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L Quinzio

Publications and source records attributed to L Quinzio.

15 recordsLinked to original sources

[Registration of material consumption in anesthesia using a data management system].

BACKGROUND: The aim of this study was to investigate whether an Anesthesia Information Management System (AIMS) can provide reliable data on the consumption of single-use anesthetic material without necessitating an expensive and time-consuming inventory. To this end, the number of selected anesthesia-related materials and the total costs in orthopedic theatres for which the department of anesthesia had been charged in the year 2000 were compared to the data calculated by the AIMS. METHODS: Anesthesia-related material is provided by a computer-based system of storage facilities (KLIMA II) in the Department of Anesthesiology and Intensive Care Medicine at the University Hospital Giessen. All costs arising in orthopedic theatres are exclusively charged to one single account. At the same time, the online-documentation software, NarkoData (IMESO GmbH, Hüttenberg, Germany), collects all data on consumption of anesthetic single-use material. The total amount of peripheral (PVC) and central-venous catheters (CVC), urinary catheters (UC) and endotracheal tubes (ET) used in the year 2000 was ascertained by the AIMS and compared to the respective data accounted by the administration. RESULTS: In the year 2000, the number of patients treated in orthopedic theatres totaled 1,865. By means of the AIMS, a consumption of 783 CVCs, 644 UCs and 949 ETs could be documented. In contrast, hospital administration had billed 880 CVCs, 700 UCs, and 1,050 ETs: discrepancies of 11.0 % for CVCs, 8.0 % for UCs and 9.6 % for ETs. Concerning the two most frequently used CVCs, the AIMS failed to document costs of 3,238 DM. For PVCs (16 gauge and 14 gauge), the official cost was 10.8 % and 46.7 % higher compared to the number documented by the AIMS. Since the number of PVCs totaled 3,400, the AIMS failed to document costs of 1,900 DM. CONCLUSION: Comparison of both methods revealed substantial deficits in documenting cost-relevant materials. There were no detailed data available on the whereabouts of the materials used, i.e. whether tubes and catheters were undocumented, used or discarded. However, the AIMS may provide additional valuable information about possible sources of material wastefulness. This is especially true for infrequently used anesthesia-related materials.

Anesthesiology↗

An Anesthesia Information Management System (AIMS) as a tool for controlling resource management of operating rooms.

OBJECTIVES: In our department, we have been using an Anesthesia Information Management System (AIMS) for five years. In this study, we tested to what extent data extracted from the AIMS could be suitable for the supervision and time-management of operating rooms. METHODS: From 1995 to 1999, all relevant data from 103,264 anesthetic procedures were routinely recorded online with the automatic anesthesia record keeping system NarkoData. The program is designed to record patient related time data, such as the beginning of anesthesia or surgical procedure, on a graphical anesthesia record sheet. The total number of minutes of surgery and anesthesia for each surgical subspecialty per hour/day and day of the year was calculated for each of the more than 40 ORs, amounting to a total of 112 workstations. RESULTS: It was possible to analyze the usage and the utilization of ORs at the hospital for each day of the year since 1997. In addition, annual and monthly evaluations are made available. It is possible to scrutinize data of OR usage from different points of view: queries on the usage of an individual OR, the usage of ORs on certain days or the usage of ORs by a certain surgical subspecialty may be formulated. These data has been used repeatedly in our hospital for decision making in OR management and planning. CONCLUSIONS: In assessing the results of our study, it should be considered that the system used is not a specialized OR management tool. Despite these restrictions, the system contains data which can be used for an exact and relevant presentation of OR utilization.

Anesthesiology↗

Influence of the method of data collection on the documentation of blood-pressure readings with an Anesthesia Information Management System (AIMS).

The influence of methods for record keeping on the documentation of vital signs was assessed for the Anesthesia Information Management System (AIMS) NarkoData. We compared manually entered blood-pressure readings with automatically collected data. These data were stored in a data-base and subsequently evaluated and analyzed. The data sets were split into two groups, "manual" and "automatic". We evaluated the effect of automatic data collection on the incidence of corrected data, data validity and data variation. Blood-pressure readings of 37,726 data sets were analyzed. We could assess that the method of documentation did influence the data quality. It could not be assessed whether the incorrectness of data during automatic data gathering was caused by artefacts or by the anesthesiologist.

Anesthesiology↗

[Using an anesthesia information management system (AIMS) for documentation in a day care unit for ambulatory surgery].

