Sonstige
Das Projekt Deutsche Datenbank Rettungsdienst beinhaltet die Entwicklung und Erprobung eines bundeseinheitlichen Referenzdatensatzes für den Rettungsdienst, dessen Basis die medizinisch logistische Verlaufsdokumentation rettungsdienstlicher Einsätze mittels DIVI-Protokollen bzw. alternativer Dokumentationsprotokolle darstellt. Im Anschluss an die Entwicklung eines Referenzdatensatzes für den Rettungsdienst wurden insgesamt 9.689 Einsatzprotokolle im Rahmen einer repräsentativen bundesweiten Stichprobe erfasst. Diese wurden hinsichtlich logistischer wie auch medizinischer Parameter ausgewertet. Führende Diagnosen im Einsatzspektrum waren akute Erkrankungen, insbesondere des Herzkreislaufsystems, des Zentralnervensystems und der Atmungsorgane. Unter den dokumentierten Verletzungen hatten Schädel-Traumata (ohne Berücksichtigung des Schweregrads) und Extremitätenverletzungen den größten Anteil. Analysen der Versorgungsqualität gemäß nationaler Leitlinien zeigten bei der notärztlichen Versorgung von Patienten mit akutem Koronarsyndrom überwiegend gute, bei der Versorgung vom schwer Schädel-Hirn-Verletzten unzureichende Befolgung der Therapie-Empfehlungen. Bei nicht-notärztlich versorgten Patienten werden in nennenswertem Umfang die Gabe von Infusionen und Medikamenten ohne Beteiligung eines Notarztes dokumentiert. Im Rahmen der Datenauswertung traten verschiedene Defizite hinsichtlich der Dokumentation rettungsdienstlicher Einsätze in Deutschland zu Tage, die sich überwiegend durch das Problem fehlender Angaben kennzeichnen ließen. Die Dokumentation von Rettungseinsätzen stellt demnach keineswegs eine Idealsituation dar, wie es die aktuelle Datenlage zeigt. Die Ergebnisse untermauern die Notwendigkeit eines bundeseinheitlichen Einsatzprotokolls zur Erfassung von Notfalleinsätzen mit und ohne Notarztbeteiligung, bei dem die Erkenntnisse aus diesem Forschungsprojekt eingebunden werden.
Untersucht werden die Möglichkeiten, die Wirkungen geplanter Verkehrssicherheitsmaßnahmen, die am "Faktor Mensch" ansetzen, anhand von Daten über Verkehrsverstöße aus dem VZR zu prognostizieren. Die Regel-, Sicherheits- und Partner-Orientierung des Verkehrsteilnehmers wird über sein Rechtsbewusstsein, über seine Fahrpraxis, über Bewährungsproben sowie abschreckende, verkehrserzieherische und verkehrseinschränkende Maßnahmen beeinflusst. Dies wirkt sich aus auf seine Vorbildfunktion sowie auf die Belastung, Behinderung, Belästigung, Gefährdung und Schädigung Anderer. Ein "Wirkungsmodell" stellt diese Zusammenhänge qualitativ dar. Für ein numerisches Modell fehlen heute noch weithin die empirischen Grundlagen zu den mathematischen Funktionsbeziehungen. Die prinzipielle Eignung der entwickelten Methode der computergestützten Simulation auf Basis von VZR-Daten kann in Tests belegt werden. Allerdings sind die Ergebnisse erst bei großen VZR-Stichproben hinreichend stabil. Zur Demonstration werden in zwei fiktiven Beispielen die Auswirkungen rechtlicher Änderungen auf die Verkehrssicherheit im Wirkungsmodell detailliert durchgespielt. Die Studie zeigt, dass bei heutigem Kenntnisstand über die zugrunde liegenden Zusammenhänge nur spezielle, eng umrissene Prognosefragestellungen aussagekräftige Resultate erwarten lassen. Jedoch in Verbindung mit punktuell eingesetzten Expertenurteilen kann das Wirkungsmodell die Verlässlichkeit einer Prognose gegenüber herkömmlicher Praxis wesentlich steigern oder aber, wenn dabei eindeutige Resultate ausbleiben " auch dies ist ein wertvolles Ergebnis " die Unsicherheit der Prognose und folglich die Fragwürdigkeit der geplanten Rechtsänderung offenbaren. Der Originalbericht enthält als Anhänge die Datengrundlage für die Segmentierung (1), die Bestimmung der Modellparameter "absolute und relative Häufigkeiten in der Stichprobe Referenzzugang 1995" (2 und 3), das Gesamtwirkungsmodell (4) sowie die Darstellung der Instanzen, Institutionen und behördlichen Maßnahmen (5). Auf die Wiedergabe dieser Anhänge wurde in der vorliegenden Veröffentlichung verzichtet. Sie liegen bei der Bundesanstalt für Straßenwesen vor und sind dort einsehbar. Verweise auf die Anhänge im Berichtstext wurden beibehalten.
