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K Irita

Publications and source records attributed to K Irita.

At least 19 recordsLinked to original sources

Effects of olprinone, a new phosphodiesterase inhibitor, on gastric intramucosal acidosis and systemic inflammatory responses following hypothermic cardiopulmonary bypass.

BACKGROUND: Phosphodiesterase (PDE) III inhibitors have both an inotropic and a peripheral vasodilatory effect, and also inhibit the activation of macrophages. Thus a newly developed PDE III inhibitor, olprinone, could modify gastric intramucosal pH (pHi), systemic oxygen consumption, and systemic inflammatory responses in patients undergoing cardiac surgery with cardiopulmonary bypass (CPB). METHODS: We studied 23 patients. In 15 patients, olprinone (0.1 or 0.2 microg x kg(-1) x min(-1)) was administered from the commencement of CPB until their admission to the ICU. The other 8 patients received placebo. The pHi and regional CO2 tension (PrCO2) were assessed by a capnometric air tonometry. Systemic inflammatory responses were evaluated by serum interleukin-6 (IL-6), IL-10, and leucocyte counts. RESULTS: The pHi and PCO2-gap, the difference between PrCO2 and arterial CO2 tension (PaCO2), showed a transient decrease and an increase after CPB, respectively. Although olprinone did not affect pHi, olprinone at 0.2 microg x kg(-1) x min(-1) significantly lessened post-CPB increase in PCO2-gap. Olprinone at 0.2 microg x kg(-1) x min(-1) significantly increased IL-10 and reduced the extent of leucocytosis, while it did not affect IL-6 levels. At the same dosage, olprinone also lessened the surge in systemic oxygen uptake index (VO2) and augmented the increase in mixed oxygen saturation (SvO2) both of which occurred after CPB. At 0.1 microg x kg(-1) x min(-1), however, olprinone did not show any significant effect. CONCLUSION: Our results suggest that olprinone at 0.2 microg x kg(-1) x min(-1) suppresses gastric intramucosal acidosis and systemic inflammation following CPB.

Acidosis↗

Effect of low-dose milrinone on gastric intramucosal pH and systemic inflammation after hypothermic cardiopulmonary bypass.

OBJECTIVE: To investigate the usefulness of low-dose milrinone on gastric intramucosal pH (pHi) and systemic inflammation in patients undergoing hypothermic cardiopulmonary bypass (CPB). DESIGN: Prospective randomized study. SETTING: University hospital. PARTICIPANTS: Twenty patients scheduled for cardiac surgery. INTERVENTIONS: Ten patients were administered a low dose of milrinone, 0.25 microg/kg/min, from the initiation of CPB to 1 hour after admission to the intensive care unit. The other patients were administered saline. Supplemental inotropes and intravenous fluid were given to obtain adequate mean arterial blood pressure and pulmonary artery occlusion pressure. MEASUREMENTS AND RESULTS: Gastric pHi and carbon dioxide pressure (PCO2) were assessed by capnometric air tonometry. The difference between PCO2 and arterial carbon dioxide pressure (PaCO2), PCO2-gap, was also examined. Systemic inflammatory responses were evaluated by serum interleukin-6 and leukocyte counts. Hemodynamics, oxygen delivery index, and oxygen uptake index were monitored with catheters in the radial and pulmonary arteries (thermodilution). The hepatic venous blood flow and left ventricular flow were measured using transesophageal echocardiography. Milrinone prevented gastric intramucosal acidosis, detected as a decrease in pHi or an increase in PCO2-gap, without affecting hepatic venous blood flow. Increases in interleukin-6, leukocyte count, and oxygen uptake index, all of which developed after CPB, were significantly less in the milrinone group than in the control group. CONCLUSION: These results suggest that in patients undergoing hypothermic CPB, supplemental low-dose milrinone prevents gastric intramucosal acidosis and increases in some markers of systemic inflammation.

Body Temperature↗

Propofol inhibits FMLP-stimulated phosphorylation of p42 mitogen-activated protein kinase and chemotaxis in human neutrophils.

