Bed drying device, UV lights for bedsores

Information

  • Patent Grant
  • 9308393
  • Patent Number
    9,308,393
  • Date Filed
    Thursday, January 15, 2015
    9 years ago
  • Date Issued
    Tuesday, April 12, 2016
    8 years ago
Abstract
A device and method for preventing and treating bedsores on a lying patient. The device uses both a fan and a UV light source. The fan dries the skin while the UV light source aids in drying the patient as well as killing harmful pathogens. The device is adjustable so the air and UV light can be directed at various angles and from different heights, to a patient in different positions, prone, supine, and laying on side.
Description
TECHNICAL FIELD

The presently disclosed and claimed disclosed technology generally relates to a method and apparatus for drying a person in a lying position, and more particularly to a device for maintaining adequate skin dryness and skin treatment during extended hospital stays.


BACKGROUND

People who are confined to a bed for extended periods of time can develop moisture build up on their skin where the skin does not have sufficient exposure to dry. Similar to being in a pool for extended periods, the skin in these locations can become soft. Additionally, the moisture build up can become a bacterial breeding ground. The skin in these areas is frequently under constant pressure from the patient's body weight.


These areas of skin can begin to stick to the bed and tear away from the person. The tearing can result in open sores which are painful and can bleed significantly. Once the open sores are present, there is a significant risk of infection. These sores require additional care and expense that would not be necessary if the bed sores had been prevented beforehand. Treatment and prevention of bed sores can require specialized beds or having the patient leave the bed for extended periods of time. If a specialized bed is used the treatment can be expensive but can be the only choice if the patient is unable to leave the bed.


Hospital patients are sometimes confined to long periods of bed rest due to causes including surgical recovery and coma. The patient's condition, either conscious or not, often requires the patient to lie in substantially one position for extended periods of time. These extended sedentary periods place hospital patients at an increased risk of bed sores, related infection, and medical care that otherwise would not be necessary.


SUMMARY OF THE DISCLOSURE

The purpose of the Abstract is to enable the public, and especially the scientists, engineers, and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection, the nature and essence of the technical disclosure of the application. The Abstract is neither intended to define the inventive concept(s) of the application, which is measured by the claims, nor is it intended to be limiting as to the scope of the inventive concept(s) in any way.


Still other features and advantages of the presently disclosed and claimed disclosed technology will become readily apparent to those skilled in this art from the following detailed description describing preferred embodiments of the inventive concept(s), simply by way of illustration of the best mode contemplated by carrying out the disclosed technology. As will be realized, the inventive concept(s) is capable of modification in various obvious respects all without departing from the disclosed technology. Accordingly, the drawings and description of the preferred embodiments are to be regarded as illustrative in nature, and not as restrictive in nature.


The present disclosed technology consist of a method and apparatus for treating and preventing bed sores and the associated issues, including insufficient drying and bacterial breeding in a bed-ridden hospital patient. The present disclosed technology dry the patient as well as destroy the harmful bacteria present on a person's skin.


The apparatus utilizes a forced air source, such as a fan, and a UV light source. Often the patients are unable to make significant movements. The apparatus allows the patient to make a minimal movement to expose the patient's skin. The fan and UV light are able to rotate around a bed to a position where the bed patient can roll onto his side or stomach to expose the skin at risk of bed sores and infection, typically the patient's back, to the forced air and UV light. Once the skin is exposed, the apparatus can be set up so that the forced air source and UV light source can be positioned above the patient or to the side of the patient as necessary.


This method of drying a patient and killing harmful bacteria is accomplished by utilizing a drying mechanism, such as a fan, in addition to a UV lamp. The method consists of a first step of positioning the patient on his side or stomach in order to expose the area of skin to be treated. The second step of the method is positioning a device such that the UV lamp and fan extend over, or around, the patient bed. The third step of the method is rotating the lamp and fan assembly to be directed at the area of skin to be treated. The fourth step is activating the lamp and UV light assembly for sufficient time to effectively treat the area.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a side view of one embodiment of the disclosed technology positioned to operate over a bed.



