The present invention relates generally to healthcare apparel and, more specifically, to personal protective equipment (PPE) rear opening isolation gowns, such as for use by workers in the healthcare industry.
Isolation (or precaution) gowns are identified as the second-most-used piece of PPE, following gloves, in the healthcare setting. The isolation gown is intended to protect healthcare patients and personnel (e.g., doctors and nurses) from the transfer of potentially harmful microorganisms, body fluids, and/or particulate material. The gown generally covers the torso and clothing of a wearer acting as a physical barrier against the transfer of such microorganisms and other materials.
Isolation gowns should facilitate easy donning and doffing (removal) without self-contamination by the wearer. The isolation gown also should not restrict the movement of the body and should be breathable and comfortable to wear. Many different types of isolation gowns are currently available to healthcare workers with varying protection levels. Most of the isolation gowns in the market are of a rear opening style. Many of these rear-opening styles are disposable and, thus, generally designed for a single-use.
Certain disposable/single-use gowns utilize a system of closures (or fasteners) including backside neck and/or waist ties, which are designed to simplify donning of the gown and help provide “full body” protection for the wearer. And for doffing, such isolation gowns are commonly removed via a “pull forward” method, whereby the wearer (or another individual) grabs the front of the gown and pulls forcefully forward or away from the wearer's body until, for example, the gown fabric tears completely away from the tie closure(s) or vice-versa. To that end, the gown fabric and/or the tie itself is formed of such a material that it can be broken away or torn apart from the other if enough force is exerted during the pull forward method so as to allow the wearer to effectively doff the gown. This method eliminates the need to actively undo/untie any backside closure(s), and eliminates an opportunity for the wearer to touch their hair or neck with potentially contaminated gloves, thereby providing for safer removal of the gown after use. Although providing a certain level of convenience, disposable gowns can be viewed as environmentally unfriendly and, in the long run, may be more costly than isolation gowns that are designed for reuse/multi-use.
As an alternative to the disposable rear opening gown, the marketplace offers rear opening gown options that are designed for multi-use and which must be subjected to regular commercial laundering as a result. These types of gowns also generally utilize a system of fasteners, including backside neck and/or waist ties, which also are designed to simplify donning of the gown and help provide “full body” protection for the wearer. However, unlike disposable gowns, the pull forward method of removal has not previously been an option for gowns intended for reuse/multiple use. Notably, the fabric of the gown and the fasteners conventionally employed at the neck and/or waist for reusable rear opening gowns are not at all intended or designed to be easily broken apart/damaged. Indeed, the steadfastness of the fasteners and hardiness of the gown fabric of reusable gowns prohibits the use of the pull forward method, which would negatively impact the reusable life of the gown, such as by rendering the gown unsafe and ineffective for additional uses, and is completely contrary to its intended reusability.
Accordingly, the intended reusability of the gowns for subsequent safe and effective reuse necessitates that the reuseable gown be doffed without being damaged. At present, that requires wearers to reach behind and actively undo/untie any backside fasteners. However, as indicated above, backside untying/undoing, for example, can significantly increase the likelihood of harmful microorganisms and other materials contacting the neck or hair on the head or neck of a wearer, which can be unsafe and is highly undesirable.
It thus would be beneficial to provide an improved PPE rear opening isolation gown, such as for use in the healthcare industry, that is reusable and which can provide for ease of doffing, such as in a pull forward manner that is consistent with how current users of disposable isolation gowns are accustomed to removing such gowns, without substantial risk of damaging (e.g., tearing) the gown and without substantial risk of the transfer of potentially harmful microorganisms, body fluids, and/or particulate material, to the neck or hair on the head or neck of a wearer.
The present invention relates to PPE rear opening isolation gowns, such as for use in the healthcare industry, that are reusable and which can provide for ease of doffing without substantial risk of damaging (e.g., tearing) the gown and without substantial risk of the transfer of potentially harmful microorganisms, body fluids, and/or particulate material, to the neck or hair on the head or neck of a wearer. To that end, the reusable, rear opening isolation gown is provided with an easy release fastener(s) that provides a safe and secure hold when fastened but permits the gown to be removed easily, quickly, and more safely than other reusable options, such as in a pull forward manner that is consistent with how current users of disposable isolation gowns are accustomed to removing such gowns.