Propofol is used in the peri-operative setting and may affect some neutrophil functions. The effects of propofol on the function and intracellular signal transduction systems of neutrophils is controversial. Mitogen-activated protein kinase families (MAPKs) are members of the intracellular signal-transducing systems in eukaryotes. MAPKs have been shown to be involved in neutrophil chemotaxis by the use of PD98059, the specific inhibitor of MAPK/ERK kinase (MEK). The effects of propofol in dimethyl sulfoxide on phosphorylation of MAPKs and chemotaxis were investigated in human neutrophils. Isolated neutrophils (2 x 10(7) cells per ml) from healthy volunteers were incubated with propofol (2-500 microM) and stimulated by N-formyl-L-methionyl-phenylalanine (FMLP) (100 nM). The effects of propofol on the phosphorylation of p44/42 MAPK were investigated by immunoblotting. The effects of FMLP (1 microM) on chemotaxis were investigated with the under-agarose method. The phosphorylation of p42 MAPK and chemotaxis stimulated by FMLP were both inhibited by propofol at clinically relevant concentrations (> or = 10 and > or = 20 microM respectively). PD98059 (50 microM) also inhibited chemotaxis stimulated by FMLP, suggesting the involvement of p42 MAPK in the response. Propofol might therefore inhibit human neutrophil chemotaxis, at least in part, by suppressing the p44/42 MAPK pathway.

Anesthetics, Intravenous↗

Effects of sevoflurane and isoflurane on electrocorticographic activities in patients with temporal lobe epilepsy.

To compare the neuroexcitatory effects of sevoflurane and isoflurane, we recorded electrocorticograms (ECoG) during wakefulness and during sevoflurane and isoflurane anesthesia in six patients with temporal lobe epilepsy (TLE). These patients had subdural grid electrodes chronically implanted in the temporal region. During sevoflurane anesthesia at 1.5 minimum alveolar concentration (MAC) of the combination with 67% nitrous oxide (N2O), a marked increase in interictal paroxysmal activities was observed in four patients. Two patients had a slight increase in paroxysmal activities. Activated areas were widely distributed, not being confined to the ictal onset zone of spontaneous seizures. However, isoflurane anesthesia at 1.5 MAC of the combination with 67% N2O was associated with less increased paroxysmal activity. While the neuroexcitatory properties of sevoflurane proved greater than those of isoflurane, the widespread irritative response to sevoflurane administration was not helpful in localizing the epileptogenic area.

Adolescent↗

Late occurrence of diffuse cerebral swelling after intracerebral hemorrhage in a patient with the HELLP syndrome--Case report.

Hemolysis, elevated liver enzymes, and low platelet count (HELLP) syndrome can occur at any time in the course of pregnancy and is associated with many complications including fatal stroke. A 37-year-old female presented with HELLP syndrome causing an intracerebral hematoma, which was treated by evacuation and mild hypothermia. Unexpected diffuse cerebral swelling occurred on the 15th day of the initially favorable postoperative course. Considerable impairment of consciousness persisted despite conservative therapy. Serial computed tomographic findings indicated delayed cerebral vasospasm as the cause of the swelling. Particularly careful management is required even beyond the first 2 weeks for patients with stroke as a complication of HELLP syndrome.

Adult↗

[Perioperative mortality and morbidity for the year of 1999 in 466 Japanese Certified Anesthesia-training Hospitals: with special reference to ASA-physical status--report of Committee on Operating Room Safety of Japan Society of Anesthesiologists].

