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Biomedical subjects

C Paul Swain

Publications and source records attributed to C Paul Swain.

6 recordsLinked to original sources

Endoscopic full-thickness resection: circumferential cutting method.

BACKGROUND: Endoscopic full-thickness resection (EFTR) at flexible endoscopy might allow less-invasive removal of more deeply penetrating cancers that have not spread to the serosal surface and more complete histologic examination of the excised tissue. OBJECTIVE: A method for closure of full-thickness defects in the stomach wall would be valuable for other endosurgical applications. SETTING: A method that uses an end cap and band-ligation without prior injection of saline solution to perform EFTR gave good results and was safe in pig studies. There is a size limitation of cancers that can be resected en bloc when using this method. The depth of resection was also variable. DESIGN AND INTERVENTIONS: EFTR was achieved by circumferential cutting with a sphincterotome and a snare. A prototype bidirectional cutter was tested. Sutured closure was accomplished by using a sheathed needle, a metal tag, and a thread at the tip, passed through a 2.8-mm accessory channel. Knot-tying devices secured the sutured defect. MAIN OUTCOME MEASUREMENTS: EFTR was studied in non-survival (n = 4) and survival (n = 8) experiments in pigs. RESULTS: Full-thickness specimens were resected from the gastric wall (100%, 12/12), and the defects were closed by using sewing and knot-tying devices (100%, 12/12). LIMITATIONS: A healing ulcer at the suturing site was evident at follow-up endoscopy in the survival experiments. Bleeding, which was stopped by suturing, occurred in 1 pig (8.3%, 1/12). All pigs survived these experiments without complications (100%, 8/8). CONCLUSIONS: Circumferential EFTR was feasible and appeared safe in survival experiments. This method might allow larger and deeper resection of tumors in the gastric wall.

Animals↗

Endoscopic full-thickness resection with sutured closure in a porcine model.

BACKGROUND: Some early gastric cancers might be advantageously staged and treated by full-thickness resection if secure methods for closing the defect were available. The aim of this study was to test the feasibility of full-thickness gastric resection. METHODS: Full-thickness gastric resections were performed by using a ligating device without submucosal injection in survival studies in pigs (n = 8). The defects were closed by using new methods for suturing, locking, and cutting thread through a 2.8-mm accessory channel. Stitches (n = 2-4) were placed close to the target area before resection. OBSERVATIONS: Full-thickness resections (n = 8) were performed. The pigs survived without incident for 21 to 28 days. Healing of the suture site was evident at follow-up endoscopy. Suture sites were water tight. The pull-out force with stitches by using this new sewing method was significantly higher than with endoscopic clips (20.3 N +/- 0.94 vs. 2.2 N +/- 0.42, p < 0.05). CONCLUSIONS: Endoscopic full-thickness resection with sutured defect closure was feasible and appeared safe in these survival experiments.

Animals↗

Transluminal endosurgery: single lumen access anastomotic device for flexible endoscopy.

BACKGROUND: Forming anastomoses between two hollow organs at flexible endoscopy might reduce the need for surgery for obstructing malignancy. Current methods require access to both lumens. The aim of this work was to develop methods of forming an anastomosis at flexible endoscopy, such as a gastrojejunostomy or cholecystoduodenostomy, when access to only one lumen is feasible. METHODS: A modified needle was passed through a large-channel echoendoscope from the accessible lumen into the target hollow organ. An anastomotic device was formed by using two 7F catheter segments, which were pushed over a guidewire into the target, the less accessible lumen. When released, by withdrawing the guidewire, the catheters formed a cross shape and created an anastomosis when compressed against a plate from the accessible side. OBSERVATIONS: These devices were tested in live animal experiments. With an echoendoscope in the stomach, it was repeatedly possible to place needles, threaded tags, and guidewires into the small intestine and gallbladder. In 4 to 7 days, anastomoses were formed in 16 pigs between the small intestine and the stomach, and between the gallbladder and the stomach. The initial diameter of the anastomoses ranged from 3 to 9 mm. No complication occurred. CONCLUSIONS: It is feasible to form anastomoses at flexible endoscopy when access is limited to a single side.

Anastomosis, Surgical↗

The wireless capsule: new light in the darkness.

The development of wireless capsule endoscopy offers the potential to examine the whole small intestine, with its 5-meter length, and has the advantage of being painless. Using a miniature CMOS camera and a short focal length lens, images are obtained, as the optical window of the capsule sweeps past the gut wall, without requiring air inflation of the gut lumen. The capsule endoscope is propelled by peristalsis through the gastrointestinal tract. The video images are transmitted using radiotelemetry to an array of aerials attached to the body which allows image capture. The images are stored on a small portable recorder carried on a belt and subsequently downloaded for analysis. The system allows more than 7 h of continuous recording of images of the gastrointestinal tract. The patients are free to continue their daily routine during the examination. The capsule endoscope has performed well in trials in patients with difficult gastrointestinal bleeding and in comparative studies with push enteroscopy. It has received both a CE mark and FDA approval for use in patients. It has been used to date in about 4,000 patients. The current clinical data are reviewed.

Endoscopes, Gastrointestinal↗