Related Experiment Video
Updated: Feb 14, 2026

Arterial Pouch Microsurgical Bifurcation Aneurysm Model in the Rabbit
Published on: May 14, 2020
A rare case of massive lower gastrointestinal bleeding from a ruptured splenic artery aneurysm
Ravi Maharaj1, Barry Raghunanan1, Wayne Mohammed2
1Department of Clinical Surgical Sciences, University of the West Indies, Eric Williams Medical Sciences Complex, Champ Fleurs, Trinidad and Tobago.
Abstract:
Splenic artery aneurysms (SAAs) are an extremely rare cause of asymptomatic massive lower gastrointestinal bleeding with less than a handful of patients surviving such a presentation. A 24-year-old female presented in shock after multiple episodes of massive rectal bleeding. Imaging revealed a heterogeneous mass arising from the tail of the pancreas eroding into the splenic flexure of the colon. Further episodes of bleeding led to an exploratory laparotomy. Intraoperatively, a suspected neoplastic process arising from the tail of the pancreas with contiguous involvement of the splenic flexure of the colon and the greater curvature of the stomach was noted. Distal pancreaticosplenectomy, gastric wedge resection with segmental colectomy and primary anastomosis were performed. Histology revealed a SAA with rupture into the colon. This case report shows that en-bloc resection of a ruptured SAA can be performed with success in the emergency setting.
More Related Videos
Related Concept Videos
Bleeding in Fresh Concrete
Bleeding can cause several issues in the concrete structure. Sometimes, the rising water gets trapped beneath large aggregate...
Anatomy of the Gastrointestinal System
Here's a detailed walkthrough of this complex system:
Aneurysm I: Introduction
Gastrointestinal Motility Disorders
Histology of the Gastrointestinal (GI) Tract
The mucosa is sometimes called a mucous membrane due to its mucus-secreting features. This membrane is composed of epithelium, which directly interacts with ingested substances, and the lamina propria, a layer...
Physiology of the Gastrointestinal System I: Ingestion and Propulsion