Perioperative mortality and morbidity in Japan for the year 1999 were studied retrospectively. Committee on Operating Room Safety of the Japan Society of Anesthesiologists (JSA) sent confidential questionnaires to 774 Certified Training Hospitals of JSA and received answers from 60.2% of the hospitals. We analyzed their answers with special reference to ASA physical status (ASA-PS). The total number of anesthetics analyzed was 655, 644. Mortality and morbidity due to all kinds of causes including anesthetic management, intraoperative events, co-existing diseases, and operation were as follows. The incidence of cardiac arrest (per 10,000 anesthetics) was 0.68, 3.76, 14.37, 67.03, 0.36, 4.68, 27.96, 206.30 in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. The incidences of critical events including cardiac arrest, severe hypotension, and severe hypoxemia were 8.93, 26.99, 71.30, 188.52, 8.68, 31.27, 136.16, and 790.92 in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. The mortality rates (death during anesthesia and within 7th postoperative day) after cardiac arrest were 0.16, 0.94, 5.71, 33.51, 0.00, 1.46, 16.41 and 167.76 per 10,000 anesthetics in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. The overall mortality rates were 0.24, 1.66, 12.16, 67.03, 0.00, 3.51, 34.65 and 417.14 in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. Overall mortality and morbidity were higher in emergency anesthetics than in elective anesthetics. ASA-PS correlated well with overall mortality and with morbidity, regardless of etiology. The incidences of cardiac arrest totally attributable to anesthesia were 0.24, 0.45, 1.47, 8.38, 0.36, 1.75, 2.43 and 11.34 in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. The incidences of all critical events totally attributable to anesthesia were 4.92, 8.81, 14.74, 20.95, 4.34, 11.40, 15.80 and 22.67 in patients with ASA-PS of I, II, III, IV, I E, II E, III E, and IV E, respectively. The mortality rates after cardiac arrest totally attributable to anesthesia were 0.00, 0.00, 0.61 and 4.53 in patients with ASA-PS of I-IV, I E-II E, III E, and IV E, respectively. The overall mortality rates totally attributable to anesthesia were 0.00, 0.04, 0.18, 0.00, 0.00, 0.61 and 4.53 in patients classified to ASA-PS of I, II, III, IV, I E-II E, III E, and IV E, respectively. Only one death, due to overdose of anesthetics, was reported among patients with good physical status (ASA-PS of I, II, II E and II E). Anesthetic management was mainly responsible for critical events in patients with good physical status, while co-existing diseases were in those with poor physical status. The major co-existing diseases or conditions leading to critical events were heart diseases in elective anesthetics, and hemorrhagic shock in emergency anesthetics. We reconfirmed that ASA-PS is beneficial to predict perioperative mortality and morbidity. It also seems likely that we should make much more efforts to reduce anesthetic morbidity in patients with good physical status, and to improve preanesthetic assessment and preparation of cardiovascular conditions in those with poor physical status.

Anesthesiology↗

[Perioperative mortality and morbidity in 1999 with a special reference to age in 466 certified training hospitals of Japanese Society of Anesthesiologists--report of Committee on Operating Room Safety of Japanese Society of Anesthesiologists].

