Minimally invasive surgical cannula
View Patent ↗The present invention is directed to a minimally invasive surgical cannula provided with at least two grooves having a semi-circular profile as a non rotating feature. The non rotating grooves of cannula further accommodates at least one sensor and a strain gauge to detect and measure forces acting on cannula when it is coupled with a modular interfacing arrangement and facilitates maneuvering of surgical instrument inside the body cavity during surgical incision.
1. A cannula apparatus for surgical insertion movable between locked and unlocked positions, the cannula apparatus comprising:
a cannula having proximal end and a distal end;
a connector to which the cannula is releasably attached, the connector including a central support member, protruding clips, and a pair of gripping members, the central support member including a resilient member disposed therein,
wherein the proximal end of the cannula has an anti-rotation configuration comprising at least two grooves having closing ends and a non-circular profile, the non-circular profile defining a flat surface between the closing ends of each groove to prevent the cannula from rotating and moving axially when in the locked position during surgical insertion, and
wherein pressing of the clips inwards causes compression of the resilient member and opening apart of the gripping members to release the cannula.
2. The cannula apparatus of claim 1 , wherein the flat surface between the closing end of each groove further defines a slit to accommodate at least in part one sensor to detect if the cannula is securely engaged with a robotic arm.
3. The cannula apparatus of claim 2 , wherein the slit is configured to accommodate at least in part a strain gauge to measure force exerted on the cannula by an interfacing arrangement engageable therewith.
4. The cannula apparatus of claim 2 , wherein the slit is formed to pierce through a small section of a cannula wall, between 0.045 to 0.095 inches.
5. A coupling arrangement including a connector coupling a cannula with an interfacing arrangement, the connector comprising:
a central support member having disposed therewithin a resilient member configured to share an abutting relation with a pair of support member wings extending rearward from the central support member towards the interfacing arrangement, the central support member further extending in a frontal direction towards the cannula to include at least a pair of gripping members so adapted to securely hold the cannula therebetween; and
a protruding clip on either side of the central support member such that pressing of the clip inwards causing compression of the resilient member and opening apart of the pair of gripping members to release the cannula.
6. The coupling arrangement of claim 5 , wherein the resilient member is a torsion spring.
7. The coupling arrangement of claim 5 , wherein in response to pressing of the support member wings inwards concomitant outward pulling of the pair of gripping members from their radial centers occurs so as to securely receive the cannula therebetween, and in response to releasing of the support member wings, the pair of gripping members overlap to securely and rigidly hold the cannula therewithin.
8. The coupling arrangement of claim 5 , wherein the connector connecting the interfacing arrangement with the cannula involves a cannula comprising at least two grooves having a non-circular profile to define a flat surface between closing ends of two grooves, the flat surface further accommodating thereupon a slit to house at least in part one protruding sensor and a strain gauge.
9. The coupling arrangement of claim 5 , wherein the pair of gripping members are configured to embrace each respective grooved section of the cannula such that the protruding sensor or the strain gauge housed partially within the slit of cannula presses against the central support member to detect and measure forces acting on the cannula by the interfacing arrangement.