Myopathy and ventilatory failure in severe sepsis.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to G Iapichino.
Explore the source record for details and available documents.
OBJECTIVE: To assess the validity of SAPS II (new Simplified Acute Physiology Score) in a cohort of patients admitted to a large sample of Italian intensive care units (ICU). DESIGN AND SETTING: The ability of the SAPS II scoring system to predict the probability of hospital mortality was assessed with calibration and discrimination measures obtained using published coefficients. A new logistic regression equation was then developed and further formal calibration and discrimination measures were estimated for the customized model. PATIENTS: From the 2202 consecutive patients recruited during a 1-month period in 99 ICUs, a total of 1393 patients were included in this validation study. RESULTS: When the parameters based on the standard model were applied, the expected probability of mortality did not fit those actually observed in the cohort (p < 0.001), although it showed satisfactory discrimination (area under the receiver operating characteristic curve = 0.80). Such lack of fit yields an overall under prediction of mortality (observed/expected ratio = 1.14) that reflects a uniform pattern across a preselected set of subgroups. Customization allowed new mortality estimates to be calculated, with satisfactory calibration (p = 0.82) and a more uniform pattern across subgroups. CONCLUSIONS: SAPS II maintained its validity in an independent sample of patients recruited in a large network of Italian ICUs only after appropriate adaptation (first-level customization). Whether the determinants of this relatively poor performance are related to differences in unmeasured case-mix, methods of application, or quality of care delivered is a matter for discussion that cannot be solved with the data presently available. However, these findings suggest that caution is warranted before implementing the standard SAPS II scoring system parameters outside formal research projects.
OBJECTIVE: To describe a generalized myopathic disorder occurred in the convalescence phase of illness of a critically ill patient. SETTING: Neurological Intensive Care Unit. PATIENT: A 43-year-old man with acute leukoencephalopathy and severe sepsis complicated by sustained and prolonged cardiovascular, respiratory and renal failure. After 15 days of complete respiratory autonomy, the patient presented an acute ventilatory failure associated with generalized muscle weakness. Neither a relapse of sepsis nor neurological worsening were detected. MEASUREMENTS AND RESULTS: Electromyogram resulted in normal conduction velocity in both motor and sensitive nervous fibers. Muscular biopsy showed marked fiber size variability with several hypotrophic fibers type II fiber grouping, several areas of degeneration-necrosis with macrophage invasion, dishomogeneous oxidative enzymatic activity, no increase in glycogen or lipid content. CONCLUSIONS: These results excluded critical illness polyneuropathy and all the other known myopathies. Prolonged period of sepsis with multiple organ failure can result in a direct generalized myopathy. This possibility should be kept in mind while treating long term critically ill survivors.
Explore the source record for details and available documents.
OBJECTIVE: The Intensive Care Units of Milano metropolitan area are characterized by difficulties of hospitalization for acutely injured patients due to the low bed availability. We evaluated the problem trying to find out possible solutions. DESIGN: On the day of achieved neurological and neurosurgical stability-defined as the day when the intracranial pressure and jugular venous oxygen saturation monitoring, hyperventilation, osmotic therapy were considered no longer needed--the monitoring procedures and instrumental and/or pharmacological treatments that the patients received were recorded and classified as follows: 1) intensive, 2) intermediate, 3) non-intensive. PATIENTS: All the acutely injured patients admitted at five Neurosurgical ICUs during June-July and October-November 1994 have been studied. Only one of these ICUs had a "sub-intensive unit". MEASUREMENTS AND MAIN RESULTS: 391 patients (29.9%) aneurysms and arteriovenous malformations, 25.1% tumours, 2.8% head injuries, 8.7% spontaneous intracranial haematomas, 13.5% various pathologies) were studied. Out of them 358 had an acute brain failure. 16.5% died during brain failure and 83.5% reached neurological stability within 3 days. When neurological stability was reached 32.1% of patients could be classified as "intensive", 63.6% as "intermediate" and 4.3% as "unintensive". In the four ICUs, without sub-intensive ward facilities, 361 patients were admitted with a total amount of 2292 days of hospitalization. Among them 61.9% were spent for a) patients with no brain injury (32 pts/113 days), b) postoperative patients (113 pts/167 days), c) patients in stable neurological conditions (159 pts/1139 days). Therefore, only 38% of the days recorded were given to patients that needed neurointensive care. CONCLUSION: Out data suggest that the receptivity for acute injured patients could be increased creating recovery room units and intermediate post-intensive units together with a better interchange between general and neurosurgical ICUs.