Perioperative mortality and morbidity in Japan from Jan. 1 to Dec. 31, were studied retrospectively. Committee on Operating Room Safety of Japanese Society of Anesthesiologists (JSA) sent confidential questionnaires to 774 Certified Training Hospitals of JSA and received answers from 60.2% of the hospitals. We analyzed their answers with a special reference to the age group. The total number of anesthetics available for this analysis was 732,788. All cases were divided in to 7 groups; group A(< 1 months), group B(< 12 months), group C(< 5 years), group D(< 18 years), group E (< 65 years), group F(< 85 years), and group G(> 85 years). The incidences of all critical events including cardiac arrest, severe hypotension, and severe hypoxemia were 168.14, 47.86, 24.63, 14.65, 28.43, 50.4, and 43.68 per 10,000 in patients with group A, B, C, D, E, F, and G, respectively. The overall mortality rate (death during anesthesia and within 7th postoperative day) were 74.10, 6.63, 3.30, 3.07, 4.82, 13.74, and 11.84 per 10,000 anesthetics in patients with group A, B, C, D, E, F, and G, respectively. The incidences of cardiac arrest were 54.15, 8.84, 5.08, 2.56, 4.84, 11.02, and 6.66 per 10,000 in patients with group A, B, C, D, E, F, and G, respectively. The mortality rates after cardiac arrest were 42.75, 2.95, 2.54, 1.70, 2.00, 6.56, and 5.18 in patients with group A, B, C, D, E, F, and G, respectively. The incidences of all critical events, the incidence of cardiac arrest, and the overall mortality rate were much higher in group A than other groups and lower in group D. Mortality and morbidity due to all kinds of causes including anesthetic management, intraoperative events, co-existing diseases, and operation were as follows. The incidence of all critical events attributable to co-existing disease were the highest in these four groups, and 94.04, 15.46, 7.87, 6.13, 7.26, 17.38, and 16.29 per 10,000 in patients with group A, B, C, D, E, F, and G, respectively. The incidences of all critical events attributable to anesthetic management were 31.35, 16.94, 4.60, 6.09, 10.77, and 14.07 per 10,000 in patients with group A, B, C, D, E, F, and G, respectively. The incidence of cardiac arrest in group A was much more attributable to co-existing disease and operation than other causes. The incidences of cardiac arrest attributable to anesthetic management were 0.00, 1.47, 0.25, 0.34, 0.83, 0.92, and 0.22 per 10,000 in patients with group A, B, C, D, E, F, and G, respectively. The mortality rates in these groups were 0.00, 0.00, 0.00, 0.17, 0.07, 0.05, and 1.48, and no death was found in cases under 5 years of age. The two cases of death in G group were due to too high anesthesia levels in spinal anesthesia. Other causes including overdose of anesthetics, toxic effect of local anesthetic, improper management of airway, and incompatible blood transfusion were preventable with the anesthesiologists' effort in protocol development and skilled assistance.

Adolescent↗

[Annual report of perioperative mortality and morbidity for the year 1999 with a special reference to anesthetic methods at Certificated Training Hospitals of Japanese Society of Anesthesiologists].

