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Biomedical subjects

Ami Mayo

Publications and source records attributed to Ami Mayo.

11 recordsLinked to original sources

Terrorist bombing.

Bombings and explosion incidents directed against innocent civilians are the primary instrument of global terror. In the present review we highlight the major observations and lessons learned from these events. Five mechanisms of blast injury are outlined and the different type of injury that they cause is described. Indeed, the consequences of terror bombings differ from those of non-terrorism trauma in severity and complexity of injury, and constitute a new class of casualties that differ from those of conventional trauma. The clinical implications of terror bombing, in treatment dilemmas in the multidimensional injury, ancillary evaluation and handling of terror bombing mass casualty event are highlighted. All this leads to the conclusion that thorough medical preparedness to cope with this new epidemic is required, and that understanding of detonation and blast dynamics and how they correlate with the injury patterns is pivotal for revision of current mass casualty protocols.

Journal Article↗

The effect of aprotinin in a model of uncontrolled hemorrhagic shock.

BACKGROUND: Aprotinin has been shown to promote clot formation through its antifibrinolytic activity, by inhibiting the plasmin-induced complement activation and by protecting the platelets adhesive surface receptors. It has been successfully used in cardiac and liver transplantation surgery. OBJECTIVE: To evaluate the effect of aprotinin in a model of uncontrolled intra-abdominal bleeding as a basis for its potential use in trauma patients. METHODS: Twenty rats were randomly divided into 2 groups. All animals were operated on and bleeding was induced by transecting 1 lobe of the liver. In the treatment group a single dose of 30,000 U/kg of aprotinin was administered 5 minutes after the injury. The animals were monitored for hemodynamic parameters, blood loss volume, and mortality rates. RESULTS: At 120 minutes from trauma induction a significant difference in mean blood pressure was observed: 67+/-22 mm Hg in the treatment group versus 53+/-28 mm Hg in the control group (P=.04). This difference remained consistent until the end of the experiment. Treatment with aprotinin also resulted in a tendency to an increased survival rate (P=.05) and increased mean survival time: 175+/-46 minutes as compared to 123+/-48 minutes in the controls (P=.027). CONCLUSIONS: Early administration of aprotinin resulted in temporary hemodynamic stabilization and prolonged survival in a model of uncontrolled bleeding. Further studies are needed to establish the possible use of aprotinin in the treatment of trauma patients.

Abdominal Injuries↗

Medical consequences of terrorist bombs containing spherical metal pellets: analysis of a suicide terrorism event.

OBJECTIVE: Various metal objects added to explosives increase and diversify the wounding from bombing; especially favoured are spherical missiles for their special injuring characteristics. Our objective was to study the medical consequences and ballistic effects on human tissue of spherical metal pellets used in terrorist bombings. METHODS: The clinical and forensic data of all bodily injured casualties of a suicide terrorist bombing in a crowded hotel dining room were analysed retrospectively. RESULTS: Of the 250 people at the scene, 164 were injured, with 91 (55.5%) suffering bodily injuries; 30 of them died. The immediately deceased had disseminated tissue damage and their bodies were saturated with steel spheres. Thirty-two immediate survivors sustained severe injuries (Injury Severity Score > or =16), and all suffered tissue penetration by the pellets. Twenty-three (32%) underwent surgery and 15 (21%) required intensive care. CONCLUSIONS: Metal pellets propelled by the explosion enhanced the secondary pattern of injury and injured even patients remote from the origin. Tissue destruction and specific organ injuries among survivors were limited. To evaluate and manage victims of terrorist bombings properly, medical teams should become familiar with these severe injuries.

Abbreviated Injury Scale↗

Brain injuries caused by spherical bolts.

OBJECT: Metallic particles contained in antihuman bombs increase the number of fatalities. The ballistics of these particles depends on the explosive that is used, the distance from the explosion, the shape of the particle projected, and the biomechanics of the injured tissue. The authors present their experience with penetrating spherical bolt injuries to the brain. METHODS: The authors retrospectively reviewed clinical and radiological data obtained in eight patients with penetrating spherical bolt injuries to the cranium: four had Glasgow Coma Scale (GCS) scores less than 8 (three died, one from an unrelated injury) and four had a GCS score of 15 (all survived). Two of the latter patients suffered unique anatomical injuries attributed to the distinctive ballistics of spherical bolts: in one patient the bolt penetrated the cavernous sinus causing minimal cranial nerve injury, and in the other patient the bolt lodged in the fourth ventricle causing acute hydrocephalus without other neurological deficits. CONCLUSIONS: Penetrating spherical bolts to the brain may be lethal. Nevertheless, they have unique ballistics that cause highly delineated anatomical damage and minor neurological deficits.

Adolescent↗

Somatostatin analogue treatment attenuates histological findings of inflammation and increases mRNA expression of interleukin-1 beta in the articular tissues of rats with ongoing adjuvant-induced arthritis.

