Abstract:
A medical device including an outer balloon, an inner balloon, and at least one delivery unit is disclosed. The outer balloon defines a first internal cavity that remains in fluid communication with a first inflation lumen. The inner balloon is disposed within the first internal cavity, and defines a second internal cavity that is in fluid communication with a second inflation lumen. Each delivery unit includes at least one needle configured to pierce a tissue and at least one reservoir containing a material. Further, inflation of the outer balloon or the inner balloon is structured and arranged to deliver the material into the tissue through the needle lumen.
Abstract:
In an embodiment, the invention discloses a medical device configured to be delivered and placed within a patient's body. The medical device includes an implant and a cover member. The implant is configured to be disposed within the patient's body. The implant includes a support member, a first arm member and a second arm member, an elongated first sleeve, and an elongated second sleeve. The support member includes a crescent shaped opening.
Abstract:
In some aspects, the present invention provides surgical procedures that comprise applying compositions into and/or onto tissue, including supporting tissues (e.g., ligaments, connective tissue, muscles, etc.) for pelvic organs, among other tissues. In other aspects, the present disclosure pertains to compositions that are useful for performing such procedures. In still other aspects, the present disclosure pertains to kits that are useful for performing such procedures.
Abstract:
In one embodiment, a medical device includes a first optical fiber, a second optical fiber, a third optical fiber, and a fourth optical fiber. The first optical fiber is operatively coupled to a first electromagnetic radiation source and is configured to transmit electromagnetic radiation to bodily tissue. The second optical fiber is configured to receive electromagnetic radiation from the first electromagnetic radiation source scattered by the bodily tissue. The third optical fiber is operatively coupled to a second electromagnetic radiation source and is configured to transmit electromagnetic radiation to bodily tissue. The second electromagnetic radiation source is different than the first electromagnetic radiation source. The fourth optical fiber is configured to receive electromagnetic radiation from the second electromagnetic radiation source scattered by the bodily tissue.
Abstract:
The invention is directed to a method for treating a urinary system. The method includes positioning one or more treatment units with respect to an organ wall. The one or more treatment units may be configured to deliver thermal energy. The method further includes delivering energy through the one or more treatment units to heat tissue of the organ wall.