The Committee on Operating Room Safety of Japanese Society of Anesthesiologists (JSA) sends annually confidential questionnaires of perioperative mortality and morbidity to Certificated Training Hospitals of JSA. This report is on perioperative mortality and morbidity in 1999 with a special reference to anesthetic methods. Four hundred and sixty-seven hospitals reported the number of cases referred to anesthetic methods and total numbers of cases were 727,723. The incidences of cardiac arrest per 10,000 cases due to all etiology are estimated to be 6.77 cases in average, 5.33 cases in inhalation anesthesia, 34.26 cases in total intravenous anesthesia (TIVA), 5.26 cases in inhalation anesthesia plus epidural or spinal or conduction block, 5.29 cases in TIVA plus epidural or spinal or conduction block, 0.73 cases in spinal with continuous epidural block (CSEA), 2.85 cases in epidural anesthesia, 1.63 cases in spinal anesthesia, 2.53 cases in conduction block and 46.51 cases in other methods. However, the incidences of cardiac arrest per 10,000 cases totally attributable to anesthesia are estimated to be 0.78 case in average, 0.51 case in inhalation anesthesia, 1.35 cases in TIVA, 0.97 case in inhalation anesthesia plus epidural or spinal or conduction block, 1.51 cases in TIVA plus epidural or spinal or conduction block, 0.73 case in CSEA, 1.71 cases in epidural anesthesia, 0.54 case in spinal anesthesia, 2.52 cases in conduction block and 1.08 cases in other methods. The incidences of severe hypotension per 10,000 cases due to all etiology are estimated to be 16.64 cases in average, 13.61 cases in inhalation anesthesia, 100.36 cases in TIVA, 13.32 cases in inhalation anesthesia plus epidural or spinal or conduction block, 9.07 cases in TIVA plus epidural or spinal or conduction block, 3.65 cases in CSEA, 6.26 cases in epidural anesthesia, 7.31 cases in spinal anesthesia, 2.52 cases in conduction block and 28.12 cases in other methods. On the other hand, the incidences of cardiac arrest per 10,000 cases totally attributable to anesthesia are estimated to be 2.40 cases in average, 1.65 cases in inhalation anesthesia, 0.81 cases in TIVA, 3.92 cases in inhalation anesthesia plus epidural or spinal or conduction block, 2.77 cases in TIVA plus epidural or spinal or conduction block, 2.56 cases in CSEA, 3.42 cases in epidural anesthesia, 2.71 cases in spinal anesthesia, zero case in conduction block and zero case in other methods. The incidences of severe hypoxia per 10,000 cases due to all etiology are estimated to be 5.32 cases in average, 6.7 cases in inhalation anesthesia, 9.17 cases in TIVA, 5.16 cases in inhalation anesthesia plus epidural or spinal or conduction block, 4.53 cases in TIVA plus epidural or spinal or conduction block, 2.56 cases in CSEA, zero case in epidural anesthesia, 1.08 cases in spinal anesthesia, zero case in conduction block and 1.08 cases in other methods. On the other hand, the incidences of severe hypoxia per 10,000 cases totally attributable to anesthesia are estimated to be 2.39 cases in average, 3.22 cases in inhalation anesthesia, 2.43 cases in TIVA, 2.26 cases in inhalation anesthesia plus epidural or spinal or conduction block, 2.77 cases in TIVA plus epidural or spinal or conduction block, zero case in CSEA, zero case in epidural anesthesia, 0.54 cases in spinal anesthesia, zero case in conduction block and 1.08 cases in other methods. The mortality rates of cardiac arrest per 10,000 cases due to all etiology are estimated to be 3.56 cases in average, 2.82 cases in inhalation anesthesia, 24.55 cases in TIVA, 1.4 cases in inhalation anesthesia plus epidural or spinal or conduction block, 1.51 cases in TIVA plus epidural or spinal or conduction block, zero cases in CSEA, 0.57 cases in epidural anesthesia, 0.27 cases in spinal anesthesia, zero case in conduction block and 42.18 cases in other methods. On the other hand, the mortality rates of cardiac arrest per 10,000 cases totally attributable to anesthesia are estimated to be 0.08 case in average, 0.09 case in inhalation anesthesia, 0.27 case in TIVA, 0.05 case in inhalation anesthesia plus epidural or spinal or conduction block, zero case in TIVA plus epidural or spinal or conduction block, zero case in CSEA, 0.57 case in epidural anesthesia, zero case in spinal anesthesia, conduction block and other methods. The outcomes of cardiac arrest totally attributable to anesthesia are 70.2% of full recovery without any sequelae, 10.5% of death within 7 days, 1.8% of vegetative state and 17.5% of unknown results while the outcome of critical events including severe hypotension and severe hypoxia totally attributable to anesthesia is 94.9% of full recovery without any sequelae, 0.4% of death within 7 days, 0.2% of vegetative state and 4.5% of unknown results. These results indicate that there are no differences in mortality and morbidity totally attributable to anesthesia among anesthetic methods in 1999 at Certificated Training Hospitals of Japan Society of Anesthesiologists.

Anesthesia↗

Effect of coronary artery bypass grafting with gastroepiploic artery on gastric intramucosal pH and systemic inflammation.