FIG. 2 is a rear view of one embodiment of the disclosed technology in operation.



FIG. 3 is a top view of one embodiment of the disclosed technology, positioned over a patient's back with treatment head rotated parallel to patients body.



FIG. 4 is a rear view of one embodiment of the disclosed technology, positioned to dry the patient's back when on his/her side with treatment head parallel to patient's body.



FIG. 5 is a side view of one embodiment of the disclosed technology, with the treatment head folded down for transportation or storage.



FIG. 6 is a side view of one embodiment of the disclosed technology, treatment head displaying positions of fan and UV light.



FIG. 7 is a bottom view of one embodiment of the disclosed technology, treatment head displaying ventilation.





DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS

While the presently disclosed technology are susceptible of various modifications and alternative constructions, certain illustrated embodiments thereof have been shown in the drawings and will be described below in detail. It should be understood, however, that there is no intention to limit the inventive concept(s) to the specific form disclosed, but, on the contrary, the presently disclosed and claimed disclosed technology are to cover all modifications, alternative constructions, and equivalents falling within the spirit and scope of the inventive concept(s) as defined in the claims.


The disclosed device is a skin treatment tool with a therapeutic light and fan, which is made to treat a patient in a bed. The device is made to be placed over a bed, with the patient lying face down or on a side. The light and fan dry the skin and treat the skin with beneficial wavelengths of light. FIG. 1 represents a preferred embodiment of the presently disclosed and claimed technology. FIG. 1 illustrates a patient drying device 10 having a frame 16, the frame having a base 12, wheels 14, vertical support 20, horizontal support 30, and forced air fan 18 and UV light source 34 located in a treatment head 28. In a preferred embodiment the patient drying device 10 utilizes four wheels 14, attached near the four corners of the underside of base 12. A fifth wheel may be placed in a support location on the base 12. It is to be noted that horizontal support arm 30 can extend over a bed horizontally, or may be placed at the side of a patient as in FIG. 4, and the treatment head 28 may be rotated at the end of the horizontal support arm 30. The wheels 14 can be of any type mountable to a base, with castor wheels being preferred. The wheels 14 can be constructed with any material that allows for free rotation, including metal, plastic, or a combination of materials. Shown in FIG. 1 is a bed 36, and shown in FIG. 2 is a patient 38 in the bed 36.


Base 12 can have extending pieces 40, on which wheels 14 are placed. The base 12 may have rounded corners for improved safety and portability. The base 12 is preferably metal, such as stainless steel, but other materials can be used to provide sufficient strength and stability for the treatment head 28. Similarly, the size of the base 12 must be sufficiently extendable to support the patient drying device 10 with the treatment head 28 extended in any allowable direction. In a typical configuration of the device 10, the base is approximately 23.5 inches long and 12 inches wide. The vertical support 20 would typically extend to about 59 inches high, and the treatment head 28 is about 5.5 inches wide and 24 inches long. In one embodiment, the extending portions 40 of the base 12 extend to 37.5 inches.


Attached to the top of base 12 is vertical support 20. Vertical support 20 extends from base 12 in a substantially vertical direction. Vertical support 20 may have telescopic capabilities to adjust the height of the treatment head 28 to accommodate larger patients and higher beds. Incorporating telescopic capabilities into vertical support 20 also allows for easier storage and transport of patient drying device 10 as well as personalized treatment for different sized patients.


Attached to the top of vertical support 20 is horizontal support arm 30. Braces 22 may be attached to the vertical support 20 for additional support of the horizontal support arm 30. The treatment head 28 can be attached to horizontal support arm 30 by a movable joint 42, to allow the treatment head 28 to be positioned as shown in the figures. Another flexible joint 44 can allow the treatment head to be placed in a vertical position for storage or treatment, as shown in FIGS. 5. For improved functionality, horizontal support arm 30 can also have telescopic capabilities. In this manner it would be possible to treat both sides of a patient without moving the patient drying device 10 to the opposite side of the patient bed.


