Inflatable member for compression foot cuff

Information

  • Patent Grant
  • 8636678
  • Patent Number
    8,636,678
  • Date Filed
    Tuesday, July 1, 2008
    16 years ago
  • Date Issued
    Tuesday, January 28, 2014
    10 years ago
Abstract
A foot cuff that is inflatable to apply compression to the foot to promote blood flow has a bladder formed of two layers of material secured together. An outer layer includes a foot-underlying portion that has a greater thickness and rigidity that an opposing inner layer. The outer layer directs expansion of the bladder upon inflation in the direction of the inner layer and toward the foot for increasing compressive force applied to the foot.
Description
FIELD OF THE INVENTION

The present invention generally relates to an inflatable member for a compression foot cuff.


BACKGROUND

Compression devices for applying compressive forces to a selected area of a wearer's anatomy are generally employed to improve blood flow in the selected area. Compression devices that provide intermittent pulses of a compressed fluid (i.e., air) to inflate at least one inflatable chamber in a cuff or sleeve are particularly useful. This cyclic application of pressure provides a non-invasive prophylaxis to reduce the incidence of deep vein thrombosis (DVT), and the like. These compression devices find particular use during surgery or long periods of immobility on patients with high-risk conditions such as obesity, advanced age, malignancy, or prior thromboembolism. Patients who develop this condition often have swelling (edema) and tissue breakdown (venous stasis ulcer) in the lower leg. When a DVT occurs, the valves that are located within the veins of the leg can be damaged, which in turn can cause stasis and high pressure in the veins of the lower leg.


Generally, these compression devices are fluidly coupled to a source of pressurized fluid by one or more air tubes. Additionally, each compression device includes a flexible shell having one or more bladders disposed therein. The compression device is placed around the patient's foot or other selected portion whereupon a pressurized fluid is delivered into the bladder creating pressure at the part or parts of the body in contact with the bladder.


Compression cuffs adapted for use with a patient's foot may be used by themselves or combined with one or more additional compression cuffs or sleeves that are disposed on portions of a patient's leg for improving the treatment regimen. In general, each of the additional compression sleeves includes a plurality of separate inflatable chambers that are progressively arranged along a longitudinal axis of the sleeve from a lower portion to an upper portion of the limb. A pressure source, e.g. a controller, is provided for intermittently forming a pressure pulse within these inflatable chambers from a source of pressurized fluid during periodic compression cycles. The compression sleeves provide a pressure gradient along the patient's limbs during these compression cycles which progressively decreases from the lower portion to the upper portion of the limb (e.g. from the ankle to the thigh).


Compression cuffs that are adapted for use with a patient's foot generally include a heel strap with a tab portion that is adapted to fit around a portion of the patient's heel. This arrangement allows the compression cuff to be wrapped around and releasably attached to the patient's foot. The compression cuff may include a generally rigid sole to direct expansion of the inflatable chamber toward the wearer's foot. The rigid sole needs to be located under that portion of the inflatable member that is acting on the portion of the foot to produce blood flow out of the foot. Conventionally, the rigid sole is temporarily attached to the bladder by double stick tape. Final location and positioning of the rigid sole may be carried out by stitching. For example, the bladder is typically stitched to an outer wrap of the foot cuff. The stitching can be arranged so that it captures the rigid sole in position relative to the bladder, as well as the outer wrap. This requires care and precision in manufacturing the foot cuff.


SUMMARY

In one aspect of the present invention, an inflatable bladder for use in a compression foot cuff configured to be secured to a foot of a wearer generally comprises a fluid-impermeable inner bladder layer for being positioned adjacent to a foot of a wearer. A fluid-impermeable, integrally formed outer bladder layer is secured in opposing relation to the inner bladder layer to define an inflatable chamber. The inner and outer bladder layers define a foot-underlying portion of the bladder that is sized and shaped to underlie the wearer's foot and a wing portion extending laterally outwardly from the foot-underlying portion. A thickness of the outer bladder layer at the foot-underlying portion is greater than a thickness of the inner bladder layer to provide rigidity to the outer bladder layer so that the inflatable chamber expands more toward the wearer's foot than away from wearer's foot when the foot cuff is secured to the wearer's foot, and a thickness of the outer layer at the foot-underlying portion is greater than a thickness of the outer layer at the wing portion so that the wing portion of the bladder is more flexible than the foot-underlying portion of the outer layer to wrap around a superior portion of the wearer's foot.


Another aspect of the present invention is a method of making a compression foot cuff configured to be secured to a foot of a wearer, the compression foot cuff having a foot-underlying portion for underlying the wearer's foot. A fluid-impermeable inner bladder layer having a first thickness is provided. An integral outer bladder layer including a foot-underlying portion and a wing portion extending laterally outward from the foot-underlying portion of the cuff is molded as one piece. The foot-underlying portion has a second thickness that is greater than the first thickness of the inner layer, and the wing portion has a third thickness that is less than the second thickness. The inner bladder layer and the outer bladder layer are welded to one another along a line to define an inflatable chamber at the foot-underlying portion of the cuff.


