The present invention relates to patient supports, such as hospital beds. More specifically, the present invention relates to the apparatus and methods for closing gaps that may exist between components on a patient support.
The detailed description of the drawings particularly refers to the accompanying figures in which:
A patient support 10 is shown in
Patient support 10 may be produced originally in a manufacturing plant as an OEM bed or by retrofitting an existing patient support such as the patient support shown in U.S. Pat. Nos. 6,321,878 and 6,320,510, the disclosures of which are expressly incorporated by reference herein. When building an OEM bed, sub-frame 28 is coupled to frame 12 at the manufacturing plant. When retrofitted at the point of use or otherwise, sub-frame 28 is coupled to frame 12 at a location away from the manufacturing plant. During an OEM installation, foot end siderails 20 are initially mounted to sub-frame 28. During a non-OEM retrofit, foot end siderails 20 are removed from being coupled to a foot section 30 of deck 14 and then coupled to sub-frame 28 so that foot end siderails 20 no longer articulate with foot section 30.
As shown in
Slide cylinder 46 defines a circular aperture therein. The circular aperture has an inner diameter slightly larger than an outer diameter of cylindrical I.V. mount post 40. Slide cylinder 46 passes over cylindrical I.V. mount post 40 so cylindrical I.V. mount post 40 is positioned with the circular aperture of slide cylinder 46. Slide cylinder 46 is slightly shorter than cylindrical I.V. mount post 40 such that cylindrical I.V. mount post 40 extends out of circular aperture 50 when cylindrical I.V. mount post is seated thereon.
A second end 52 of space member 44 is coupled to a foot end 54 of body member 34, preferably by welding. Space member 44 vertically and horizontally offsets foot end 54 of body member 34 from I.V. mount post 40 of frame 12. Head end 56 of body member 34 is coupled to pin assembly 38.
Pin assembly 38 includes a body mount 57 and a frame mount 58. Body mount 57 is coupled to a head end 56 of body member 34 with bolts passing through voids (not shown) defined in body mount 57 and body member 34 and nuts fastened to the bolts. Frame mount 58 is substantially cylindrical having one end coupled to body mount 57 and another end having a threaded aperture axially defined therein. The threaded aperture is aligned with an OEM seat section I.V. socket aperture of patient support 10. A bolt 60 is passed through a washer and the I.V. socket aperture to threadably engage the threaded aperture and secure pin assembly 38 to frame 12 of patient support 10 as shown in
Sub-frame 28 further includes a symmetric retracting frame cross member 62. As shown in
Each rail bar 32 further includes a slide bracket 70 coupled to respective middle portions 60 of rail bodies 34. Slide brackets 70 include a substantially flat metal plate 72 that couples to middle portion 60 of rail body member 34 and a pair of rods 74 that extend from plate 72 and into walls 66.
Foot end siderails 20 and head end siderails 16 each include a rail member 76, 78 and a linkage 80. Linkage 80 includes a plurality of support arms 82, 84 pivotally coupling rail member 76, 78 to a linkage base 86. Linkage bases 86 of foot end siderails 20 are coupled to respective rods 74 of slide bracket 70 to permit sliding on rods 74. This sliding permits lateral movement of linkage bases 86 and the remainder of foot end siderails 20 relative to deck 14.
Foot end siderails 20 are coupled to frame 12 through sub-frame 28 of the patient support 10 rather than deck 14 of the patient support 14 as shown in
During a non-OEM assembly, foot end siderails 20 are uncoupled for foot section 30 of deck 14. Each lateral end of cross member 62 is then coupled to frame 12 under foot section 30. Rail bars 32 are then coupled to frame 12 by first inserting I.V. sockets 36 over respective I.V. mount posts 40 of frame 12. Frame mounts 58 of pin assemblies 38 are then bolted to deck 14 using the previously unused I.V. socket apertures formed in deck 14. Then body members 34 are bolted to body mounts 57 of pin assemblies 38. In the alternative embodiment, the cross member is then bolted to the respective body members 34 rather than to frame 12.
Next, slide brackets 70 of foot end siderails 20 are slide over rods 74. Slide brackets 70 are then bolted to body members 34 to complete the relocation of foot end siderails 20 from foot section 30 to frame 12 through sub-frame 28. In an OEM application, it is unnecessary to uncouple foot end siderails 20 from foot section 30 because they are never coupled there to begin with.
