ERS/ATS statement on interventional pulmonology. European Respiratory Society/American Thoracic Society.
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Biomedical subjects
Publications and source records attributed to S Cavaliere.
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BACKGROUND AND OBJECTIVE: Few and conflicting data are available regarding the changes of plasma potassium concentration during acute respiratory acidosis in human beings. This study compares the acute changes in plasma potassium concentration in acutely hypercapnic patients and in non-hypercapnic patients during general anaesthesia. METHODS: Thirty-three patients undergoing interventional rigid bronchoscopy were studied. Ventilation of the lungs was randomly conducted using either spontaneous-assisted ventilation or intermittent negative-pressure ventilation. All patients received the same anaesthetic protocol. Arterial blood gases and osmolality, and plasma concentrations of glucose, sodium, potassium and chloride were measured. RESULTS: Intraoperatively, PaCO2 was higher during spontaneous-assisted ventilation than during intermittent negative-pressure ventilation (9 +/- 1.8 vs. 5.4 +/- 1.2 kPa, P < 0.001) and the pH was also lower during spontaneous-assisted ventilation than during intermittent negative-pressure ventilation (7.24 +/- 0.07 vs. 7.4 +/- 0.08, P < 0.001). Plasma potassium concentration remained similar in both groups (3.8 +/- 0.2 mmol L(-1) with spontaneous-assisted ventilation vs. 3.7 +/- 0.4 mmol L(-1) with intermittent negative-pressure ventilation). CONCLUSION: Acute respiratory acidosis does not affect plasma potassium concentration.
STUDY OBJECTIVES: To compare the effectiveness of two modalities of external ventilation during rigid bronchoscopy: intermittent negative pressure ventilation (INPV) and external high-frequency oscillation (EHFO). DESIGN: Prospective, controlled, randomized, nonblinded study. SETTING: University-affiliated hospital. PATIENTS: Seventy patients undergoing interventional rigid bronchoscopy for tracheobronchial lesions were enrolled into the study. INTERVENTIONS: Mechanical ventilation was performed by INPV or EHFO. When pulse oximetry was < 90%, manually assisted ventilation was delivered. MEASUREMENTS AND RESULTS: Arterial blood gases were sampled preoperatively and intraoperatively. Most patients in both groups had normal intraoperative PaCO(2) (mean, 43. 6 +/- 11.8 mm Hg under EHFO and 37.4 +/- 8.2 mm Hg under INPV; p = 0.012), and acidemia occurred in 9 of 35 patients of EHFO group and in 2 of 35 patients of INPV group (p = 0.049). Hypercapnia (PaCO(2) > 50 mm Hg) was observed in 10 patients under EHFO and in 2 with INPV (p = 0.026). Intraoperative mean PaO(2) was similar (101.4 +/- 52.9 mm Hg with EHFO and 124.2 +/- 50.3 mm Hg with INPV; p = 0.07), but O(2) supply was different (3.5 +/- 2.3 L/min during INPV and 8.5 +/- 6.2 L/min during EHFO; p < 0.001). Intraoperative hypoxemia (PaO(2) < 60 mm Hg) occurred in five patients with EHFO and two with INPV (p = 0.426). Three EHFO patients required manually assisted ventilation (mean, 0.2 +/- 0.9), but no INPV patient did (p = 0.142). CONCLUSIONS: External negative pressure ventilation appears to be a suitable choice during rigid bronchoscopy: both EHFO and INPV ensure effective ventilation and comfortable operating conditions in the majority of patients. Some patients may receive inadequate ventilation with EHFO, developing respiratory acidosis and requiring manually assisted ventilation. In comparison with INPV, EHFO requires a higher fraction of inspired oxygen.