Attached to, or near, the end of the horizontal support arm 30 opposite of vertical support 20 is treatment head 28, which contains a forced air fan 18 and UV light source 34. The treatment head 28 can be mounted to rotate along the axis of horizontal support arm 30 to allow a user freedom to direct the forced air and UV light source in various ways. FIG. 1 also shows horizontal support 30 incorporating a joint 44 within the length of horizontal support 30. While different types of joints can be used, a ball joint is preferred for increased selection in the positioning of forced air fan 18 and UV light source 34, incorporation of joint 42 allows the treatment head 28 to be positioned either above a patient or to the side of the patient. For example, it is desirable to have forced air fan 18 and UV light source 34 directed away from vertical support 20 when treating the near side of a patient. It is also desirable to position forced air fan 18 and UV light source 34 toward vertical support 20 in order to treat the far side of a patient without having to move the entire patient drying device 10.



FIG. 2 represents a rear view of the presently disclosed technology, which also shows a side view of the patient. FIG. 2 shows the addition of braces 22. While not always necessary, braces 22 are added to reduce stress on the vertical support 20 and increase rigidity of the apparatus.



FIG. 3 shows a top view of the presently disclosed technology. FIG. 3 illustrates one embodiment where base 12 is substantially longer than it is wide with horizontal support arm 30 extending in a substantially similar direction. In FIG. 3, the patient is lying on his/her stomach, with the treatment head 28 over an area of the torso to be dried or treated with UV.



FIG. 4 represents a side view of the presently disclosed and claimed inventive concepts. FIG. 4 illustrates one embodiment with a patient lying on his or her side on a bed. FIG. 4 shows the vertical support 20 with telescopic abilities. Vertical support 20 can be locked in place with height adjustment knob 26. Other locking mechanisms can be used also, including flip locks or hole and pin systems.



FIG. 4 also shows treatment head 28 in a horizontal position next to the back of a patient laying on his/her side. A suitable UV light source in the treatment head 28 is a (brand) Phillips (model) Narrowband TL which uses a 20 watt UV heat lamp. A suitable force air fan in the treatment head 28 is a (brand) Dayton (model) Square Axial fan, which has multiple speed settings. The treatment head 28 has a cover with slots through which air and UV light is directed to the patient.



FIG. 5 shows the patient drying device 10 in a compact configuration for storage.



FIG. 6 shows the side view of a treatment head.



FIG. 7 shows a slot in the bottom of a treatment head.