OBJECTIVE: To assess and to follow along the time-span of ICU stay the process of resources allocation and utilization. DESIGN: Prospective study. PATIENTS: A cohort of 778 patients consecutively admitted to 7 multipurpose general ICU in the Milano area were enrolled in a survey of the daily performed interventions/procedures. MEASUREMENTS AND MAIN RESULTS: The majority of diagnostic procedure/interventions were performed during the first two days. The number and quality of interventions were transferred into points obtaining a score system in non-monetary units. The resource allocation process shows a regular trend in the sub-intensive patients who were only monitorized. On the contrary the 258 patients who were intensively treated and survived show a phase of high resource-consumption (about 30 daily points: roughly twice the score of monitorized patients) then followed by a post-intensive phase with a resource consumption resulting in a daily score absolutely equal to the sub-intensive patients. The intensive patients who die show a significantly higher score than survived patients. Both daily and cumulative scores do not show differences among different type of patients. CONCLUSION: The evaluation of the process of resources allocation, even if in non-monetary units enables the knowledge of the trend of ICU costs and allows the elaboration of the appropriate budget mechanism.
OBJECTIVE: We investigated the amino acid (AA) tolerance during Total Parenteral Nutrition (TPN) in adult patients undergone liver transplant (LTX). DESIGN: The treatment (Glucose and AA), induced on the 2nd postoperative day, was later maintained with 27 kcal/kg Ideal Body Weight (IBW) as glucose and 0.12 (12 patients: protocol #1), 0.18 (10 patients: protocol #2) and 0.25 g nitrogen (N)/kg IBW (13 patients: protocol #3) till end of the 6th postoperative day. The N intake was sequentially modified in protocol #2 and #3 to increase the supply of the amino acid (AA) that resulted in an infusion plasma level below the expected "normal" range (between 1 and 1.6 times the overnight fasting plasma level of volunteer). PATIENTS: 35 consecutive adult patients without diabetes and organ failures for the entire study period. MEASUREMENTS: Plasma AA profile was measured before LTX and at the last TPN day under continuous infusion. During #1 and #2 protocol, many AA resulted below or at the lower range of the norm while, during 0.25 gN/kg IBW infusion, the majority of the administered AA significantly increased with respect to reference values. Nevertheless, they remained in the "normal" plasma range indicating that they were supplied in an optimal amount (particularly the aromatic and sulphurated ones, potentially toxic if liver function is impaired, and the branched chain AA (BCAA) given at consistent dosage: 0.5 g/kg). Arginine resulted significantly increased (Arg: 1.9 times the reference) and cystine (Cys: 0.45), serine (Ser: 0.8) and taurine (Tau: 0.85) remained significantly lower than "normal" as well as the not administered citrulline (Cit: 0.58) and alfa amino butyric acid (Aba: 0.41). The AA (and calorie) load almost balanced the N losses during the 5th (0.411 +/- 0.038) and 6th study day (0.305 +/- 0.019 gN/kg). CONCLUSIONS: 0.25 gN/kg could be considered the minimum N load in the uncomplicated adult LTX recipients, for reassuring a balanced plasma AA pattern and body N turnover in the early postoperative phase.
