Medical tool for reduced penetration force
A medical device is provided having reduced penetration force. The device includes a body having a central hollow channel and a piezoelectric transducer received within and secured to the body. The piezoelectric transducer has a hollow portion concentric with the central hollow channel. A tubular member is associated with and in communication with the piezoelectric transducer. The tubular member has at least one open end formed concentric with the central hollow channel and the hollow portion of the piezoelectric transducer, wherein the transducer is adapted for vibrating at a frequency to produce an oscillating displacement of the tubular member.
1. A device, comprising:
a Langevin transducer comprising a first central hollow channel, the first central hollow channel axially extending throughout the first central hollow channel's length, wherein the Langevin transducer has a handle that extends along an entire axial length of a piezoelectric ring and is located in a radial direction outward from the piezoelectric ring so as to cover the piezoelectric ring along the entire axial length of the piezoelectric ring; and
a sharps member comprising a second central hollow channel, the second central hollow channel axially extending through at least a portion of the second central hollow channel's length, coupled to said Langevin transducer, such that said Langevin transducer and said sharps member share a common fluidic pathway formed by said first and second central hollow channels to allow for the passage of at least one of: bodily tissues, bodily fluids, saline, and medicines; and
a catheter disposed first through the first central hollow channel so as to be disposed within the piezoelectric ring and the handle that extends in the axial direction along the entire axial length of the piezoelectric ring that is radially outward from the entire piezoelectric ring, wherein the catheter is subsequently disposed through the second central hollow channel and out of the sharps member.