The Haddon Matrix offers a classic epidemiological model for studying injury prevention. This methodology places the public health concepts of agent, host, and environment within the three sequential phases of an injury-producing incident-pre-event, event, and postevent. This study uses this methodology to illustrate how it could be applied in systematically preparing for a mass casualty disaster such as an unconventional sarin attack in a major urban setting. Nineteen city, state, federal, and military agencies responded to the Haddon Matrix chemical terrorism preparedness exercise and offered feedback in the data review session. Four injury prevention strategies (education, engineering, enforcement, and economics) were applied to the individual factors and event phases of the Haddon Matrix. The majority of factors identified in all phases were modifiable, primarily through educational interventions focused on individual healthcare providers and first responders. The Haddon Matrix provides a viable means of studying an unconventional problem, allowing for the identification of modifiable factors to decrease the type and severity of injuries following a mass casualty disaster such as a sarin release. This strategy could be successfully incorporated into disaster planning for other weapons attacks that could potentially cause mass casualties.
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J Healthc Risk Manag
December 2024
Department of Family Medicine, Michigan State University College of Human Medicine, Grand Rapids, Michigan, USA.
The aim of this study was to identify hospital-based workplace violence (WPV) risk factors with the Haddon Matrix Model (HMM) to determine its potential utility to conceptualize multiple risks for WPV events. This descriptive study utilized two independent convenience samples Data from behavioral emergencies (2014-2015) for patient violence (N = 192) and from health care staff (N = 380) 12-month violence survey responses (2015) in a Midwestern academic hospital were analyzed. Logistic regression examined patient features associated with physical violence.
View Article and Find Full Text PDFBackground: Outdoor workers face unique challenges in preventing heat-related illnesses (HRI). Although preventable, HRI and death from heat exposure continue. A review of the most recent recommendation for HRI prevention in outdoor workers in the United States was warranted.
View Article and Find Full Text PDFCancers (Basel)
October 2024
Coriell Institute for Medical Research, 403 Haddon Ave., Camden, NJ 08103, USA.
Within the tumor microenvironment, myeloid cells constitute a dynamic immune population characterized by a heterogeneous phenotype and diverse functional activities. In this review, we consider recent literature shedding light on the increasingly complex biology of M2-like immunosuppressive tumor-associated macrophages (TAMs), including their contribution to tumor cell invasion and metastasis, stromal remodeling (fibrosis and matrix degradation), and immune suppressive functions, in the tumor microenvironment (TME). This review also delves into the intricate signaling mechanisms underlying the polarization of diverse macrophage phenotypes, and their plasticity.
View Article and Find Full Text PDFCancer Lett
November 2024
Coriell Institute for Medical Research, 403 Haddon Ave, Camden, NJ, 08103, USA; MD Anderson Cancer Center at Cooper, Cooper University Hospital, 2 Cooper Plaza, Camden, NJ, 08103, USA; Departments of Surgery and Biomedical Sciences, Cooper Medical School of Rowan University, 401 Broadway, Camden, NJ, 08103, USA. Electronic address:
Cancer-associated fibroblasts (CAFs) are activated fibroblasts that play a role in numerous malignant phenotypes, including hyperproliferation, invasion, and metastasis. These phenotypes correlate with activity of the Hippo pathway oncoprotein, Yes-associated protein-1 (YAP1), and its paralog, transcriptional coactivator with PDZ-binding motif (TAZ). YAP1/TAZ are normally involved in organ growth, under the regulation of various kinases and upon phosphorylation, are retained in the cytoplasm by chaperone proteins, leading to their proteasomal degradation.
View Article and Find Full Text PDFJAMA Surg
November 2024
Departments of Pediatrics and Emergency Medicine, Harvard Medical School, Boston, Massachusetts.
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