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[Two cases of recurrent, massive hemoptysis with contralateral, concurrent hemoptysis].

Bilateral, concurrent massive hemoptysis with respiratory failure is rare and difficult to manage. We encountered two patients with this condition. One was a 51-year-old woman and one was a 63-year-old woman. Both had inactive pulmonary tuberculosis and episodes of hemoptysis. Home oxygen therapy was prescribed to the former patient and bronchial artery embolization was done in the latter. The sites of initial bleeding were in the left basal segment and in the lingular segment. Bleeding was well controlled by endobronchial tamponade with a Fogarty balloon catheter in the left main bronchus, contralateral intubation, and systemic artery embolization. Use of water instead of air in the balloon was more effective in over the long term. Concurrent bleeding from the contralateral upper lobe bronchus was controlled by compression with a tracheal tube cuff at the bronchial orifice. Afterward, an infiltrative shadow was seen on the chest X-ray film and hemoptysis occurred in case 2 occurred in case 2. Treatment with erythromycin and antituberculosis drugs brought about improvement of chest X-ray findings and disappearance of the hemoptysis.

Antitubercular Agents↗

[Bronchoscopy in monosymptomatic hemoptysis--hemoptysis in bronchial carcinoma].

Blood in sputum, haemoptysis, is a common symptom in mucous membrane disorders of the respiratory tract--it is often seen in conjunction with inflammation but may also be associated with malignant tumours of the respiratory tract. In a survey of 422 patients with monosymptomatic haemoptysis, 15 patients with bronchogenic carcinoma were identified. A cytological examination of the sputum of these 15 patients was carried out, and in 9 of these cases suspected malignant cells were observed. From these and other observations it is concluded that with patients of over 40 years of age who are smokers with haemoptysis, but who display a normal X-ray examination of the thorax, it would be prudent to carry out a cytological examination of the sputum before bronchoscopy.

Adult↗

Risk factors and recurrence patterns in 203 patients with hemoptysis.

Management of hemoptysis requires prompt diagnosis and patient stabilization especially in massive hemoptysis as a potentially life-threatening condition. This retrospective study was designed to determine the etiologic distribution of hemoptysis, the role of the fiberoptic bronchoscopy (FOB) as a diagnostic tool, and to clarify potential risk factors for massive hemoptysis and recurrences. A total of 203 patients (181 male, 22 female) with hemoptysis admitted to our hospital were evaluated retrospectively. Tuberculosis was the leading cause of hemoptysis (n = 89; 43.8%) followed by lung cancer (21.7%) and chronic bronchitis (n = 11; 5.5%). FOB plays an essential role for localization of bleeding and diagnosis, although no bronchoscopic abnormality was found in our 31 patients (15.3%). Twenty-nine of the patients (14.3%) had recurrent hemoptysis and hemoptysis lasting longer than five days was found as a risk factor for recurrences (p = 0.02). Having lung cancer was an independent negative risk factor for recurrent hemoptysis using multivariate analysis (n = 44; p = 0.034). Twenty two of the patients (10.8%) had severe hemoptysis and managed medically. In our study, tuberculosis, lung cancer and heavy cigarette smoking were revealed as independent predictors of massive hemoptysis (p = 0.016, 0.001, 0.041 respectively). Hemoptysis is a common respiratory symptom that always requires investigation by using FOB and radiography in order to determine exact site of bleeding and etiology. Hemoptysis continuing more than five days and lung cancer diagnosis may indicate recurrent bleeding and need more attention.

Adolescent↗

Risk factors for massive hemoptysis after endobronchial brachytherapy in patients with tracheobronchial malignancies.

