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At least 19 recordsLinked to original sources

Child abuse, cardiopulmonary resuscitation, and rib fractures.

Rib fractures have occasionally been described in children receiving cardiopulmonary resuscitation (CPR). Because child abuse is sometimes suspected in these cases, it is both medically and legally important to establish whether the rib fractures are secondary to abuse or CPR. One hundred thirteen children, including 41 victims of child abuse, 50 patients who had CPR, and 22 patients who had rib fractures, were studied. Twenty-nine patients had rib fractures; 14/29 (48%) were abusive. Other causes of fracture were: motor vehicle accidents (four), rickets/osteoporosis (five), surgery (five), and osteogenesis imperfecta (one). In spite of prolonged resuscitation performed with variable degrees of skill, no fractures could be attributed to CPR. On the other hand, rib fractures occurred frequently in abused children (6/41 or 15%). Abusive fractures were often multiple, of different ages, and affected multiple adjacent ribs. Patients with abusive rib fracture also had other physical and radiologic signs of abuse or neglect.

Adult↗

Thoracic epidural analgesia in the treatment of rib fractures.

Rib fractures and flail chest could be fatal if gas exchange is impaired. Efficient pain relief with continuous thoracic epidural analgesia allows a good physiotherapy management without central sedation and impairment of cough reflex, this prevents pulmonary atelectasis and infection. Eighteen patients/19 were treated with success in spite of flail chest, chronic obstructive pulmonary disease and minor pulmonary contusion. Intermittent positive pressure ventilation must be reserved to severe pulmonary contusion and other crushing injuries of the chest as bronchial or great vessels ruptures.

Adult↗

Acute pain management of patients with multiple fractured ribs.

BACKGROUND: Multiple rib fracture causes severe pain that can seriously compromise respiratory mechanics and exacerbate underlying lung injury and pre-existing respiratory disease, predisposing to respiratory failure. The cornerstone of management is early institution of effective pain relief, the subject of this review. METHODS: A MEDLINE search was conducted for the years 1966 through and up to December 2002 for human studies written in English using the keywords "rib fractures", "analgesia", "blunt chest trauma", "thoracic injury", and "nerve block". The reference list of key articles was also searched for relevant articles. The various analgesic techniques used in patients with multiple fractured ribs were summarized. RESULTS: Analgesia could be provided using systemic opioids, transcutaneous electrical nerve stimulation or non steroidal anti-inflammatory drugs. Alternatively, regional analgesic techniques such as intercostal nerve block, epidural analgesia, intrathecal opioids, interpleural analgesia and thoracic paravertebral block have been used effectively. Although invasive, in general, regional blocks tend to be more effective than systemic opioids, and produce less systemic side effects. CONCLUSION: Based on current evidence it is difficult to recommend a single method that can be safely and effectively used for analgesia in all circumstances in patients with multiple fractured ribs. By understanding the strengths and weaknesses of each analgesic technique, the clinician can weigh the risks and benefits and individualize pain management based on the clinical setting and the extent of trauma.

Analgesia↗

[The basic patterns of the change in the morphological properties of rib fractures with the breathing preserved].

The author analyzes the kinematics of fractured rib fragment movements from the thoracic excursion position and in relation to orthogonal coordinates. A scheme of stages in changes of fractured rib morphology in a biotribologic system at intact respiration has been developed. Staged pattern and order of changes of the initial morphologic characteristics of fractured ribs and acquisition of new properties by them is demonstrated which may be regarded as expert diagnostic criteria to assess their life-time or postmortem appearance.

Biomechanical Phenomena↗

[A sharp edge of the fractured ribs caused the aortic injury at body-position change: a case report].

The reported patient was a 37-year-old male, who got a blunt chest trauma by a motor vehicle accident. Chest X-ray and computed tomography of the chest revealed bilateral multiple rib-fractures, pneumo-hemothorax, lung contusions, but no evidence of mediastinal hematoma. Since respiratory distress with a flail chest was observed, the patient was placed on an artificial ventilation, and thoracocentesis were also done on both sides, while the hemodynamics was fairly maintained with blood transfusion. On the 10th hospital day, however, he suddenly fell into a deep shock with the left hemothorax by changing the body position. Emergency thoracotomy demonstrated the laceration of the descending aorta, that was considered to be made by the sharp edge of the fractured left 8th rib, which correspondingly protruded into the thoracic cavity toward the aorta. The repair of the aortic injury and the resection of the rib edges were performed. He was discharged on the 45th hospital day. In cases with a blunt chest trauma, the majority of the causes of the traumatic aortic injury are reported to be "deceleration injury". Although the considered mechanism of the traumatic rupture of the thoracic aorta in this case is extremely rare, it should be taken into a consideration for treatment of the cases with a blunt chest trauma and multiple rib-fractures.

