scholarly journals Novel rodent model for simulation of sylvian fissure dissection and cerebrovascular bypass under subarachnoid hemorrhage conditions: technical note and timing study

2019 ◽  
Vol 46 (2) ◽  
pp. E17 ◽  
Author(s):  
Avital Perry ◽  
Christopher S. Graffeo ◽  
Lucas P. Carlstrom ◽  
William J. Anding ◽  
Michael J. Link ◽  
...  

OBJECTIVESylvian fissure dissection following subarachnoid hemorrhage (SAH) is a challenging but fundamental skill in microneurosurgery, and one that has become increasingly difficult to develop during residency, given the overarching management trends. The authors describe a novel rodent model for simulation of sylvian fissure dissection and cerebrovascular bypass under SAH conditions.METHODSA standardized microvascular anastomosis model comprising rat femoral arteries and veins was used for the experimental framework. In the experimental protocol, following exposure and skeletonization of the vessels, extensive, superficial (1- to 2-mm) soft-tissue debridement was conducted and followed by wound closure and delayed reexploration at intervals of 7, 14, and 28 days. Two residents dissected 1 rat each per time point (n = 6 rats), completing vessel skeletonization followed by end-to-end artery/vein anastomoses. Videos were reviewed postprocedure to assess scar score and relative difficulty of dissection by blinded raters using 4-point Likert scales.RESULTSAt all time points, vessels were markedly invested in friable scar, and exposure was subjectively assessed as a reasonable surrogate for sylvian fissure dissection under SAH conditions. Scar score and relative difficulty of dissection both indicated 14 days as the most challenging time point.CONCLUSIONSThe authors’ experimental model of femoral vessel skeletonization, circumferential superficial soft-tissue injury, and delayed reexploration provides a novel approximation of sylvian fissure dissection and cerebrovascular bypass under SAH conditions. The optimal reexploration interval appears to be 7–14 days. To the authors’ knowledge, this is the first model of SAH simulation for microsurgical training, particularly in a live animal system.

1987 ◽  
Vol 148 (2) ◽  
pp. 458-458 ◽  
Author(s):  
DR Pennes ◽  
WA Phillips

1994 ◽  
Vol 83 (11) ◽  
pp. 1218-1219 ◽  
Author(s):  
N. Sharief ◽  
C. Goonasekera

Burns ◽  
2009 ◽  
Vol 35 (8) ◽  
pp. 1158-1164 ◽  
Author(s):  
Chai Jia-ke ◽  
Li Li-gen ◽  
Gao Quan-wen ◽  
Shen Xiao-peng ◽  
Zhang Hai-jun ◽  
...  

PEDIATRICS ◽  
1976 ◽  
Vol 57 (5) ◽  
pp. 793-793
Author(s):  
◽  
Fernando Atienza ◽  
Calvin Sia

Skateboard-riding has become increasingly popular among Hawaii's children. The thrill of the ride and the challenge of keeping one's balance and working intricate maneuvers while speeding down a hill captures the fancy of many of our young. This sport, however, has produced an alarmingly high toll of injury and illness. Pediatricians and emergency departments of our major hospitals have seen and taken care of large numbers of patients (aged between 3 years and 35 years, but with a distribution overwhelmingly pediatric) with significant injuries which include cerebral concussion, fractures, soft tissue injuries of varying degrees of severity and complications, and injury to internal organs. During a three-month period at the Kauikeolani Children's Hospital, July to August 1975, there were 16 patients admitted with the following: seven cerebral concussions, one skull fracture, five assorted bone fractures, one soft tissue injury and infection, one retroperitoneal hemorrhage, and one instance of major surgery for removal of the spleen. During the months of August and September 1975 the Emergency Department of Straub Clinic reported the following skateboard injuries: 14 fractures, 14 soft tissue injuries, 5 lacerations, and 2 cerebral concussions. Of the 35 patients seen, three were admitted—one with an open fracture, one with cerebral concussion, and one with a skull fracture. During a four-week period (two weeks in June and July and two weeks in August and September) at the Emergency Department of Kaiser Medical Center, 66 cases of skateboard injuries were seen with six patients requiring admission for fractures and brain concussion.


Author(s):  
Oneida A. Arosarena ◽  
Issam N. Eid

AbstractSoft tissue trauma to the face is challenging to manage due to functional and aesthetic concerns. Management requires careful regional considerations to maintain function such as visual fields and oral competence in periorbital and perioral injuries, respectively. Basic wound management principles apply to facial soft tissue injuries including copious irrigation and tension-free closure. There is no consensus and high-level evidence for antibiotic prophylaxis especially in various bite injuries. Ballistic injuries and other mechanisms are briefly reviewed. Scar revision for soft tissue injuries can require multiple procedures and interventions. Surgery as well as office procedures such as resurfacing with lasers can be employed and will be reviewed.


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