Other features will be in part apparent and in part pointed out hereinafter.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1A is a bottom side perspective of a first embodiment of a compression foot cuff in accordance with the present disclosure with portions of the cuff broken away to show internal structure;



FIG. 1B is an exploded perspective of the compression foot cuff;



FIG. 2 is a bottom side perspective of an inflatable member of the foot cuff removed from the foot cuff;



FIG. 3 is an exploded perspective of the inflatable member;



FIG. 4 is a bottom plan view of the inflatable member;



FIG. 5 is a top plan view of an outer layer of the inflatable member;



FIG. 6 is a section taken along the line 6-6 in FIG. 4;



FIG. 7 is a fragmentary section taken along line 7-7 in FIG. 1A;



FIG. 8 is a fragmentary section taken along line 8-8 in FIG. 4; and



FIG. 9 is a perspective of the compression foot cuff wrapped around a foot of a wearer.





Corresponding reference characters indicate corresponding parts throughout the drawings.


DETAILED DESCRIPTION OF THE DRAWINGS

Referring now to the drawings, a compression foot cuff for applying compressive pressure to a wearer's foot is generally indicated at 10. The foot cuff is adapted for use in a compression therapy system, which further includes a supply of pressurized air (not shown) and tubing 40 connecting the supply of pressurized air to the foot cuff.


As shown best in FIGS. 1A and 1B, the foot cuff 10 includes an envelope, generally indicated at 12, substantially enveloping or enclosing a bladder (broadly, an inflatable member), generally indicated at 14. The envelope 12 includes an inner liner 16 and an outer cover 18 secured to one another generally adjacent to corresponding perimeters of the layers to define an interior space for receiving and substantially enclosing the bladder 14 therein. The inner liner 16 and the outer cover 18 may be fixedly secured to one another at their peripheral edge margins, such as by heat welding, adhesives, sewing or other suitable ways. Alternatively, the inner liner 16 and the outer cover 18 may be releasably secured to one another by suitable releasable fasteners (not shown) known to those having ordinary skill in the art. In use the inner liner 16 is adjacent to the wearer's foot and the outer cover 18 is located farthest from the foot. As used herein, the terms “inner” and “outer” indicate relative positions of respective components and surfaces with respect to the skin of the wearer's body part when the compression device is secured to the body part, and as such, an “inner” component or surface is more adjacent to the skin of the body part than an “outer” component or surface.


Inner liner 16 and outer cover 18 of the envelope 12 include ankle strap portions 19a and 19b respectively. Ankle strap portions 19a, 19b have a longitudinally projecting configuration for wrapping about a portion of the back of the foot adjacent to the ankle. The ankle strap portions 19a, 19b can be sewn, RF welded, or sonic welded. However, in the illustrated embodiments, the ankle strap portions 19a, 19b are formed as one piece with the inner liner 16 and outer cover 18, respectively. Respective fastening tabs 20a, 20b are secured to the strap portion 19b and a main portion of the cuff. The fastening tabs 20a, 20b comprise releasable fastener components such as one of a hook component and a loop component for securing the cuff 10 in a wrapped configuration around a foot of a user. Other ways of releasably securing the cuff 10 around the foot of a user are within the scope of the present invention.


The inner liner 16 of the envelope 12 is adapted for contacting the foot. The inner liner 16 is in one embodiment fabricated from a chemically treated material, with wicking ability, for wicking away moisture from the skin. In one embodiment, the inner liner 16 includes a mesh-like fabric capable of wicking moisture away from the patient's skin. Furthermore, the inner liner 16 can be faced with a soft material toward the treatment surface of the patient. For example, the material can be a thin layer of open celled porous foam, napped cloth, or a layer of vapor permeable cloth. The inner liner 16 may be formed from other materials. It is to be understood that the cuff 10 may not include an inner liner within the scope of the present invention.


The outer cover 18 is configured for providing the attachment surface for hook and loop fastening tabs 20a, 20b of cuff 10. For example, the outer cover 18 may comprise a loop-type fastening component and the tabs 20a, 20b may be hook fastening components. Moreover, the outer layer 18 provides a soft material for cushioning effect against the top portion of the feet and may be fabricated from similar materials as the inner liner 16 and in similar dimensions therewith for corresponding geometry. Alternatively, outer cover 18 may be fabricated from a laminated material, such as, for example, Sontara® fabric, open cell urethane foam, or loop fabric. The inner liner 16 may be formed from other materials. It is to be understood that the cuff 10 may not include an outer cover within the scope of the present invention.