Adult↗

Management and treatment of patients with fractured ribs.

Rib fractures are a common injury to the chest. The mainstay of treatment is adequate analgesia coupled with meticulous respiratory care in order to prevent complications. Treatment can be as an outpatient, but patients with more severe fractures may be admitted to hospital for oxygen therapy, ventilation, aggressive analgesic techniques and physiotherapy. Significant morbidity and mortality rates have been reported with rib fractures. To avoid complications, accurate diagnosis, adequate analgesia and effective physiotherapy are essential.

Analgesics↗

Delayed life-threatening hemothorax associated with rib fractures.

We present two cases of delayed, massive, life-threatening hemothorax due to intercostal hemorrhage in association with fractured ribs and severe blunt chest trauma (SBCT), a combination we have not seen described in the literature. Blunt chest trauma is not benign. Significant intrathoracic injuries are frequent although usually not life threatening. However, associated extrathoracic injuries are also common and much more lethal. Most cases of hemo- and pneumothorax associated with SBCT can be treated without thoracotomy. However, rapid blood loss requires immediate open thoracotomy and surgical attention. Several days of observation in hospital may be required for patients with SBCT and fractured ribs even without any other obvious intra- or extra-thoracic injuries. Vigorous activity or chest physical therapy may be dangerous during the first several days after the injury.

Accidents, Occupational↗

Subpleural block in patients with multiple rib fractures.

Multiple rib fractures result in agonizing pain as well as impaired pulmonary functions. Mechanical ventilations are frequently indicated for those with poor respiratory reserves. Regional anesthesia has been advocated for easing pain and discomfort. We evaluate the efficacy of subpleural block in the treatment of multiple rib fractures. Ten patients who sustained multiple rib fractures were observed on the arrival of emergent service. One sustained flailed chest with respiratory distress which necessitated mechanical ventilation in intensive care unit. Subpleural block with 20 ml 0.5% bupivacaine was done to each patient. The location of catheter was identified by the injection of contrast medium. Serial visual analogue pain scale, arterial blood gas, and pulmonary function test were taken before and after subpleural block. Pulmonary function test significantly improved after subpleural block. Pain relief was immediate and desirable. The case in ICU weaned from ventilator 3 days later. There were no major complications after subpleural block. Inadvertent epidural spread and recurrent laryngeal nerve blocks were detected both clinically and radiologically without sequela noted. Subpleural block is effective both in pain relief and in improving pulmonary functions. Image intensifier is essential to subpleural block in order to prevent the misplacement of catheter. We recommend subpleural block to be an alternative approach of regional anesthesia in patients with multiple rib fractures.

Adult↗

Pediatric first rib fractures.

First rib fractures are associated with a high incidence of thoracic, vascular, abdominal, and central nervous system injuries. Usually reported in the adult population, first rib fractures are infrequently described in the pediatric population. We take this opportunity to describe six pediatric patients who sustained traumatic first rib fractures. Overall, five patients required operative intervention. Two patients sustained major vascular injuries which were detected on physical examination and confirmed by arch aortography. In view of the high percentage of patients with vascular injury, first rib fracture in a pediatric patient should prompt a search for major vascular injury.

Adolescent↗

Management of patients with multiple rib fractures.

Multiple rib fractures in trauma patients are associated with significant morbidity and mortality. Delayed morbidity for patients with rib fractures is often a result of hypoventilation leading to atelectasis, pneumonia, and respiratory failure. Pain management was first recognized as an important factor in preventing complications in these patients. Later, management of the respiratory system became more widely recognized as a major factor in patients' care. It is now known that patients with multiple rib fractures benefit most from adequate pain control, rapid mobilization, and meticulous respiratory care to prevent complications. A protocol based on a synthesis of the existing literature is developed. Development of such a protocol for decisions about rapid mobilization, respiratory support, and pain management is the first step in testing the hypothesis that these interventions will decrease the length of patients' stay in intensive care units.

Age Factors↗

The fractured rib in chest wall trauma.

Chest wall trauma and rib fractures are significant sources of morbidity and mortality in countries in which motor vehicle accidents are prevalent. Physicians who care for injured patients should realize that patients with thoracic trauma are at significant risk for mortality, deterioration, and associated injuries. Care must be taken to avoid underestimation of the effect of the injury on subsequent respiratory mechanics. Armed with an understanding of chest injury epidemiology, biomechanics, and pain control, physicians can better serve these high-risk patients.

Adult↗

FRACTURED ribs.

Explore the source record for details and available documents.

Fractures, Bone↗

Rib fractures in major trauma.