Head end rail member 76 includes a steel perimeter frame member 88 coupled to respective support arms 82, 84 by a downwardly extending bracket 90, a two-piece plastic body member 92 coupled to perimeter frame member 88, and a set of plastic canes or covers 94, 96, 98 coupled to perimeter frame member 88. Foot end rail member 78 includes a steel perimeter frame member 110 coupled to respective support arms 82, 84 by a downwardly extending bracket 112, a two-piece plastic body member 114 coupled to perimeter frame member 110, and a set of plastic canes or covers 116, 118, 120 coupled to perimeter frame member 110. Preferably, perimeter frame members 88, 110 are substantially parallelogram-shaped having slightly rounded corners. Body members 92, 114 are substantially rectangular and are substantially positioned within interior regions defined by perimeter frame members 88, 110.
In an OEM application, covers 94, 96, 98, 116, 118, 120 are initially coupled to respective frame members 88, 110 at the manufacturing facility. Preferably, end covers 94, 96, 116, 118 are placed over the ends of respective frame members 88, 110. Then, fasteners, such as screws, are used to couple covers 94, 96, 98, 116, 118, 120 to the top and bottom ends of the respective frame members 88, 110. In a retrofit application, the original canes (such as canes 118, 130, 120 shown in
Cane 94 provides head end siderail 18 with a head end that is substantially vertical and perpendicular relative to a plane defined by deck 14. Cane 96 provides head end siderail 18 with a foot end shaped as a convex arc. Cane 98 continues this convex arc over body member 92 toward the head end. Preferably, this convex arc has a radius of curvature 132 equal to the distance between the tangent of the convex arc to a pivot point 134 of head section 26 of deck 14 as shown in
Cane 116 provides foot end siderail 20 with a head end shaped as downwardly facing concave arc. The concave arc is sized and shaped to provide a gap of constant width between cane 96 and cane 116. Preferably, this gap is about 1.0 inches (25.4 millimeters). According to another embodiment, this gap is less than or equal to 2.4 inches (60 millimeters). Preferably, this concave arc has a radius of curvature 136 equal to the distance between the tangent of the concave arc to pivot point 134 of head section 26 of deck 14. Preferably, this distance is about 18.5 inches (470 millimeters).
Head end siderail 18 is coupled to deck 14 that articulates. Foot end siderail 20 is coupled to frame 12 via sub-frame 28 that does not articulate. The convex arc of cane 96 and the concave arc of cane 116 complement one another during rotation of head section 26 of deck 14 to maintain the gap at the constant width between cane 96 and cane 116 as the patient support articulates.
As shown in
In a first position, as shown in
Head end siderail 18 is lowered by clocking head end siderail 18. Clocking head end siderail 18 causes bracket 152 to abut bail flap 148. As head end siderail 18 continues to lower, bracket 152 continues to raise relative to bail 146. Raising bracket 152 urges bail flap 148 and bail rod 150 to rotate and ultimately assume the first position of bail 146. When bail 146 is in first position, head end siderail 18 can move without bail 146 contacting mattress 16 or deck 14.
Preferably an OEM headboard (shown in U.S. Pat. Nos. 6,320,510 and 6,321,878) is similarly replaced with headboard 22 that presents sides substantially perpendicular to the plane defined by deck 14 as shown in
To removably couple headboard to frame 12, an adaptor bracket 156 is provided as shown in
First and second frame attachments 160, 162 are cylindrical and have apertures defined therein. The apertures are sized to receive headboard posts 168 of head member 166 therein. Bracket 156 is placed over head member 166 such that each of headboard posts 168 is received within one of the apertures of first and second frame attachments 160, 162. When so placed, cylindrical headboard attachments 164 are substantially vertical.
Headboard 22 includes a pair of mount apertures formed on a bottom edge thereof. The mount apertures are sized, shaped, and spaced to simultaneously receive both headboard attachments 164 therein. For installation, headboard 22 is positioned such that each mount aperture is positioned above a headboard attachment 164 and then headboard 22 is lowered such that headboard attachments 164 enter the mount apertures.