BACKGROUND: The purpose of this study was to investigate the effect of coronary arterial bypass grafting (CABG) with gastroepiploic artery (GEA) on gastric intramucosal pH and systemic inflammation. METHODS DESIGN: retrospective study. SETTING: University hospital. PARTICIPANTS: 22 patients underwent CABG. INVESTIGATIONS: the GEA group (n=13) received CABG with the GEA graft. The non-GEA group (n=9) received conventional CABG without the GEA graft. MEASUREMENTS: gastric intramucosal pH (pHi) and carbon dioxide tension (PrCO(2)) were assessed by capnometric air tonometry. The difference between PrCO(2) and PaCO(2), PCO(2)-gap, was also determined. Systemic inflammatory responses were evaluated by serum interleukin-6 (IL-6) and leucocyte counts. Hemodynamics, oxygen delivery index (DO(2)I) and uptake index (VO(2)I) were monitored with catheters in the radial and pulmonary arteries (thermodilution). RESULTS: The duration of aortic cross-clamping and cardiopulmonary bypass was similar in both groups. Both groups did not show any significant difference in gastric pHi, PCO(2)-gap, systemic inflammation and hemodynamics. CONCLUSIONS: Our findings suggest that CABG using the GEA graft does not disturb gastric mucosal perfusion, and that laparotomy for the GEA graft does not aggravate systemic oxygen demand-supply imbalance or systemic inflammatory responses induced by hypothermic CPB. CABG with the GEA graft does not seem to pose an additional risk and is a safe technique compared with conventional CABG with regard to pHi and systemic inflammation.

Aged↗

[Perioperative mortality and morbidity for the year 1999 in 466 Japanese certified anesthesia-training hospitals: with special reference to operative regions--report of Committee on Operating Room Safety of Japanese Society of Anesthesiologists].

Perioperative mortality and morbidity in Japan for the year 1999 were analyzed retrospectively with special reference to operative regions. The total number of analyzed cases was 701,940. The percentages for each operative region were as follows, craniotomy 4.5%, thoracotomy 3.3%, heart and great-vessels 3.9%, thoracotomy with laparotomy 0.8%, laparotomy except caeserian-section 31.7%, ceserian-section 3.2%, head-neck and otolarynx 14.5%, chest-abdomen-perineum 11.1%, spine 3.5%, extremity including peripheral-vessel 16.5%, and others 6.9%. The incidence of serious events, including cardiac arrest and severe hypotension and hypoxemia suggesting impending cardiac arrest was 34.58 per 10,000 cases in all operative regions. The events were observed more frequently in heart and great-vessels 247.26, thoracotomy with laparotomy 128.91 and thoracotomy 61.55, and less frequently in chest-abdomen-perineum 13.52 and extremity including peripheral-vessel 16.99. Regarding the prognosis of events, the cases with no sequela were 69.9% in all operative regions. While there were fewer cases with no sequela in craniotomy 50.4%, thoracotomy with laparotomy 54.3% and heart and great-vessels 58.6%, there were more cases in head-neck and oto-larynx 95.2% and chest-abdomen-perineum 90.5%. The incidence of serious events totally attributable to anesthetic management was 7.79 per 10,000 cases in all operative regions. The events were observed more frequently in thoracotomy 12.82, heart and great-vessels 12.29 and spine 11.06, and less frequently in extremity including peripheral-vessel 5.17 and chest-abdomen-perineum 6.05. Regarding the prognosis of events, the cases with no sequela were 93.1% in all operative regions. There were fewer cases with no sequela in thoracotomy with laparotomy 80.0% and craniotomy 81.8%. The main cause of events in thoracotomy and spine was the inadequate airway management, and in heart and great-vessels was the overdose or miss-selection of drugs. Although the incidence of serious events totally attributable to anesthetic management was one fourth of all events, most of them resulted from human factors. Thus, the more efforts are necessary to improve the outcomes. While the total deaths from 701,940 cases, including death on the operation day or within 7 days after it, were 528 cases (7.52 per 10,000 cases), the deaths totally attributable to anesthesia were 7 cases (0.10 per 10,000 cases).

Anesthesia↗

[Clinical trial of bradykinin-enhancing chemotherapy for a recurrent malignant glioma: a case report].