Claims
  • 1. An apparatus for drying and killing harmful bacteria for bed-ridden patients comprising: a base member that telescopes from a fully contracted length to a fully extended length, the fully contracted length being less than half of a bed width and the fully extended length being at least the bed width;a plurality of wheels coupled to the base member;a mast having a first end coupled to the base member, the mast extending transverse to the base member, and the mast being telescopable to a plurality of lengths;an arm having a first end coupled to a second end of the mast, the arm extending transverse to the mast and the arm telescoping to a plurality of lengths, the arm including a pivot point, and the pivot point being located between the first end of the arm and a second end of the arm;a treatment head rotatably coupled to the second end of the arm, the treatment head including an ultraviolet light source and a forced air source; andwherein the arm is rotatably coupled to the treatment head via a joint, the joint allowing for rotation from a horizontal position to a vertical position.
  • 2. The apparatus of claim 1, wherein the base member is substantially planar.
  • 3. The apparatus of claim 1, wherein the arm telescopes from a fully contracted length to a fully extended length, the fully contracted length being less than half of the bed width and the fully extended length being at least the bed width.
  • 4. The apparatus of claim 1, wherein a conjunction between the treatment head and the second end of the arm comprises a ball joint with a 360 degree rotation radius relative to a plane of the base member.
  • 5. The apparatus of claim 1, wherein a conjunction between the treatment head and the second end of the arm comprises a ball joint with a 360 degree rotation radius around the arm.
  • 6. The apparatus of claim 1, wherein the base member and the arm are telescopable to substantially a same length.
  • 7. An apparatus for drying a patient in a bed comprising: a base member that telescopes to a plurality of lengths;a plurality of wheels coupled to the base member;a mast having a first end coupled to the base member, the mast extending transverse to the base member, and the mast being telescopable to a plurality of lengths;an arm having a first end coupled to a second end of the mast, the arm extending transverse to the mast, the arm telescoping to a plurality of lengths, the arm including a pivot point located between the first end of the arm and a second end of the arm;a treatment head, a center portion of the treatment head rotatably coupled to the second end of the arm such that a portion of the treatment head extends over the arm and a portion of the treatment head extends past the second end of the arm, the treatment head including an ultraviolet light source and a forced air source; and wherein the arm is rotatably coupled to the treatment head via a joint, the joint allowing for rotation from a horizontal position to a vertical position.
  • 8. The apparatus of claim 7, wherein the pivot point comprises a ball joint with a rotation radius allowing a portion of the arm to rotate in any direction.