An alternative embodiment patient support 1610 is shown in
An alternative embodiment siderail 1660 is shown in
Rail member 1664 is an elongated, substantially flat piece of metal, plastic, or combination thereof. Rail member 1664 has two ends 1668, 1670, an upper side 1672, a lower side 1674, an inner side 1676 that faces a mattress (not shown), and an outer side 1680. Rail member 1664 also has apertures 1682 defined therein near each end 1668, 1670. Because of the clearance provided by apertures 1682, rail member 1664 define relatively thin handles 1684 suitable for grasping by a user.
The bottom of each handle 1684 further has a void 1686 defined therein. Void 1686 is sized to receive a screw, bolt, rivet, or other suitable fastener 1688 that couples a rail extension holder 1690 to rail member 1664. Rail extension 1692 is rotatably coupled to rail extension holder 1690. Preferably, rail extension 1692 is a shaped metal rod as shown in
Linkage assembly 1666 is attached to inner side 1676 of rail member 1664. Linkage assembly 1666 includes two link members 1694. Link members 1694 are substantially identical angled metal or plastic pieces. First ends 1696 of link members 1694 have axles 1698 extending therefrom. Axles 1698 rotatably couple to rail members 1664 so as to rotatably couple link members 1694 to rail members 1664. Likewise, second ends 1700 of link members 1694 have axles 1702 extending therefrom. Axles 1702 rotatably couple to deck mount 1662.
Rail member 1664 may assume a plurality of positions relative to deck 1662 such as a raised position, shown in
Another embodiment patient support 1910 is shown in
Connector pins 1936 are provided that are positioned in connector voids 1938 formed in height adjust sliders 1930 to slidably couple base member 1928 to slider 1930. Height adjust sliders 1930 are rotatably coupled to lever members 1926. Deck 1918 has a pair of apertures 1940 defined therein through which retainer member 1932 extends.
Retainer members 1932 are preferably rigid U-shaped metal wires or rods. A base 1942 of U-shaped retainer member 1932 is positioned above deck 1918 so as to allow tines 1944 of U-shaped retainer member 1932 to extend through apertures 1940 of deck 1918 and cores of coil springs 1934 and couple to base member 1928. Each mattress retainer 1912 is configured to limit or block a gap between siderail 1914 and mattress 1916. Mattress retainers 1912 achieve the limiting of gaps by securing the positioning of mattress 1916. Mattress retainers 1912 engage sides of mattress 1916 to prevent lateral mattress 1916 shifting. Furthermore, retainers 1912 block the compression of the upper corners of mattress 1916 when a patient lies near siderail 1914. According to alternative embodiments of the present disclosure, retainers are provided adjacent the foot end siderails, if any.
Mattress retainers 1912 are configured to retract or lower when siderails 1914 are moved to a lowered position as shown in
As shown in
Base members 1938 then lower in direction 1950 as urged by height adjustment members 1930 and springs 1934 that bias base members 1938 toward deck 1918 are expanded. Thus, as rail members 1920 are lowered, retainer members 1932 are likewise lowered as shown in
Another patient support 510 is provided in
Each siderail 518, 522 includes an upper edge 524, 526 that includes a substantially flat portion 528, 530 and a notched portion 532, 534. Additionally, siderail 518 includes an left-most edge 536 that includes a circular portion 538 and upper edge 526 of side rail 522 includes a circular portion 540. Circular portions 538, 540 have radii of curvature that extend from an axis of rotation 542 of head section 520 of deck 516.
Notched portion 534 permits a portion 544 of siderail 518 positioned nearest a foot end of patient support 510 to rotate further about axis of rotation 542 before a gap 546 between portion 544 and siderail 522 begins to close. Thus, head section 520 of deck 516 can rotate further about axis of rotation 542. Circular portions 538, 540 permit siderail 518 to rotate relative to siderail 522 without gap 546 narrowing.
Notched portions 532, 534 define a distance 535 between their respective vertically extending edges 537, 539 that is at least 318 mm (12.5 inches). Gap 546 is preferably between 25 mm (1 inch) and 60 mm (2.4 inches). By providing notched portions 532, 534, a caregiver is provided easier access to a patient positioned on the mattress.
