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Biomedical subjects

A Gullo

Publications and source records attributed to A Gullo.

At least 37 records · Page 2Linked to original sources

Altitude decompression sickness. Case presentation.

The in-flight altitude-related decompression sickness (DCS) is not as common as DCS occurring after working or recreational diving, or, at least, it is not commonly described in the medical literature. Though modern aircraft are safer and more reliable, occupants are still subject to the stress of high altitude flight, and altitude DCS still represents a risk to the occupants, mostly if they are exposed to altitudes of 25,000 ft or higher. The authors report their experience about two different accidents involving a US Air Force pilot and a navigator, treated at the Service of Hyperbaric Medicine at Landspitallin Fossvogur, the University of Reykjavik City Hospital, Iceland, because of occurrence of type II altitude-related DCS. A US Navy Oxygen Treatment Table 6 was successfully applied in both cases. Also considered are some aspects related to physiopathology, clinical presentation and therapy of DCS, with particular regard to the occurrence of DCS during flight.

Adult↗

HBO and gas gangrene. A case report.

A 58-year old man, in a mediocre health condition, was admitted into Landspitallin Fossvogur, the University of Reykjavik City Hospital, Iceland, because of fever, chills, local pain and swelling due to the presence of a big old wound in his left heel. The first clinical appearance showed a gas gangrene of the area. The patient immediately underwent a surgical debridement and a fasciotomy, and antibiotic intravenous therapy and hyperbaric oxygen therapy (HBOT) were started. During the treatment the patient suffered for a multi-organ failure syndrome (MOFS), was admitted in ICU and survived. A total of 52 HBO sessions were performed and one month since the admission into the hospital the patient received a skin transplant. He achieved a complete restitutio ad integrum after 78 days of hospitalization. Gas gangrene is a fulminating infection caused by the genus of Clostridia. If not treated, it leads to the death of the host. The actual treatment for gas gangrene includes surgery, antibiotics, general resuscitative measures and HBOT.

Combined Modality Therapy↗

Bedside assessment of respiratory viscoelastic properties in ventilated patients.

Viscoelasticity represents an important component of respiratory mechanics, being responsible, in some cases, for most of the pressure dissipated during breathing. Hitherto the methods available for determining the viscoelastic properties have been simplified, but are still time-demanding and depend on a great deal of calculation. In this study, a simple means of determining respiratory viscoelastic properties during mechanical ventilation was introduced. The viscoelastic constants of the respiratory system, modelled as a Maxwell body, were studied in 17 normal subjects and seven patients with acute lung injury (ALI) using two end-inspiratory occlusions; one with a short inspiratory time (tI) to determine the elastic component of viscoelasticity and the other with a long tI to assess the resistive component of viscoelasticity. The results were reproducible and similar to those provided by the previously described multiple-breath method (MB). The mean+/-SD viscoelastic resistance was 5.31+/-1.50 cm H2O x L(-1) x s with the proposed method and 5.71+/-1.87 cm H2O x L(-1) x s with the MB method in normal subjects, and 8.93+/-2.82 cm H2O x L(-1) x s and 10.36+/-3.13 cm H2O x L(-1), respectively in ALI patients. The mean+/-SD viscoelastic elastance was 3.92+/-0.84 cm H2O x L(-1) and 4.94+/-1.01 cm H2O x L(-1) in normal subjects and 7.08+/-2.01 cm H2O x L(-1) and 8.21+/-1.16 cm H2O x L(-1) in ALI patients, respectively. The mean+/-SD viscoelastic time constant was 1.36+/-0.24 s and 1.17+/-0.34 s in normal subjects and 1.26+/-0.35 s and 1.24+/-0.23 in ALI patients, respectively. The method was easy to perform and applicable at the bedside in clinical routine.

Adult↗

Contribution of the ubiquitin-proteasome pathway to overall muscle proteolysis in hypercatabolic patients.