  • 9. A method, comprising: drying a person with a device, the device comprising a base member that telescopes from a fully contracted length to a fully extended length, the fully contracted length being less than half of a bed width and the fully extended length being at least the bed width, the device further comprising a plurality of wheels coupled to the base member and a mast having a first end coupled to the base member, the mast extending transverse to the base member, and the mast being telescopable to a plurality of lengths, the device further comprising an arm having a first end coupled to a second end of the mast, the arm extending transverse to the mast and the arm telescoping to a plurality of lengths, the arm including a pivot point, and the pivot point being located between the first end of the arm and a second end of the arm, and a treatment head rotatably coupled to the second end of the arm, the treatment head including an ultraviolet light source and a forced air source, and wherein the arm is rotatably coupled to the treatment head via a joint, the joint allowing for rotation from a horizontal position to a vertical position.
US Referenced Citations (213)
Number Name Date Kind
630565 Safran Aug 1899 A
932024 Barabas Aug 1909 A
945234 Hindale Jan 1910 A
1142876 Greenwood Jun 1915 A
1334901 Higdon Mar 1920 A
1643793 Sparhawk Mar 1926 A
1637488 Knopp Aug 1927 A
1772310 Hart Aug 1930 A
2097751 Baltich Nov 1937 A
2235966 Summers Mar 1941 A
2437006 Simpson Mar 1948 A
2491557 Goolsbee Dec 1949 A
2601189 Wales Jun 1952 A
2719986 Rand Oct 1955 A
2731652 Bishop Jan 1956 A
2782834 Vigo Feb 1957 A
2897741 Mauch Aug 1959 A
2938570 Flajole May 1960 A
2977456 Murphy Mar 1961 A
2998817 Armstrong Sep 1961 A
3008465 Gal Nov 1961 A
3012256 Zerbee Dec 1961 A
3030145 Kottemann Apr 1962 A
3101488 Peebles Aug 1963 A
3128161 Hudon Apr 1964 A
3148391 Whitney Sep 1964 A
3156242 Crowe Nov 1964 A
3199124 Grant Aug 1965 A
3209380 Watsky Oct 1965 A
3231454 Williams Jan 1966 A
3266064 Figman Aug 1966 A
3297023 Foley Jan 1967 A
3317934 Hinrichs May 1967 A
3340551 Hopkins Sep 1967 A
3363941 Wierwille Jan 1968 A
3390674 Jones Jul 1968 A
3394415 Parker Jul 1968 A
3399407 Olsen Sep 1968 A
3446203 Murray May 1969 A
3459179 Olesen Aug 1969 A
3462775 Markwitz Aug 1969 A
3462778 Whitney Aug 1969 A
3467081 Glass Sep 1969 A
3477071 Emerson Nov 1969 A
3485240 Fountain Dec 1969 A
3486177 Marshack Dec 1969 A
3526908 Davis Sep 1970 A
3587568 Thomas Jun 1971 A
3605138 Tucker Sep 1971 A
3605145 Graebe Sep 1971 A
3621199 Goldstein Nov 1971 A
3644950 Lindsay, Jr. Feb 1972 A
3653083 Lapidus Apr 1972 A
3656190 Regan et al. Apr 1972 A
3674019 Grant Jul 1972 A
3678520 Evans Jul 1972 A
3681797 Messner Aug 1972 A
3701173 Whitney Oct 1972 A
3705429 Nail Dec 1972 A
3711958 Lepage Jan 1973 A
3740777 Dee Jun 1973 A
3757356 Freeman Sep 1973 A
3757366 Sacher Sep 1973 A
3762404 Sakita Oct 1973 A
3775781 Bruno et al. Dec 1973 A
3822425 Scales Jul 1974 A
3829914 Treat Aug 1974 A
3866612 Buker Feb 1975 A
3878621 Duerre Apr 1975 A
3879776 Solen Apr 1975 A
3885257 Rogers May 1975 A
3885259 Cheong May 1975 A
3909858 Ducker Oct 1975 A
3919730 Regan Nov 1975 A
3920006 Lapidus Nov 1975 A
3928876 Starr Dec 1975 A
3974532 Ecchuya Aug 1976 A
4005236 Graebe Jan 1977 A
4057861 Howorth Nov 1977 A
4068334 Randall Jan 1978 A
4099276 Hunt et al. Jul 1978 A
4109331 Champeau Aug 1978 A
4149285 Stanton Apr 1979 A
4193149 Welch Mar 1980 A
4197837 Tringali et al. Apr 1980 A
4206524 Cook Jun 1980 A
4225989 Corbett et al. Oct 1980 A
4267611 Agulnick May 1981 A
4280487 Jackson Jul 1981 A
4305168 Holter et al. Dec 1981 A
4347633 Gammons et al. Sep 1982 A
4391009 Schild et al. Jul 1983 A
4422194 Viesturs et al. Dec 1983 A
4425676 Crane Jan 1984 A