BACKGROUND: Massive and mostly fatal hemoptysis is a frequently reported morbidity after endobronchial brachytherapy (EBB) for tracheobronchial malignancies. However, to the authors' knowledge, it remains controversial whether this morbidity is related directly to EBB. To investigate whether massive hemoptysis is related to EBB, the authors retrospectively analyzed risk factors for massive hemoptysis after EBB. METHODS: Thirty-six patients (30 men and 6 women) with a mean age of 70 years underwent high-dose rate EBB for tracheobronchial malignancy using a cobolt-60 (Co-60) afterloading machine. EBB was performed as primary therapy in 6 patients and as salvage treatment for recurrent disease in 30 patients. EBB was delivered to the tracheal lesions in 15 patients and to the main bronchial lesions in 21 patients. EBB was combined with external beam radiation therapy (EBRT) in 24 patients, with laser photocoagulation in 3 patients, and with EBRT plus laser photocoagulation in 5 patients. The dose of EBRT delivered with the EBB ranged from 16-69 grays (Gy), with a mean dose of 37 Gy. RESULTS: At a mean follow-up of 18 months, 33 of the 36 patients had died. Eight of the 33 patients had no evidence of local disease at the time of death. Seven patients died of massive hemoptysis. The cumulative rate of massive hemoptysis was 29.4% at 2 years. According to univariate analysis, no statistically significant correlation with massive hemoptysis was observed for EBRT dose delivered in combination with EBB, EBB fractional and total doses, EBB length, and the sum of all the EBRT doses including that used for the initial treatment. Local failure or persistent malignancy (P = 0.033) and delivery of laser photocoagulation (P = 0.032) were found to be statistically significantly associated with massive hemoptysis. Direct contact between the EBB applicator and the tracheobronchial walls at the vicinity of the great vessels was observed in 16 patients and was found to be statistically significantly associated with massive hemoptysis (P = 0.003). In six patients, the applicator was in direct contact with two or more tracheobronchial walls at the vicinity of the great vessels; all these patients died of massive hemoptysis. CONCLUSIONS: Direct contact between the EBB applicator and the tracheobronchial walls at the vicinity of the great vessels was one of the significant risk factors for massive hemoptysis. To prevent massive hemoptysis, a specific spacer should be employed to maintain a safe distance between the applicator and the bronchial wall.

Aged↗

Hemoptysis in lung transplant recipients: a series of 15 cases.

STUDY OBJECTIVES: Respiratory complications are frequent after lung transplantation (LTx), and many of these complications have the potential to cause hemoptysis. However, surprisingly, only a few isolated cases of hemoptysis have been reported in LTx recipients. Here, we describe a series of patients who underwent LTx at our center who developed hemoptysis during their postoperative course. SETTING: A tertiary care university hospital. RESULTS: Of 197 LTx recipients, hemoptysis developed in 15 over a 16-year period. The pulmonary circulation as well as the systemic circulation were involved in the mechanism of hemoptysis. Six patients had moderate or minimal hemoptysis, while nine patients had life-threatening hemoptysis, which occurred during the first year after LTx in all cases. Active necrotizing ischemic airway injury was present in five of the nine patients with life-threatening hemoptysis. Eight of those nine patients died as a result of hemoptysis. Overall, hemoptysis was the cause of death in 4.5% of patients who underwent LTx at our institution. CONCLUSION: In our series of transplant patients, hemoptysis was not rare and was associated with a high rate of mortality.

Adult↗

The factors related to recurrence after transcatheter arterial embolization for the treatment of hemoptysis.

OBJECTIVES: Massive hemoptysis is a major clinical problem associated with high morbidity and mortality. Transcatheter arterial embolization is widely used for the treatment of massive hemoptysis, but it was reported that the recurrence rate after embolization is 12-54% in the previous studies. We evaluated the therapeutic effect of transcatheter arterial embolization for the treatment of massive hemoptysis and the factors related to recurrence. METHODS: We reviewed 51 patients (M:F = 36:15) of transcatheter arterial embolization for the treatment of massive hemoptysis from Jan 1988 to Dec 1994, retrospectively. RESULTS: After arterial embolization, immediate successful control (< 1 wk) of massive hempotysis was achieved in 48 of 51 patients (94.1%) and recurrence of hemoptysis was observed in 17 of 51 patients (33.3%) during the follow-up period. The patients with non-bronchial artery hemoptysis and multiple artery bleeding had increased tendency of recurrence (77.7%). On the previous history of hemoptysis, the patients with massive hemoptysis (> 400 ml/24hr) or frequent history of hemoptysis had increased tendency of recurrence (87.5%, 72.7%). CONCLUSION: Transcatheter arterial embolization is a useful and safe procedure for immediate control in massive hemoptysis. However, the patients with this procedure had a potentiality for recurrence. We suggest that close follow-up and caution will be needed in the patients with multiple artery bleeding or with large amounts of hemoptysis or with previous episodes more than 3 times.

Adult↗

Surgical management of tuberculosis-related hemoptysis.