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Benign Pleomorphic Adenoma (PA) is a tumor rarely found in tracheal and laryngotracheal sites. A review of the literature published since 1922 has revealed only 30 certain cases of which 3 presented simultaneous involvement of both larynx and trachea. The present work describes the thirty-first case (the fourth with a laryngotracheal localization), diagnosed in a white, 40-year-old male who had been complaining of acute dyspnea for the last three years. Initially these symptoms had been interpreted as asthmatic crises. During one of these episodes, the patient underwent emergency tracheotomy and a laryngotracheoscopy revealed a rounded cricotracheal lesion with smooth surface and approximately 4 cm in cranio-caudal diameter. The mass occupied 90% of the air space and originated from the posterolateral right portion of the cricoid, and from the first 3 tracheal rings. CT and esophagoscopy ruled out its transmural invasion into the esophagus. Under rigid bronchoscopy, assisted NdYAG laser debulking was performed for biopsy purposes. The histological diagnosis was benign AP. For this reason a Grillo cricotracheal resection was performed with exeresis of the cricoid arch, mucosa of the cricoid plate and the first 4 tracheal rings. Reconstruction of the respiratory tract was achieved through termino-terminal cricothyrotracheal anastomosis. The initial diagnosis was confirmed and the resection edges were without evidence of neoplasm. Post-operative recovery proceeded without complications and the patient was discharged 7 days after surgery. Endoscopic and radiological follow-up after 30 months is still negative for any neoplastic recurrences. The laryngo-tracheal lumen is within the norm and cord motility has been preserved. The authors then describe the clinical, anatomopathological and radiological elements which prove useful in evaluating tracheal neoplasms and they underline the problems of differential diagnosis between benign AP and adenoid-cystic carcinoma. In addition, the various therapeutic options are discussed with special attention being focused on surgery through external approaches. Given the location of the AP described, the Grillo procedure-most commonly used in cases of inflammatory cricotracheal stenoses-proved well suited to the loco-regional control of the neoplasm. Stringent respect for some parts of this surgical technique make it possible to reduce post-operative complications to a minimum.
The treatment of tracheo-bronchial diseases with rigid bronchoscopy requires general anaesthesia without tracheal intubation. Spontaneous assisted ventilation is a safe modality of ventilation. In this study the use of remifentanil and fentanyl is compared during rigid bronchoscopy with spontaneous assisted ventilation. Ninety high-risk patients received fentanyl or remifentanil with propofol for general anaesthesia. During the maintenance fentanyl was delivered at 6.1 +/- 4.6 micrograms kg-1 h-1 and remifentanil at 0.15 +/- 0.07 microgram kg-1 min-1. The same degree of intra-operative respiratory acidosis with similar good operating conditions resulted in both groups. Patients treated with remifentanil recovered more quickly compared with those in the fentanyl group (3.8 +/- 2 vs. 10.4 +/- 9.2 min, P < 0.001). In conclusion, the use of remifentanil during rigid bronchoscopy under general anaesthesia with spontaneous assisted ventilation is safe and assures good operating conditions. Moreover, remifentanil permits a more rapid recovery than fentanyl. The dose of remifentanil is higher than previously described for spontaneously breathing patients.
Paratracheal lymph-nodal metastases secondary of breast cancer aren't frequent in this kind of cancer. Here is described the case of a 76-years-old woman come to our note for ingravescent dyspnoea caused by metastatic adenopathy compression of the tracheal lumen. After excluding other treatments, a tracheal stent is put on. The obstruction gets better right away, the initial severe respiratory symptoms are improved and the ventilation is almost normal.
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Laser emits a light characterised by being monochromatic, phased and collimated. Since the beginning of the '80s the fibers ND-YAG laser, whose energy may be transmitted by quartz fibres, is the type principally used for therapeutic bronchoscopy. It may be used to coagulate or to vaporize endoluminal lesions. The effect looked for depends on the level of density of power selected. During rigid bronchoscopy, YAG laser is usually applied in the coagulation mode, with a weak liberation of energy. Further resection is then achieved mechanically with the rigid tube or forceps. For malignant lesions the laser has a palliative action in eliminating endoluminal tumour mass. Its use has overturned the management of progressive tracheal or bronchial asphyxia. Outside emergencies, its action can be combined with radio and chemotherapy. For benign lesions its action may be curative. The laser is however poorly adapted for extrinsic compression and for infiltrating lesions where other more appropriate endoscopic methods should be used.