Referring to FIGS. 1B and 2-8, the bladder 14 includes inner and outer bladder layers 22, 24, respectively, of air impermeable material (e.g., PVC, rubber, etc.) joined together in a suitable manner along a line 26 generally adjacent to their peripheries to define a single inflatable chamber 27 (FIGS. 6 and 8). The inner and outer bladder layers 22, 24 may be joined to one another in a suitable manner such as by radio frequency (RF) welding. Other ways of joining the inner and outer bladder layers 22, 24 include sewing, adhesive, heat sealing, etc. The inner and outer bladder layers 22, 24 are secured together so that an inner face of the outer layer faces an outer face of the inner layer, and an outer face of the outer layer faces away from an inner face of the inner layer. The inflatable chamber 27 of the bladder 14 is adapted for receiving and retaining a pressurized fluid (e.g. air) for exerting compressive pressure to the foot during successive pressure application cycles. Moreover, the inner layer has a thickness and material properties to allow it to be easily reformed by compressed air in the inflatable chamber 27. It is understood that the bladder 14 can include more than one inflatable chamber 27 within the scope of the present invention. The bladder 14 includes a foot-underlying portion, generally indicated at 30, that is sized and shaped to underlie the wearer's foot. The thickness and rigidity of the foot-underlying portion 30 are selected so that expansion of the inflatable chamber 27 in the area of the foot-underlying portion is concentrated in a direction away from the foot underlying portion and toward the foot for increasing foot compression in this area. Extending laterally outward from the foot-underlying portion 30 of the bladder 14 is a wing portion, generally indicated at 34, that is sized and shaped to be wrapped partially around the foot to a superior portion of the wearer's foot. The material of the wing portion 34 is preferably of a low enough density to be folded over onto the top of the foot (for example and without limitation, a medium vinyl composite having a durometer of 30-40 Shore A). While bendable, the wing portion 34 provides sufficient rigidity to resist flexing out of plane under pressure during inflation of the inflatable chamber 27. It is understood that the wing portion 34 may have other shapes and sizes. It is also understood that the bladder 14 may not include the wing portion 34 within the scope of the present invention.


Referring to FIG. 6, the outer bladder layer 24 has a thickness T1 at the foot-underlying portion 30 that is greater than a generally uniform thickness T2 of the inner bladder layer 22 at the foot-underlying portion. In general, because the outer bladder layer 24 at the foot-underlying portion 30 is thicker than the inner bladder layer 22 at the foot-underlying portion, the outer bladder layer is more rigid than the inner bladder layer at the foot-underlying portion of the bladder. It is believed that by making the outer bladder layer 24 more rigid than the inner layer 22 at the foot-underlying portion 30, the outer bladder layer provides a counterforce that directs expansion of the inflatable chamber 27 toward the inner layer, the inner liner 16 and the user's foot. In this way, the inner bladder layer 22 expands inward, toward the user's foot more than the outer bladder layer 24 expands outward, away from the user's foot to direct compressive force toward the user's foot. Moreover, the thicker foot-underlying portion 30 can provide a surface on which the patient could walk so that it would be unnecessary to remove the cuff 10. For example and without being limiting, the thickness T1 of the outer bladder layer 24 at the foot-underlying portion 30 may be at least about three times as great as the thickness T2 of the inner bladder layer 22 at the foot-underlying portion 30, and more preferably, the thickness T1 is at least about ten times greater than the thickness T2, and more preferably, the thickness T1 is at least about twenty five times greater than the thickness T2. In one example and without being limiting, the thickness T1 of the outer bladder layer 24 at the foot-underlying portion 30 may measure between about 0.100 and about 0.300 inches; and the thickness of T2 the inner bladder layer 22 at the foot underlying portion 30 may measure between about 0.006 and about 0.030 inches, more preferably between about 0.006 and about 0.012 inches. The inner and outer bladder layers 22, 24 at the foot-underlying portion 30 of the bladder 14 may have other dimensions and relative sizes without departing from the scope of the present invention.


Referring to FIGS. 1B and 2-8, to further rigidify the underlying portion 30 of the outer layer, a stiffening groove 37a in the outer face of the outer bladder layer 24 and a corresponding stiffening rib 37b on the inner face of the outer bladder layer extend generally adjacent to the perimeter of the underlying portion 30 of the outer layer. The stiffening rib 37b inhibits bending of the underlying portion 30 out of its plane. This allows thickness T1 of the outer bladder layer 24 to be smaller than would be required without the rib.


