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A comparison of absorbable suture and argon laser welding for lateral repair of arteries.

Conventional vascular anastomoses between autogenous vessels are performed with nonabsorbable sutures. Recently, use of absorbable sutures and laser-assisted vascular anastomoses has been advocated because of their improved healing characteristics. This study compared arterial repairs with the argon laser, absorbable suture, and nonabsorbable suture for technical characteristics including additional suture and overall success rates, burst strength, and cost. Absorbable and nonabsorbable suture closures were comparable with respect to technique, but laser-assisted vascular anastomosis was technically more demanding and required almost twice as much time for completion. The argon laser successfully closed only 58.6% of the arteriotomies, and 90% of the closures required additional sutures for complete hemostasis. All sutured arteriotomies were successfully completed by use of either absorbable or nonabsorbable suture. Burst strength was similar for all groups, but was uniformly greater than 300 mm Hg for sutured repairs, whereas two of five laser-assisted closures burst below 300 mm Hg. Finally, costs for purchasing ($35,000) and operating ($300/hr.) an argon laser make laser-assisted vascular anastomosis much more expensive than sutured repair. These data suggest argon laser-assisted vascular anastomoses are more technically demanding, less successful, and more expensive than conventional sutured anastomoses when evaluated in large caliber arteries in a canine model. Absorbable suture, however, is comparable to conventional nonabsorbable sutured arterial repairs in expense, handling characteristics, and success rates with the added advantage of eliminating permanent foreign body in the arterial wall when it is absorbed.

Absorption↗

[Epikeratoplasty without sutures using collagen IV lens in monkeys: description of the surgical technic].

The authors describe their original epikeratoplasty technic without sutures which is compatible with the use of collagen IV lens. They describe the first four observations of primates operated on using this technic. At first the epithelium is removed at the cornea center and a trepanation is made of 4 mm diameter and 0.1 mm depth. The bottom of the trepanation is then cut horizontally, and the periphery of the lens is put in the cornea stroma. Later the epithelium will recover the collagen lens. The lens is perfectly set in the cornea. We don't use any suture and so we avoid astigmatism and neovascularisation. The follow-up consisted of biomicroscopic examination photography, specular microscopy, pachymetry, photokeratoscopy (Nidek System) tonometry and histology. Clinical observance showed a perfect lens tolerance. The cornea is immediately transparent and within a week epithelial cells recovered the lens of three animals out of four. The photokeratoscopy study proved the important cornea refraction modification. This technic is reversible and the lens can be exchanged. A study of histology has begun and already shows a pluristratified epithelium. Further studies will test the biomaterial stability and ultra structural relations between the collagen IV lens and epithelial cells.

Animals↗

Extraperitoneal retention sutures.

A new technic for the application of retention sutures is described. Intestinal obstruction caused by the entrapped intestine between the retention suture and the abdominal wall is practically eradicated with this technic.

Abdominal Muscles↗

Transscleral suture fixation of posterior chamber intraocular lenses through the ciliary sulcus: endoscopic comparison of different suture techniques.

Two technical difficulties exist in transscleral suture fixation of posterior chamber intraocular lenses (PCL) in the ciliary sulcus: first, exact needle penetration of the sulcus and second, exact positioning of the PCL haptics in the sulcus. We used, for the first time, intraocular endoscopy to visualize the site of needle penetration and the final location of the haptics in patients. It turned out that with our previously described standard techniques, precision was far less than anticipated. Thus, new technical ways had to be sought to improve the precision of positioning. In secondary implantation, we achieved best results when the needle was passed from the outside before opening the eyeball, taking advantage of a precisely prepared blue-white line. Passing the needle in an already hypotonic eyeball gives much less precise results. In combination with perforating keratoplasty, passing the needle from the inside by feeling one's way into the sulcus with the needle tip gives the best results. Correct positioning of the PCL haptics is at least as difficult as is needle penetration, a fact which up to now has mostly been ignored. More suitable lens designs may offer a solution for this problem. Their clinical value has to be established by intraocular endoscopy.

Cataract Extraction↗