UNLABELLED: From January 1997 until June 1999, the complete durations of stay of 3152 outpatients were entered into a computerized documentation system. The scope of the data entry went from patient admission to patient release. The objective was to determine the usefulness of the anaesthesia information management system (AIMS) in producing complete and high-quality documentation in the field of outpatient operations. Some aspects and results from routine work are presented here. METHOD: The system was installed in eight bedside computers, in addition to a further client connected to the existing AIMS via Ethernet. Patient medical courses were documented both preoperatively and postoperatively in outpatient bedsides until their discharge or admission. The online documentation software NarkoData (Version 4, Imeso GmbH, Hüttenberg, Germany) was used to document and store patient data in a database. This program contains all relevant information concerning the course of anaesthesia and outpatient duration of stay, including application of drugs, vital signs, observation times, and medical findings as well as the data sets of the German Society of Anaesthesiology and Intensive Care Medicine (DGAI), ICD, and ICPM. Data was analyzed by exporting from the database into a statistical program using "structured query language." RESULTS: Data sets of 3152 outpatients were entered into the online documentation software. Most (54.2%) of the ambulatory surgical procedures were performed by the Department of Traumatology. General Surgery followed with 16.0%, and Urology managed 9.5% of the cases. The most frequent ambulatory surgical procedures were: diagnostic arthroscopy (923, 31.2%), removal of osteosynthetic material (410, 13.8%), and circumcision (250, 8.4%). Anesthesia procedures consisted of inhalative (38.6%, n = 1218) and intravenous anesthesia (IVA) (29.9%, n = 938). In 22.6% (713) of the cases, regional anaesthesia was performed. The average postoperative observation time was 289.2 +/- 140.1 minutes. One hundred sixty-nine patients (5.4%) were unexpectedly admitted to overnight care. The decision to admit patients to normal wards took place within the first 3 postoperative hours in 51.9% of the cases. CONCLUSION: The AIMS described above is sufficient in documenting the entire care process of patients in a day care unit. Integration into the existing AIMS was an important prerequisite for the integrity of the documentation chain. This allowed for a sensitive communication with other clinical data processing systems. The quality of documentation and flow of information at the workplaces in the day care unit were increased, similarly to other anaesthesiological workplaces in the hospital. Medical and administrative data and information for analyses of clinical processes are possible with such tools.

Adult↗

Clinical and practical requirements of online software for anesthesia documentation an experience report.

The aim of this paper is the presentation of a new version of the anesthesia documentation software, NarkoData, that has been used in routine clinical work in our department as part of an anesthesia information management system (AIMS) since 1995. The performance of this software is presented along with requirements for future development of such a system. The originally used version, NarkoData 3.0, is an online anesthesia documentation software established by the software company ProLogic GmbH. It was primarily developed as a disk-based system for the MacOS operating system (Apple Computer Inc.). Based on our routine experience with the system, a catalogue of requirements was developed that concentrated on improvement in the sequence of work, administration and data management. In 1996, the concepts developed in our department, in close co-operation with medical personnel and the software company, led to a considerable enlargement of the program functions and the subsequent release of a new version of NarkoData. Since 1997, more than 20 000 anesthesia procedures have been recorded annually with this new version at 115 decentralized work stations at our university hospital.

Anesthesiology↗

[From data entry to data presentation at a clinical workstation--experiences with Anesthesia Information Management Systems (AIMS)].

Anesthesia Information Management Systems (AIMS) are required to supply large amounts of data for various purposes such as performance recording, quality assurance, training, operating room management and research. It was our objective to establish an AIMS that enables every member of the department to independently access queries at his/her work station and at the same time allows the presentation of data in a suitable manner in order to increase the transfer of different information to the clinical workstation. Apple Macintosh Clients (Apple Computer, Inc. Cupertino, California) and the file- and database servers were installed into the already partially existing hospital network. The most important components installed on each computer are the anesthesia documenting software NarkoData (ProLogic GmbH, Erkrath), HIS client software and a HTML browser. More than 250 queries for easy evaluation were formulated with the software Voyant (Brossco Systems, Espoo, Finland). Together with the documentation they are the evaluation module of the AIMS. Today, more than 20,000 anesthesia procedures are recorded each year at 112 decentralised workstations with the AIMS. In 1998, 90.8% of the 20,383 performed anesthetic procedures were recorded online and 9.2% entered postopeatively into the system. With a corresponding user access it is possible to receive all available patient data at each single anesthesiological workstation via HIS (diagnoses, laboratory results) anytime. The available information includes previous anesthesia records, statistics and all data available from the hospitals intranet. This additional information is of great advantage in comparison to previous working conditions. The implementation of an AIMS allowed to greatly enhance the quota but also the quality of documentation and an increased flow of information at the anesthesia workstation. The circuit between data entry and the presentation and evaluation of data, statistics and results directly available at the clinical workstation was put into practice.

