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Biomedical subjects

J H Harrell

Publications and source records attributed to J H Harrell.

32 records · Page 2Linked to original sources

Evidence of lung surfactant abnormality in respiratory failure. Study of bronchoalveolar lavage phospholipids, surface activity, phospholipase activity, and plasma myoinositol.

Autopsy findings suggest that lung surfactant is damaged in the adult respiratory distress syndrome. In the present study 225 bronchoalveolar lavage specimens (78 from 36 patients, 1-78 yr old with respiratory failure, 135 from another 128 patients with other respiratory disease, and 12 from healthy controls) were assayed for the lung profile [lecithin/sphingomyelin (L/S) ratio, saturated lecithin, phosphatidylinositol, and phosphatidylglycerol]. Bronchoalveolar lavage fluid was further analyzed for phospholipids and for phosphatidic acid phosphohydrolase, phospholipase A2, and phosphatidylinositol phosphodiesterase activities. A lipid-protein complex was isolated and analyzed for surface activity, and plasma was measured for myoinositol. There were only small differences seen in the recovery of total phospholipid between respiratory failure patients and normal controls. However, in respiratory failure, phospholipids in bronchoalveolar lavage were qualitatively different from those recovered either from normal controls or from patients with other lung disease: the LO/S ratio, phosphatidylglycerol, and disaturated lecithin were low, whereas sphingomyelin and phosphatidylserine were prominent. These abnormalities were present early in respiratory failure and tended to normalize during recovery. Low L/S ratio (less than 2), and low phosphatidylglycerol (1% or less of glycerophospholipids) in bronchoalveolar lavage was always associated with respiratory failure. Abnormal lavage phospholipids were not due to plasma contamination. The phospholipase studies revealed little evidence of increased catabolism of phospholipids. In respiratory failure, the lipid-protein complexes from lung lavage were not surface active, whereas that from healthy controls had surface properties similar to lung surfactant. Phospholipids from patients with respiratory failure were similar to those from respiratory distress syndrome in the newborn. However, the latter condition is characterized by fast recovery of surfactant deficiency and by high plasma myoinositol that suppresses the synthesis of surfactant phosphatidylglycerol and increases phosphatidylinositol (Pediatr. Res. 1981. 15: 720). On the other hand, in adult respiratory distress syndrome, the abnormality in surfactant phospholipids may last for weeks and in most cases is associated with low phosphatidylinositol, low phosphatidylglycerol, and low plasma myoinositol.

Adult↗

Identification of pulmonary emboli in the dog: comparison of angioscopy and perfusion scanning.

Fifteen dogs were studied by perfusion scan, angioscopy and autopsy. In 10, emboli were formed in leg veins and released before study; five dogs were not embolized and served as controls. In controls, angioscopy disclosed no emboli, perfusion scans were normal after angioscopy and autopsy disclosed no emboli. Among the embolized dogs, 23 emboli were identified at autopsy. Perfusion scans disclosed 23 defects, but in three dogs there was a disparity between scan and autopsy localization. Angioscopy identified 21 of the 23 autopsy-defined emboli and localized them correctly; two emboli in vessels less than 1 mm in diameter were not visualized. Angioscopy may provide a useful new approach in animal investigations of pulmonary embolism and perhaps, after additional study, in selected patients.

Animals↗

Flexible fiberoptic bronchoscopy for diagnosing pulmonary coccidioidomycosis.