BACKGROUND: Tuberculosis is a disease that is often treated with chemotherapy. However, medical treatment usually fails in the management of tuberculosis-related hemoptysis. In this paper, we review our experience in the surgical treatment of tuberculosis-related hemoptysis. METHODS: Fifty-nine patients with tuberculosis-related hemoptysis (46 men, 13 women) who underwent surgical treatment were enrolled in this study. A thoracotomy was performed urgently in 21 patients with massive (>600 mL daily) hemoptysis, and within the first 2 days in 24 with major (200 to 600 mL daily) hemoptysis, and within the first 4 days in 14 with persistent minor (<200 mL daily) hemoptysis. RESULTS: A chest roentgenogram showed cavitary lesion in all of the patients with massive hemoptysis (21 patients), in 22 of 24 patients with major hemoptysis, and in 3 of 14 patients with persistent minor hemoptysis. Pneumonectomy was performed in 4 patients, lobectomy in 39 patients, and segmentectomy or wedge resection in 16 patients. The average hospitalization period was 13 days. The mortality rate was 6.8% perioperatively. Of the patients deceased, 3 were intubated with a single-lumen endotracheal tube and 1 with a double-lumen endotracheal tube. During the postoperative period, empyema and bronchopleural fistula developed in 3 patients, and no other severe complications occurred. The average postoperative follow-up period was 3 years. The number of thoracotomies for tuberculosis performed in the years from 1995 to 2003 was significantly decreased, compared with the years between 1985 to 1994 (p = 0.042). CONCLUSIONS: In tuberculosis-related hemoptysis, thoracotomy with double-lumen endotracheal intubation and resection of the cavity may be curative and lifesaving.

Adolescent↗

Hemoptysis: bronchial and nonbronchial systemic arteries at 16-detector row CT.

PURPOSE: To retrospectively evaluate 16-detector row computed tomography (CT) compared with conventional angiography in depiction of bronchial and nonbronchial systemic arteries in patients with hemoptysis. MATERIALS AND METHODS: Institutional review board approval was obtained, and informed consent was not required. Sixteen-detector row helical CT and conventional angiography of the thorax were performed in 22 patients (16 men, six women; age range, 18-75 years; mean age, 50 years) with hemoptysis. Three observers in consensus analyzed retrospectively transverse, multiplanar reconstruction, or three-dimensional CT images for visibility, traceability of bronchial arteries from their origin at the aorta or aortic branches to the hilum, and presence of nonbronchial systemic arteries. CT and angiographic findings of bronchial and nonbronchial systemic arteries causing hemoptysis were compared by two radiologists in consensus. Differences in visibility, traceability, and diameter of bronchial arteries causing and those not causing hemoptysis were tested by using generalized estimating equation method or the mixed model. RESULTS: Fifty-two (30 right and 22 left) bronchial arteries and 33 nonbronchial systemic arteries were visible at CT. Thirty-four (20 right and 14 left) of 52 bronchial arteries were traceable from their origins to the hilum. Thirty-one (16 right and 15 left) of 46 (27 right and 19 left) bronchial arteries and 26 of 64 nonbronchial systemic arteries evaluated at angiography were causing hemoptysis. Forty (87%, 23 right and 17 left) of 46 bronchial arteries seen at angiography were also detected at CT. All 31 bronchial arteries and sixteen (62%) of 26 nonbronchial systemic arteries causing hemoptysis were detected at CT. Twenty-three (74%) of 31 bronchial arteries causing hemoptysis were traceable from their origins to the hilum, and one (11%) of nine bronchial arteries not causing hemoptysis was traceable (P = .002). CONCLUSION: Sixteen-detector row CT provides depiction and traceability of the bronchial arteries in patients with hemoptysis, and in most patients it enables detection of the bronchial and nonbronchial arteries causing hemoptysis.

Adolescent↗

Hemoptysis in children.

BACKGROUND: Hemoptysis is rare in children, yet is one of the most frightening manifestations of cardiopulmonary disease. A wide spectrum of diseases has been reported to cause hemoptysis in children, but the search for a specific cause can be tedious and unrewarding. Early diagnosis and interventions of hemoptysis are extremely important for the successful management of this potentially lethal process in children. METHODS: From July 1994 to June 1996, 15 pediatric patients ranging from 1 month to 15 years of age were admitted to the Pulmonology division for the investigation of hemoptysis. We retrospectively reviewed the clinical records and diagnostic evaluations of these patients. RESULTS: Six (40%) of the patients investigated were infectious in origin, only one patient had tuberculous infection. Three patients had a traumatic cause and 2 patients had foreign bodies in the airway. Two cases had no obvious contributing cause of hemoptysis despite extensive investigations. One patient had hematemesis because bleeding from esophageal ulcerations was misinterpreted as hemoptysis. One patient had varicosed tracheal and bronchial collaterals causing massive hemoptysis due to portal vein obstruction and hypertension. CONCLUSION: Pulmonary infection was the leading cause of hemoptysis in the 15 children we studied, but Mycobacterium tuberculosis is an uncommon causative agent. Bronchoscopy is an extremely useful tool for the diagnosis and localization of hemoptysis. Hematemesis may be misinterpreted as hemoptysis, particularly when an accurate history is not possible in children, therefore, bleeding from the upper aerodigestive tract should be studied meticulously and excluded adequately using endoscopy.