4454615 Whitney Jun 1984 A
4472847 Gammons et al. Sep 1984 A
4481686 Lacoste Nov 1984 A
4483030 Flick et al. Nov 1984 A
4485505 Paul Dec 1984 A
4488322 Hunt et al. Dec 1984 A
4494260 Olds et al. Jan 1985 A
4525885 Hunt et al. Jul 1985 A
4525886 Savenije Jul 1985 A
4534078 Viesturs et al. Aug 1985 A
4542547 Sato Sep 1985 A
4554930 Kress Nov 1985 A
4572174 Eilender et al. Feb 1986 A
4583255 Mogaki et al. Apr 1986 A
4594797 Houck Jun 1986 A
4614000 Mayer Sep 1986 A
4617690 Grebe Oct 1986 A
4625487 Blakeway Dec 1986 A
4638519 Hess Jan 1987 A
4642825 Kurita Feb 1987 A
4653130 Senoue et al. Mar 1987 A
4654903 Chubb et al. Apr 1987 A
4685222 Houck Aug 1987 A
4686722 Swart Aug 1987 A
4694520 Paul et al. Sep 1987 A
4745647 Goodwin May 1988 A
4750224 Stracke Jun 1988 A
4750482 Sieverding Jun 1988 A
4756094 Houck Jul 1988 A
4768249 Goodwin Sep 1988 A
4777679 DeLooper Oct 1988 A
4780595 Alban Oct 1988 A
4799276 Kadish Jan 1989 A
4825486 Kimura et al. May 1989 A
4857705 Blevins Aug 1989 A
4864671 Evans Sep 1989 A
4871900 Hickman Oct 1989 A
4897890 Walker Feb 1990 A
4935968 Hunt et al. Jun 1990 A
4941220 DiMatteo et al. Jul 1990 A
4944060 Peery et al. Jul 1990 A
4947500 Seiler Aug 1990 A
4949412 Goode Aug 1990 A
4949413 Goodwin Aug 1990 A
4953247 Hasty Sep 1990 A
4959059 Eilender et al. Sep 1990 A
4961272 Lee Oct 1990 A
4962552 Hasty Oct 1990 A
4962769 Garcia Oct 1990 A
4989283 Krouskop Feb 1991 A
4989343 Ericsson Feb 1991 A
4999861 Huang Mar 1991 A
5003654 Vrzalik Apr 1991 A
5003705 Lee Apr 1991 A
5005240 Vrzalik Apr 1991 A
5007182 Fishman Apr 1991 A
5010608 Barnett et al. Apr 1991 A
5031261 Fenner, Sr. Jul 1991 A
5044029 Vrzalik Sep 1991 A
5062169 Kennedy et al. Nov 1991 A
5103518 Gilroy et al. Apr 1992 A
5103519 Hasty Apr 1992 A
5103577 Michael Apr 1992 A
5109560 Uetake May 1992 A
5121512 Kaufmann Jun 1992 A
5161267 Smith Nov 1992 A
5168589 Stroh et al. Dec 1992 A
5233712 Jurus et al. Aug 1993 A
5243723 Cotner et al. Sep 1993 A
5251349 Thomas et al. Oct 1993 A
5255404 Dinsmoor, III et al. Oct 1993 A
5267364 Volk Dec 1993 A
5267365 Walter Dec 1993 A
5269071 Hamabe Dec 1993 A
5325551 Tappel et al. Jul 1994 A
5353012 Barham Oct 1994 A
5369828 Graebe Dec 1994 A
5373595 Johnson et al. Dec 1994 A
5375273 Bodine Dec 1994 A
5377424 Albanes Jan 1995 A
5462519 Carver Oct 1995 A
5487196 Wilkinson et al. Jan 1996 A
5526543 DiMatteo Jun 1996 A
5542136 Tappel Aug 1996 A
5586346 Stacy et al. Dec 1996 A
5611772 Fujimoto Mar 1997 A
5651189 Coykendall Jul 1997 A
5652987 Fujita Aug 1997 A
5654694 Newham Aug 1997 A
5787523 Lindberg Aug 1998 A
5873137 Yavets-Chen Feb 1999 A
5873179 Gregory Feb 1999 A
5926884 Biggie et al. Jul 1999 A
5983429 Stacy et al. Nov 1999 A
6105273 Johanson et al. Aug 2000 A
6148461 Cook et al. Nov 2000 A
6264888 Palestro et al. Jul 2001 B1
6287253 Ortega et al. Sep 2001 B1
6292102 Smith Sep 2001 B1
6487739 Harker Dec 2002 B1
6646556 Smith et al. Nov 2003 B1
6687937 Harker Feb 2004 B2
6799342 Jarmon Oct 2004 B1
6949223 McEllen Sep 2005 B2
7030764 Smith et al. Apr 2006 B2
7090647 Mimura et al. Aug 2006 B2
7225488 Wu Jun 2007 B2
7761945 Butler Jul 2010 B2
8011041 Hann Sep 2011 B2
8087980 Palmer Jan 2012 B2
8973186 Bhai Mar 2015 B2
9015885 Chapin Apr 2015 B2
20010023363 Harth et al. Sep 2001 A1
20040098069 Clement et al. May 2004 A1
20040181268 Anderer Sep 2004 A1
20050273940 Petrosenko et al. Dec 2005 A1
20060025686 Ueno et al. Feb 2006 A1
20060065060 Ito et al. Mar 2006 A1
20140173825 Chiang et al. Jun 2014 A1