BACKGROUND: Ventilation during interventional rigid bronchoscopy (IRB) under general anaesthesia (jet ventilation, positive pressure ventilation and spontaneous assisted ventilation) may offer some difficulties. This study compares the effectiveness during IRB of intermittent negative pressure ventilation (INPV) and spontaneous assisted ventilation (SAV). METHODS: Thirty-eight patients submitted to IRB were randomised into two groups: SAV or INPV. All patients received a total intravenous anaesthesia; INPV patients were paralysed. Pre- and intra-operative arterial blood gases and O2 flow through a rigid bronchoscope were assessed. The endoscopist applying a subjective score evaluated the operating conditions. RESULTS: Patients of the INPV group, as compared to the SAV group, required a lower dosage of fentanyl (2.6 +/- 1.8 micrograms.kg-1.h-1 vs. 6.6 +/- 4.8 micrograms.kg-1.h-1), a lower O2 supply (3.3 +/- 2.8 l/min vs. 11.6 +/- 3.4 l/min), a shorter recovery time (5.4 +/- 2.9 min vs. 9.8 +/- 7.1 min) and no manually assisted ventilation (0 +/- 0 vs. 1 +/- 1.1 n degree/procedure). Intraoperative PaCO2 was higher in the SAV (8.1 +/- 1.3 kPa) than in the INPV group (5.0 +/- 1.6 kPa) and intraoperative pH differed in the two groups (7.26 +/- 0.05, SAV vs. 7.47 +/- 0.08, INPV). Operating conditions, as assessed by a subjective score, were considered better with INPV than with SAV (4.9 vs. 4.3). CONCLUSIONS: As compared to SAV, INPV in paralysed patients during IRB reduces administration of opioids, shortens recovery time, prevents respiratory acidosis, excludes the need for manually assisted ventilation, reduces O2 need and affords optimal surgical conditions. INPV appears a safe, non-invasive and effective ventilatory management during IRB.
The inflammatory pseudotumour of the lung is a rare and non-malignant neoplasm, which can be asymptomatic or characterized by variable clinical expressions. This report refers to a case occurring in a young woman and presenting as a persistent airway obstructive syndrome. With regard to histopathologic characterization, the present case can be classified as a fibrous histiocytic subtype.
STUDY OBJECTIVE: To evaluate the efficacy of negative pressure ventilation (NPV) in avoiding or reducing apneas and related hypoxemia and respiratory acidosis during laser therapy (LT) of endobronchial lesions. DESIGN: A prospective, controlled, randomized study. SETTING: An operating theater of a respiratory endoscopy and laser therapy unit. POPULATION AND INTERVENTION: Twenty-seven consecutive patients referred to LT were entered into the study. Fourteen patients were randomly assigned to LT under general anesthesia and spontaneous assisted ventilation (control group) whereas in 13 cases, NPV by a poncho-wrap ventilator (NPV group) was added to the procedure. MEASUREMENTS AND RESULTS: The prevalence and the duration of apnea/hypopnea periods assessed by respiratory inductive plethysmography during LT were significantly reduced under NPV, compared to the control group. As compared to baseline, during LT, all control patients developed mild to severe hypercapnia (PaCO2 ranging from 55 to 76 mm Hg) and respiratory acidosis (pH from 7.33 to 7.19), whereas only three patients undergoing NPV (23%) developed hypercapnia (PaCO2 from 52 to 68 mm Hg) and related acidosis (pH from 7.29 to 7.21). Optimal oxygenation was achieved in all of the patients; nevertheless, patients under NPV needed a lower mean oxygen supply; five of them (38%) could be treated at a fraction of inspired oxygen of 0.21 for the whole procedure. CONCLUSION: NPV may be useful in reducing apneas during laser therapy under general anesthesia, thus reducing hypercapnia, related acidosis, and need of oxygen supplementation.
