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Interdisciplinary accident research and research projects of AARU Audi Accident Research Unit
(2017)
AARU (Audi Accident Research Unit) is an interdisciplinary research project of the University Hospital Regensburg in cooperation with AUDI AG. Specific objective is to comprehend the respective accident scenario and retrieve generally applicable findings as to technical, medical and psychological processes. In order to prevent traffic accidents and to alleviate vehicle accident consequences, postulates of general traffic safety, human-machine interaction, technical design and function of new vehicles and occupant as well as third party protection shall be inferred from these findings. Specifically, each accident with new Audi, Lamborghini and Ducati vehicles involved is analyzed interdisciplinary, discussed in a case meeting and anonymously documented with more than 2,000 parameters. The database is continually used for solving safety relevant issues. Parallel to accident analysis, research projects are performed in the fields medicine, psychology and engineering in order to gain comprehensive insight and identify potential additional areas of activity of accident research.
Internationally, the need is expressed for harmonized traffic accident data collection (PSN, PENDANT, etc.). Together with this effort of harmonization, traffic accident investigation moves more and more in the direction of accident causation. As current methods only partly address these needs, a new method was set up. The main characteristics of this method are: • Accident/injury causation (associated) factors can objectively be identified and quantified, by comparison with exposure information from a normal population. • All relevant accident and exposure data can be included: human-, vehicle-, and environmental related data for the pre-crash, crash and postcrash situation (the so-called Haddon matrix). The level of detail can be chosen depending on interest and/or budget, which makes the method very flexible. In this paper the accident collection and control group method are presented, including some of the achieved results from a pilot study on 30 truck accidents and 30 control locations. The data were analyzed by using cross-tabulations and classification-tree analysis. The method proved useful for the identification of statistically significant causational aspects.
This study that was funded by the Research Association for Automotive Technology (FAT) develops a method for the evaluation of the placement of tanks or batteries by using the deformation frequencies in real-world accidents. Therefore, the deformations of more than 20.000 passenger cars in the GIDAS database are analysed. For each vehicle a contour of deformation is calculated and the deformed areas of the vehicles are transferred in a rangy matrix of deformation. Thereby, the vehicle is divided into more than 190.000 cells. Afterwards, all single matrices of deformation are summarized for each cell which allows representative analyses of the deformation frequencies of accidents with passenger cars in Germany. On the basis of these deformation frequencies it is possible to determine least deformed areas of all passenger cars. Furthermore, intended placements of tanks or batteries can be estimated in an early stage of development. Therefore, all vehicles with deformations in the intended tank areas can be analysed individually. Considering numerous parameters out of the GIDAS database (e.g. collision speed, kind of accident, overlap, collision partner etc.) the occurring forces can be calculated or the deformation frequency can be estimated. Furthermore, it is possible to consider the influence of primary and secondary safety systems on the deformation behaviour. The analysis of "worst case accident events" is an additional application of the calculated matrix of deformation frequency.
While the number of fatal accidents is diminishing every year, there is still a need of improvement and action to prevent these deaths. Basis for this purpose has to be an analysis about the factors influencing the car crash mortality. There are various studies describing the univariate influence of several factors, but crash scenarios are too complex to be described by a single variable. The multivariate analysis respects the interference of the variables and gets so to more detailed and representative results. This multivariate analysis is based on about 2,600 cases (the data have been collected by the accident research units Hannover and Dresden (during the years 1999-2003). This paper presents a multivariate model (containing ten different variables) which detects 93% of these cases properly. This means it detects the cases as truly survived and truly death.
Motorcycle crashes in Austria: Analysis of causes and contributing factors based on in-depth data
(2017)
From CEDATU, the in-depth accident database run by the Vehicle Safety Institute at Graz University of Technology, a representative sample of 101 crashes involving at least one motorcycle was selected. The analysis focused on causes for crashes as well as on contributing factors, but also included parameters of road, riders and vehicles. Own riding speed and "unexpectable action by another road user" were the most frequent causes for accidents. Inappropriate safety distance or delayed reaction were frequent, both as causation factors and as contributing factors. Infrastructure issues never cause an accident, but they are very frequent as contributing factors; road geometry and road guidance are by far most frequent among these. This paper also discusses accidents by type and other parameters (e.g. injury severity by body region, collision speed, age and others), and compares accident causes to previous studies as well as the police reported accident statistics.