According to an alternative embodiment of the present disclosure, notched portion 532 of upper edge 524 is not provided and a left-most edge 545 (partially shown in phantom) is provided that is the inverse of notched portion 534 of side rail 522. Thus, when head section 520 and siderail 518 are rotated to the inclined position, left-most edge 545 is parallel to notched portion 532 of upper edge 524 and spaced equidistant therefrom.
According to one embodiment of the present disclosure, a patient support 410 is provided with head and foot end siderails 416, 418, a headboard 478 shown in
As shown in
An alternative pair of head and foot end siderail members 918, 920 is shown in
An alternative embodiment pair of head and foot end siderails 1450, 1452 is provided in
A patient support 610 is shown in
As shown in
Bumpers 644 are provided to decrease the width of openings 640, 642. For example, two bumpers 644 are coupled to insert 638 to decrease the width of the upper and side portions of opening 640. A bumper 644 is coupled to insert 638 to decrease the width of opening 642. Alternatively, bumpers 644 may be coupled to other locations on siderail 628. For example, as shown in the lower right-hand portion of rail 628, bumper 644 is coupled to perimeter rail 630. According to the preferred embodiment of the present disclosure, bumpers 644 are provided so that a cone having a maximum diameter of 120 mm cannot pass through openings 640, 642. Thus, after installation of bumpers 644, the maximum open area in the siderail does not exceed 120 mm in diameter.
Preferably, bumpers 644 include a rigid base 648 and a compliant top 650 made of a rubber material coupled to base 648. Base 648 is preferably coupled to rail 628 by a screw (not shown). According to alternative embodiments of the present disclosure, the bumpers are coupled to the siderails by other types of fasteners such as adhesives, bolts, rivets, or other fasteners known to those of ordinary skill in the art.
According to one installation procedure, bumpers 644 are installed to siderail 628 at the location of use of siderail 628, such as a hospital or other care facility, after siderail 628 and the remainder of the accompanying bed have been transported to the care facility. According to another installation procedure, bumpers 644 are installed at the manufacturing facility before shipment to the care facility.
An alternative embodiment bumper 650 is shown in
A plurality of panels 654, 656 are also provided that partially fill opening 640. Panels 654, 656 are configured to reduce to the width of opening 640. According to alternative embodiments of the present disclosure, additional panels are provided that entirely fill openings 640 and either partially or completely fill openings 642. Preferably, panels 654, 656 are made of a transparent material such as polycarbonate, Lexan-brand plastic, Plexiglas-brand plastic, or other material. According to other alternative embodiments, the panels are made of translucent or opaque materials.
Another alternative embodiment patient support 2060 is shown in
Inserts 2078 are provided to decrease the width of openings 2080. Inserts 2078 include a rail engagement side 2082. Rail engagement side 2082 includes a rail track 2084 and two track walls 2086 as shown in
Another alternative embodiment siderail 2110 is shown in
Inserts 2122 are provided to decrease the width of openings 2124. Inserts 2122 are preferably metal tubes bent to the shape shown best in
Alternative embodiment inserts 2134, 2136 are shown in
Another alternative embodiment insert 2144 is shown in
As shown in
Siderail 658 is provided with another embodiment clear plastic cover 710 shown in
According to one alternative embodiment, the plastic sheet is thermally reactive and shrinks in reaction to heat. Such plastic materials are commonly used to cover windows during cold months. After siderail 658 is wrapped, a heat source (such as a hair dryer) is used to blow hot air over the sheet. The sheet then shrinks to form a tight fit over siderail 658. When a new patient uses the patient support, the plastic sheet is removed and replaced with a new wrapping of plastic material.
According to an alternative embodiment of the present disclosure, patient support 210 is provided with a patient-assist arm 244 as shown in
Patient-assist arm 244 pivots about an axis of rotation 246 that is located in a vertical plane and at an angle of 45 degrees relative to the head section of the deck. Thus, when patient-assist arm 244 is moved from a raised position, as shown in
Additional disclosure of patient-assist arm 244 and configuration for coupling and latching patient-assist arm to a deck section is provided in U.S. Pat. No. 5,060,327 to Celestina et al, the disclosure of which is expressly incorporated by reference herein. According to alternative embodiments of the present disclosure, other configurations of patient-assist arms are coupled to the head section of the deck using the angled pivot arrangement shown U.S. Pat. No. 5,060,327. According to another embodiment, the patient-assist arms shown in U.S. Pat. No. 6,240,583, filed Nov. 9, 1999 to Brooke et al. are coupled to the head section to rotate about the angle pivot. Alternatively, the patient assist arms are coupled to the head section using the coupling configuration provided in U.S. Pat. No. 6,240,583, the disclosure of which is expressly incorporated by reference herein.