OBJECTIVE: To investigate the kinetics of body nitrogen (N) excretion during 24 h glucose infusion (relating glycemia with insulin supply) and during subsequent 24 h saline infusion in injured patients during a full blown stress reaction. To define the lag time between the start of the withdrawal of glucose and insulin infusion, and the modification in the N loss from the body, and the time span to reach the maximum effect and its size. The knowledge of these variables is mandatory to plan short term studies in critically ill patients, while assuring the stability of the metabolic condition during the study period, and also to assess the possible weaning of the effect on protein breakdown during prolonged glucose and insulin infusion. DESIGN: 24-36 h after injury, patients were fasted ( < 100 g glucose) for 24 h (basal day). Thereafter, a 24 h glucose infusion in amount corresponding to measured fasting energy production rate (EPR), clamping glycemia at normal level with insulin supply followed by 24 h saline infusion, was performed. Total N, urea and 3-methyl-histidine (3-MH) in urine were measures on 4 h samples starting from 20th h of the basal day. SETTING: Multipurpose ICU in University Hospital. PATIENTS: 6 consecutive patients who underwent accidental and/or surgical injury, immediately admitted for respiratory assistance (FIO2 < 0.04). Excluded patients were those with abnormal nutritional status, cardiovascular compromise and organ failures. MAIN RESULTS: Patients showed a 33% increase in measured versus predicted fasting EPR and a consistent increase in N and 3-MH urinary loss. An infusion of glucose at 5.95 +/- 0.53 mg/kg x min (97.20 +/- 0.03% of the fasting measured EPR) with 1.22 +/- 0.18 mU/kg x min insulin infusion reduced N and 3-MH loss after a time lag of 12 h. The peak decrease in body N (-36%) and 3-MH loss (-38%) was reached during the first 12 h of glucose withdrawal period. Thereafter, during the following 12 h, the effect completely vanished confirming that it is therapy-dependent and that the metabolic environment of the patients did not change during the three days study period. CONCLUSION: 24 h glucose withdrawal reduces N and 3-MH loss injured patients, the drug-like effect is maintained during the first 12 h of withdrawal and thereafter disappears. The study suggests that at least a 24 h study period is necessary when planning studies exploring energy-protein metabolism relationship in injured patients, and, again 24 h before changing protocol in a crossover study.
PURPOSE: To evaluate the effect induced on gas exchange and on urea excretion by glucose and insulin infusion in injured patients. The magnitude and time necessary for the full development of the metabolic effect were investigated. METHODS: Six injured patients were investigated. During the first 24 hours, the fasting period, patients received 1 mg/kg*min of glucose; during the second 24 hours, the treatment period, infusion was increased to about the 95% of the energy production rate; during the last 8 hours, (stop period) the infusion rate was again set to 1 mg/kg*min. Gas exchange was determined in two consecutive 12-hour series, for 30 minutes every hour, either during a stabilized treatment or after its variation. Urea excretion was determinated on 4-hour samples. RESULTS: With respect to the fasting period, during the last 4 hours of the treatment period, the energy production rate did not vary; urea excretion (-25%) and oxygen consumption (-9%) decreased significantly. Carbon dioxide production (+16%), total respiratory quotient, and minute ventilation (+5%) increased significantly. Carbon dioxide production varied linearly with time (glucose infusion +1.74 mL/min*m2*h, P < .05; glucose withdrawal -1.89 mL/min*m2*h, P < .01). Minute ventilation decreased only during the withdrawal period by 65 mL/min*m2*h (P < .05). CONCLUSIONS: The infusion of glucose and insulin, in an amount slightly lower than the metabolic expenditure, leads to a consistently reduced amino acid catabolism and to a decreased oxygen consumption, without affecting energy requirements. Although it leads to an increase of carbon dioxide production, the measured change is so small and slow that it is not harmful unless there is severe respiratory insufficiency.
This paper deals with the definition of intensive care medicine and the organization of different levels of care; intermediate and high level. The organization, facilities and personnel for intermediate care are discussed. The available public data on the organization of intensive medicine and modifications planned by the Legislator are considered. Finally, the usefulness of intermediate care and an estimate of the actual need, based on prospective multicentre ad hoc studies, are discussed.