In one embodiment, a rear opening isolation gown is provided that includes a central body that wraps around a torso area of a wearer, a pair of opposing left and right sleeves that cooperate with and extend in a direction away from the central body, and a neck opening that accommodates a neck of the wearer. The central body and right and left sleeves include a front and a back. The back of the central body is separated into a right portion and a left portion, with one of the right or left portions including an overlapping section and the other portion including a corresponding overlapped section that is defined when the gown is donned and secured. The rear opening isolation gown also includes a plurality of fasteners provided at the back, with each fastener having corresponding first and second parts that cooperate with one another to define the fastener and secure the right and left portions together. Each first part is situated on the overlapping section of the right or left portion and each corresponding second part is situated on the corresponding overlapped section of the other portion of the gown. At least one of the plurality of fasteners is a hook and loop fastener that is situated proximate the neck opening and that facilitates ease of adjustment and donning and doffing of the gown, wherein when the front of the gown is pulled away from the wearer with enough force the hook and loop fastener comes undone without substantial risk of damaging the gown thereby allowing for reuse of the gown.
In another embodiment, a rear opening isolation gown is provided that includes a central body that wraps around a torso area of a wearer, a pair of opposing left and right sleeves that cooperate with and extend in a direction away from the central body, and a neck opening that accommodates a neck of the wearer. The central body and right and left sleeves include a front and a back and are formed from a lint free material. The back of the central body is separated into a right portion and a left portion, with one of the right or left portions including an overlapping section and the other portion including a corresponding overlapped section that is defined when the gown is donned and secured. The rear opening isolation gown also includes a plurality of fasteners provided at the back, with each fastener having corresponding first and second parts that cooperate with one another to define the fastener and secure the right and left portions together. Each first part is situated on the overlapping section of the right or left portion and each corresponding second part is situated on the corresponding overlapped section of the other portion of the gown. At least one of the plurality of fasteners is a hook and loop fastener having an average peel strength in a range from 0.1 PIW to 1.5 PIW and/or an average sheer strength in a range from 5 PSI to 25 PSI, that is situated proximate the neck opening, and that facilitates ease of adjustment and donning and doffing of the gown, wherein when the front of the gown is pulled away from the wearer with enough force the hook and loop fastener comes undone without substantial risk of damaging the gown thereby allowing for reuse of the gown.
In yet another embodiment, a method of doffing a rear opening isolation gown is provided that includes pulling apart first and second parts of a hook and loop fastener on a back of the rear opening isolation gown that securely cooperate with one another to define the fastener by pulling a front of the rear opening isolation gown away from a wearer of the gown with enough force to undo the hook and loop fastener without substantial risk of damaging the gown thereby allowing for reuse of the gown. The hook and loop fastener has an average peel strength in a range from 0.1 PIW to 1.5 PIW and/or an average sheer strength in a range from 5 PSI to 25 PSI and is situated proximate a neck opening of the gown.
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and, with a detailed description of the embodiments given below, serve to explain the principles of the invention.
Use of the descriptive terms such as left, right, top, bottom, front, back, vertical and/or horizontal hereinbelow, for example, as it pertains to/describes the gown 10, is from the viewpoint of a wearer of the isolation gown 10 (when properly donned), unless otherwise noted.
With reference to
One or more of the optional terminal cuffs 42, in other embodiments, may be absent altogether, with the long sleeve(s) 36, 38 simply defining an opening that is hemmed at a distal end of each sleeve 36, 38. In other embodiments, the terminal cuff 42 may be replaced with long sleeves having thumb loops (not shown), for example. And although the central body 34 and the sleeves 36, 38 are shown as separate pieces stitched together, such as by means known in the art, it should be appreciated that the central body 34 and sleeves 36, 38 could be fastened together by any means or formed of a single piece. In addition, the central body 34 can be formed of a single piece of material, or two pieces (e.g. a front and back) or more than two pieces with the pieces being stitched or fastened together, by means known in the art.