Referring to FIG. 6, in the illustrated embodiment the thickness T1 of the outer bladder layer 24 at the foot-underlying portion 30 is also greater than a thickness T3 of the outer bladder layer at the wing portion 34 of the bladder 14. As stated above, the greater thickness T1 of the outer bladder layer 24 and the stiffening rib 37b at the foot-underlying portion 30 provide rigidity to the outer bladder layer so that it acts as a counterforce. In one embodiment, the thickness T3 of the outer bladder layer 24 at the wing portion 34 of the bladder 14 allows the wing portion to be generally flexible and pliable so that in use, the wing portion 34 can be folded along a side of the wearer's foot to a top of the foot. Accordingly, in one embodiment the thickness T3 of the outer bladder layer 24 at the wing portion 34 of the bladder 14 is such that the wing portion of the bladder can be wrapped around the foot. For example and without being limiting, the thickness T3 of the outer bladder layer 24 at the wing portion 34 may be at least about 1.5 times less than the thickness T1 of the outer bladder layer at the foot-underlying portion 30. In other words, the thickness T1 of the outer bladder layer 24 at the foot-underlying portion 30 may be at least about two times greater than the thickness T3 of outer bladder layer at the wing portion 34. More preferably, in one example, the thickness T3 of the outer bladder layer 24 at the wing portion 34 may be at least about between 5-15 times less than the thickness T1 of outer bladder layer at the foot-underlying portion 30. In one example given without being limiting, the thickness T3 of the outer bladder layer 24 at the wing portion 34 may measure between about 0.020 and about 0.060 inches. The outer bladder layer 24 at the wing portion 34 and the foot-underlying portion 30 of the bladder 14 may have other dimensions and relative sizes without departing from the scope of the present invention.


A fluid inlet port 38 on the outer face of the outer bladder layer 24 fluidly connects tubing 40 (FIGS. 1A and 1B) from an air compressor controller (not shown) to the inflatable chamber 27. The fluid inlet port 38 is positioned generally adjacent to a juncture of the foot-underlying portion 30 and the wing portion 34. When the cuff 10 is assembled, the fluid inlet port 38 extends through a cut-out 20 in the outer cover 18. An internal conduit 42 (FIG. 8) extends from a connecting opening 44 in the fluid inlet port 38 through the inner face of the outer bladder layer 24. The connecting opening 44 is sized and shaped to receive the tubing 40 and to secure the tubing to the fluid inlet port 38. Other ways of connecting tubing 40 to the fluid inlet port 38 are within the scope of the invention. The fluid inlet port 38 has a generally low-profile height projecting outward from the outer face of the outer bladder layer 24 so that the fluid inlet port has a cross-sectional shape that is generally oblong. It is understood that the fluid inlet port 38 may be of other shapes and configurations. For example, the fluid inlet port 38 may comprise a plastic component that is secured, such as by heat welding or other means, to the bladder 14. It is understood that other ways of introducing air or fluid into the inflatable chamber 27 are within the scope of the invention, and the tubing 40 may be fluidly connected to the inflatable chamber in other ways without departing from the scope of the invention.


Referring to FIGS. 1A and 7, in the illustrated embodiment the bladder 14 is generally fixedly secured to the inner liner 16 and the outer cover 18 using securement openings 46 extending through the foot-underlying portion 30 of the inflatable member generally adjacent to the perimeter of the foot-underlying portion. In the illustrated embodiment, the securement openings 46 are located between the perimeter edge of the foot-underlying portion 30 and the line 26 where the outer bladder layer 24 and the inner bladder layer 22 are secured to one another. The inner liner 16 and the outer cover 18 are secured to one another through these securement openings 46 to thereby secure the bladder 14 in fixed position inside the envelope 12. The inner liner 16 and the outer cover 18 may be secured to one another at securement points 48 by heat welding, adhesive bonding, mechanical fasteners or in other ways. In one example, where the outer cover 18 is of a relatively thick foam material, the inner liner 16 may be inserted through the securement openings 46 to the outer cover to secure the inner liner to the outer cover. Other ways of securing the bladder 14 to the envelope 12 to fix the relative position of the bladder with respect to the inner liner 16 and/or the outer cover 18 is within the scope of the invention. Alternatively, the bladder 14 may “float” inside the envelope 12 and not be generally fixed in a relative position with respect to the inner liner 16 and/or the outer cover 18.


In one embodiment and without being limiting, the outer bladder layer 24 may be molded, such as by injection molding, as a one-piece, integral unit.


Having described the invention in detail, it will be apparent that modifications and variations are possible without departing from the scope of the invention defined in the appended claims.


When introducing elements of the present invention or the preferred embodiment(s) thereof, the articles “a”, “an”, “the” and “said” are intended to mean that there are one or more of the elements. The terms “comprising”, “including” and “having” are intended to be inclusive and mean that there may be additional elements other than the listed elements.


In view of the above, it will be seen that the several objects of the invention are achieved and other advantageous results attained.


As various changes could be made in the above constructions, products, and methods without departing from the scope of the invention, it is intended that all matter contained in the above description and shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.

