Search PubMed⌕ Search

PubMed · 7604477

Laparoscopic laser-assisted bladder autoaugmentation.

Abstract

OBJECTIVES: The purpose of this study is to examine the feasibility of performing a laparoscopic bladder autoaugmentation and to assess the urodynamic characteristics of an autoaugmented bladder. METHODS: Laparoscopic bladder autoaugmentation was performed in 9 female canines (20 to 30 kg). Following laparoscopic access to the peritoneal cavity, a midline bladder seromyotomy was performed using the potassium titanyl phosphate 532 nm laser. This produced a large bladder diverticulum. Changes in bladder volume and compliance were quantified over a 3-month period of follow-up. RESULTS: Urodynamic evaluation demonstrated an increase in bladder capacity 6 weeks postoperatively in 8 of 9 dogs, with an average volume increase of 45%. Bladder compliance improved in 7 of 9 dogs with an average increase in compliance of 67%. Three months postoperatively, bladder capacity remained increased in 5 of 9 dogs, with an average increase in volume of only 5.3%. An improvement in compliance was sustained in 5 of 9 animals with an average increase of 13.9%. Laparoscopic exploration revealed grossly normal bladders with adhesions of omentum to the seromyotomy site in all canines and the anterior abdominal wall in 2 of 9 canines. Histologically, the seromyotomy site was devoid of muscle with an intact urothelium and a proliferation of loose connective tissue. CONCLUSIONS: The technique of laparoscopic bladder autoaugmentation can be performed easily in the canine model. Although results at 6 weeks show significant improvement, the longer term, 3-month results were not statistically significant. This technique has the potential to offer a minimally invasive correction for patients with low-capacity, high-pressure bladders that have failed pharmacologic treatment.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

R G Britanisky, D P Poppas, S N Shichman, D T Mininberg, R E Sosa. 1995. Laparoscopic laser-assisted bladder autoaugmentation.. https://doi.org/10.1016/s0090-4295(99)80154-x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Role of the gubernacular bulb in cremaster muscle development of the rat.

The role of the gubernaculum during the inguino-scrotal phase of testicular descent remains controversial. Some authors propose involution and eversion while others suggest active migration, although the site of growth is unknown. We aimed to determine whether the gubernacular bulb is actively proliferating or regressing during inguino-scrotal testicular descent in the rat. Gubernacula were removed from Sprague-Dawley rats and congenitally-cryptorchid TS mutant rats. Animals (0, 3, 7, 10, and 11 days of age) were treated with bromodeoxyuridine (BUdR) 2 hr before they were killed. BUdR incorporation into newly synthesized DNA served as a marker of cell division. The gubernacula were histologically processed for hematoxylin-eosin (H&E) and immunoperoxidase staining. Four different areas within the gubernaculum were examined for BUdR-positive cells: area 1: plica gubernaculi (cord); area 2: pars infravaginalis gubernaculi (bulb); area 3: distal part of the cremaster muscle; and area 4: proximal part of the cremaster muscle. The rate of cell division for each of these areas was determined by counting the number of BUdR-positive cells per 100 cells. The highest rate of BUdR labeling in both types of rats was in area 2, which is the tip of the gubernacular bulb, and this was significantly greater (P < 0.0001) than in the gubernacular cord or developing cremaster muscle. The mitotic activity was also noted to be significantly greater (P < 0.0001) at the distal end of the cremaster muscle than at the proximal end. The amount of mitosis decreased significantly (P < 0.01) in areas 2 and 4 of the gubernaculum in Sprague-Dawley rats across the period studied. This trend was not observed in TS rats. Our results suggest that the bulb actively proliferates after birth, with possible differentiation into new cremaster muscle cells. We propose that the bulb is the growing end of the elongating gubernaculum, analogous to the growth of a limb bud.

Abdominal Muscles↗