Robotic assisted cannulation of occluded retinal veins

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Abstract

Purpose: To develop a methodology for cannulating porcine retinal venules using a robotic assistive arm after inducing a retinal vein occlusion using the photosensitizer rose bengal. Methodology: Retinal vein occlusions proximal to the first vascular branch point were induced following intravenous injection of rose bengal by exposure to 532nm laser light delivered by slit-lamp or endolaser probe. Retinal veins were cannulated by positioning a glass catheter tip using a robotically controlled micromanipulator above venules with an outer diameter of 80μm or more and performing a preset piercing maneuver, controlled robotically. The ability of a balanced salt (BSS) solution to remove an occlusion by repeat distention of the retinal vein was also assessed. Results: Cannulation using the preset piercing program was successful in 9 of 9 eyes. Piercing using the micromanipulator under manual control was successful in only 24 of 52 attempts, with several attempts leading to double piercing. The best location for cannulation was directly proximal to the occlusion. Infusion of BSS did not result in the resolution of the occlusion. Conclusion: Cannulation of venules using a robotic microassistive arm can be achieved with consistency, provided the piercing is robotically driven. The model appears robust enough to allow testing of therapeutic strategies aimed at eliminating a retinal vein thrombus and its evolution over time.

Figures

  • Figure 1: Pig 50, OD right eye. Left, a fluor image of the occlusion with all attempt locations indicated. On the right the microscope image of attempt 1. None of the attempts resulted in a penetration.
  • Figure 3: Pig 51, OS left eye. A fluor image of the occlusion with all attempt locations indicated, all penetration attempts were successful.
  • Figure 3: Pig 51, OD Right eye. A fluor image of the occlusion with all attempt locations indicated, attempt 13 and 15 showed successful penetration.
  • Figure 5: Pig 52, OS Left eye. A fluor image of the occlusion with all attempt locations indicated. Attempt 18 went through and through. However, on retract, the tip was intravenous and injection µPL.
  • Figure 5: Pig 52, OS Left eye. A fluor image of the occlusion with all attempt locations indicated. Attempt 17 showed an successful penetration, that resolved the occlusion.
  • Figure 1: Pig 65, OS. On the left, a fluo image of the occlusion with all attempt locations indicated, attempt 4 successful penetration.
  • Figure 2: Pig 65, OD. On the left, a fluo image of the occlusion with all attempt locations indicated, attempt 5-8 show successful penetrations. On the right: Top image, vein with occlusion, lower image, same vein with occlusion solved.
  • Figure 9: Pig 67, OS. A fluo image of the occlusion with all attempt locations indicated, attempt 16 shows a successful penetration.

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CITATION STYLE

APA

De Smet, M. D., Meenink, T. C. M., Janssens, T., Vanheukelom, V., Naus, G. J. L., Beelen, M. J., … Stassen, J. M. (2016). Robotic assisted cannulation of occluded retinal veins. PLoS ONE, 11(9). https://doi.org/10.1371/journal.pone.0162037

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