Claims
  • 1. An inflatable bladder for use in a compression foot cuff configured to be secured to a foot of a wearer, the inflatable bladder comprising: a fluid-impermeable inner bladder layer for being positioned adjacent to a foot of a wearer;a fluid-impermeable, integrally formed outer bladder layer secured in opposing relation to the inner bladder layer to define an inflatable chamber;wherein the inner and outer bladder layers define a foot-underlying portion of the bladder that underlies the wearer's foot when the compression foot cuff is secured to the foot of the wearer, and a wing portion extending laterally outwardly from the foot-underlying portion;wherein a thickness of the outer bladder layer at the foot-underlying portion is greater than a thickness of the inner bladder layer to provide rigidity to the outer bladder layer so that the inflatable chamber expands more toward the wearer's foot than away from wearer's foot when the foot cuff is secured to the wearer's foot, and the thickness of the outer bladder layer at the foot-underlying portion is greater than a thickness of the outer bladder layer at the wing portion so that the wing portion of the inflatable bladder is more flexible than the foot-underlying portion of the outer bladder layer to wrap around a superior portion of the wearer's foot, wherein the outer bladder layer has a rib formed on an inner surface of the outer bladder layer to resist bending of the outer bladder layer and wherein the rib forms a groove in an outer surface of the outer bladder layer;wherein the inner bladder layer and outer bladder layer are secured to each other along a line extending generally adjacent to perimeter of the inflatable bladder, the groove and rib being formed on the outer bladder layer separately from the line connecting the inner bladder layer to the outer bladder layer, the rib and groove extending only partially along the perimeter of the inflatable bladder such that the rib and groove extend a lesser distance along the perimeter than the line and extend only along the foot-underlying portion of the inflatable bladder.
  • 2. An inflatable bladder as set forth in claim 1 wherein the thickness of the outer bladder layer at the foot-underlying portion is at least three times greater than the thickness of the inner bladder layer.
  • 3. An inflatable bladder as set forth in claim 2 wherein the thickness of the outer bladder layer at the foot-underlying portion is at least about ten times greater than the thickness of the inner bladder layer.
  • 4. An inflatable bladder as set forth in claim 1 wherein the thickness of the outer bladder layer at the foot-underlying portion is at least about 1.5 times greater than the thickness of the outer bladder layer at the wing portion.
  • 5. An inflatable bladder as set forth in claim 4 wherein the thickness of the outer bladder layer at the foot-underlying portion is at least about five times greater than thickness of the outer bladder layer at the wing portion.
  • 6. An inflatable bladder as set forth in claim 1 further comprising a fluid inlet port extending outward from the outer bladder layer for connection to a source of pressurized fluid, the inlet port defining a conduit in fluid communication with the inflatable chamber for delivering pressurized fluid to the inflatable chamber.
  • 7. An inflatable bladder as set forth in claim 6 wherein the outer bladder layer and the inlet port are molded as a one-piece, integral unit.
  • 8. An inflatable bladder as set forth in claim 7 wherein the inlet port has a longitudinal axis and defines a connecting opening on an exterior of the inflatable bladder, the longitudinal axis extending through the connecting opening and generally parallel to the outer bladder layer, the connecting opening having an oblong cross-sectional shape taken transverse to the longitudinal axis so that the inlet port has a low profile with respect to the outer bladder layer.
