Vascular adjustable multi-gauge tilt-out method and apparatus for guiding needles
View Patent ↗An apparatus and method for guiding a needle in conjunction with a biopsy using a medical imaging device, where an open-ended needle guide with an adjustable pivoting multi-gauge needle stop is used to guide a needle during insertion and during a tilting of the needle with respect to the medical imaging device.
1. An improved medical instrument guiding apparatus for use with a medical imaging transceiver assembly, the medical instrument guiding apparatus comprising:
a medical imaging transceiver comprising a proximal handle end and a distal signal transmission end and an axis generally orthogonal with respect to said distal signal transmission end, which axis defines a transmission direction;
a base, comprising a back portion and a stationary stop which is disposed at said back portion, said base detachably coupled to said medical imaging transceiver between said handle end and said signal transmission end;
a pivoting member which is pivotable with respect to said base;
said stationary stop and said pivoting member are configured so as to define an instrument gap between said stationary stop and said pivoting member and further configured to permit removal of an instrument from said instrument gap by pulling said back portion of said base away from said instrument, through an enlarged instrument gap;
said stationary stop and said pivoting member further configured to define said instrument gap as a longitudinal instrument gap which is offset from the axis and angled with respect to the axis and the transmission direction; and
said stationary stop and said pivoting member further configured to define a variably sized instrument gap which increases to accommodate larger diameter instruments when said pivoting member is pivoted.
2. The apparatus of claim 1 wherein said pivoting member comprises an instrument engaging face which is configured at an oblique angle with respect to said back portion, so that a differential in instrument gap width exists at differing distances from said back portion.
3. The apparatus of claim 2 wherein said stationary stop is orthogonal to said back portion.
4. The apparatus of claim 3 wherein said stationary stop is formed in a single piece of material with said back portion.
5. The apparatus of claim 4 wherein said pivoting member further comprises a proximal end and a distal end, and said proximal end comprises said instrument engaging face and said distal end comprises an actuation region.
6. The apparatus of claim 5 wherein said actuation region further comprises surface features configured to increase engagement of said actuation region during pivoting of said pivoting member.
7. The apparatus of claim 6 wherein said stationary stop has a beveled top edge configured to facilitate insertion of an instrument into said instrument gap from a location above said beveled top edge.
8. The apparatus of claim 7 further comprising a resilient member disposed between said pivoting member and said base so as to bias said pivoting member into a position which reduces said instrument gap.
9. The apparatus of claim 8 wherein said resilient member is a plastic spring formed into one of said base and said pivoting member.
10. The apparatus of claim 9 wherein said resilient member is formed into said base.