Through prepaid compulsory insurance managed by the central government, Italy's National Health Service (NHS) provides full coverage, free accessibility, and no or limited copayment by individuals when receiving health services. Although Italy spends less than other countries on health care (< 8% of the country's gross national product), the present NHS faces considerable difficulties, and its performance regarding quality, outcome, and spending has come under question. ICUs account for < 2% of total hospital beds, and the proportion of ICU patients is < 2.5% of all hospital patients (2.5% of all Italian hospital patients receive ICU care at some time during their hospital stay). Information from administrative databases and epidemiologic studies gives an interesting national picture of the situation in Italy regarding admission criteria case mix, and outcomes when compared with data from other countries. Important changes in the financial and institutional framework of the NHS are underway, yielding an unpredictable scenario for the future. Innovations focus mostly on cost containment and quality initiatives. These innovations will likely produce a new health service in which regions will have a more important role than in the past. Actions planned in a large Italian region by the local government are used as an example to explain the potential impact of this new trend on critical care medicine.
Single lung transplantation (SLT) is now successfully used in patients with severe emphysema. Mechanical imbalance between the native emphysematous and the healthy transplanted lung can be easily managed, unless severe graft failure occurs, leading to acute respiratory failure. Emergency retransplantation has been used in this setting, since the conventional approach to adult respiratory distress syndrome (ARDS) (mechanical ventilation and positive end-expiratory pressure [PEEP]) fails, due to the mechanical discrepancy between the two lungs. We describe two cases of severe graft failure following SLT in emphysema patients that were successfully treated with prolonged independent respiratory treatment. Mechanical ventilation and PEEP were applied to the failing transplanted lung while the native emphysematous lung was maintained on spontaneous breathing to avoid hyperexpansion and barotrauma. The independent lung respiratory treatment lasted 35 and 25 days, respectively: to our knowledge, these are among the longest-lasting independent respiratory treatments reported. The management was simplified by the early use of a double-lumen tracheostomy cannula as an alternative to orotracheal double lumen tube.
If the quality of results of organ transplantation in NITp is highly satisfactory, the same cannot be said for the number of transplants performed, which only cover 20-25% of the requirement. To understand the causes of organ shortage, a study group of Anaesthesiologists and Transplant Coordinators from the North Italy Transplant Program (NITp) investigated, through a questionnaire addressed to the Heads of 103 Intensive Care Units (ICU) in 92 Hospitals in the NITp area, some of the organizational problems linked to donor identification and treatment and to organ retrieval. The questionnaire took into consideration the number of possible donors identified in 1990, those retrieved and the causes for non retrieving organs and examined a number of variables linked both to retrieval and to ICUs and Hospitals organization. The results show that potential donors were 461: 143 (31%) were used, 138 (30%) were lost due to family opposition to organ donation, 192 (20%) for clinical reasons and 88 (19%) for organizational reasons. The latter figure represents 5% of non retrieval in the most active ICUs and increases to 50% in the Hospitals that had procured no donors in 1990. The main obstacles for ICUs to procure organ donors are: convey the Medical-Legal Committee, carry out of complicated administrative procedures, availability of round the clock specialized equipment for neurological assessment (especially for ICU outside Neurosurgical and Neurological departments), inadequate number of medical and nursing staff, most of all at night, and finally the difficulty in the management of non-traumatic cerebrovascular patients.