  • 9. An inflatable bladder as set forth in claim 8 wherein the outer bladder layer and the inner bladder layer define a wing portion of the inflatable bladder extending laterally outward from the foot-underlying portion and wrapping around a superior portion of the wearer's foot when the compression foot cuff is secured to the foot of the wearer, wherein the thickness of the outer bladder layer at the foot-underlying portion is greater than the thickness of the outer bladder layer at the wing portion.
  • 10. An inflatable bladder as set forth in claim 1 further comprising a securement opening extending through the inner and outer bladder layers adjacent to a perimeter edge of the foot-underlying portion of the bladder.
  • 11. An inflatable bladder as set forth in claim 10 in combination with an envelope including an outer cover and an inner liner, the inflatable bladder being disposed between the outer cover and inner liner in the envelope, wherein at least one of the outer cover and the inner liner extends into the securement opening and is secured to the other of the outer cover and inner liner to fix a position of the inflatable bladder with respect to the envelope.
  • 12. An inflatable bladder as set forth in claim 11 wherein the securement opening comprises a plurality of securement openings.
US Referenced Citations (290)
Number Name Date Kind
2075229 Rose Mar 1937 A
2199408 La Liberte May 1940 A
2533504 Poor Dec 1950 A
2694395 Brown Nov 1954 A
2708920 Pasturczak May 1955 A
2880721 Corcoran Apr 1959 A
D192777 Pahas May 1962 S
3164152 Vere Nicoll Jan 1965 A
3245405 Gardner Apr 1966 A
3454010 Lilligren et al. Jul 1969 A
3506000 Baker Apr 1970 A
3521623 Nichols et al. Jul 1970 A
3561435 Nicholson Feb 1971 A
3598114 Lewis Aug 1971 A
3606880 Ogle, Jr. Sep 1971 A
3701349 Larson Oct 1972 A
3728875 Hartigan et al. Apr 1973 A
3760795 Adelhed Sep 1973 A
3786805 Tourin Jan 1974 A
3824992 Nicholson et al. Jul 1974 A
3826249 Lee et al. Jul 1974 A
3862629 Rotta Jan 1975 A
3866604 Curless et al. Feb 1975 A
3868952 Hatton Mar 1975 A
3877426 Nirschl Apr 1975 A
3888242 Harris et al. Jun 1975 A
3901221 Nicholson et al. Aug 1975 A
3901225 Sconce Aug 1975 A
3920006 Lapidus Nov 1975 A
4013069 Hasty Mar 1977 A
4029087 Dye et al. Jun 1977 A
4030488 Hasty Jun 1977 A
4066084 Tillander Jan 1978 A
4091804 Hasty May 1978 A
4133311 Karczewski Jan 1979 A
4153050 Bishop et al. May 1979 A
4156425 Arkans May 1979 A
4168063 Rowland Sep 1979 A
4198961 Arkans Apr 1980 A
4202312 Mori et al. May 1980 A
4202325 Villari et al. May 1980 A
4206751 Schneider Jun 1980 A
4207875 Arkans Jun 1980 A
4207876 Annis Jun 1980 A
4253449 Arkans et al. Mar 1981 A
4270527 Peters et al. Jun 1981 A
4280485 Arkans Jul 1981 A
4311135 Brueckner et al. Jan 1982 A
4320746 Arkans et al. Mar 1982 A
4338686 Bell Jul 1982 A
4372297 Perlin Feb 1983 A
4375217 Arkans Mar 1983 A
4408599 Mummert Oct 1983 A
4409976 Pence Oct 1983 A
4417587 Ichinomiya et al. Nov 1983 A
4419988 Mummert Dec 1983 A
4442834 Tucker et al. Apr 1984 A
4453538 Whitney Jun 1984 A
4531516 Poole et al. Jul 1985 A
4580816 Campbell et al. Apr 1986 A
4597384 Whitney Jul 1986 A
4597385 Watson Jul 1986 A
4614179 Gardner et al. Sep 1986 A
4614180 Gardner et al. Sep 1986 A
4632103 Fabricant et al. Dec 1986 A
4696289 Gardner et al. Sep 1987 A
4702232 Gardner et al. Oct 1987 A
4702234 Huntjens Oct 1987 A
4721101 Gardner et al. Jan 1988 A
4722332 Saggers Feb 1988 A
4730606 Leininger Mar 1988 A
4730610 Graebe Mar 1988 A
4762121 Shienfeld Aug 1988 A
4805601 Eischen, Sr. Feb 1989 A
4827912 Carrington et al. May 1989 A
