Abstract:
The present invention discloses a medical device comprising a dispenser adapted to dispense a tissue sealant or one or more precursor compounds, the dispenser being operably coupled to a surgical suturing device, which in turn is configured to deliver one or more surgical sutures or fasteners in an area of bodily tissue approximation surface. Furthermore, the medical device comprises a dispenser adapted to dispense a tissue sealant or one or more precursor compounds thereof, the dispenser being operably coupled to a surgical cutter. Additionally or alternatively the medical; device can include a microactuation mechanism, whereby the dispenser dispenses the tissue sealant or one or more precursor compounds at a surgical cutting site or in a proximity thereof.
Abstract:
The present invention discloses a medical device comprising a dispenser adapted to dispense a tissue sealant or one or more precursor compounds, the dispenser being operably coupled to a surgical stapler, which in turn is configured to deliver one or more surgical staples or fasteners in an area of bodily tissue approximation surface. Furthermore, the medical device comprises a dispenser adapted to dispense a tissue sealant or one or more precursor compounds thereof, the dispenser being operably coupled to a surgical cutter. Additionally or alternatively the medical; device can include an actuation mechanism, whereby the dispenser dispenses the tissue sealant or one or more precursor compounds at a surgical cutting site or in a proximity thereof.
Abstract:
One aspect relates to inducing at least one induced X-ray fluorescing photon at a X-ray fluorescence event within an at least some matter of an at least a portion of an at least one individual responsive to an at least some input energy being applied to the at least some matter of the at least the portion of the at least one individual. The aspect can relate to detecting the at least one induced X-ray fluorescing photon, wherein the inducing at least one induced X-ray fluorescing photon and the detecting the at least one induced X-ray fluorescing photon is configured to be performed at least partially with at least one device which is configured to be transported portably by a person.
Abstract:
One aspect can relate to determining a total time of flight that indicates an at least one applied duration and an at least one induced duration, wherein the at least one applied duration describes the time for an at least some pulse-type input energy to be applied from a transmission location to an at least one X-ray fluorescing event in the at least some matter of the at least the portion of the at least one individual, and wherein the at least one induced duration describes the time for an at least one induced X-ray fluorescing photon, to travel from the at least one X-ray fluorescing event in the at least some matter of the at least the portion of the at least one individual to a location where the at least one induced X-ray fluorescing photon is received at least partially by a detecting the at least one induced X-ray fluorescing photon. The aspect can relate to determining a location information of the at least one X-ray fluorescing event in the at least some matter of the at least the portion of the at least one individual based at least partially on the total time of flight.
Abstract:
One aspect relates to deriving at least one first X-ray fluorescence visualization, image, or provided information substantially within an at least some matter of an at least a portion of an at least one individual at least partially as a result of directing an at least one first applied high energy photon and/or particle having an at least one first input energy towards the at least some matter of the at least the portion of the at least one individual. The aspect comprises deriving at least one second X-ray fluorescence visualization, image, or provided information substantially within the at least some matter of the at least the portion of the at least one individual at least partially as a result of directing an at least one second applied high energy photon and/or particle having an at least one second input energy toward the at least some matter of the at least the portion of the at least one individual. The aspect comprises deriving an at least one combined X-ray fluorescence visualization, combined image, or combined provided information at least partially by combining the at least one first X-ray fluorescence visualization, image, or provided information with the at least one second X-ray fluorescence visualization, image, or provided information.
Abstract:
A method may include receiving information from two or more wireless sensors and identifying patient identification information included in the information.
Abstract:
Embodiments include a medical device, an apparatus, and a method. The medical device includes a tube portion shaped and sized for airway passage insertion and having at least one pathway therethrough; and a stylet of at least one shape-transforming material, configured for insertion in one of said at least one pathway; and at least one sensor carried by the tube portion and the stylet. The apparatus includes a stylet having a first end and a second end, at least a portion of the stylet including a shape-transforming material, the stylet being configured for insertion through an airway intubation structure having at least one pathway therethrough; and at least one sensor carried by the stylet in a proximity to the first end. The method includes capturing an image adjacent to an airway tube proximate to an airway passage; and actuating, in response to the image, at least one shape-transformation of the airway tube.
Abstract:
The present invention discloses a medical device comprising a dispenser adapted to dispense a tissue sealant or one or more precursor compounds, the dispenser being operably coupled to a surgical stapler, which in turn is configured to deliver one or more surgical staples or fasteners in an area of bodily tissue approximation surface. Furthermore, the medical device comprises a dispenser adapted to dispense a tissue sealant or one or more precursor compounds thereof, the dispenser being operably coupled to a surgical cutter. Additionally or alternatively the medical; device can include a microactuation mechanism, whereby the dispenser dispenses the tissue sealant or one or more precursor compounds at a surgical cutting site or in a proximity thereof.
Abstract:
Embodiments include a surgical device and a method. An embodiment of the surgical instrument includes at least one grasping jaw, the at least one grasping jaw being adapted to deliver surgical staples by a force generated from a force generator mechanism that is contained within the at least one grasping jaw or is in a proximity to the at least one grasping jaw. Another embodiment includes at least one grasping jaw, at least one delivery mechanism adapted to deliver surgical fasteners, the delivery mechanism being located in a proximity to or contained within the at least one grasping jaw, the surgical fasteners containing at least one shape-transforming material, at least one sensor, at least one chemical tissue sealant and at least one cutter. A method includes: grasping a body organ/tissue with at least one grasping jaw, adjusting a configuration of the grasping in response to a signal or a datum or an image, and releasing a surgical staple/fastener in response to the signal, datum or image.