Delayed splenic hemorrhage: Myth or mystery? A Western Trauma Association multicenter study.


Journal

American journal of surgery
ISSN: 1879-1883
Titre abrégé: Am J Surg
Pays: United States
ID NLM: 0370473

Informations de publication

Date de publication:
09 2019
Historique:
received: 01 03 2019
revised: 17 06 2019
accepted: 29 06 2019
pubmed: 10 7 2019
medline: 24 1 2020
entrez: 10 7 2019
Statut: ppublish

Résumé

Multi-detector computed tomography imaging is now the reference standard for identifying solid organ injuries, with a high sensitivity and specificity. However, delayed splenic hemorrhage (DSH), defined as no identified injury to the spleen on the index scan but delayed bleeding from a splenic injury, has been reported. We hypothesized that the occurrence of DSH would be minimized by utilization of modern imaging techniques. Data was retrospectively collected from 2006 to 2016 in 12 adult Level I and II trauma centers. All patients had an initial CT scan demonstrating no splenic injury but subsequently were diagnosed with splenic bleeding. Demographic, injury characteristics, imaging parameters and results, interventions and outcomes were collected. Of 6867 patients with splenic injuries, 32 cases (0.4%) of blunt splenic hemorrage were identified. Patients were primarily male, had blunt trauma, severely injured (ISS 32 (9-57) and with associated injuries. Injuries of all grades were identified up to 16 days following admission. Overall, half of patients required splenectomy. All index images were obtained using multi-detector CT (16-320 slice). Secondary review of imaging by two trauma radiologists judged 72% (n = 23) of scans as suboptimal. This was due to poor scan quality primary from artifact(23), single phase contrast imaging (16), and/or poor contrast bolus timing or volume (6). Notably, only 28% of scans in patients with DSH were performed with optimal scanning techniques. This is the largest reported series of DSH in the era of modern imaging. Although the incidence of DSH is low, it still occurs despite the use of multi-detector imaging and when present, is associated with a high rate of splenectomy. Most cases of DSH can be attributed to missed diagnosis from suboptimal index imaging and ultimately be avoided.

Sections du résumé

BACKGROUND
Multi-detector computed tomography imaging is now the reference standard for identifying solid organ injuries, with a high sensitivity and specificity. However, delayed splenic hemorrhage (DSH), defined as no identified injury to the spleen on the index scan but delayed bleeding from a splenic injury, has been reported. We hypothesized that the occurrence of DSH would be minimized by utilization of modern imaging techniques.
METHODS
Data was retrospectively collected from 2006 to 2016 in 12 adult Level I and II trauma centers. All patients had an initial CT scan demonstrating no splenic injury but subsequently were diagnosed with splenic bleeding. Demographic, injury characteristics, imaging parameters and results, interventions and outcomes were collected.
RESULTS
Of 6867 patients with splenic injuries, 32 cases (0.4%) of blunt splenic hemorrage were identified. Patients were primarily male, had blunt trauma, severely injured (ISS 32 (9-57) and with associated injuries. Injuries of all grades were identified up to 16 days following admission. Overall, half of patients required splenectomy. All index images were obtained using multi-detector CT (16-320 slice). Secondary review of imaging by two trauma radiologists judged 72% (n = 23) of scans as suboptimal. This was due to poor scan quality primary from artifact(23), single phase contrast imaging (16), and/or poor contrast bolus timing or volume (6). Notably, only 28% of scans in patients with DSH were performed with optimal scanning techniques.
CONCLUSION
This is the largest reported series of DSH in the era of modern imaging. Although the incidence of DSH is low, it still occurs despite the use of multi-detector imaging and when present, is associated with a high rate of splenectomy. Most cases of DSH can be attributed to missed diagnosis from suboptimal index imaging and ultimately be avoided.

Identifiants

pubmed: 31284948
pii: S0002-9610(19)30314-9
doi: 10.1016/j.amjsurg.2019.06.025
pii:
doi:

Types de publication

Journal Article Multicenter Study

Langues

eng

Sous-ensembles de citation

IM

Pagination

579-583

Informations de copyright

Copyright © 2019 Elsevier Inc. All rights reserved.

Auteurs

Laura Harmon (L)

Department of Surgery, University of Colorado Anschutz Medical Center, Aurora, CO, USA. Electronic address: laura.a.harmon@ucdenver.edu.

Ronald Bilow (R)

Department of Radiology, UTHealth McGovern Medical School, Houston, TX, USA. Electronic address: Ronald.M.Bilow@uth.tmc.edu.

Kathirkama Shanmuganathan (K)

Shock Trauma and Department of Radiology and Nuclear Medicine, University of Maryland School of Medicine, Baltimore, MD, USA. Electronic address: kshanmuganathan@umm.edu.

Margret Lauerman (M)

Shock Trauma Center, University of Maryland School of Medicine, Baltimore MD, USA. Electronic address: mlauerman@som.umaryland.edu.

S Rob Todd (SR)

Department of Surgery, Baylor College of Medicine, Houston, TX, USA. Electronic address: srtodd@bcm.edu.

Justin Cardenas (J)

Department of Surgery, Baylor College of Medicine, Houston, TX, USA. Electronic address: justin.cardenas@bcm.edu.

Christine E Haugen (CE)

Department of Surgery, John Hopkins University, Baltimore, MD, USA. Electronic address: chaugen2@jhmi.edu.

Roxie Albrecht (R)

Oklahoma University, Oklahoma City, OK, USA. Electronic address: roxie-albrecht@ouhsc.edu.

Stephen Pittman (S)

Oklahoma University, Oklahoma City, OK, USA. Electronic address: stephenpittman@gmail.com.

Mitchell Cohen (M)

University of Colorado, Denver Health Medical Center, Denver CO, USA. Electronic address: Mitchell.Cohen@dhha.org.

Krista Kaups (K)

Department of Surgery, UCSF Fresno, CA, USA. Electronic address: kkaups@fresno.ucsf.edu.

Rachel Dirks (R)

Department of Surgery, UCSF Fresno, CA, USA. Electronic address: RDirks@communitymedical.org.

Clay Cothren Burlew (CC)

University of Colorado, Denver Health Medical Center, Denver CO, USA. Electronic address: Clay.Cothren@dhha.org.

Charles J Fox (CJ)

University of Colorado, Denver Health Medical Center, Denver CO, USA. Electronic address: Charles.fox@dhha.org.

Jorge Con (J)

Department of Surgery, New York Medical College-Westchester, Valhalla, NY, USA. Electronic address: Jorge.con@wmchealth.org.

Kenji Inaba (K)

University of Southern California, Los Angeles County, Los Angeles, CA, USA. Electronic address: Kenji.Inaba@med.usc.edu.

Paul B Harrison (PB)

Wesley Medical Center Trauma Services, Wichita, KS, USA. Electronic address: PHarrison@kansassurgical.com.

Gina M Berg (GM)

Wesley Medical Center Trauma Services, Wichita, KS, USA. Electronic address: gberg@kumc.edu.

Christine J Waller (CJ)

Gundersen Health System, La Crosse, WI, USA. Electronic address: cjwaller@gundersenhealth.org.

Kara J Kallies (KJ)

Gundersen Health System, La Crosse, WI, USA. Electronic address: KJKallie@gundersenhealth.org.

Rosemary Ann Kozar (RA)

Shock Trauma Center, University of Maryland School of Medicine, Baltimore MD, USA. Electronic address: rkozar@som.umaryland.edu.

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