We report our 13-year experience with endoscopic treatment of malignant obstructions of the airway by Nd:YAG laser, stents, and intraluminal brachytherapy in 2,008 patients. We performed 2,610 laser resections in 1,838 patients, 66 high dose rate brachytherapies, and we placed 393 tracheobronchial silicone stents in 306 patients. We used the rigid bronchoscope in 96% of the laser procedures and in all cases requiring stent placement; general anesthesia was given to 90% of these patients. Endobronchial radiotherapy was performed under local, anesthesia. In 93% of patients undergoing laser resection, we obtained an immediate patency of the airway with consequent improvement of quality of life. The median time between the first and second laser treatment was 102 days, being longer in the case of stent placement (when required) or in association with brachytherapy. Even if endoscopic treatment should be considered only for palliation, laser vaporization could be curative in case of in situ carcinoma. Since 1983, we have treated 23 such lesions in 17 patients and up to now, none has recurred. Finally, endoscopic resection may allow a better assessment of the true extent of the tumor, shifting to surgery patients originally considered to have inoperable disease or allowing lung-sparing operations (21 and 18 patients of our series, respectively). The total mortality rate was 0.4% (12 patients over 2,798 treatments; 2,710 Nd:YAG laser + 151 stents without laser + 37 brachytherapies without laser) in the first week after the procedures, and was mainly related to cardiovascular problems and respiratory failure. In conclusion, endoscopic resection of lung malignancies is rapid, effective, repeatable, and complementary to other treatments; although it should be considered only palliative, laser resection could be curative in patients with in situ carcinomas and early cancers. Laser, stents, and endoluminal brachytherapy should be available in all centers with major experience; a well-trained team is mandatory to plan the most appropriate treatment and manage any possible complication.
We conducted a review of all the bronchoscopies performed at our institutions for benign tumors from 1980 to 1991 to determine the endoscopic characteristics of these lesions. We reviewed the charts, the endoscopic characteristics from our video records, and finally the pathologic findings of these cases. We tried to identify the effectiveness of laser resections in each group. Of a total of 3,937 patients, 185 (4.7%) were benign tumors. On these patients, 317 procedures were carried out. There were 3 myoblastomas, 53 papillomas, 1 adenoma, 8 chondromas, 4 fibromas, 45 hamartomas, 15 hamartochondromas, 6 lipomas, 19 angiomas, 5 leiomyomas, 4 schwannomas, 1 neurofibroma, and 21 amyloidomas. Results of laser resection were "very good" in 115 (62%) and "good" in 70 (38%). Complications were minimal: two mediastinal emphysemas, one pneumothorax, and one anesthesia-related cardiac arrest leading to the single death in this series. In general, benign tumors of the proximal endobronchial tree responded well to laser resection when their endoscopic appearance is recognized and prognosis known. Even when recurrent, repeated procedures can be performed easily with good results. This series is probably the largest in the world's literature about endoscopic recognition and the role of laser resection in patients presenting with benign endobronchial tumors.
The introduction of heart, lung and heart-and-lung transplants, only recently performed in Italy, has presented the anesthetist with the problem of the anesthesiological treatment of newly transplanted patients whose number will increase over time. For some time our unit has used general anesthesia using spontaneous breathing for endotracheal and endobronchial laser therapy. This solution was adopted in the case of a patient who had undergone a heart-lung transplant using an "a domino" technique some 90 days earlier. The authors discuss the results of the anesthesiological technique used taking into account the particular hemodynamic and respiratory characteristics of these patients.
Neuropeptides that may induce behavioral activation--thyrotropin-releasing hormone (TRH), oxytocin (OXY), and prolactin (PRL)--were tested on thiopenthal-induced narcosis after IV administration in male rats. TRH caused a significant shortening of sleeping time at the doses of 3 and 5 mg/kg, but did not change this parameter at lower doses. Oxytocin was effective at all doses tested (200, 300, and 400 micrograms/kg). Prolactin also shortened sleeping time at the doses of 0.2 and 1 mg/kg administered IV, slightly increasing it at the dose of 5 mg/kg. These results indicate that various neuropeptides are capable of reducing the duration of thiopenthal-induced sleep in rats.
This study concerns the quantitative modifications of the prostaglandins, PGF alpha e PGE2, in the vitreous and in the lens following the application of Nd-Yag Laser. Five minutes after the Yag-laser treatment, an increase of PGF1 alpha concentration of PGE2 decreased in the lens and increased in the vitreous. These changes, similar to those occurring in the aqueous humor, may be related to the activation of specific enzymatic pathways of prostaglandin synthesis.
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