Anesthesia↗

Comparison of manual and automated documentation of adverse events with an Anesthesia Information Management System (AIMS).

In this study, an Anesthesia Information Management System (AIMS) is used for the comparison of manually recorded adverse events with automatically detected events from anesthesiological procedures. In 1998, data from all anesthesia procedures, including the data set for quality assurance defined by the German Society of Anesthesiology and Intensive Care Medicine (DGAI), were recorded online with the documentation software NarkoData 4 (IMESO GmbH, Hüttenberg, Germany) followed by storage into a relational database (Oracle Corporation). The occurrence of manually recorded adverse events, as defined by the DGAI, is compared with automatically detected events. Automated detection was done with SQL-statements. The following adverse events were selected: hypotension, hypertension, bradycardia, tachycardia and hypovolemia. Data obtained from 16,019 electronic anesthesia records show that in 911 patients (5.7%), one of the selected adverse events was documented manually whereas in 2,996 patients (18.7%) a adverse event was detected automatically. The incidence of automatically detected events is obviously higher compared to manually recorded events. With the help of an AIMS, automatic detection proved significant deficiencies in the manual documentation of adverse events.

Anesthesia↗

Data processing at the anesthesia workstation: from data entry to data presentation.

Main requirements for an Anesthesia Information Management System (AIMS) are the supply of additional information for the anesthesiologist at his workstation and complete documentation of the anesthetic procedure. With the implementation of an AIMS (NarkoData) and effective user support, the quality of documentation and the information flow at the anesthesia workstation could be increased. Today, more than 20,000 anesthesia procedures are annually recorded with the AIMS at 112 decentralized workstations. The network for data entry and the presentation and evaluation of data, statistics and results directly available at the clinical workstation was made operational.

Anesthesia↗

[Quality documentation with an Anaesthesia Information Management System (AIMS)].

OBJECTIVE: In 1994 the Department of Anaesthesiology and Intensive Care Medicine of the Justus Liebig University of Giessen decided to implement an Anaesthesia Information Management System (AIMS) to replace the previous hand-written documentation on paper. From 1997 until the end of 1998 the data sets of 41,393 anaesthesia procedures were recorded with the help of computers and imported into a data bank. Individual aspects and results of this data pool are presented under the aspect of how the system in its present form is able to guarantee documentation of quality according to the requirements of the German Society of Anaesthesiology and Intensive Care Medicine (DGAI). METHODS: Since 1997 information on all anaesthesia procedures has been documented "online" with the anaesthesia documentation software NarkoData 4 (ProLogic GmbH, Erkrath). The data sets have been stored in a relational data bank (Oracle Corporation) and statistically processed with the help of the SQL-based program Voyant (Brossco Systems, Espoo, Finland). As an example of two adverse perioperative events (AVB) we compared incidences of "hypotension" and "nausea/vomiting", recorded by staff members into the AIMS, with the incidence of comparable events that were recorded with the help of online data during anaesthesia procedures, such as blood pressure and drug application. Since 1998 data recording has been revised constantly in department meetings; advanced training has been given. The results have been analysed critically. RESULTS: In 1997 the incidence of adverse perioperative events entered manually into the system was 3.6% (grade III and higher 0.9%) and increased during 1998 to 22.2% (grade III and higher 1.9%). The frequency of anaesthesia procedures with manually documented AVBs was significantly below the incidence (determined with the help of online data) of comparable events: "hypotension" (1.8% vs. 8.5%) and "nausea/vomiting" (4.9% vs. 8.3%). CONCLUSION: The current documentation of AVBs in almost any hospital is incomplete. In contrast to the hand-written procedure, the AIMS provides recorded data for evaluation and guarantees more detailed and complete quality documentation. In addition, the effort needed for documentation is reduced. Whether these data sets really describe and measure quality or not has to be evaluated. In addition it has to be considered whether different requirements (such as automatic AVB recognition for an AIMS) are advantageous for quality documentation regarding the data raster and the AVB recognition, with respect to different documentation procedures.

Anesthesia↗

[Statistics and evaluation of a graphic SQL user interface in an anesthesia information management system (AIMS)].