The influence of the gene expression of critical components of the cytoplasmic and lysosomal proteolytic pathways on the rate of protein degradation was evaluated in the leg skeletal muscle of 8 severely traumatized patients. Muscle proteolysis was determined as the intramuscular phenylalanine rate of appearance by L-[ring-2H5]phenylalanine infusion and the leg arteriovenous catheterization technique combined with muscle biopsy. Muscle mRNA levels of UbB polyubiquitin and cathepsin B were determined by reverse transcriptase-competitive polymerase chain reaction and expressed as a percent of the mRNA level of the housekeeping gene glyceraldehyde-3-phosphate dehydrogenase (GAPDH). In the patients, individual values for UbB polyubiquitin mRNA levels directly correlated with the rate of muscle proteolysis (r = .76, P < .05), whereas no correlation (r = .10) was found between cathepsin B mRNA levels and proteolysis. Thus, after trauma, the rate of muscle proteolysis appears to be largely regulated by the ubiquitin-proteasome system at the level of gene transcription.

Adult↗

Growth hormone decreases muscle glutamine production and stimulates protein synthesis in hypercatabolic patients.

We determined the effects of 24-h recombinant human growth hormone (rhGH) infusion into a femoral artery on leg muscle protein kinetics, amino acid transport, and glutamine metabolism in eight adult hypercatabolic trauma patients. Metabolic pathways were assessed by leg arteriovenous catheterization and muscle biopsies with the use of stable amino acid isotopes. Muscle mRNA levels of selected enzymes were determined by competitive PCR. rhGH infusion significantly accelerated the inward transport rates of phenylalanine and leucine and protein synthesis, whereas the muscle protein degradation rate and cathepsin B and UbB polyubiquitin mRNA levels were not significantly modified by rhGH. rhGH infusion decreased the rate of glutamine de novo synthesis and glutamine precursor availability, total branched-chain amino acid catabolism, and nonprotein glutamate utilization. Thus net glutamine release from muscle into circulation significantly decreased after rhGH administration ( approximately 50%), whereas glutamine synthetase mRNA levels increased after rhGH infusion, possibly to compensate for reduced glutamine precursor availability. We conclude that, after trauma, the anticatabolic action of rhGH is associated with a potentially harmful decrease in muscle glutamine production.

Adult↗

Usefulness of routine pre-operative chest radiography for anaesthetic management: a prospective multicentre pilot study.

A prospective multicentre pilot study was undertaken in 20 Italian hospitals to assess the influence of a routine pre-operative chest radiograph on anaesthetic management and to characterise which patients might benefit from it. A total of 6111 patients undergoing elective surgery and submitted for routine pre-operative chest radiograph were enrolled. Abnormal preoperative chest radiographs were reported in 1116 patients (18.3%). Pre-operative chest radiograph altered the anaesthetic management (i.e. useful pre-operative chest radiograph) in 313 patients (5.1%). Male sex, age > 60 years, ASA classes > or = 3, respiratory diseases, and the presence of two or more co-existing diseases were significantly related to the probability of a useful pre-operative chest radiograph using multivariate analysis (P < 0.01). The classification of the surgical intervention and, of the co-existing diseases, the presence of cardiac disease had a very low influence when determining the probability that a pre-operative chest radiograph would be useful. A simple equation includes the effects of all the variables studied and allows calculation of the probability of a useful pre-operative chest radiograph. This study indicates that in healthy, female, < or = 60-year-old patients, submitted for standard surgery, the probability of a useful pre-operative chest radiograph ranges from 0.2% to 3.5% according to the hospital. The probability increases in male or elderly subjects, or in the presence of co-existing respiratory diseases, or in ASA classes > or = 3, but there is a wide variation between hospitals.

Anesthesia, Inhalation↗

Are most ICU infections really nosocomial? A prospective observational cohort study in mechanically ventilated patients.