Patients with malignant glioma undergo a combined treatment with surgical resection, radiotherapy, and chemotherapy. Although those treatments usually show some restraining effects on the tumor, a relapse occurs in most of the patients within a few years. We have investigated the feasibility and safety of intra-arterial chemotherapy for malignant brain tumors by enhancing vascular permeability using intra-arterial bradykinin infusion. In 2001, The Committee of Ethics in Kyushu University approved our clinical trial of the bradykinin-enhancing chemotherapy for recurrent malignant gliomas. We here report the first case of our clinical trial. A 31-year-old man, who had undergone surgical resection followed by chemotherapy and irradiation for malignant progression of the left frontal astrocytoma over a period of 2 years, had a relapse of the tumor in the bilateral frontal lobes. After obtaining informed consent, bradykinin and carboplatin were infused through a microcatheter at the left A1 portion under general anesthesia. By dose escalation of bradykinin, the enhanced lesion in the bilateral frontal lobes diminished on magnetic resonance imaging after 3 trials with 3-week intervals, regardless of new lesions outside of the treated area. No neurological or physiological complication including myelosuppression was noted. Bradykinin-enhancing chemotherapy appeared to be effective and safe for malignant glioma. Because it was able to increase drug delivery to the tumor, it was possible to reduce the size of the dose of chemotherapeutic agent, which resulted in minimum complication.

Adult↗

[Annual study of perioperative mortality and morbidity for the year of 1999 in Japan: the outlines--report of the Japan Society of Anesthesiologists Committee on Operating Room Safety].

Anesthetic mortality and morbidity in Japan Society of Anesthesiologists (JSA) Certified Training Hospitals (CTH) for the year 1999 were reported as continuation of annual studies started in 1993. The JSA Committee on Operating Room Safety (CORS) sent confidential questionnaires to 774 CTH and received valid responses from 60.3% of hospitals. A total number of 793,840 anesthetics were documented. The respondents were asked to report all cases of cardiac arrests and other critical incidents (serious hypotension, serious hypoxemia and others), and their outcomes (death in operating room, death within 7 days, transfer to vegetative state and rescue without sequelae) as well as one principal cause for each incident from list of 52 items. They were also requested to submit the tabulation of patients by ASA physical status, age distribution, surgery sites and anesthetic methods. Analysis was made by total incidents under anesthesia/surgery, and also by incidents totally attributable to anesthetic management (AM), due to preoperative complications (PC), due to intraoperative pathological events (IP) and due to surgery (SG), with special reference to each of four tabulation groups and the whole group of patients. This paper focused analysis on all patients, as analyses with special reference to ASA physical status, age distribution, surgery sites and anesthetic methods were previously reported. Total incidence of cardiac arrest under anesthesia/surgery was 6.53 per 10,000 anesthetics. PC, IP and SG represented principal causes in 42.9%, 22.0% and 21.4% causes of total cardiac arrest cases, respectively. AM was noted as the principal cause in 12.0% of cases, with an incidence rate of 0.78 per 10,000. In 52 more detailed classification of principal causes, the most frequent cause of cardiac arrest was preoperative hemorrhagic shock, 20.3% of all cardiac arrests. The second cause was massive hemorrhage and/or hypovolemia due to surgical procedures (13.1%), and the third was intraoperative myocardial infarction/coronary ischemia/coronary spasm (9.5%). Prognoses of cardiac arrest cases declined due to PC: 71.1% of cardiac arrests died in the operating room or within 7 days after surgery and only 19.8% survived without sequelae. The best prognoses were found in cardiac arrest cases due to AM: 69.4% survived without sequelae and 12.9% died. The mortality rate post-cardiac arrest was 3.44 per 10,000 anesthetics, of those 0.10 due to AM, 0.57 due to IP, 1.99 due to PC and 0.76 due to SG. The mortality rate after critical incidents other than cardiac arrest such as severe hypotension and severe hypoxemia was 3.75, of those 0.03 due to AM, 0.28 due to IP, 2.31 due to PC and 1.13 due to SG. The final mortality rate attributable to anesthesia/surgery including deaths post-cardiac arrest and after other critical incidents was 7.19 per 10,000 anesthetics and very close to 7.18 [6.22, 8.13], that of mean [95% C.I.] in 1994-1998. The final mortality rate totally attributable to anesthesia was 0.13 per 10,000 anesthetics, which was significantly improved from 0.21 [0.15, 0.27], that of mean [95% C.I.] in 1994-1998. IP, PC and SG showed the final mortality rate of 0.84, 4.30 and 1.89, respectively. Five major causes of all critical incidents were massive hemorrhage due to surgical procedures (20.8%), preoperative hemorrhagic shock (10.7%), surgical technique (8.0%), inappropriate airway management (5.2%) and intraoperative myocardial infarction and coronary ischemia (4.5%). Drug overdose or selection error (3.9%) and overdose of main anesthetic (2.9%) as a result of human error occupied the 7th and 10th places. As far as anesthetic management to reduce mortality and morbidity related to anesthesia is concerned, we should increase vigilance to avoid human errors in addition to improving preanesthetic preparations and assessment of cardiovascular status as well as intraoperative management of cardiovascular events.