BACKGROUND: To determine the mortality, hospital and intensive care unit (ICU) stay of rib fractures in patients admitted to Victorian hospitals for more than 1 day. METHODS: All patients fitting the entry criteria for the Victorian Major Trauma Study with fractured ribs were identified between 1 March 1992 and 28 February 1993. Aetiology, age, sex, associated injury and outcome were analysed. RESULTS: Patients with rib fractures had a higher mortality and length of hospital stay, but this was not significantly different from other trauma. A significantly higher percentage of patients required ICU care for rib fractures (44%) compared with the total group with blunt injury (24%). The majority of rib fractures resulted from motor vehicle accidents 361/541 (67%). Injuries occurring on the street/highway resulting in rib fractures were more likely to be major; 62% had Injury Severity Score (ISS) > 15. Fractured ribs occurred more commonly with increased age. Mortality for patients with fractured ribs versus total trauma group was higher in elderly patients. Univariate analysis showed rib fractures were a positive predictor of death but when adjusted for ISS and age, rib fractures became a negative predictor. Rib fractures were not predictors for length of ICU or hospital stay. CONCLUSION: The sample of rib fractures collected in this study underestimates the overall incidence. For those patients admitted to hospital with identified rib fractures, there is a trend towards higher mortality and morbidity. However, this association is better predicted by ISS and age.

Adolescent↗

Cause and clinical characteristics of rib fractures in infants.

OBJECTIVE: Rib fractures are uncommon in infancy and, when diagnosed, often raise the suspicion of child abuse. However, the prevalence of other causes of rib fractures has not been well defined. The purpose of this study was to determine the causes and clinical presentations of rib fractures in infants <12 months old. METHODS: Retrospectively, we identified all infants with rib fractures under 12 months old over a 3-year period using computerized databases at the Children's Hospital Medical Center in Cincinnati, Ohio and at the Children's Hospital, Winnipeg, Manitoba, Canada. Data extracted from the individual patient charts included: age, sex, chief complaint, number and location of rib fractures, associated injuries, birth history, history of cardiopulmonary resuscitation, and any evidence of bone dysplasia. After the chart review and a review of the radiographs by a pediatric radiologist, all fractures were determined to be attributable to one of the following causes: child abuse, birth injury, bone fragility, or accidental trauma. A determination of abuse was made when there were other injuries indicative of abuse, there was no clinical or radiographic evidence of bone fragility, there was a confession of abuse, when no reasonable history of trauma was provided, or when the history was not plausible to explain the rib fractures. Standard practice at these hospitals involves obtaining skeletal surveys on all children <2 years old when abuse is suspected. The child abuse team, which consists of physicians, nurses, and social workers, conducts these investigations and works closely with police in evaluating these children. RESULTS: Thirty-nine infants with rib fractures were identified. Thirty-two (82%) were caused by child abuse. Three (7. 7%) were attributable to accidental injuries, 1 (2.6%) was secondary to birth trauma, and 3 (7.7%) were attributable to bone fragility. All 3 infants with fractures from accidental injury had sustained notable trauma (a motor vehicle collision, a forceful direct blow, and a fall from a height). Of the 3 infants with fractures secondary to bone fragility, 1 infant had osteogenesis imperfecta, 1 infant had rickets, and 1 infant, who was born at 23 weeks' gestation, had fragile bones attributable to prematurity. CONCLUSIONS: Most rib fractures in infants are caused by child abuse. Although much less common, rib fractures can also occur after serious accidental injuries, birth trauma, or secondary to bone fragility. A thorough clinical and imaging evaluation is mandatory.

Birth Injuries↗

The significance of first and second rib fractures.

There are differing opinions in the literature regarding the significance of first rib fractures. The plan at Westmead Centre is to standardize the initial assessment of patients with such fractures. A 3 year retrospective study of 170 trauma victims who sustained fractured ribs, was undertaken. Of the 15 patients with first rib fracture, all were involved in motor vehicle accidents. Over two-thirds of these patients sustained major chest injuries. Multisystem trauma involving cranial, abdominal or skeletal injury was common. One patient died as a result of head injury. Similar results were observed in 13 patients with second rib fractures. Brachial plexus injuries were noted in two patients with first rib fracture. Despite follow-up of high-risk patients at an interval which varied from 1 to 2 1/2 years after the original injury, major subclavian artery injury was not detected in patients with first rib fracture. From this experience and a literature review, we suggest that the general nature of trauma is similar in patients with first rib fracture to that in patients with second rib fracture. Patients with first rib fracture should be closely examined for neurovascular compromise. Guidelines for the use of angiography are discussed. If there is no evidence of neurovascular injury at presentation, and there is no other thoracic injury, recovery should be uneventful.

Adult↗