Powered Two Wheeler (Motorcycle) crashes are overrepresented in EU, England, and United States casualty statistics for both fatal and serious injuries. While regional geographic differences are evident for motorcycle size, type, and engine displacement, the casualty statistics consistently indicate significantly higher injury rates for all motorcycle riders when compared to car occupants. Accident analysis and reconstruction of these motorcycle crashes is a necessary process to gain further understanding of potential injury mitigation strategies. This paper focuses on the analysis of the rider post impact trajectory in the immediate moments following a crash. The rider and motorcycle, while loosely coupled by seating position leading up to a crash, quickly decouple as the crash forces develop. As a result, the rider moves relative to the motorcycle and relative to the collision partner. This movement, or trajectory, is primarily influenced by the type and configuration of the impact, the type and configuration of the motorcycle and collision partner, and the speeds involved. Understanding the rider's post impact trajectory will assist in the development of injury mitigation strategies. Both the free flight trajectory of the rider and the rider's trajectory as influenced by interaction with the motorcycle and collision partner are examined. Rider trajectories in full scale crash testing and real world motorcycle crashes are both studied and presented. The resulting physical evidence that can be observed by an accident analyst is discussed. The application of projectile motion physics is analyzed and the necessary input parameters, such as initial launch angle, are studied. This study will assist in understanding the post-impact dynamics of a motorcyclist, and will provide useful information to analysts evaluating real world crashes.
Empirical vehicle crashworthiness studies are usually based on national or in-depth traffic accident surveys: Data on accident-involved cars/drivers are analysed in order to quantify the chance of driver injury and to assess certain risk factors like car make and model. As the cars/drivers involved in the same accident form a "cluster", where the size of the cluster equals the number of accident-involved parties, traffic accident survey data are typical multi-level data with accidents as first-level or primary and cars/drivers as secondlevel or secondary units (car occupants in general are to be considered as third level units). Consequently, appropriate statistical multi-level models are to be used for driver injury risk estimation purposes as these models properly account for the cluster structure of traffic accident survey data. In recent years various types of regression models for clustered data have been developed in the statistical sciences. This paper presents multi-level statistical models, which are generally applicable for vehicle crashworthiness assessment in the sense that data on single and multiple car crashes can be analysed simultaneously. As a special case of multi-level modelling driver injury risk estimation based on paired-by-collision car/driver data is considered. It is demonstrated that assessment results may be seriously biased, if the cluster structure inherent in traffic accident survey data is erroneously ignored in the data analysis stage.
Pedestrian accidents are one of the major concerns related with road accidents around the world. Portugal has one of the highest rates of pedestrian fatalities in Europe. In this paper an overview conditions were the pedestrian accidents occurred in Portugal is presented. In the last years, a project related with the pedestrian accidents has run in Portugal for the period 2004-2006 where 603 people died, 2097 have been severely injured and about 17000 slightly injured. Within this project all the pedestrian accidents in this period have been analysed providing global information about a wide range of aspects, since location, driver and pedestrian characteristics, weather and road conditions, among others. In addition, 50 in-depth accidents have been investigated and the data collected according the Pendant methodology. For this in-depth methodology detailed information about the accident has been collected, including injuries, vehicle damage, road conditions and road user- behaviour and actions. An accident reconstruction has been carried for each case including the determination of the speeds and driver actions, and the analysis of the contributing factors for the accident. Depending of the accident complexity, different methodologies have been used to analyse these accident, from the classical analytical equations such as Simms and Woods, to the use of detailed computational pedestrian models as those included in the commercial software- PC-Crash-® or Madymo-®. Also one of the goals of our investigation is the development of multibody models and methodologies for the reconstruction of pedestrian accidents. Some of these tools integrated in the commercial software Cosmos Motion-® are presented. The advantages of the different approaches are compared and discussed for some of the accidents investigated. With these tools the impact speed can be determined from the projection distance with analytical tools or PC-Crash-®, but more complex tools should be used to determine speed from the injuries, what is especially important for fatal accidents. The influence of the vehicle geometry and stiffness characteristics is another aspect analysed, where the influence of the vehicle stiffness has been determined using a combined multibody-finite elements approach within the software Madymo-®.