With further reference to
The fasteners 12, 14 are provided on the inner and outer surfaces 28, 30 at the back 22 of the gown 10 for securing the right and left portions 50, 52 together when the gown is worn. As shown in
As best shown in
The easy release fastener 12, which again can define a hook and loop fastener, in one example, can include an average peel strength of no greater than 1.5 pounds per inch of width (PIW). In another example, the average peel strength is no greater than 1.0 PIW. In another example, the average peel strength is no greater than 0.8 PIW. In another example, the average peel strength is no greater than 0.5 PIW. In another example, the average peel strength is no greater than 0.4 PIW. In another example, the average peel strength is in a range from 0.1 PIW to 1.5 PIW. In another example, the average peel strength is in a range from 0.1 PIW to 1.0 PIW. In another example, the average peel strength is in a range from 0.2 PIW to 0.8 PIW. In another example, the average peel strength is in a range from 0.3 PIW to 0.6 PIW. In another example, the average peel strength is in a range from 0.3 PIW to 0.5 PIW. In another example, the average peel strength is in a range from 0.35 PIW to 0.5 PIW. In another example, the average peel strength is 0.3, 0.35, 0.4, 0.45, 0.5, or 0.55 PIW. The average peel strength can be determined using the ASTM D5170 test method.
The fastener 12 also can include, in one example, an average shear strength of no greater than 25 PSI. In another example, the average shear strength is no greater than 20 PSI. In another example, the average shear strength is no greater than 18 PSI. In another example, the average shear strength is no greater than 15 PSI. In another example, the average shear strength is no greater than 9 PSI. In another example, the average shear strength is in a range from 1 pound per square inch (PSI) to 25 PSI. In another example, the average shear strength is in a range from 5 PSI to 25 PSI. In another example, the average shear strength is in a range from 5 PSI to 20 PSI. In another example, the average shear strength is in a range from 5 PSI to 18 PSI. In another example, the average shear strength is in a range from 7 PSI to 18 PSI. In another example, the average shear strength is in a range from 7 PSI to 15 PSI In another example, the average shear strength is in a range from 7 PSI to 10 PSI. In another example, the average shear strength is 5, 7, 8, 8.5, 9, 10, 15, 20, or 25 PSI. The average shear strength can be determined using the ASTM D5169 test method.
The easy release fastener 12 can be made of natural and/or synthetic materials, which can withstand standard commercial laundering conditions on a repeated basis. In one example, the fastener 12 can be made of polyester, nylon, aramid, or combinations thereof. In another example, the fastener 12 can be made of metal, e.g., stainless steel. In one example, the fastener 12 cannot be made of polypropylene. In one example, the fastener 12 can withstand no less than about 50 wash/dry/use cycles, where the wash(ing) and dry(ing) cycles are commercial laundering conditions. In another example, the fastener 12 can withstand no less than about 75 wash/dry/use cycles. In yet another example, the fastener 12 can withstand no less than about 100 wash/dry/use cycles. In another example, the fastener 12 can withstand repeated wash/dry cycles that include acidic and/or basic pH swing conditions in the wash liquor and drying temperatures of at least 200° F.
The corresponding parts 12a, 12b in
One example of an easy release fastener 12 suitable for use here is the Hook 65 and Loop 2000 product available from Velcro USA Inc. of Manchester, N.H. Another example of an easy release fastener 12 suitable for use here is the Hook 88 and Loop 2000 product available from Velcro USA Inc. of Manchester, N.H. Another example of an easy release fastener 12 suitable for use here is the Hook 46 and Loop 8000 HI-GARDE® Hook and Loop Fastener, which is available from Velcro USA Inc. of Manchester, N.H. Still another example of easy release fasteners 12 that can be suitable for use include those of the VELCRO® Brand Omni-Tape Hook and Loop Fastener, which has alternating rows of hooks and loops on a single side, available from WBC Industries, Inc. of Westfield, N.J.
With continuing reference now to
In an alternate embodiment, as shown in
The snap 14 can be made of metal, plastic, and the like, and optional reinforcement tabs (not shown), such as twill tape, can be secured to the gown 10 also by techniques known in the art, such as by being sewn, beneath one or both parts 14a, 14b of the snap 14 to create a reinforced base for the snap 14 with the snap 14 being secured thereon. Alternately, the snap 14 may be reinforced by self-fabric gathered or pinched in the attachment operation.
In another embodiment, as shown in
In an alternative embodiment, as shown in
With respect to
The isolation gown 10 can be provided in any number of desired lengths and sizes. The isolation gown 10 may be provided in any color, as desired. In one example, the isolation gown 10 is yellow in color. The isolation gown 10 also may optionally include pockets (not shown) or other surface features. In one example, a verifiable tracking system (not shown), such as a bar code or radio frequency chip, may be included on or in the gown 10, such as to track the number of laundering cycles of the gown 10, for example.
