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1. Omotosho P, Yurcisin B, Ceppa E, Miller J, Kirsch D, Portenier DD. In vivo assessment of an absorbable and nonabsorbable knotless barbed suture for laparoscopic single-layer enterotomy closure: a clinical and biomechanical comparison against nonbarbed suture. J Laparoendosc Adv Surg Tech A. 2011;21(10):893-897.

2. Adams JB, Schulam PG, Moore RG, Partin AW, Kavoussi LR. New laparoscopic suturing device: initial clinical experience. Urology. 1995; 46(2):242-245.

3. Stringer NH. Laparoscopic myomectomy with the Endo Stitch™ 10 mm laparoscopic suturing device. J Am Assoc Gynecol Laparosc. 1996; 3(2):299-303.

4. Nguyen NT, Mayer KL, Bold RJ, et al. Laparoscopic suturing evaluation among surgical residents. J Surg Res. 2000; 93(1): 133-136.

5. Pattaras JG, Smith GS, Landman L, Moore RG. Comparison and analysis of laparoscopic intracorporeal suturing devices: preliminary results. J Endourol. 2001;15(2):187-192.

6. Hart S, Hashemi L, Sobolewski CJ. Effect of a disposable automated suturing device on cost and operating room time in benign total laparoscopic hysterectomy procedures. JSLS. 2013. 17(4):508–516.

7. Based on a five-year retrospective view of internal COGNOS data and extrapolated sales calculations.

8. Brown, S. Utilization of a porcine model to demonstrate the efficacy of an absorbable barbed suture for dermal closure. UTSW. 2009.

9. Rubin JP, Hunstad JP, Polynice A, et al. A multicenter randomized controlled trial comparing absorbable barbed sutures versus conventional absorbable sutures for dermal closure in open surgical procedures. Aesthet Surg J. 2014; 34: 272-283.

10. Zaruby J, Gingras K, Taylor J, Maul D. An in vivo comparison of barbed suture devices and conventional monofilament sutures for cosmetic skin closure: biomechanical wound strength and histology. Aesthet Surg J. 2011;31(2):232-240. doi: 10.1177/1090820X10395010

11. Gingras K, Zaruby J, Maul D. Comparison of V-Loc™ 180 wound closure device and Stratafix™* Spiral knotless tissue-closure device for intradermal closure in a porcine in vivo model: evaluation of biomechanical wound strength. J Biomed Mater Res Part B Appl Biomater. 2012;100(4):1053-1058.