Data concerning accidents involving personal injury which have been collected in the context of in-depth investigations on scene in the Hannover area since 1973 and in the Dresden area since 1999 represent an important basis for empirical traffic safety research. At national and international level various analyses and comparisons are carried out on the basis of "in-depth data" from the above mentioned investigations. In-depth data play a decisive role e.g. within the validation of EuroNCAP results on secondary safety (crashworthiness) of individual passenger car models. Thus, statistically sound methods of data analysis and population parameter estimation are of high importance. Since the 1st of August 1984 the "in-depth investigations on scene" in the Hannover area have been carried out according to a sampling plan developed by HAUTZINGER in the context of a research project on behalf of BASt. In the meantime a second region of in-depth investigation on scene was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for the two above mentioned surveys. The objective of a current research project (topic of this contribution) is, among other things, to examine and adjust the previous weighting and expansion method for the two regional accident investigations to the current general conditions.
The data situation for quantifying the proportion of accidents avoided by the introduction of active safety systems is incomplete, since there is generally no data available on the accidents avoided by the technology in question. In this paper, a split-register approach is suggested and compared with the classical case-control approach known from epidemiologic applications. Provided a set of assumptions hold, which can reasonably be made in such data situations, the split register approach allows inferences on the population accident risk. For both approaches the benefits of basing the analysis on the results of a logistic regression to adjust for confounding factors are outlined. The biasing effects of violating key assumptions are discussed and the split-register approach is demonstrated using the example of the active safety system ESP with data from the German in-depth accident study GIDAS.
Das Emissionsmodul des PC-Berechnungsverfahrens zur Abschätzung von verkehrsbedingten Schadstoffimmissionen (MLuS 02) basiert auf dem Handbuch für Emissionsfaktoren des Umweltbundesamtes. Aufgabe war die Berechnungen mit dem neuen Handbuch kompatibel zu machen. Die Aufgabenstellung gliederte sich in 3 Teile: i) Implementierung der neuen Version des Handbuchs in das Emissionsmodul , ii) Umwandlung des Emissionsmodul von ACCESS in Delphi, gleichzeitige Beseitigung von Inkonsistenzen in der Berechnung , iii) Implementierung des neuen Emissionsmoduls, Durchführung von Systemtests und Modifikationen, Aktualisierung des Merkblatts MLuS 02. Bei der Aktualisierung des Handbuches wurden folgende redaktionelle Änderungen vorgenommen: Herausnahme der 98-Perzentile - außer für das NO2 - im tabellarischen Ausdruck, Erstellung eines Installationsprogramms, Aktualisierung des Merkblatts MLuS 02 gemäß der vorgenommenen Fortschreibung. Im Vergleich zur vorherigen Version ergeben sich folgende Änderungen: Eingangsdaten und ihre Klassifizierung: Dem Emissionsmodul wurden bisher per ASCII-Schnittstelle die folgenden Eingangsdaten übergeben: Bezugsjahr, Gebiets-ID, Straßenkategorie-ID, Fahrbahnlängsneigungs-ID, Anzahl der Fahrspuren, DTV, DTV-ID, Lkw-Anteil, Lkw-Anteil-ID, Kraftstoffszenario-ID, Stop+Go-ID, Das Bezugsjahr wurde rückwirkend auf das Jahr 2000 begrenzt, so dass die Gebietsunterscheidung Ost/West entfallen kann. Längsneigungsklassen: Hinsichtlich der Längsneigungsklassen enthält das Modell die in Tabelle2 (siehe Längsneigungsklassen im Abschlussbericht) dargestellte Klassifizierung. Fahrzeugkategorien: Das Emissionsmodul unterscheidet intern folgende Fahrzeugkategorien: Pkw, Leichte Nutzfahrzeuge (Gesamtmasse bis 3,5 t), LNfz genannt, Schwere Nutzfahrzeuge (Gesamtmasse über 3,5 t), im folgenden SNfz genannt. Umwandlung des Emissionsmodul von ACCESS in Delphi: Nachdem die Änderungen im Emissionsmodul durchgeführt worden waren, wurden alle Visual Basic Codes von ACCESS nach Delphi verlagert. Implementierung des neuen Emissionsmoduls in das MLuS 02: Das Emissionsmodul wurde in das MLuS 02 Programm implementiert. Ruß wird aus dem MLuS entfernt (Außerkraftsetzung der 23. BImSchV).