The central body 34 and sleeves 36, 38 of the gown 10 can be constructed of various materials such as conventional materials that are typically used in the construction of isolation gowns. Fabric construction can be woven, non-woven, or knitted. In one example, the fabric construction is a woven plain weave. In another example, the sleeves may be a double needle sleeve construction. The fabric material can include natural and/or synthetic fibers and may be lint free, as desired. In one example, the fabric includes polyester and/or cotton. In another example, the central body 34 and/or sleeves 36, 38 are substantially polyester, substantially cotton, or a polyester/cotton blend (e.g., a 50/50). The central body 34 and/or sleeves 36, 38 also may incorporate ESD (electrostatic dissipative)/anti-static yarns 70 therein. The ESD yarns 70 can include nylon or carbon fibers, and the like. In one example, the ESD yarns 70 are about 1% of the total material of the gown 10, but may be provided in a greater or lesser amount as desired.
The terminal cuffs 42 can be constructed of the same or different materials than those used for the central body 34 or sleeves 36, 38. Fabric construction can be woven, non-woven, or knitted. The fabric material can include natural and/or synthetic fibers and may be lint free, as desired. In one example, the terminal cuff 42 is a knitted cuff, which can be of a different material than the sleeves 36, 38. In one example, the knitted cuff is substantially polyester, substantially cotton, or a cotton/polyester blend (e.g., 50/50 blend). In another example, the terminal cuff 42 may be elastic and composed of an elastic material, such as rubber, latex, nitrile, vinyl, and the like. In other examples, the gown 10 may be fabricated with cuffs 42 altogether, thumbhole-type retention loops may be employed at the end of each sleeve 36, 38, or the sleeve 36, 38 may simply terminate with a hemmed or otherwise finished opening for the hand.
In one embodiment, the central body 34, sleeves 36, 38, and/or cuffs 42 include or are composed solely of liquid resistant material, such as polyester, and/or are liquid resistant so as to conform to at least minimum standards established for Level 1 classification by AAMI PB70 Standard. In one example, the fabric for the central body 34, sleeves 36, 38, and/or cuffs 42 may be provided with a liquid resistant finish, such as a fluorocarbon based finish. In another example, the fabric may be provided with an antimicrobial finish. In another embodiment, additional layer(s) or reinforcements, laminates, chemical finishes, and/or films (e.g., plastic films) may be incorporated into the gown 10 to provide the necessary liquid resistance.
The rear opening isolation gown 10 is donned in a rear-opening orientation, as is known in the art. That is, the right sleeve 36 and left sleeve 38 receive a wearer's arms with the optional terminal cuffs 42 being situated generally ideally around the wearer's wrists. Medical gloves may be worn over the hands and may be placed over all or a portion of the cuffs 42. The neck opening 40 accommodates the neck of a wearer with the central body 34 wrapping around the torso area of a wearer so that the overlapping section 54 overlaps the corresponding overlapped section 56 at the back of the wearer, when an appropriately sized gown 10 is properly donned. After the overlapping section 54 overlaps the corresponding overlapped section 56, the first and second parts 12a, 12b, 14a, 14b of the fasteners 12, 14 can mate and/or cooperate with another for securing the right and left portions 50, 52 together thereby providing a secure, full body fit for a wearer that facilitates ease of adjustment.
For doffing, as shown in
While the present invention has been illustrated by a description of various embodiments and while these embodiments have been described in considerable detail, it is not the intention of the applicant to restrict or in any way limit the scope of the appended claims to such detail. Additional advantages and modifications will readily appear to those skilled in the art. Thus, the invention in its broader aspects is therefore not limited to the specific details, representative apparatus and method and illustrative example shown and described. Accordingly, departures may be made from such details without departing from the spirit or scope of applicant's general inventive concept.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 62/400,893, filed Sep. 28, 2016 and hereby incorporated by reference in its entirety.
Filing Document | Filing Date | Country | Kind |
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PCT/US2017/033513 | 5/19/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2018/063449 | 4/5/2018 | WO | A |
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62400893 | Sep 2016 | US |