Anesthesia↗

[Lack of communication between anesthesiologists and surgeons: comparison of questionnaire survey among anesthesiologists with that among surgeons concerning pre-anesthetic evaluation of surgical patients].

We conducted a survey to examine surgeons' opinions and criticisms of patient evaluations done by anesthesiologists prior to surgery. We sent questionnaires to 117 departments of general surgery in Japanese university hospitals. We received answers from 77% of the departments. We analyzed their answers, and compared the answers with those from a similar survey done in 1995 by Japan Society of Anesthesiology, one in which anesthesiologists were asked to evaluate themselves. Our most significant findings were as follows. (1) Although most of surgeons were satisfied with their own preanesthetic evaluation of their patients, 30% of the departments reported postponement of surgery due to the need of further examination during recent 2 months and the occurrence of peri-operative myocardial infarction during recent 2 years, (2) The 1995 survey indicated that 46 percent of anesthesiology departments had explained the major perioperative risk, but a half of the 46% had done so without discussing the risk with responsible surgeons. Furthermore, the present survey showed that only 17% of the surgery departments had been aware of such explanation done by anesthesiologists. (3) One-third of the anesthesiology departments did not document the text of the preanesthetic explanation to patients. In our opinion, the final responsibility for the patient's peri-operative care is primarily the surgeon's at present in Japan, although each specialist including the anesthesiologist and the cardiologist should share the responsibility. If the anesthesiologist explain the major peri-operative risk to the patient without first obtaining the surgeon's permission to do so, the patient may become confused about who is responsible for his or her care. It should be made clear to the patient what responsibility each doctor has. It is also important that all explanations given to a patient and the consent to anesthesia given by a patient be properly documented. Japanese anesthesiologists and surgeons need to work far more closely together with regard to pre-anesthetic evaluation and explaining patients about their peri-operative risk.

Anesthesiology↗

Detection of retroperitoneal hemorrhage by transesophageal echocardiography during cardiac surgery.

PURPOSE: To present a case of massive retroperitoneal hemorrhage during cardiopulmonary bypass (CPB) which was detected using transesophageal echocardiography (TEE). CLINICAL FEATURE: A 50-yr-old man suffering from severe mitral regurgitation (MR) was admitted for mitral valvuloplasty. After the beginning of CPB, the volume in the reservoir was noticed to be gradually decreasing. Although venous cannulation had been properly performed, TEE showed an echo free space around the liver, the spleen and in front of the abdominal aorta showed intraabdominal hemorrhage. After cardiac surgery, emergency laparotomy revealed about 5,000 ml of blood in the retroperitoneal space probably as a result of femoral artery cannulation prior to CPB. Hemostasis was achieved, and the patient made complete cardiac and neurological recovery. Retrospective review of the TEE imaging revealed that the kidneys were surrounded by blood bilaterally confirming the diagnosis of retroperitoneal hemorrhage. CONCLUSION: Retroperitoneal hemorrhage during CPB is rare, but may be lethal. Transesophageal echocardiography is a useful monitor not only to evaluate cardiac performance, but also to detect unexpected intraabdominal bleeding during cardiac surgery.

Abdomen↗