In sixteen severely catabolic patients, two different nutritional treatments with the same nitrogen input (0.30 gN.kg-1.die-1) but with a different caloric support: 30 kcal.kg-1.die-1 foe group A and 15 kcal.kg-1.die-1 for group B were infused. Body nitrogen balance (BN), muscle nitrogen balance (BNm) and, calculated as a difference of the two, visceral nitrogen balance were measured in every patient on basal day and on the second day of total parenteral nutrition. Both nutritional treatment reduced the catabolic state in the same amount: this was confirmed by a less negative body BN and by the reduced excretion of 3-MEH and amino acidic catabolic markers. Otherwise in the other compartments the treatments showed different effects: the metabolic support was more reduced by treatment A than it was by B, supplying to visceral compartment a lower nitrogen amount: the nitrogen dismission from muscle compartment, available for visceral tissues, is greater with treatment B than with treatment A. In conclusion, even if both treatments show the same effect on body nitrogen balance, they penalize either one of the examined compartment or the other. To avoid this problem, the study and the use of tissue-specific nutrients are desiderable. Tissue-specific solutions may warrant the balance among body compartment without any further increase of the nitrogen rate.
A plasmatic concentration for each aminoacid, between 1 and 1.5 times the normal value in fasting healthy subjects, is considered as an optimal target during total parenteral nutrition (TPN) in malnourished patients. We have analyzed the correlation between the aminoacid input and the aminoacid plasmatic concentration during TPN at different aminoacid composition. By exponential regression curves we then calculated the input required to keep each aminoacid plasma concentration in the optimal range.
Ten-three patients were investigated during the early postoperative phase after orthotopic liver transplantation to assess the adequacy of the amino acid (AA) supply during both parenteral (days 1-5) and enteral (days 6-9) nutrition. Plasma AA profile was determined preoperatively, on day 4 and 5 during TPN and on day 8 and 9 during EN, urea production rate was measured every day. Calories input was 28 kcal.kg-.day as glucose, nitrogen intake was 0.25 g.kg- day, supplying individual AA on the basis of previous studies. Urea nitrogen production during TPN (9-11 gN/m2.day) outlines the ability of the transplanted liver to manage the overall nitrogen load. Individual AA plasma profile was considered the expression of an adequate input when comprised between 1 and 1.5 times the normal value, in this respect we obtained adequate levels of all essential AAs. Particularly phenylalanine, methionine and branched chain AA, critical during liver failure, were kept in this range by supplying 68, 48 and 500 mg.kg-1.day. According to AA profile the supply of cystine and tyrosine (conditionally essential AAs), and of histidine, taurine, proline and serine could be safely increased. Not given dispensable AAs (glutamine, asparagine, citrulline and alfa amino butyric) showed a plasma level below the norm and should be added to the diet.
We describe the combined use of mask CPAP (continuous positive airway pressure) and minitracheotomy as an alternative to conventional endotracheal intubation in 3 patients requiring CPAP, secretion removal and diagnostic procedures such as bronchoalveolar lavage and bronchial cultures. These requirements were fulfilled with the combined technique approach, thus preserving glottic function and avoiding the disadvantages of endotracheal intubation of tracheotomy. This approach seems particularly suitable in the treatment of immunocompromised patients because of its reduced invasiveness.
Despite consistent improvement in its treatment, amatoxin poisoning still extolls an elevated overall mortality, ranging between 10 and 15%, which approaches 100% when severe (grade 3-4 encephalopathy) hepatic failure supervened. Therefore, the proper treatment of intoxication by amatoxin containing mushrooms, and particularly of its complications, remains a challenge in emergency medicine. Klein and coworkers reviewed the role of liver transplantation in amatoxin poisoning as a useful therapeutic tool for patients with severe impairment of liver function. Their indication for intervention is the presence of any of the following signs: grade 2 encephalopathy or higher; prothrombin time twice than normal, despite fresh frozen plasma infusion; hypoglycemia requiring hypertonic glucose infusion; hyperbilirubinemia (greater than 25 mg/dl). During the past autumn two patients with fulminant hepatic failure due to amatoxin poisoning were referred to our institutions as candidates for liver transplantation, since both satisfied Klein's criteria. However, due to shortage of organ donors it was impossible to transplant them over the following days. Despite they did not receive liver transplantation, both patients wakened from coma, their liver function improved, and they recovered from terminal amatoxin poisoning. After one year, both patients are long-term survivors, in good health and without any sequelae either in brain or liver function.