RE32939 Gardner et al. Jun 1989 E
RE32940 Gardner et al. Jun 1989 E
4841956 Gardner et al. Jun 1989 A
D302301 Robinette-Lehman Jul 1989 S
4844058 Vogelbach Jul 1989 A
4883073 Aziz Nov 1989 A
4920971 Blessinger May 1990 A
4938208 Dye Jul 1990 A
4945905 Dye et al. Aug 1990 A
4977891 Grim Dec 1990 A
4979953 Spence Dec 1990 A
4993409 Grim Feb 1991 A
5000164 Cooper Mar 1991 A
5007411 Dye Apr 1991 A
5014681 Neeman et al. May 1991 A
5022387 Hasty Jun 1991 A
5062414 Grim Nov 1991 A
5069219 Knoblich Dec 1991 A
5078128 Grim et al. Jan 1992 A
5094252 Stumpf Mar 1992 A
5113877 Johnson, Jr. et al. May 1992 A
5193549 Bellin et al. Mar 1993 A
5218954 van Bemmelen Jun 1993 A
5235703 Maynard Aug 1993 A
D341424 Lurie Nov 1993 S
5277697 France et al. Jan 1994 A
5288286 Davis et al. Feb 1994 A
5310400 Rogers et al. May 1994 A
5334135 Grim et al. Aug 1994 A
5354260 Cook Oct 1994 A
5372575 Sebastian Dec 1994 A
RE34883 Grim Mar 1995 E
5396896 Tumey et al. Mar 1995 A
5399152 Habermeyer et al. Mar 1995 A
5400529 Bell et al. Mar 1995 A
5407418 Szpur Apr 1995 A
5407421 Goldsmith Apr 1995 A
D358216 Dye May 1995 S
5413582 Eaton May 1995 A
5415624 Williams May 1995 A
5425742 Joy Jun 1995 A
5437610 Cariapa et al. Aug 1995 A
5450858 Zablotsky et al. Sep 1995 A
5453082 Lamont Sep 1995 A
5458562 Cooper Oct 1995 A
5464385 Grim Nov 1995 A
5484392 Sydor et al. Jan 1996 A
D376013 Sandman et al. Nov 1996 S
5575762 Peeler et al. Nov 1996 A
5577998 Johnson, Jr. et al. Nov 1996 A
5584798 Fox Dec 1996 A
5588955 Johnson, Jr. et al. Dec 1996 A
5591200 Cone et al. Jan 1997 A
5626556 Tobler et al. May 1997 A
5634889 Gardner et al. Jun 1997 A
5649954 McEwen Jul 1997 A
5653244 Shaw Aug 1997 A
5660182 Kuroshaki et al. Aug 1997 A
5669390 McCormick et al. Sep 1997 A
5669872 Fox Sep 1997 A
5674262 Tumey Oct 1997 A
5678558 Johnson Oct 1997 A
5688225 Walker Nov 1997 A
5690672 Cohen Nov 1997 A
5711757 Bryant Jan 1998 A
5733249 Katzin et al. Mar 1998 A
5746213 Marks May 1998 A
5769801 Tumey et al. Jun 1998 A
5795312 Dye Aug 1998 A
5797851 Byrd Aug 1998 A
D397797 Chiang Sep 1998 S
5806208 French Sep 1998 A
5823981 Grim et al. Oct 1998 A
5830164 Cone et al. Nov 1998 A
5833639 Nunes et al. Nov 1998 A
5840049 Tumey et al. Nov 1998 A
5843007 McEwen et al. Dec 1998 A
D405180 Reina Feb 1999 S
5864880 Adam Feb 1999 A
5868690 Eischen, Sr. Feb 1999 A
5876359 Bock et al. Mar 1999 A
5891065 Cariapa et al. Apr 1999 A
D411301 Hampson et al. Jun 1999 S
5931797 Tumey et al. Aug 1999 A
5951502 Peeler et al. Sep 1999 A
5954676 Kramer, III Sep 1999 A
5971947 McNally et al. Oct 1999 A
5987779 Litchfield et al. Nov 1999 A
5988704 Ryhman Nov 1999 A
5989204 Lina Nov 1999 A
5991654 Tumey et al. Nov 1999 A
5997495 Cook et al. Dec 1999 A
6001122 Lyles Dec 1999 A
6010471 Ben-Noon Jan 2000 A
6014823 Lakic Jan 2000 A
6024714 Katzin Feb 2000 A
6036718 Ledford et al. Mar 2000 A
6066107 Habermeyer May 2000 A
6083185 Lamont Jul 2000 A
6228044 Jensen et al. May 2001 B1
6245023 Clemmons Jun 2001 B1
6273866 Thomas et al. Aug 2001 B2
6290662 Morris et al. Sep 2001 B1
6293918 Wang Sep 2001 B1
6306112 Bird Oct 2001 B2
6315745 Kloecker Nov 2001 B1
6319215 Manor et al. Nov 2001 B1
6361496 Zikorus et al. Mar 2002 B1
6361548 McEwen Mar 2002 B1
6406450 Kowalczyk et al. Jun 2002 B1
6416534 Montagnino et al. Jul 2002 B1
6423017 Brotz Jul 2002 B2
6436064 Kloecker Aug 2002 B1
6440093 McEwen et al. Aug 2002 B1
6447460 Zheng et al. Sep 2002 B1
6447467 Barak Sep 2002 B1
6460197 Huang Oct 2002 B2
6463934 Johnson, Jr. et al. Oct 2002 B1
6468237 Lina Oct 2002 B1
6478745 Nakagawa et al. Nov 2002 B2
6478757 Barak Nov 2002 B1
6488643 Tumey et al. Dec 2002 B1
6493568 Bell et al. Dec 2002 B1
6494852 Barak et al. Dec 2002 B1
6506206 Guzman et al. Jan 2003 B1
6525238 Corrales Feb 2003 B2
6528697 Knutson et al. Mar 2003 B1
6537298 Dedo Mar 2003 B2