A prospective cohort study was undertaken with two end points: (i) to compare the 48 h time cut-off with the carrier state criterion for classifying infections, and (ii) to determine a time cut-off more in line with the carrier state concept. All patients admitted to the intensive care unit and expected to require mechanical ventilation for a period > or = 3 days were enrolled. Surveillance cultures of throat and rectum were obtained on admission and thereafter twice weekly to distinguish micro-organisms that were imported into the intensive care unit from those acquired during the stay in the unit. A total of 117 patients with median age of 61 years and median Simplified Acute Physiology Score II of 42, were included in the study. Of these patients, 48 (41%) developed a total of 74 infection episodes. Using the 48 h cut-off point, 80% of all infections were classified as ICU-acquired. According to the carrier state criterion, 44 infections (60%) were of primary endogenous development caused by micro-organisms imported into the intensive care unit. Seventeen secondary endogenous (23%) and 13 exogenous (17%) infections were caused by bacteria acquired in the unit. The carrier state classification allowed the transfer of 49% of infections from the ICU-acquired group into the import group. A time cut-off of nine days was found to identify ICU-acquired infections better than two days. These data suggest that monitoring of carriage of micro-organisms may be a more realistic approach to classify infections developing in the intensive care unit.

Adult↗

Haemodynamic changes during anaesthesia in knee-elbow position.

BACKGROUND: To evaluate hemodynamic alterations during surgical procedures performed in the knee-elbow position. METHODS DESIGN OF THE STUDY: prospective evaluation of the aortic blood flow (ABF) and other cardiovascular variables measured with a transesophageal Doppler (TED) in 2 groups of patients free of previous cardiovascular diseases undergoing lumbar discectomy. ENVIRONMENT: Operating theatre of a neurosurgical department. Beside TED, the standard monitoring included continuous ECG surveillance, capnometry, noninvasive measurement of blood pressure and pulsoxymetry. PATIENTS: Overall, 24 ASA 1 patients have been enrolled. In 12 patients (Group A) the intervention was performed without dobutamine. In the other 12 patients (Group B) dobutamine (2.5-3 micrograms/kg/min) was started from the beginning of the intervention; the two groups did not differ in terms of age, body size, duration of surgery or anesthetic technique used; hemodynamic measurements were obtained at the beginning of the intervention (T1), with the patients still supine, during the intervention in the knee-elbow position (T2) and finally at the end of the procedure (T3) being the patients still anesthetized but lying supine again. RESULTS: In both groups the ABF; the systolic volume and the ETCO2 significantly decreased in the knee-elbow position; concomitantly, peripheral vascular resistances increased. In Group B, the hemodynamic variables were significantly better than in the other group. CONCLUSIONS: In the patients enrolled, the perioperative administration of low-dose dobutamine was associated with better cardiovascular performance.

Adrenergic beta-Agonists↗

Does the length of stay in the intensive care unit influence the diagnostic accuracy? A clinical-pathological study.

To evaluate the rate of diagnostic errors leading to preventable deaths among patients admitted to our intensive care unit (ICU), we retrospectively reviewed the medical and autopsy records of all patients who died in the ICU between 1 January 1991 and 31 December 1993. Excluded were patients with traumatic injuries, cerebrovascular accidents and primary cardiac arrest. According to their length of stay (LOS) in the ICU, patients were subdivided into Group A (LOS 0-24 hours), Group B (LOS > 24 hours-14 days), and Group C (LOS > 14 days). Errors were divided into Type 1 (failure to recognize a treatable life-threatening condition); Type 2 (failure to recognize a life-threatening condition, which treated, however, would unlikely alter the outcome), and Type 3 (failure to recognize a condition unrelated to the outcome). Overall, 159 consecutive patients were enrolled. Type 1 errors were 5% in Group A, 4% in Group B and 9% in Group C. Type 2 errors were 18% in Group A, 34% in Group B, and 30% in Group C. Fully correct diagnoses or Type 3 errors were present in 77% of patients in Group A, 62% of patients in Group B, and 61% of patients in Group C. Clinical errors of any type were not related with the LOS in the ICU or in the hospital, age and the number of underlying chronic diseases.

Adult↗

Single-breath method for assessing the viscoelastic properties of the respiratory system.

