bottom edge, and the door panel has a top edge that confronts the bottom edge of the canopy when the door panel is in the first position.
The illustrative plurality of line holders comprises a plurality of flexible fingers that engage the medical lines. The plurality of flexible fingers is grouped into pairs, each pair being associated with a respective one of the plurality of line supports. The flexible fingers of each pair extend away from the panel and have a distal end spaced apart from the panel. A slot is defined between the distal ends of each pair of flexible fingers, and the medical lines are inserted through the slots to be retained by the flexible fingers.
In another illustrative embodiment, an infant support device comprises a support platform having an interior region, an infant enclosure coupled to the support platform and defining an infant compartment for receiving an infant, a first line connector coupled to the support platform and situated outside the infant compartment, a second line connector coupled to the support platform and situated inside the infant compartment, and an internal connection line situated at least partly in the interior region. The internal connection line is coupled to the first line connector and to the second line connector.
According to one embodiment, a patient-support apparatus comprises a base, a patient support carried by the base, and a substantially planar guard panel configured to extend upwardly from the base on at least one side of the patient support. The guard panel includes a line port having a line holder and a line support.
The port has a wall defining a first plane substantially parallel to the guard panel, and the port has a second surface defining a second plane angled from the first plane. The port wall cooperates with the guard panel to define a vertically extending slot therebetween.
An access door substantially covers the defined slot. The access door is pivotably connected to the base. The access door contacts the line support when the access door is in a closed position. The line holder and line support are coupled to the port wall along a substantially horizontal line. The line support extends substantially orthogonally from the port wall and is configured to support a line thereon. The line holder is a clasp and is configured to retain a line therein. In one embodiment, the line holder has two fingers extending substantially orthogonally from the port wall. The line port is positioned on one end of the guard panel and can be either secured to the guard panel, or pivotably connected.
According to an aspect of this disclosure, the patient-support apparatus comprises a patient support, a substantially planar guard panel coupled to the patient support, and a line support coupled to the guard panel. The line support is adapted to separate and arrange lines passing through the planar side guard panel.
The disclosure provides for a patient-support apparatus that is configured to present electrical sensors to a patient. The apparatus comprises a base, a patient support, an electronic terminal mounted on the base and in electronic communication with the sensors, and a monitor configured for electronic communication with the terminal. The terminal includes a plurality of electrodes and is illustratively detachable. A second terminal can be mounted on the patient support, the second terminal being in electronic communication with the first terminal. Wires connect the first terminal to the second terminal, and the wires are housed within the base. Sensors connect to the second terminal. The first terminal illustratively includes a plurality of detachable modules.
A wire management device includes a plurality of sensors, each for sensing a condition of the patient, a plurality of wires in electrical communication with the sensors, and a wire port having a plurality of receivers adapted to receive the plurality of wires. In such an embodiment, the wire port is an electronic terminal and the receivers are electrodes. The wire port is coupled to the base of the patient-support apparatus.
The patient-support apparatus includes four guard panels configured to extend upwardly from the base and define a parallelogram, and the patient-support apparatus further includes a second wire port mounted within the perimeter of the defined parallelogram. A substantially planar guard panel is configured to extend upwardly from the base on at least one side of the patient support, and the wire port is coupled to the guard panel and the receivers are configured to hold the wires in place.
Additional features will become apparent to those skilled in the art upon consideration of the following detailed description of preferred embodiments exemplifying the best mode of carrying out the patient-support apparatus having a line management system as presently perceived.
The detailed description particularly refers to the accompanying figures in which:
A patient-support apparatus 10, such as an infant warming device or incubator, illustratively includes a base 12, a plurality of casters 14 extending downwardly from the base 12, and an infant supporting portion or patient support 16 supported above base 12 as shown in
Patient-support apparatus 10 also includes a canopy support arm 28 including a telescoping vertical arm 30 and a horizontal overhead arm 32. A canopy 34 is coupled to overhead arm 32 and is positioned to lie above platform tub 20. Canopy 34 includes a pair of canopy halves 36 coupled to overhead arm 32 for pivoting movement between a lowered position shown in
A pair of transparent side guard panels 38 and a pair of transparent end guard panels 40 extend upwardly from platform tub 20 as shown in
According to the present disclosure, patient-support apparatus 10 further includes a line management system as disclosed herein. In one embodiment, the line management system includes a line port 44, as shown in
The line port 44 illustrated in
Another embodiment is shown in
As shown in
Illustratively, each line holder 60 is in horizontal alignment and associated with a respective line support 58. Line holders 60 are illustratively C-shaped clamps or pairs of closely spaced fingers made of a resilient material that is pliable so that lines 54 can be inserted therebetween. However, it is within the scope of the disclosure to utilize any method of retaining lines 54 proximate to line port wall 46, 46′. For example, line holders including hook-and-loop straps, hooks, straps with snaps, latches, clasps, clamps, and the like are within the scope of this disclosure. As a result, the term “line holder” as used in this disclosure, including in the claims, is intended to broadly cover all of these structures and the equivalents thereof.