Another patient support 810 is provided in
Patient support 810 further includes a foot end siderail 816 coupled to deck 720. According to an alternative embodiment of the present disclosure, the foot end siderail is coupled to the intermediate frame. Patient support 810 further includes a head end siderail/headrail 818 that is positioned on each side of head section 724 and around the end of head section 724. Rail 818 is pivotally coupled to intermediate frame 716 by a support arm 820. As shown in
A portion of a patient support is shown in
As shown in
Another deck 1046 and mattress 1048 are shown in
As shown in
Mattress 1026 includes a layer of tick or a cover 1062, a fire barrier 1064, and a foam core 1066 positioned in fire barrier 1064. According to alternative embodiments, other core configurations known to those of ordinary skill in the art are provided. A plastic panel 1068 is adhered to core 1066 and a plywood board 1070 is sandwiched between plastic panel 1068 and core 1066. A screw 1072 is driven through magnet 1052, cover 1062, fire barrier 1064, plastic panel 1068, and into board 1070 to couple magnets 1052 to mattress 1048. Preferably, magnets 1052 are flexible and are 8 inches long, 1.5 inches wide, and 0.25 inches thick.
To couple mattress 1026 to deck 1046, mattress 1026 is first positioned on deck 1026. Mattress 1026 is then slid transversely until magnets 1052 “drop” into voids 1050 and stick to metal receptacles 1056. Because deck panel 1054 is plastic, magnets 1052 are not attracted to panel 1054 and slide freely on panel 1054. In addition to the attraction of magnets 1052 to metal receptacles 1056, the interaction of the edges of magnets 1052 with the edges defining voids 1050 prevents transverse movement of mattress 1026. To remove mattress 1026, magnets 1052 are lifted out of voids 1050 against the magnetic force between magnets 1052 and receptacles 1056.
An alternative embodiment deck 1074, magnet 1076, and receptacle 1078 are shown in
An alternative embodiment patient support 1510 is shown in
As shown in
Head end flap 1512 includes a main flap 1524 and an auxiliary flap 1526 that is pivotable relative to main flap 1524 at a pivot 1532 between main and auxiliary flaps 1524, 1526. Main flap 1524 is attached to and extends along a head section 1528 of patient support 1510. Auxiliary flap 1526 extends along a seat section 1530 of patient support 1510. Pivot 1532 is positioned above a pivot 1534 of head section 1528 and seat section 1530. As head section 1528 articulates relative to seat section 1530, flaps 1524, 1526 maintain their positions relative to their respective sections 1528, 1530 of patient support 1510 as shown in
Lowering siderails 1516 allows main flap 1524 to rotate via hinges 1544 relative to deck 1520 and assume a lowered position as shown in
Flaps 1512, 1514 are preferably detachable from the rest of the patient support to permit removal of flaps 1512, 1514 from deck 1520. Latches 1538 and base plates 1536 removably clamp flaps 1512, 1514 to deck 1520. Base plates 1536 include a hook portion or a plurality of hook portions 1546 that engage a side of deck 1520 as shown in
Another embodiment patient support 1960 is shown in
Another alternative embodiment siderail 2210 is shown in
Rotation plate 2226 includes a slide attachment 2236, a spacer 2238, a hinge member 2240, and a spring attachment void 2241. Lever 2228 includes a hinge void 2242, a lock pin 2244, a spring attachment void 2246, and a release arm 2248 having a push plate 2250 thereon. Spring 2230 is a coil type spring that extends between spring attachment voids 2241, 2246.
Slide attachment 2236 of rotation plate 2226 includes apertures 2252 positioned to align with similar apertures 2254 in slide 2216 to receive bolts or another suitable couplers. Spacer 2238 is coupled, preferably by welding, to slide attachment 2236 and rotation plate 2226 and includes a hinge pin 2256 extending upwardly therefrom. Hinge pin 2256 in positioned in hinge void 2242 of lever 2228 to allow lever 2228 to rotate thereon. Hinge member 2240 includes a vertical plate, a horizontally extending, threaded hinge pin 2258, an upper rotation stop 2260, a lower rotation stop 2262, a lock pin void 2264 and spring attachment void 2241.