The need for improved EU level accident information and data was identified in the EU White Paper on Transport Policy (2001)1 and detailed in the Road Safety Action Plan (2003)2. The plan specifies that the EC will develop a road safety observatory to coordinate data collection within an integrated framework.
In order to improve the protection of children transported in cars, within the CHILD programme (GR3D-CT2002-00791) real world road accidents are thoroughly analysed and then reconstructed in laboratory. Prior to comparing injury severities of real victims to physical parameter values measured on the dummies, the quality of the reconstructions is evaluated by experts who use their experience based on the investigation of numerous and various accidents. This paper presents a new tool aiming at better evaluating and validating accident reconstructions. It is based on statistical evaluation of vehicle deformations which gives weighing factors for every part of the car body structure finally leading to a specific Reconstruction Quality Score (RQS indicator). Furthermore, the reliability of this score, depending on the number of measured points, can be established. This tool includes a function aiming at adjusting the speed for a further reconstruction and at defining the launching speed and the pulse shape for complementary sled tests. Finally, the functions of the RQS software and database are presented.
This study is aimed to investigate the correlations of impact conditions and dynamic responses with the injuries and injury severity of child pedestrians by accident reconstruction. For this purpose, the pedestrian accident cases were selected from Sweden and Germany with detailed information about injuries, accident cars, and accident environment. The selected accident cases were reconstructed using mathematical models of pedestrian and passenger car. The pedestrian models were generated based on the height, weight, and age of the pedestrian involved in accidents. The car models were built up based on the corresponding accident car. The impact speeds in simulations were defined based on the reported data. The calculated physical quantities were analyzed to find the correlation with injury outcomes registered in the accident database. The reconstruction approaches are discussed in terms of data collection, estimating vehicle impact speeds, pedestrian moving speeds and initial posture, secondary ground impact, validity of the mathematical models, as well as impact biomechanics.
This paper describes the methodology of In-Depth Investigation in Germany on the example of GIDAS (German In-Depth Accident Study). Since 1999 in Germany a joint project between FAT (Forschungsvereinigung Automobiltechnik or Automotive Industry Research Association) and BASt (Bundesanstalt für Straßenwesen or the Federal Road Research Institute) is being carried out in Hannover and Dresden. The methodology of this project is based on a statistically orientated procedure of data sampling (sampling plan, weighting factors). The paper describes the possibilities of such in-depth investigation on the results of the offered title. The accident cases were collected randomly within GIDAS at Hannover. There are more cases existing from previous investigation started in 1985 under the same methodology. The portion of rollovers can be established at 3.7% of all accidents with casualties in the year 2000. For the study 434 cases of car accidents with rollovers are used for a detail comprehensive analysis. The accidents happened in the years 1994 to 2000 in the Hannover area. The injury distribution will report about 741 occupants with rollover accident event. The presented paper will give an overview of the accident situations following in rollover movements of cars. The distributions of injury frequencies, injury severity AIS for the whole body and for the body regions of occupants will be presented and compared to technical details like the impact speed and the deformation pattern. The speed of the car was determined at the point of rollover and on the point of accident initiency. The characteristics of the kinematics followed in a rollover movement are analyzed and the major defined types of rollover will be shown in the paper. The paper will describe the possibilities of In-Depth Investigation methods for the approach of finding countermeasures on the example of car accidents with rollover and explaining the biomechanics of injuries in rollover movements.
This paper reviews briefly the evolution of the investigation of transport accidents from the early beginnings when individual events were studied but systematic data was not collected. In the transport modes other than on the roads, accident investigation early on, even of single events, was important in introducing safety improvements. Road accidents, however, evolved enormously with the growth of car ownership without any comparable political response to the consequent deaths and injuries, equivalent to what happened with the other modes. From the 1950s data bases started to contribute to our knowledge of the epidemiology of road traffic injuries, and in-depth sample studies have contributed much to the body of knowledge in the last 30 years. However, even the basic input and output variables of a crash, its severity and the seriousness of the outcomes in terms of injuries and their consequences are not complete or agreed upon. Issues of experimental design and sampling are discussed. It is proposed that the most important area for current research to address is the effect of population variations on injury outcomes. The need for the establishment of good data bases for active safety issues is emphasised with the consequent need for better links between the research community and the police.