PURPOSE: Since 1997, the Anaesthesia Information Management Systems (AIMS) in our department has produced extensive data material (DGAI core data, vital sign parameters, respiratory parameters, material consumed, etc.) which is stored in a relational data bank. The processing of this data by means of SQL queries was restricted to a few persons with special knowledge only. It was the objective of the project to create an evaluation tool which enables each member of the department to enter queries concerning topics such as efficiency records, quality management, training and research at any time. The tool was also intended to present results in an adequate form. METHODS: Since 1997, the data of the performed anaesthesia procedures have been recorded using the online anaesthesia documentation software NarkoData Version 4 (ProLogic GmbH, Erkrath) within the AIMS. The recorded data sets have been imported into a relational Oracle data bank (Oracle Corporation). The commercial programme Voyant (Brossco Systems, Espoo, Finland) enables for the user to formulate SQL-requests (Structured Query Language) with the help of a graphic user interface and to present the results in a variety of graphics and tables. Repetition of the evaluation using the current data is possible at any time. RESULTS: During 1997 and the first quarter of 1998, the data of 26,030 anaesthesia procedures have been registered and stored in the anaesthesiological data base. 235 queries could be formulated with the SQL-capable graphic tool Voyant. They are available to each member of the department by the application of NarkoStatistik (IMS GmbH, Giessen) within the AIMS, together with the corresponding documentation (HTML pages). The query catalogue covers the main topics of efficiency, quality management, organisation, diagnoses and surgery, pre-, intra- and postoperative data and day-care unit. Even without much previous experience with the system it is possible to carry out evaluations with the current data at selected AIMS terminals. Queries concerning other subjects can be created and can be integrated into the existing query catalogue. CONCLUSION: With the described application we are able to establish an evaluation tool which fulfils our expectations regarding user friendliness and the subjects the queries can cover. Today it has a central position within the AIMS. In addition to the anaesthesia documentation software and the data bank structure, the efficiency of an AIMS is mainly influenced by the corresponding evaluation tool.

Anesthesiology↗

[Experiences fo three year's routine operation of an anesthesia information management system (AIMS) at a university clinic in Giessin].

PURPOSE: In 1994, the Department of Anaesthesiology and Intensive Care Medicine of the Justus Liebig University at Giessen decided to install an Anaesthesia Information Management System (AIMS). Individual aspects and results from routine operation are presented, demonstrating the quality of the documentation and the value of information at the anaesthesiological workstation. The paper discusses which adaptations are necessary according to the experience gathered. METHODS: For the installation of the system Apple Macintosh Clients (Apple Computer, Inc., Cupertino, California) and a File Server were integrated into the partially existing hospital network. The hospital network had to be enlarged during the project according to the Anaesthesiological requirements. The software of the Hospital Information System (HIS) and an HTML browser were installed at individual workstation computers in addition to the Anaesthesia documentation software NarkoData (ProLogic GmbH, Erkrath). The remote control software Timbuktu (Farallon, Alameda, USA) has been added to facilitate remote administration. The file administration programme FileWave (Wave Research, Berkeley, USA) is used for file distribution. Since 1995, all anaesthesia procedures have been documented with the system, either by online or postoperative recording. Since 1997, the recorded information has been stored in a relational Oracle 7 data bank (Oracle Corporation). RESULTS: From 1995 to 1997, 60,405 anaesthesiological procedures have been recorded with the help of this AIMS at 111 decentralised workstations. In 1997, 87.8% of the 21,130 performed anaesthesia procedures have been recorded online with the system and 12.2% postoperatively. From 1995 to 1997, the number of recorded procedures increased by 6.4% from 19,854 to 21,130. Because of lacking interfaces at some patient monitoring stations, the automatic recording of patient data could only be implemented at 69 workstations (62%). With the corresponding access rights, important patient information from the HIS (diagnoses, laboratory results, etc.), records of previous Anaesthesia procedures, numerous statistics, and the whole information from the hospital's intranet (including e-mail) are available at the anaesthesiological workstation at any time. CONCLUSION: The implementation of the AIMS and an effective user support have been able to increase significantly the quality of documentation, the flow of information at the anaesthesia workplace and the number of recorded Anaesthesia procedures. All recorded data can be analysed immediately The expansion of the automatic data transfer from the patient monitoring, interfaces to other computer subsystems of the hospital and a practicable evaluation programme are necessary for further enhancing the efficiency of the AIMS.

Anesthesiology↗