In order to explain the time dependency of resistance and elastance of the respiratory system, a linear viscoelastic model (Maxwell body) has been proposed. In this model the maximal viscoelastic pressure (Pvisc.max) developed within the tissues of the lung and chest wall at the end of a constant-flow (V') inflation of a given time (tI) is given by: Pvisc,max = R2V'(1-e(-tI/tau2), where R2 and tau2 are, respectively, the resistance and time constant of the Maxwell body. After rapid airway occlusion at t1, tracheal pressure (Ptr) decays according to the following function: Ptr(t) = Pvisc(t) + Prs,st = Pvisc,max(etocc/tau2)+ Prs,st, where tocc/is time after occlusion and Prs,st is static re-coil pressure of the respiratory system. By fitting Ptr after occlusion to this equation, tau2 and Pvisc,max are obtained. Using these values, together with the V' and tI pertaining to the constant-flow inflation preceding the occlusion, R2 can be calculated from the former equation. Thus, from a single breath, the constants tau2, R2 and E2 (R2/tau2) can be obtained. This method was used in 10 normal anaesthetized, paralysed, mechanically ventilated subjects and six patients with acute lung injury. The results were reproducible in repeated tests and similar to those obtained from the same subjects and patients with the time-consuming isoflow, multiple-breath method described previously.

Adult↗

Plasmapheresis in the critically ill patient.

Despite the wide number of diseases currently or previously treated with plasma exchange and plasmapheresis, the clinical effectiveness of these treatments has been established by large, controlled clinical trials only in few clinical conditions. The firmly accepted and the possible indications for these techniques in critically ill patients are reviewed and discussed, as well as their complications and possible side effects.

Anti-Glomerular Basement Membrane Disease↗

Effects of growth hormone administration on skeletal muscle glutamine metabolism in severely traumatized patients: preliminary report.

We have investigated the effects of 24 h human recombinant growth hormone (hGH) administration on leg muscle glutamine exchange and protein kinetics in severely traumatized patients. Muscle amino acid exchange and protein balance were evaluated using the leg arteriovenous balance technique, whereas changes in skeletal muscle free amino acid concentrations were evaluated in biopsy specimens. hGH infusion decreased phenylalanine release from protein degradation by 56 +/- 14%, and the rate of branched chain amino acid catabolism by 51 +/- 10%. Glutamine release from leg muscle was suppressed by 58 +/- 12%. This latter effect was completely accounted for by a hGH-mediated suppression of glutamine synthesis in skeletal muscle. In conclusion, growth hormone administration in trauma patients may restrain protein and amino acid catabolism in skeletal muscle. However, the growth hormone-mediated suppression of glutamine production we have observed in this study could decrease the systemic availability of this amino acid. During growth hormone treatment, this potential side-effect could be prevented by an exogenous glutamine administration.

Journal Article↗

Metabolic response to injury and sepsis: changes in protein metabolism.

The metabolic response to trauma and sepsis involves an increased loss of body proteins. Specific sites of changes of protein and amino acid metabolism have been identified. In skeletal muscle, the rate of proteolysis is accelerated greatly. The rate of protein synthesis also may be increased but not enough to match the increase in degradation. Intramuscular glutamine concentration is decreased because of increased efflux and possibly decreased de novo synthesis. In the liver, the rate of synthesis of selected proteins (i.e., albumin, transferrin, prealbumin, retinol-binding protein, and fibronectin) is decreased, whereas acute phase protein synthesis is accelerated. Tissues characterized by rapidly replicating cells, such as enterocytes, immune cells, granulation tissue, and keratinocytes, exhibit early alterations in the case of decreased protein synthesis capacity. In these tissues, glutamine use is accelerated. Increased stress hormone (cortisol and glucagon) and cytokine secretion, as well as intracellular glutamine depletion, are potential mediators of altered protein metabolism in trauma and sepsis. However, the relative importance of these factors has not been clarified. Therapy of acute protein catabolism may include the use of biosynthetic human growth hormone, possibly in combination with insulin-like growth factor-1, and the administration of metabolites at pharmacologic doses. We recently studied the effects of carnitine and alanyl-glutamine administration in severely traumatized patients. We found that both carnitine and the glutamine dipeptide restrained whole-body nitrogen loss without affecting selected indices of protein metabolism in the skeletal muscle.

Carnitine↗