In the context of this study, different data sources for accident research were examined regarding their possible data access and evaluated concerning the individual quality and extent of the data. Analyses of accidents require detailed and comprehensive information in particular concerning vehicle damages, injury patterns and descriptions of the accident sequence. The police documentation supplies the basic accident statistics and is amended in the context of the forensic treatment by further information, e.g. by medical and technical appraisals and witness questionings. As a new approach to the data acquisition for the analysis of fatal traffic accidents, the information was made usable which was collected by the police and by the investigations of the public prosecutor. The best strategy for obtaining reliable, extensive and complete data consists of combining the information from these two sources: the very complete, but elementary statistic data of the Niedersächsisches Landesamt für Statistik (Lower Saxony State Authority of Statistics), based on the police documentation as well as the very extensive accident information resulting from the investigation documentation of the public prosecutor after conclusion of the procedure, the so-called Court Records. Of all 715 fatal traffic accidents, which happened in the year 2003 in the German State of Lower Saxony, 238 cases were selected by means of a statistically coincidental selective procedure based on a statistically representative manner (every third accident). These cases cover the investigation documents of the 11 responsible public prosecutor- offices, which were requested and evaluated while preserving the data security. Of the 238 cases 202 cases were available, which were individually coded and stored in a data base using 160 variables. Thus a data base of a sample of representative data for fatal accidents in Lower Saxony was set up. The data base contains extensive information concerning general accident data (35 variables), concerning road and road surface data (30 variables), concerning vehicle-specific data (68 variables) as well as concerning personal and injury data (27 variables).
Annually within the European Union, there are over 50,000 road accident fatalities and 2 million other casualties, of which the majority are either the occupants of cars or other road users in collision with a car. The European Commission now has competency for vehicle-based injury countermeasures through the Whole Vehicle Type Approval system. As a result, the Commission has recognised that casualty reduction strategies must be based on a full understanding of the real-world need under European conditions and that the effectiveness of vehicle countermeasures must be properly evaluated. The PENDANT study commenced in January 2003 in order to explore the possibility of developing a co-ordinated set of targeted, in-depth crash data resources to support European Union vehicle and road safety policy. Three main work activity areas (Work Packages) commenced to provide these resources. This paper describes some of the outcomes of Work Package 2 (WP2, In-depth Crash Investigations and Data Analysis). In WP2, some 1,100 investigations of crashes involving injured car occupants were conducted in eight EU countries to a common protocol based on that developed in the STAIRS programme. This paper describes the purposes, methodology and results of WP2. It is expected that the results will be used as a co-ordinated system to inform European vehicle safety policy in a systematic, integrated manner. Furthermore, the results of the data analyses will be exploited further to provide new directions to develop injury countermeasures and regulations.
76 severe traffic accidents had been investigated in depth in an ongoing Volkswagen-Tongji University joint accident research project in JiaDing district, Shanghai, PR China since June 2005. With a methodology similar to German accident research units in Dresden and Hannover, a research team proceeds to the scene immediately after the incident to investigate and collect various data on environment, accident occurrence, vehicle state and deformations as well as injuries. The data combined with the results of accident reconstruction will be stored in a database for further statistical and casuistic analysis. The first outcome of the project supports the hypothesis that a main causation for the large number of traffic accidents in China is the lacking of risk awareness in Chinese driver behaviour. Low seat-belt use and the high proportion of vulnerable and poorly protected two-wheelers in traffic are reasons for the high injury and fatality rate in China. The research work shows that accident research in China is feasible and able to give support to tackle one of the urging problems in Chinese development.
In Germany, in-depth accident investigations are carried out in the Hannover area since 1973. In 1999 a second region was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for these surveys. Compared to many other countries, the sample sizes of the GIDAS surveys are much larger. The goal is to collect 1.000 accidents involving personal injuries per year and region. Data collection takes place by using a sampling procedure, which can be interpreted as a two-stage process with time intervals as primary units and accidents as secondary units. An important question is, to what extend these samples are representative for the target population from which they are drawn. Analyses show, for example, that accidents with persons killed or seriously injured are overrepresented in the samples compared to accidents with slightly injured persons. This means, that these data are subject to biases due to uncontrolled variation of sample inclusion probability. Therefore, appropriate weighting and expansion methods have to be applied in order to adjust or correct for these biases. The contribution describes the statistical and methodological principles underlying the GIDAS surveys with respect to sampling procedure, data collection and expansion. In addition, some suggestions regarding potential improvements of study design are made from a methodological point of view.