OBJECTIVE: Somatostatin is a neuropeptide with modulatory effects on the immune system and the function of synovial cells; it has antiangiogenic and antiproliferative properties. This study aimed to evaluate the clinical, histological, and articular tissue cytokine mRNA response to somostatin treatment in rat adjuvant-induced arthritis (AIA). METHODS: Adjuvant-induced arthritis was induced in a total of 68 Lewis rats by immunization with complete Freund's adjuvant. Twenty-four rats were treated with a long-acting somostatin analogue 14 days after disease induction. Twenty-four untreated rats served as controls. The severity of arthritis was scored weekly for 42 days. In a second experiment, 20 rats (ten treated, ten controls) were killed 21 days after treatment for assessment of joint histopathology and articular tissue cytokine mRNA expression. RESULTS: Somatostatin analogue treatment significantly reduced histological scores of early inflammatory changes and increased articular tissue mRNA expression of interleukin-1 beta (IL-1beta). A trend toward improvement in physical scores of joint inflammation was seen in the treated group. Late destructive changes were not significantly different. CONCLUSION: Treatment with a somostatin analogue attenuated early inflammatory changes in AIA joints and increased mRNA expression of IL-1beta in the articular tissues of rats with ongoing arthritis. Improvement in the physical findings of joint inflammation was mild.

Animals↗

The special injury pattern in terrorist bombings.

BACKGROUND: The destructive human consequences of terrorist bombing always challenge the medical system in diagnosis, decision making, and patient management. This injury is produced by multiple injury mechanisms, and departs from the conventional description of trauma complexity. Our objective was to characterize and compare terror-bombing victims with casualties of all other kinds of trauma, and to validate the existence of a different, more complex, injury pattern. STUDY DESIGN: A retrospective cohort study was conducted of patient records from October 2000 through June 2003 in the Israeli National Trauma Registry. All were categorized as victims of terrorist bombings or of nonterror-related trauma. Analysis included age, gender, Injury Severity Score, Glasgow Coma Scale, admission blood pressure, injury complexity, surgical interventions, intensive care and hospital lengths of stay, in-hospital mortality, and disposition. This analysis was extended to Injury Severity Score subgroups. RESULTS: Victims of terrorist bombings (n = 906) were compared with 55,033 casualties of nonterror-related trauma. Bombing resulted in significantly different injury complexity, increased severity, and with more body regions involved. Significantly enhanced use of intensive care, prolonged hospital stay, more surgical interventions, and increased hospital mortality are characteristic of these patients. CONCLUSIONS: Terrorist bombings inflict injury of a distinctly different pattern than other means of trauma. The simultaneous combination of different injury mechanisms in explosions results in a multidimensional injury pattern and a complicated clinical course. Hospital preparedness and medical team awareness to the unique nature of the injuries are mandatory for improving the outcomes of these patients.

Adolescent↗

Functions and principles in the management of bombing mass casualty incidents: lessons learned at the Tel-Aviv Souraski Medical Center.

Mass casualty incidents (MCI) resulting from terrorist bombings pose special problems and may overwhelm even the most experienced trauma centre. Although role assignments for MCI management and control are documented, we would like to share several aspects that we have found to be crucial for the management of terrorist bombing MCI. Twelve topics and possible answers were brought up and discussed extensively in MCI debriefing sessions in our institution. They were of two main categories: assignments and functions of key personnel, and principles and definitions. The first category includes the Triage Officer, the Medical Director, the Administrative Director, the Head Nurse, the Emergency Medical System Coordinator, the Blood Bank Liaison, and the trauma teams. The second category encompasses the concept of triage hospital, the unidirectional patient flow, ancillary evaluation during MCI, the consultancy, and tertiary survey. All were identified as critical for proper event handling. The integration and implementation of the topics discussed throughout the medical system may enable emergency departments to handle MCI resulting from terrorist bombings better.

Blast Injuries↗

[Trauma education of general surgery residents].

Educating residents in surgery, especially in trauma surgery, and the best way to teach it among the other subspecialties of surgery, is a topic heavily debated in recent literature. Several important factors affecting this learning have changed lately. Many educators have expressed concern about the adequacy of the exposure of surgical residents to surgery and of their ability to care for their patients, with the newly imposed legal constraints on the length of shifts and working hours. Since trauma is inherently unpredictable, residents must spend many hours in the emergency department to become exposed to various types of trauma. Some will only see a small number of trauma patients during their residency, depending on the location of hospital and its commitment to trauma. Furthermore, the operative exposure in trauma has decreased dramatically, with the current trend of non-operative management of blunt splenic and hepatic trauma and conservatism in the management of some stable patients injured by penetrating mechanisms. Similar concerns have also been raised about the exposure of attending surgeons to surgical trauma practice. In most centers in Israel, the trauma patient is managed by a general surgery specialist rather than by a trauma-specialized general surgeon. This may lead to dilution of trauma cases among multiple medical providers and furthermore, to inconsistency in the delivery of care. Consequently, this may effect the education of surgical residents. We therefore suggest a structured curriculum for general surgery residents as well as structural changes in the department of surgery to increase the caseload of general surgeons especially those choosing to specialize in trauma.

Humans↗