To assess the diagnostic yield of flexible fiberoptic bronchoscopy (FFB), we reviewed records of 30 patients who had (1) cultural and/or histologic evidence of coccidioidomycosis, (2) abnormal chest roentgenograms, and (3) undergone FFB. Each patient underwent a complete examination including sputum collection for smears and culture. As additional diagnostic information was needed, FFB was performed in all patients, followed by percutaneous needle aspiration in 4 patients and thoracotomy in 10. Prebronchoscopy sputum cultures yielded Coccidioides immitis in 6 of 30 patients (20%). Bronchoscopy provided specimens diagnostic of coccidioidomycosis in 16 of 30 patients (53%), and in 10 of 30 (33%), FFB was the first procedure of the examination to produce a diagnostic specimen. The diagnosis was first obtained by needle aspiration in 1 of 30 (3%), by extrathoracic specimens in 3 of 30 (10%), and by thoracotomy in 10 of 30 (33%). All 8 patients with a solitary pulmonary nodule (SPN) had nondiagnostic FFB and comprised the majority of patients not diagnosed until thoracotomy was performed. When patients with a SPN were excluded, 20 of 29 (69%) FFB procedures documented coccidioidal infection. Seven of 22 (32%) prebronchoscopy sputum collections compared with 17 of 29 (59%) FFB procedures produced positive cultures for C. immitis. One of 22 (5%) prebronchoscopy sputum collections, compared with smears and biopsies from 8 of 29 (28%) FFB procedures, produced immediate microscopic evidence of coccidioidomycosis. Coexisting pulmonary pathologic findings in 4 patients were uncovered by FFB. Except in patients with a SPN, FFB is a valuable procedure for documenting pulmonary coccidioidomycosis when sputum specimens are nondiagnostic.

Biopsy, Needle↗

Angioscopic visualization of pulmonary emboli.

A flexible, fiberoptic device, fitted with an inflatable distal balloon, has been used to directly visualize the great veins, right cardiac chambers, pulmonary arteries, and experimental emboli in vivo in the dog. Insertion and manipulation of the device have been well-tolerated. The angioscope has significant potential for investigative and clinical application.

Animals↗

Alveolar proteinosis. Lobar lavage by fiberoptic bronchoscopic technique.

Lavage limited to an isolated lobe was performed on multiple occasions using a cuffed fiberoptic bronchoscope in a patient with alveolar proteinosis. Sequential ventilation-perfusion scintiphotoscans were used to preselect and follow the functional behavior of the lavaged lobe. Lavage led to functional improvement. The technique of fiber-optic bronchoscopic lobar lavage is simple and may find application in patients in whom lavage of an entire lung may be hazardous.

Adult↗

Ventilation-perfusion alterations induced by fiberoptic bronchoscopy.

Pulmonary perfusion (Q) and ventilation (V) scintiphotography was performed in 16 patients undergoing diagnostic fiberoptic bronchoscopic examinations. Regional V/Q did not change in the majority of the patients who developed hypoxemia after bronchoscopic studies. An improvement in V/Q was detectable in the patients with a rise in arterial oxygen pressure (PaO2) after bronchoscopic examination, and this rise was associated in most with the removal of mucous plugs or extensive secretions. The data indicate that the behavior of PaO2 after bronchoscopic study is dependent upon both the extent of lavage and the yield of the procedure in terms of secretions and plugs. The results also indicate that the removal of secretions or plugs can be associated with rapid return of regional V and Q.

Bronchoscopy↗

Bacteremia related to fiberoptic bronchoscopy. A case report.

This is the first reported case of fiberoptic bronchoscopy associated with bacteremia originating in the respiratory tract. The patient had a gram-negative bacterial bronchitis before fiberoptic bronchoscopy and later died of complications of the bacteremia.

Aged↗

Management of arterial hypoxemia induced by fiberoptic bronchoscopy.

Twenty patients undergoing fiberoptic bronchoscopy (FOB) (bronchofiberscopy) were studied with serial arterial blood gas analyses. Ten patients were managed using a 40 percent Venturi mask with a 2-cm opening cut out for the FOB; there were ten other patients, with this opening modified by a thin rubber diaphragm with a slit for insertion of the FOB. Both masks decreased the extent of hypoxemia after bronchoscopy, but the mask with the diaphragm provided significantly higher PaO2 values. A significantly higher mean FIO2 was found at the carina in the group using the diaphragm-modified mask. This study suggests that declines in PaO2 after bronchoscopy can be avoided in most patients undergoing diagnostic FOB by using a diaphragm-modified 40 percent Venturi mask during and after the procedure. However, patients with a PaO2 below 60 mm Hg before bronchoscopy may require other measure to avoid potentially hazardous degrees of hypoxemia after bronchoscopy.

Blood Gas Analysis↗