Necrotizing Enterocolitis with Dr. Gail Besner

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Inside this episode

Kai, the Library's AI content creator, listened to this episode and mapped who's speaking, the chapters, key claims, and cases. Every item links to the exact moment in the recording.

AI-enriched

Who's speaking

  • Todd Ponsky — host
  • Gail Besner — guest

Chapters

  • 0:00Introduction and Initial Evaluation — Introduction to NEC management challenges and initial approach to a 27-week preemie with suspected NEC, including history-taking and physical examination priorities.
  • 3:23Diagnostic Workup and Medical Management — Discussion of laboratory evaluation, imaging strategies, and medical management components including NPO status, gastric decompression, and broad-spectrum antibiotics.
  • 9:16Indications for Surgical Intervention — Criteria for operative management, including absolute indications (free air) and relative indicators (clinical deterioration, fixed loops, portal venous air), with emphasis on serial examinations.
  • 17:45Drain versus Laparotomy Decision — Detailed comparison of peritoneal drainage and exploratory laparotomy, including mortality equivalence, emerging neurological outcome data from the NEST trial, and European practice patterns.
  • 24:56Peritoneal Drain Technique and Management — Technical aspects of drain placement, postoperative monitoring, criteria for conversion to laparotomy, and strategies for drain removal and feeding advancement.
  • 33:40Laparotomy Technique and Scenarios — Operative approach including incision choice, injury prevention, bowel assessment, resection strategies for various scenarios (isolated disease, skip lesions), and stoma creation techniques.
  • 42:05Stoma Reversal and Catastrophic Cases — Timing and criteria for stoma closure, refeeding strategies, management of NEC totalis, and emergency temporizing measures for unstable patients with pneumoperitoneum.

Key claims

  • 2:11Despite 6 decades of research, the exact cause of NEC is unknown and there is no absolute cure — Gail Besner
  • 3:53Indomethacin predisposes babies to both isolated ileal perforation and necrotizing enterocolitis — Gail Besner
  • 4:44PPIs and H2 blockers that neutralize gastric acid may predispose to NEC — Gail Besner
  • 7:17Neutropenia is more concerning than elevated white blood cell count in NEC, suggesting overwhelming sepsis — Gail Besner
  • 7:33Thrombocytopenia can result from endotoxemia and gram-negative septicemia in NEC — Gail Besner
  • 8:50Cross-table lateral or lateral decubitus films are necessary to detect subtle free air — Gail Besner
  • 9:38Free air is an absolute indication for surgical intervention (drain or laparotomy) — Gail Besner
  • 10:02Fixed loops of intestine on serial X-rays are not an absolute indication for surgery but are a concerning sign — Gail Besner
  • 10:16Portal venous air is worrisome but not an absolute indication for surgery; some patients improve with medical management — Gail Besner
  • 10:58Medical management of NEC includes NPO status, orogastric decompression, broad-spectrum antibiotics, and serial monitoring — Gail Besner
  • 12:05Small feeding tubes are inadequate for gastric decompression; an orogastric tube should be placed — Gail Besner
  • 12:43There is tremendous diversity in antibiotic regimens for NEC across the United States — Gail Besner
  • 13:37Abdominal X-rays should be obtained at intervals (approximately every 8 hours) during medical management — Gail Besner
  • 14:15Medical NEC management should continue for at least 1 week to 10 days before attempting feeds — Gail Besner
  • 14:40Strictures after medical NEC typically occur in the colon, usually near the splenic flexure, but can occur anywhere — Gail Besner
  • 15:17Contrast enema should be performed before upper GI series when evaluating for post-NEC stricture — Gail Besner
  • 16:23Serial abdominal exams are critical for determining operative timing in NEC without absolute indications — Gail Besner
  • 16:43Worsening distention, peritoneal signs, increasing pressor requirements, and renal shutdown collectively indicate need for surgery — Gail Besner
  • 19:44The MOSS and Piero trials showed no difference in overall mortality between peritoneal drainage and laparotomy for NEC — Gail Besner
  • 20:14Babies with peritoneal drains may have worse neurological outcomes at 1-2 years compared to laparotomy — Gail Besner
  • 20:34The NEST trial randomized 300 babies to drainage versus laparotomy and will assess neurological outcomes at 18-22 months — Gail Besner
  • 19:10100% of European surgeons at a recent NEC conference perform laparotomy rather than peritoneal drainage — Gail Besner
  • 21:57Removal of inflammatory necrotic tissue via laparotomy may lead to better neurological outcomes than drainage alone — Gail Besner
  • 22:58There are no definitive criteria to guide the choice between peritoneal drainage and laparotomy — Gail Besner
  • 24:15Isolated intestinal perforation can cause systemic inflammatory response syndrome as severe as NEC — Gail Besner
  • 26:15Peritoneal drain placement can be performed at bedside with local anesthesia through a small right lower quadrant incision — Gail Besner
  • 25:46A significant proportion of patients with peritoneal drains continue to decline and require laparotomy — Gail Besner
  • 28:43Operating during peak inflammatory phase after drain placement can result in extensive adhesions and multiple enterotomies — Gail Besner
  • 29:03Knowing when to abort an operation and create a proximal diversion is an important surgical decision — Gail Besner
  • 29:48Peritoneal drains should be advanced out gradually over several days starting at 7-10 days postoperatively — Gail Besner
  • 31:43Supraumbilical transverse incision is preferred for NEC laparotomy — Gail Besner
  • 32:27Liver and spleen injury are critical risks in premature NEC surgery; even minor trauma can cause fatal subcapsular hematoma — Gail Besner
  • 33:21Spontaneous intestinal perforation presents as one small localized perforation, while NEC involves more diffuse disease with pneumatosis — Gail Besner
  • 34:04Primary anastomosis is performed in some countries but US surgeons typically create stomas due to concerns about anastomotic healing — Gail Besner
  • 35:20Stomas should be brought out through the laparotomy incision close together to facilitate later closure — Gail Besner
  • 35:42Stomas should be tacked to fascia but not matured; the distal end may slough off — Gail Besner
  • 37:12When bowel appears injured but not necrotic, it may be appropriate to avoid resection and perform a second-look operation in 24-48 hours — Gail Besner
  • 38:07For multiple skip lesions, resection with multiple anastomoses distal to a proximal diverting stoma protects against anastomotic leak — Gail Besner
  • 38:46Clip and drop technique (resecting dead bowel, clipping ends, returning to abdomen) can be life-saving in unstable patients — Gail Besner
  • 39:32Stoma reversal is typically performed when baby reaches approximately 2000g, is stable, and feeding well — Gail Besner
  • 39:53Earlier stoma reversal may be indicated for TPN-induced cholestasis or inability to nourish due to high stoma output — Gail Besner
  • 40:48Refeeding through mucous fistula is done selectively for very high output stomas to reduce TPN dependence — Gail Besner
  • 41:28Mucous fistulas often stricture, losing the opportunity for refeeding; a small catheter can be left in place to maintain access — Gail Besner
  • 42:32The chance of a baby with NEC totalis surviving to receive small bowel-liver transplant is very close to zero — Gail Besner
  • 42:56For NEC totalis in very small premature babies, comfort care is an appropriate option given lack of viable treatment — Gail Besner
  • 43:42Months to years of TPN required after massive resection will irreversibly injure the liver — Gail Besner
  • 44:38Pneumothorax can dissect through the diaphragm into the abdomen, mimicking intestinal perforation — Gail Besner
  • 45:06Angiocatheter decompression of pneumoperitoneum is a useful temporizing measure in hemodynamically unstable patients — Gail Besner

