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Ralitsa T. Loewen

Publications and source records attributed to Ralitsa T. Loewen.

2 recordsLinked to original sources

Differential Canalograms Detect Outflow Changes from Trabecular Micro-Bypass Stents and Ab Interno Trabeculectomy

The increasing prevalence of glaucoma, a leading cause of blindness, makes the development of safer and more effective treatment more urgent. Recently introduced microincisional glaucoma surgeries that enhance conventional outflow offer a favorable risk profile but can be unpredictable. Two paramount challenges are the lack of an adequate surgical training model for new surgeries and the absence of pre-or intraoperative guidance to sites of reduced flow. To address both, we developed an ex vivo training system and a differential, quantitative canalography method to assess outflow enhancement by trabecular micro-bypass (TMB) implantation or by ab interno trabeculectomy (AIT). TMB resulted in insignificant (p>0.05) outflow increases of 13{+/-}5%, 14{+/-}8%, 9{+/-}3%, and 24{+/-}9% in the inferonasal, superonasal, superotemporal, and inferotemporal quadrants. AIT caused a 100{+/-}50% (p=0.002), 75{+/-}28% (p=0.002), 19{+/-}8%, and 40{+/-}21% increase in those quadrants. AIT eyes had a 7.5 (p=0.01), 5.7 (p=0.004), 2.3, and 1.8-fold greater outflow enhancement than matching quadrants of paired TMB-implanted eyes. Quantitative canalography demonstrated that TMB, when successful, provided focal outflow enhancements, while AIT achieved a more extensive access to outflow pathways including and beyond the surgical site itself.

Physiology

Quantification of Focal Outflow Enhancement using Differential Canalograms

PurposeTo quantify regional changes of conventional outflow caused by ab interno trabeculectomy (AIT).\n\nMethodsGonioscopic, plasma-mediated ab interno trabeculectomy (AIT; Trabectome, Neomedix, Tustin, CA) was established in enucleated pig eyes. We developed a program to automatically quantify outflow changes (R, package eye-canalogram, github.com) using a fluorescent tracer reperfusion technique. Trabecular meshwork (TM) ablation was demonstrated with fluorescent spheres in 6 eyes before formal outflow quantification with two dye reperfusion canalograms in 6 further eyes. Eyes were perfused with a central, intracameral needle at 15 mmHg. Canalograms and histology were correlated for each eye.\n\nResultsThe pig eye provided a model with high similarity to AIT in human patients. Histology indicated ablation of TM and unroofing of most Schlemms canal segments. Spheres highlighted additional circumferential and radial outflow beyond the immediate area of ablation. Differential canalograms showed that AIT caused an increase of outflow of 17{+/-}5 fold inferonasally (IN), 14{+/-}3 fold superonasally (SN) and also an increase in the opposite quadrants with a 2{+/-}1 fold increase superotemporally (ST) and 3{+/-}3 inferotemporally (IT). Perilimbal specific flow image analysis showed an accelerated nasal filling with an additional perilimbal flow direction into adjacent quadrants.\n\nConclusionA quantitative, differential canalography technique was developed that allows to quantify supraphysiological outflow enhancement by AIT.

Physiology