NASS: the glass is half full
(2007)
The National Accident Sampling System (NASS) was born in the late 1970s. It was based on a substantial amount of experience and analysis of what was needed in the United States to understand the safety challenges of our highways. This work also showed how to collect high quality and useful crash data efficiently. Unfortunately, when Ronald Reagan - a President who believed in limited government - was elected, any hope of full funding for NASS was lost. The concept of 75 teams investigating about 18,000 serious crashes in detail annually was never realized. The system got up to 50 teams, then was cut to 36, and finally to 24 teams investigating fewer than a quarter of the originally anticipated number of crashes per year. Despite this, the NASS investigations provide a rich source of data, collected according to a sophisticated statistical sampling system to facilitate detailed national estimates of road casualties on our nation- highways and their causes. In addition, changes have been made in recent years to increase the number of more serious crashes of recent model vehicles to make the results more relevant to improving vehicle safety. A recent, detailed examination of hundreds of rollovers has provided considerable insight into rollover casualties and into what can be done to reduce them. Some of these results will be presented that show the value of the NASS system. Our experience with NASS and the Fatal Accident Reporting System (FARS) suggests a number of improvements that could be made in the United States" crash data systems. It also provides justification for a doubling or tripling of our national expenditures on crash data collection.
Due to recent years accident avoidance and crashworthiness on Austrian roads were mostly developed on national statistics and on-scene investigation respectively. Identification and elimination of black spots were main targets. In fact many fatal accidents do not occur on such black spots and black-spot investigation has reached a limit. New methods are required and therefore the Austrian Road Safety Programme was introduced by the Austrian Ministry of Transport, Innovation and Technology. The primary objective is the reduction of fatalities and severe injuries. Graz University of Technology initiated the project ZEDATU (Zentrale Datenbank tödlicher Unfälle) with the goal to identify similarities in different accident configurations. A matrix was established which categorizes risk and key factors of participating parties. Based on this information countermeasures were worked out.
Impact severity is a fundamental measure for all in-depth crash investigation projects. One methodology used in the UK is based on the US Calspan software package CRASH3. The UK- in-depth crash investigation studies routinely use AiDamage3 a software package which is based on an updated version of the original CRASH3 algorithm, including enhancements to the vehicle stiffness coefficients. Real world accident-damaged vehicles are measured and their crush is correlated with a library of stiffness coefficients. These measurements are then used, along with other parameters, to calculate the crash energy and equivalent changes of velocity of the vehicles (delta-v), which is a measure of the impact severity. UK in-depth accident studies routinely validate the crash severity methodologies applied as the vehicle fleet changes. This is achieved by analysing crash test data and using the appropriate residual crush damage and other inputs to AiDamage3 and checking the program- outputs with the known crash severity parameters. This procedure checks, at least in part, the default stiffness values in the data libraries and the reconstruction methods used.
A set of recommendations for pan-European transparent and independent road accident investigations has been developed by the SafetyNet project. The aim of these recommendations is to pave the way for future EU scale accident investigation activities by setting out the necessary steps for establishing safety oriented road accident investigations in Member States. This can be seen as the start of the process for establishing road accident investigations throughout Europe which operate according to a common methodology. The recommendations propose a European Safety Oriented Road Accident Investigation Programme which sets out the procedures that need to be put in place to investigate a sample of every day road accidents. They address four sets of issues; institutional addressing the characteristics of the programme; operational describing the conditions under which data isrncollected; data storage and protection; and reports, countermeasures and the dissemination of data.rn
Nowadays, traffic accidents are recorded in historical databases. Regarding the huge quantity of data, the use of data mining tools is essential to help Experts, for automatically extracting relevant information in order to establish and quantify relations between severity and potential factors of accidents. An innovative approach is here proposed for an in depth investigation of real world accidents data base. Mutual information ratio based on conditional entropies is used to quantity the association strength between an accident outcome descriptor (injury severity) and other potential association factors. Information theoretic methods help to select automatically groups of factors mostly responsible of the severity of accident.
Relevant accident related factors : risk and frequencies of contributing to road traffic accidents
(2009)
In the course of the European Project TRACE (Traffic Accident Causation in Europe) an attempt was made to analyse the cause of road traffic accidents from a factors' point of view. By literature review the most important independent risk factors for traffic accidents were identified to be speed, alcohol intake, male gender, young age, cell phone use, and fatigue. However, the impact of an accident related factor also depends on its prevalence in traffic and accidents, respectively. Available to the Partners in the TRACE Project were different accident databases. Causally contributing factors found by accident investigations that are most often coded in accident databases are connected to unadapted speed and inattention. Taking into account the risk increase and the frequency of contribution to accidents the conclusion can be drawn that the most relevant factors for accident causation are: "alcohol", "speed", and "inattention and distraction".