Open questions

  • What is the optimal antibiotic regimen for NEC across different institutions?
  • Will the NEST trial definitively show superior neurological outcomes with laparotomy versus peritoneal drainage?
  • What are the long-term outcomes of early versus delayed stoma reversal?
  • Is there a reliable way to predict which patients with drains will require conversion to laparotomy?
  • What is the optimal timing for second-look operations when bowel viability is uncertain?
This episode was analyzed and enriched by Kai, the Library's AI content creator. Every item links to the moment it comes from — click a timestamp to listen in context.
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Topic overview

A comprehensive discussion of necrotizing enterocolitis (NEC) management in premature infants, covering medical versus surgical treatment decisions, operative approaches (peritoneal drainage versus laparotomy), and technical considerations for bowel resection and stoma creation. Dr. Gail Besner, chief of pediatric surgery at Nationwide Children's Hospital and NEC researcher, addresses clinical decision-making in scenarios ranging from early medical management to catastrophic pan-intestinal necrosis. Key clinical points include the lack of definitive criteria for drain versus laparotomy selection, emerging evidence suggesting worse neurological outcomes with drainage alone, and the importance of serial abdominal examinations in determining operative timing.

Key takeaways

  • Free air mandates surgery; portal venous air and fixed loops are concerning but not absolute indications for operation. (9:38)
  • Peritoneal drainage may worsen neurological outcomes vs laparotomy despite similar mortality; NEST trial results pending. (19:44)
  • Use orogastric tubes for decompression—small feeding tubes are inadequate. Continue NPO 7-10 days before refeeding. (12:05)
  • Avoid liver/spleen trauma in premature NEC surgery; even minor injury can cause fatal subcapsular hematoma. (32:27)
  • For NEC totalis in extremely premature infants, comfort care is appropriate—transplant survival is near zero. (42:32)

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Transcript

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