It should be understood that the disclosure also anticipates that line supports 58 and line holders 60 need not be used together, but could be used individually. For example, only one of line holders 60 or line supports 58 could be coupled to line port walls 46, 46′, and still provide at least some arrangement to lines 54 leading into the isolation chamber of patient-support apparatus 10.
Illustratively, a door 64 is coupled to platform cover 22 for pivotable movement relative to the platform cover 22. As shown in
Each of line supports 58 is illustratively formed such that a first end 68 contacts door 64 when door 64 is in the closed position. Such contact prevents lines 54 from being inadvertently moved to another line support 58 when door 64 is in the closed position.
In another embodiment, patient-support apparatus 10 is configured to be coupled with a monitoring cart 70, as shown in
Illustratively, a second line terminal 76 is accessible in the isolation chamber within the parallelogram formed by the side guard panels and end guard panels. The terminal 76 is secured to platform cover 22 near the junction of side guard panel 38 and end guard panel 40, for the purpose of positioning terminal 76 away from contact with patient 78, as shown in
Also illustratively, connecting lines 79 that connect terminal 76 to terminal 74 are housed within housings 80, illustrated in phantom in
Illustratively, patient-support apparatus 10 is configured such that connecting lines 79 are accessible for maintenance, replacement, and sterilization. It is advantageous that a need for line pass-throughs is eliminated by the provision of terminals 74, 76 and internal connecting lines 79. Access ports for accessing the patient may still be provided.
Yet another embodiment is illustrated in
Modules 82 are illustratively configured to provide an automatic connection upon insertion into terminal 74′. For example, a module 82 can be configured to include a contact surface with an electric lead that in turn contacts an internal electric lead when mounted on terminal 74′. Other modules 82, for example those conducting fluids, may be configured and mounted in a similar manner. Upon mounting module 82, lines 54′ are coupled to contact 86′ on the front face of module 82. It is within the scope of the disclosure to also mount an on-board computer (not shown) on the patient-support apparatus. In such a case, lines 54′ and/or other lines (not shown) routed through apparatus 10 couple terminal 74′ with the on-board computer.
Yet another embodiment of the present disclosure is shown in
While the disclosure is susceptible to various modifications and alternative forms, specific exemplary embodiments thereof have been shown by way of example in the drawings and have herein been described in detail. It should be understood, however, that there is no intent to limit the disclosure to the particular forms disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the disclosure as defined by the appended claims.
There is a plurality of advantages of the present invention arising from the various features of the line management system and associated method described herein. It will be noted that alternative embodiments of the line management system and associated method may not include all of the features described yet still benefit from at least some of the advantages of such features. Those of ordinary skill in the art may readily devise their own implementations of a line management system and associated method that incorporate one or more of the features of the present invention and fall within the spirit and scope of the present invention as defined by the appended claims.
This application is a U.S. national counterpart application of international application serial no. PCT/US02/31408 filed Oct. 3, 2002, which claims the benefit of U.S. provisional applications Ser. Nos. 60/327,496 and 60/373,417 filed Oct. 5, 2001, and Apr. 17, 2002, respectively.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US02/31408 | 10/3/2002 | WO | 00 | 3/25/2004 |
Publishing Document | Publishing Date | Country | Kind |
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WO03/030797 | 4/17/2003 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2663608 | Schauer | Dec 1953 | A |
3470866 | Gittelson | Oct 1969 | A |
3858570 | Beld et al. | Jan 1975 | A |
5224674 | Simons | Jul 1993 | A |
5308310 | Roff et al. | May 1994 | A |
5387177 | Dunn | Feb 1995 | A |
6049924 | Prows et al. | Apr 2000 | A |
6210320 | Rogone et al. | Apr 2001 | B1 |
6310294 | Di Girolamo et al. | Oct 2001 | B1 |
6336897 | Mackin | Jan 2002 | B1 |
6367476 | Conn | Apr 2002 | B1 |
6375017 | Schattner et al. | Apr 2002 | B1 |
20010035702 | Murphy et al. | Nov 2001 | A1 |
Number | Date | Country |
---|---|---|
73 34 435.1 | Jan 1974 | DE |
24 33 882 | Feb 1976 | DE |
32 05 097 | Oct 1982 | DE |
39 15 882 | Nov 1990 | DE |
42 28 873 | Oct 1993 | DE |
297 09 848 | Oct 1997 | DE |
WO 9912511 | Mar 1999 | WO |
WO 0069387 | Nov 2000 | WO |
Number | Date | Country | |
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20040186341 A1 | Sep 2004 | US |
Number | Date | Country | |
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60327496 | Oct 2001 | US | |
60373417 | Apr 2002 | US |