6544202 McEwen et al. Apr 2003 B2
6551249 Ashida et al. Apr 2003 B2
6551264 Cawley et al. Apr 2003 B1
6557704 Randolph May 2003 B1
6582383 Horning Jun 2003 B2
6585669 Manor et al. Jul 2003 B2
6589194 Calderon et al. Jul 2003 B1
6589534 Shaul et al. Jul 2003 B1
6592534 Rutt et al. Jul 2003 B1
6629941 Ishibashi et al. Oct 2003 B1
6632188 Thomas et al. Oct 2003 B2
D482792 McCormick et al. Nov 2003 S
6672311 Rindfleish Jan 2004 B2
6681772 Atwater et al. Jan 2004 B2
6682497 Jensen et al. Jan 2004 B2
6682547 McEwen et al. Jan 2004 B2
6746470 McEwen et al. Jun 2004 B2
6762337 Boukanov et al. Jul 2004 B2
6766599 Baek Jul 2004 B2
6785985 Marvin et al. Sep 2004 B2
6846295 Ben-Nun Jan 2005 B1
6869409 Rothman et al. Mar 2005 B2
6893409 Lina May 2005 B1
6916298 VanBrunt et al. Jul 2005 B2
6918393 Rugfelt et al. Jul 2005 B2
6921373 Bernstein Jul 2005 B1
6945944 Kuiper et al. Sep 2005 B2
D513324 Cook et al. Dec 2005 S
6988329 Marvin et al. Jan 2006 B2
6988992 Just et al. Jan 2006 B2
D517695 Gillis et al. Mar 2006 S
7008390 Miotto et al. Mar 2006 B2
7010823 Baek Mar 2006 B2
7047670 Marvin et al. May 2006 B2
7063676 Barak et al. Jun 2006 B2
7070567 Mizukoshi et al. Jul 2006 B2
7104967 Rothman et al. Sep 2006 B2
7135007 Scott et al. Nov 2006 B2
7150720 Adkins et al. Dec 2006 B2
7153270 Sano et al. Dec 2006 B2
7166077 Millay et al. Jan 2007 B2
7276037 Ravikumar Oct 2007 B2
7282038 Gillis et al. Oct 2007 B2
7354410 Perry et al. Apr 2008 B2
D569985 Ganapathy et al. May 2008 S
7374550 Hansen et al. May 2008 B2
7384584 Jerome et al. Jun 2008 B2
20010018564 Manor et al. Aug 2001 A1
20020022791 Morris et al. Feb 2002 A1
20020069731 Soucy Jun 2002 A1
20020099297 Nakagawa et al. Jul 2002 A1
20020188315 Guzman et al. Dec 2002 A1
20030125649 McIntosh et al. Jul 2003 A1
20030187378 Gaylord et al. Oct 2003 A1
20040039317 Souney et al. Feb 2004 A1
20040064077 Dillon Apr 2004 A1
20040068290 Bates et al. Apr 2004 A1
20040171971 Ravikumar et al. Sep 2004 A1
20040181156 Kingsford et al. Sep 2004 A1
20040236258 Burns et al. Nov 2004 A1
20050027218 Filtvedt et al. Feb 2005 A1
20050055913 Nugue et al. Mar 2005 A1
20050121041 Barnitz Jun 2005 A1
20050143682 Cook et al. Jun 2005 A1
20050145256 Howard et al. Jul 2005 A1
20050171461 Pick Aug 2005 A1
20050187501 Ravikumar Aug 2005 A1
20050203452 Weston et al. Sep 2005 A1
20050211580 Kaszubski et al. Sep 2005 A1
20050215935 Ritter Sep 2005 A1
20050261615 Weston Nov 2005 A1
20060004310 Parizot Jan 2006 A1
20060004311 Hargrave et al. Jan 2006 A1
20060135894 Linnane et al. Jun 2006 A1
20060161081 Barak et al. Jul 2006 A1
20060178606 Logue et al. Aug 2006 A1
20060189905 Eischen, Sr. Aug 2006 A1
20060189907 Pick et al. Aug 2006 A1
20070010765 Rothman et al. Jan 2007 A1
20070010770 Gildersleeve Jan 2007 A1
20070049852 Linnane et al. Mar 2007 A1
20070129658 Hampson et al. Jun 2007 A1
20070135742 Meyer et al. Jun 2007 A1
20070135743 Meyer Jun 2007 A1
20070135836 McEwen et al. Jun 2007 A1
20070161933 Ravikumar Jul 2007 A1
20070282233 Meyer et al. Dec 2007 A1
Foreign Referenced Citations (1)
Number Date Country
2813770 Mar 2002 FR
Non-Patent Literature Citations (7)
Entry
Merriam-Webster Dictionary; Definition of “size”; www.merriam-webster.com; accessed Sep. 22, 2012.
European Search Report for EP10174333.4 dated Oct. 18, 2010, 6 pages.
Tyco Healthcare Kendall, Prevention Gets Personal brochure, Mar. 2001, pp. 1, 2, and 4.
Tyco Healthcare Kendall, SCD Response Sequential Compression System brochure, Mar. 2000, pp. 1-2.
Tyco Healthcare Kendall, SCD Soft Sleeve brochure, Apr. 2001, pp. 1-2.
The Kendall Company, Vascular Therapy Products catalog, Jan. 1996, pp. 8-5 through 8-7.
European Search Report for EP 09 16 4111 dated Aug. 4, 2009, 7 pgs.
Related Publications (1)
Number Date Country
20100004575 A1 Jan 2010 US