Adolescent↗

Management of pediatric hemoptysis: review and a case of isolated unilateral pulmonary artery agenesis.

OBJECTIVES: Management of hemoptysis in the pediatric patient requires an otolaryngologist knowledgeable and skilled in the causes and management of this potentially life-threatening condition. This paper will discuss the management of pediatric hemoptysis by the otolaryngologist through an index case of massive hemoptysis seen in a child with isolated unilateral pulmonary artery agenesis (IUPAA). STUDY DESIGN: Literature review and index case. METHODS: Through a Medline search and the experience of the author (A.J.M.), we reviewed the causes and treatment options for hemoptysis in the pediatric patient. RESULTS: Management of hemoptysis by the otolaryngologist requires prompt diagnosis and patient stabilization. This allows the patient access to multiple treatment options which may include diagnostic or therapeutic bronchoscopy, angiography with embolization, and surgical intervention such as resection or revascularization. IUPAA is an unusual, and potentially life-threatening cause of hemoptysis in the pediatric patient. CONCLUSION: Hemoptysis in the pediatric patient requires prompt and thorough evaluation and treatment. An approach for the management of pediatric hemoptysis, including massive hemoptysis, is described.

Angiography↗

Significance of hemoptysis following thrombolytic therapy for acute myocardial infarction.

PURPOSE: To describe the occurrence, cause, and significance of hemoptysis following thrombolytic therapy for acute myocardial infarction. PATIENTS AND METHODS: We retrospectively reviewed 2,634 patients presenting with acute myocardial infarction who received thrombolytic therapy to determine the incidence of hemoptysis. Chart and radiographic review included the type, dose, and route of thrombolytic therapy. In addition, the onset, duration, and severity of hemoptysis were recorded and correlated with radiographic and bronchoscopic findings. RESULTS: Eleven patients (0.4%) developed hemoptysis following administration of thrombolytic therapy for an acute myocardial infarction. The duration and severity had a wide range, although no patient had significant hemodynamic compromise. The source of hemoptysis was identified in only one patient who had a tongue laceration following cardiopulmonary resuscitation, and blood was seen within the oropharynx and trachea. No definitive cause was identified in all other patients. There was no correlation between the different types or doses of thrombolytic therapy and the duration or severity of hemoptysis. Chest radiographs were nonspecific and demonstrated resolution within 11 days following hemoptysis. CT of the thorax in one patient and bronchoscopy in two patients confirmed chest radiographic findings and in no patient was an underlying pulmonary abnormality identified. CONCLUSIONS: Pulmonary hemorrhage and hemoptysis are unusual complications of thrombolytic therapy in patients with acute myocardial infarction. Although hemoptysis may be the first indicator of an underlying pulmonary abnormality, we found no case in which a significant abnormality was unmasked. This study suggests that follow-up chest radiographs are recommended and further evaluation may be unnecessary if complete resolution is demonstrated.

Aged↗

Hemoptysis in HIV-infected patients.

STUDY OBJECTIVE: To define the causes and clinical features of hemoptysis in HIV-infected patients. DESIGN: Retrospective analysis of inpatient medical records for patients with HIV infection and hemoptysis. SETTING: A large New York City teaching hospital and tertiary referral center. PATIENTS: Fifty HIV-infected adult patients with 51 episodes of hemoptysis. RESULTS: The incidence of hemoptysis was 1.9%. A definite or presumptive etiology was identified for most (78%) episodes, with infection being the leading cause (80% of episodes with identified etiology). Hemoptysis was most often (40% of episodes with a definite or presumptive etiology) attributed to bacterial pneumonia. Mycobacterium tuberculosis was infrequently the cause of hemoptysis (6%). Mortality attributed to hemoptysis was 8%. In most patients, hemoptysis was mild (77%) and resolved (78%) without specific treatment. CONCLUSIONS: Our retrospective series of HIV-infected patients hospitalized for short-term care in New York City suggests that hemoptysis in this group has diverse causes but usually is infectious in etiology and most often due to bacterial pneumonia. Bleeding is typically mild and resolves without specific treatment, but can occasionally be fatal. Differential diagnosis should be approached with specific reference to this patient population and its unique features.

Adult↗