Release arm 2248 is a substantially flat piece of metal having hinge void 2242 defined in a first end 2266 thereof. Push plate 2250 is a substantially flat piece of metal perpendicularly coupled to a second end 2286 of release arm 2248. Spring attachment void 2246 is disposed in a metal appendage 2270 that extends upwardly from release arm 2248. Lock pin 2244 extends horizontally from a metal flange 2272 that extends downwardly from release arm 2248. Spring 2230 biases lock pin 2244 to a first position within lock pin void 2264.
Threaded hinge pin 2258 is positioned within attachment void 2221 of attachment portion 2220. Washers 2274, 2276 are positioned on hinge pin 2258 and a nut 2278 is threaded onto hinge pin 2258 to rotatably secure attachment portion 2220 of rail member 2212 to rotation plate 2226 of coupling mechanism 2214. Lock void 2223 is positioned such that when lever 2228 is in first position and rail member 2212 is in a raised position, lock pin 2244 extends through lock pin void 2264 and lock void 2223 to prevent relative motion between rail member 2212 and deck 2216.
Depressing push plate 2250 places lever 2228 in a second position. During movement of lever 2228 to the second position, lock pin 2244 is removed from lock void 2223 to permit attachment portion 2220 to rotate relative to rotation plate 2226 in direction 2280. This also moves rail member 2212 to a lowered position as shown in
A removable rail member 2284 is shown in
Another alternative embodiment blocker 358 is shown in
Another alternative embodiment patient support 2510 is shown in
As shown in
Linkage attachment flange 2526 are flat metal flanges that extend perpendicularly to plate 2534 away from mattress 2518. Linkage attachment flange 2526 have holes 2536 defined therein for receiving a suitable coupler 2538. Rail attachment hinge 2530 is preferably a strap of seatbelt-like material. Hinge 2530 has a mating snap at both ends such that the material couples to base 2520 and to rail member 2524 that also has a snap clasp thereon. Rail attachment hinge 2530 allows rail member 2524 to pivot relative to base 2520. Position lock 2532 is a plastic piece mounted on plate 2534. Position lock 2532 is substantially rectangular and includes rounded corners, a lock track 2540, and two lips 2542. Lock track 2540 is a channel positioned between lips 2542 that extends along the outer edge of position lock 2532. Lock track 2540 is sized to receive a lock bar 2544 of linkage 2522. Position lock 2532 also includes holes 2546 that receive connectors that couple position lock 2532 to plate 2534.
Linkage 2522 includes a lock bar 2544, two slide base connectors or linkages 2550 slidably and rotatably coupled to base 2520, and two rail connectors 2552 fixedly coupled to rail member 2524. Lock bar 2544 is a bent aluminum rod including a first end 2554, second end 2556, and middle 2558 positioned between first end 2554 and second end 2556. First end 2554 is partially threaded to receive a nut thereon and is substantially straight. Moving from first end 2554 toward middle 2558, lock bar 2544 makes a rounded 90-degree bend, has a first displacement section 2560, makes a second 90-degree bend, and then forms middle 2558 that is parallel with first end 2554. Moving from middle 2558 toward second end 2560 lock bar 2544 makes a rounded 90-degree bend, has a second displacement section 2562 parallel with first displacement section 2560, makes another 90-degree bend, and then forms partially threaded second end 2556 that is collinear with first end 2554. Middle 2558 of lock bar 2544 has a diameter sized to be received within lock track 2540 of position lock 2532.
Slide base linkages 2550 are generally flat metal elongated members each having an upper end 2564, a lower end 2566, an elongated hole or track 2568 defined therein extending from upper end 2564 to lower end 2566, and a lock bar aperture 2570 at upper end 2564. Track 2568 is sized to receive coupler 2538 therein so that linkage 2520 is thereby slidably coupled to base 2520 as coupler 2538 is able to slide to a plurality of positions within track 2568. Lock bar aperture 2570 is preferably separated from track 2568; however, embodiments are envisioned where a washer is provided that is welded over track 2569 thereby partitioning off part of track 2569 that the washer defines the lock bar aperture.
