Systems and methods for performing surgical procedures and assessments
The present invention involves systems and related methods for performing surgical procedures and assessments, including the use of neurophysiology-based monitoring to: (a) determine nerve proximity and nerve direction to surgical instruments employed in accessing a surgical target site; (b) assess the pathology (health or status) of a nerve or nerve root before, during, or after a surgical procedure; and/or (c) assess pedicle integrity before, during or after pedicle screw placement, all in an automated, easy to use, and easy to interpret fashion so as to provide a surgeon-driven system.
1. A spinal access cannula comprising:
a dilating cannula having an outer surface with a continuous cross section from a proximal end to a distal end of the dilating cannula except for a tapered portion near the distal end that tapers to a smaller diameter toward the distal end and having an inner surface defining an inner lumen extending from the proximal end to the distal end, the distal end of the dilating cannula having a distal central opening therethrough in communication with the inner lumen and in line with a central longitudinal axis of the dilating; and
a single stimulation electrode fixed at the tapered portion and on the outer surface of the dilating cannula, and exposed at only a radial portion of the outer surface of the dilating cannula, wherein the radial portion comprises an arc on the outer surface of the dilating cannula, wherein the length of the arc is less than the circumference of the outer surface of the dilating cannula, wherein all other portions of the distal end of the dilating cannula has no exposed stimulation electrode.
2. A sequential dilator system comprising:
at least three sequential dilating cannulas, each having an outer surface with a continuous cross section from a proximal end to a distal end of the sequential dilating cannula and having an inner surface defining an inner lumen extending from the proximal end to the distal end, the distal end of the sequential dilating cannula having a distal central opening therethrough in communication with the inner lumen and in line with a central longitudinal axis of the sequential dilating cannula, wherein one of the at least three sequential dilating cannulas comprises an outer surface with a continuous cross section from a proximal end to a distal end of the dilating cannula except for a tapered portion near the distal end that tapers to a smaller diameter toward the distal end; and
a single stimulation electrode fixed at the tapered portion and on the outer surface of the one of the at least three sequential dilating cannulas, and exposed at only a radial portion of the outer surface of the one of the at least three sequential dilating cannulas, wherein the radial portion comprises an arc on the outer surface of the one of the at least three sequential dilating cannulas, wherein the length of the arc is less than the circumference of the outer surface of the one of the at least three sequential dilating cannulas, wherein all other portions of the distal end of the one of the at least three sequential dilating cannulas has no exposed stimulation electrode.
3. A sequential dilator system comprising:
at least three sequential dilating cannulas, each having an outer surface with a continuous cross section from a proximal end to a distal end of the sequential dilating cannula and having an inner surface defining an inner lumen extending from the proximal end to the distal end, the distal end of the sequential dilating cannula having a distal central opening therethrough in communication with the inner lumen and in line with a central longitudinal axis of the sequential dilating cannula, wherein one of the at least three sequential dilating cannulas comprises an outer surface with a continuous cross section from a proximal end to a distal end of the dilating cannula except for a tapered portion near the distal end that tapers to a smaller diameter toward the distal end;
a single stimulation electrode fixed at the tapered portion and on the outer surface of the one of the at least three sequential dilating cannulas, and exposed at only a radial portion of the outer surface of the one of the at least three sequential dilating cannulas, wherein the radial portion comprises an arc on the outer surface of the one of the at least three sequential dilating cannulas, wherein the length of the arc is less than the circumference of the outer surface of the one of the at least three sequential dilating cannulas, wherein all other portions of the distal end of the one of the at least three sequential dilating cannulas has no exposed stimulation electrode; and
an electromyographic monitoring system configured for connection to each of the at least three sequential dilating cannulas and performing nerve detection of a spinal nerve when a respective one of the at least three sequential dilating cannulas is positioned in the access path toward the operative site in the region of the lumbar spine by stimulating the stimulation electrode and monitoring an electrical current level determined after a neuro-muscular onset response is detected via one or more return electrodes positioned on the patient's leg.
4. The sequential dilator system of claim 3 , wherein each of the at least three sequential dilators comprises an electrical connector at the proximal end that is not aligned with the single stimulation electrode and that is configured for establishing electrical connection between the stimulation electrode and the electromyographic monitoring system.
5. The spinal access cannula of claim 1 , further comprising a K-wire coupled to the stimulation electrode.
6. The sequential dilator system of claim 2 , further comprising a K-wire coupled to the stimulation electrode.
7. The sequential dilator system of claim 3 , further comprising a K-wire coupled to the stimulation electrode.