Patent classifications
A61M3/0237
SELF-PRESSURIZING FLUID DELIVERY SYSTEMS AND DEVICES AND METHODS OF USING THE SAME
Self-pressurizing fluid deliver systems and devices and methods of using the same. An exemplary pressurized sterile fluid storage bag system referenced herein includes a foam cavity formed from a rigid, non-conforming material and an elastic, conforming material and containing a resilient open cell or closed cell foam with capabilities to restore form when compressed, an air valve, a fluid cavity formed from said elastic, conforming material on one side and a material which may be rigid and non-conforming or elastic and conforming, and a fluid valve.
Transanal irrigation device and system
A device for performing transanal irrigation includes an elongated neck having a proximal end and a flushing liquid channel passing therethrough. In a system including the device, the flushing liquid channel communicates with a source of flushing liquid. An insert is positioned on the proximal end of the neck of the device and is inserted into a body cavity of a user. The insert has a flushing liquid opening that is in fluid communication with the flushing liquid channel of the neck. A control housing is connected to the neck of the device and contains a pump. Pressurized flushing liquid flows through the device channel and exits through the flushing liquid opening of the insert when the pump is activated. A pair of support arms are attached to the device neck and rest on a sitting user's legs with the insert positioned below a body cavity of the user.
NASAL IRRIGATION DIAGNOSTIC ASSEMBLY
A nasal irrigation diagnostic assembly comprising an irrigation device including a fluid collection portion structured to retain a biological sample, in the form of waste solution from the nasal cavity resulting from irrigation. A detection member disposed on said irrigation device is exposed to the biological sample and is structured to determine the existence of at least one analyte within the biological sample of the waste solution. The detection member comprises a plurality of detection zones individually structured to analyze the biological sample upon engagement therewith, wherein said plurality of zones include at least a reaction zone and a detection zone, which respectively include reagents cooperatively and collectively formulated to detect the existence of the at least one analyte within biological sample of the waste solution. A control zone may also be included to indicate the intended operability of at least the detection member.
Vacuum driven suction and irrigation system
A vacuum assisted suction and irrigation system includes a suction and irrigation wand, an irrigation fluid supply, a vacuum source, and a fluid pump. The vacuum source is connected to a suction valve of the suction and irrigation wand to provide suction within the suction and irrigation wand. The irrigation fluid supply is connected to the suction and irrigation wand via the fluid pump to supply pressurized irrigation fluid to the suction and irrigation wand. The vacuum source is connected to the fluid pump to pressurize the irrigation fluid being delivered to the suction and irrigation wand.
TISSUE RETRACTOR
A devise for retracting or opening a tissue wound employs two retractor arms that do not enter or penetrate into the wound. The retractor arms engage the tissue on either side of the wound and apply outward pressure on the tissue surface to open the wound.
SYSTEM AND METHOD FOR PROVIDING PRESSURIZED INFUSION TRANSFER RESERVOIRS
Apparatus, system and method for providing pressurized infusion of liquids and, more particularly, providing a stable and pressurized flow of fluid to the eye during surgery. Aspiration fluid may be received via an aspiration line at a first peristaltic pump, where aspiration fluid is transferred to a Venturi tank reservoir coupled to a second peristaltic pump. Fluid from a fluid source is provided via a third peristaltic pump to a pressurized infusion tank. A determination is made if the pressure in the pressurized infusion tank is at a predetermined level, where fluid may be transferred from the pressurized infusion tank to an irrigation line when pressure in the pressurized infusion tank is determined to be at the predetermined level. Alternate activation of a plurality of aspiration and irrigation lines are also provided.
System and method for providing pressurized infusion
The present invention relates generally to providing pressurized infusion of liquids and, more particularly, is directed to providing a stable and pressurized flow of irrigation fluid to the eye during surgery.
Apparatus, system, and method of gas infusion to allow for pressure control of irrigation in a surgical system
The disclosed apparatus, system and method may include at least a surgical fluid container that includes a fluid reservoir capable of containing the surgical fluid and a gas pressure pocket applied to the surgical fluid therewithin; a first external port extending from outside the fluid reservoir into fluid communication with the surgical fluid within the fluid reservoir; and a second external port extending directly from outside the fluid reservoir into the gas pressure pocket.
Irrigation System
An anal irrigation system with a box for a reservoir is provided. The reservoir may be for one-time use and disposed of after use. The box is provided with means for pressing so that the box can be used to displace liquid from a reservoir in an easy and convenient way. Also provided is a box with means for pressing so as to displace liquid from a reservoir. Also provided is an anal irrigation system without reservoir and where the box is provided with an inflatable lung, which is inflated for displacing the liquid from the box.
System and method for providing pressurized infusion transfer reservoirs
Apparatus, system and method for providing pressurized infusion of liquids and, more particularly, providing a stable and pressurized flow of fluid to the eye during surgery. Aspiration fluid may be received via an aspiration line at a first peristaltic pump, where aspiration fluid is transferred to a Venturi tank reservoir coupled to a second peristaltic pump. Fluid from a fluid source is provided via a third peristaltic pump to a pressurized infusion tank. A determination is made if the pressure in the pressurized infusion tank is at a predetermined level, where fluid may be transferred from the pressurized infusion tank to an irrigation line when pressure in the pressurized infusion tank is determined to be at the predetermined level. Alternate activation of a plurality of aspiration and irrigation lines are also provided.