Rail connectors 2552 are flat rounded rectangle metal plates including lock bar holes 2574 and rail connecting holes 2576. Lock bar holes 2574 are sized to receive ends 2554, 2556 of lock bar 2544 therethrough. Rail connecting holes 2576 are sized to receive a suitable connector to couple rail connectors 2552 to rail members 2524. When assembled, ends 2554, 2556 of lock bar 2544 extend through lock bar apertures 2570 of linkages 2522 and holes 2574 of rail connectors 2552. A nut or other fastener is provided on ends 2554, 2556 to hold lock bar 2544 in the respective apertures.
Rail member 2524 includes an endoskeleton or inner support member 2578 and a cushion 2580. Endoskeleton 2578 is constructed from plastic or other substantially rigid material having a substantially triangular cross section. Endoskeleton 2578 includes a first solid side 2582, a second solid side 2584 coupled to first solid side 2582, two ends 2586 each coupled to both solid sides 2582, 2584, and an open side defined by sides 2582, 2584 and ends 2586. First solid side 2582 is spaced apart from base 2520 of siderail 2516. First solid side 2582 curves as it meets second solid side 2584. Second solid side 2584 has snap clasps attached thereto to attach to snaps of rail attachment hinge 2530. Ends 2586 are substantially triangular and have holes defined therein for receiving a suitable connector to couple rail connectors 2552 to rail members 2524. Cushion 2580 includes a soft inner portion (not pictured) and a pliable plastic cover 2588. Soft inner portion covers the outside of endoskeleton 2578 on all sides except the open side. Inner portion is preferably thicker outside first solid side 2582 and ends 2586 than it is outside second solid side 2584. Plastic cover 2588 is preferably liquid proof and combines with endoskeleton 2578 to encompasses inner portion.
In operation, siderails 2516 may assume three positions, a raised position, shown in
To move siderail 2516 from the raised position to the egress position middle 2558 of lock bar 2544 is first raised to disengage lock bar 2544 from lock track 2540. Rail attachment 2530 is disengaged from base 2520 or rail member 2524 thereby allowing rail member 2524 and linkage 2522 to rotate around coupler 2538 of linkage attachment 2530. Rail member 2524 rotates to arrive at egress position shown in
Preferably, instructions for the assembly, installation, and/or use of the patient supports and other devices disclosed herein are provided with the patient supports of other devices or otherwise communicated to permit a person or machine to assemble, install and/or use the patient supports and other devices. Such instructions may include a description of any or all portions of patient supports and devices and/or any or all of the above-described assembly, installation, and use of the patient supports and devices. Furthermore, such instructions may describe the environment in which patient supports and devices are used. The instructions may be provided on separate papers and/or the packaging in which the patient support or other devices are sold or shipped. Furthermore, the instructions may be embodied as text, pictures, audio, video, or any other medium or method of communicating instructions known to those of ordinary skill in the art.
Although the invention has been described in detail with reference to certain preferred embodiments, variations and modifications exist within the scope and spirit of the present invention.
This application is a divisional of U.S. application Ser. No. 11/734,456, filed Apr. 12, 2007 , now U.S. Pat. No. 7,591,034, which is a continuation of U.S. application Ser. No. 11/095,967, filed Mar. 31, 2005, now U.S. Pat. No. 7,222,377 which is a continuation of U.S. application Ser. No. 10/225,780, filed Aug. 22, 2002, now U.S. Pat. No. 7,028,352 which claims priority to U.S. provisional application Ser. No. 60/397,342 filed Jul. 19, 2002, and U.S. provisional application Ser. No. 60/314,276 filed Aug. 22, 2001, the disclosures of which are incorporated by reference herein.
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Number | Date | Country | |
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20100005589 A1 | Jan 2010 | US |
Number | Date | Country | |
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60397342 | Jul 2002 | US | |
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Number | Date | Country | |
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Parent | 11734456 | Apr 2007 | US |
Child | 12563273 | US |
Number | Date | Country | |
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Parent | 11095967 | Mar 2005 | US |
Child | 11734456 | US | |
Parent | 10225780 | Aug 2002 | US |
Child | 11095967 | US |