Die Erkennung von Sicherheitsdefiziten im Straßennetz erfolgt zurzeit im Wesentlichen im Rahmen der örtlichen Unfalluntersuchungen. Dabei werden überwiegend punktuelle Unfallhäufungen identifiziert und analysiert. Für die Analyse von Straßennetzen wurden mit den "Empfehlungen für die Sicherheitsanalyse von Straßennetzen (ESN)" Verfahren vorgestellt, die für eine netzweite Analyse von Straßen geeignet sind und die Identifikation von Sicherheitsdefiziten in einem größeren Maßstab ermöglichen. Im Rahmen des vorliegenden Projektes wurde eine pilothafte Anwendung der Verfahren nach ESN für das Straßennetz des überörtlichen Verkehrs in Rheinland-Pfalz vorgenommen. Der Fokus der Untersuchung lag auf der Frage, ob und in welchem Umfang mit einer weitestgehend automatisierten Vorgehensweise sowie unter Verwendung der digital verfügbaren Daten eine sinnvolle Anwendung der ESN möglich ist. Die in den Straßendatenbanken geführten Abschnitte erweisen sich jedoch für die Zielsetzung der ESN als zu feingliedrig. Daher wurden vertiefende Untersuchungen zur Abschnittsbildung durchgeführt. Dabei wurden fünf Varianten der Abschnittsbildung betrachtet. Ergänzend zur Abschnittsbildung nach ESN mit mindestens 4 U(SP) pro Abschnitt wurde zusätzlich die zeitliche und räumliche Verteilung der U(P) untersucht. Bei ihrer Verwendung sind insgesamt stabilere Ergebnisse zu erwarten. Der Vergleich der sicherheitspotenziale bei einer Abschnittsbildung nach Netzstruktur mit den Unfallkostenraten von Unfallhäufungslinien zeigt in vielen Fällen Überschneidungen. aufgrund der stabileren Ergebnisse eines längeren Untersuchungszeitraums (1999 bis 2004) wird eine Verlängerung des von den ESN vorgesehenen Untersuchungszeitraums empfohlen. Es ist festzuhalten, dass die ESN-Verfahren eine Vorauswahl von auffälligen Streckenabschnitten liefern, deren Verbesserung zu einer deutlichen Steigerung der Verkehrssicherheit führen könnte. Inwiefern die ermittelten Sicherheitspotenziale tatsächlich durch geeignete Maßnahmen ausgeschöpft werden können, muss durch eine Detailanalyse geprüft werden.
One of the major problems of road safety in Europe is the powered two wheelers accidents. One of the European countries with one of the highest rates is Portugal where in 2006, mopeds and motorcycles fatalities represented 27% of all road users deaths. In this work, a deep analysis and overview of the current state of mopeds and motorcycles accidents for the 2004-2006 period is presented. Within this period 830 PTW occupants die, 2958 have been severely injured and 25000 suffer slight injuries. A detailed analysis of the conditions of these accidents has been carried out, using the data of the national accident database. This analysis provides global information, about geographic environmental conditions, driver- characteristics among others. From this data detailed information is obtained allowing to know when, where and who. In order to answer the question why more a widely collection of data has been collect for 70 accidents. The data has been collected using OECD methodology. For these accidents a detailed reconstruction has been carried out, what is especially important for fatal accidents where for instance speed in an important factor. From these collection and analysis of data a wider overview of facts and measures are extracted. Among them, some are emphasized such as that the quality and non-use of helmets plays an important role in severe and fatal accidents especially for accidents involving moped vehicles, or speed is the most important factor in fatal accidents involving motorcycles. Concerning motorcycle accident reconstruction, different tools can be used depending of the accident scenario and complexity. For simple cases, with specific characteristics, analytical formulation based in vehicle crash dynamics can be use in order to determine the impact speed of the vehicles impact, analysing the skid marks, deformations, victims rest position and considering parameters (EES, vehicle deceleration, etc). Aspects such as the energy absorption capability of motorcycles are also discussed. In the general cases the accident reconstruction software Pc-Crash has been used for the reconstruction of the accident. In very complex cases, has for instance the impact between motorcyclist and barriers, Madymo software is used especially to determine speed from injuries. An example of the impact of a motorcyclist and a motorcyclist-friendly barrier is present to illustrate the benefits and limitations of such systems.
In recent years special attention has been paid to reducing the number of fatalities resulting from road traffic accidents. The ambitious target to cut in half the number of road users who are killed each year by 2010 compared with the 2001 figures, as set out in the European White Paper "European Transport Policy for 2010: Time to Decide" implies a general approach covering all kinds of road users. Much has been achieved, e.g. in relation to the safety of car passengers and pedestrians but PTW accidents still represent a significant proportion of fatal road accidents. More than 6,000 motorcyclists die annually on European roads which amounts to 16% of the EU-15 road fatalities. The European Commission therefore launched in 2004 a Sub- Project dealing with motorcycle accidents within an Integrated Project called APROSYS (Advanced PROtection SYStems) forming part of the 6th Framework Programme. In a first step, the combined national statistical data collections of Germany, Italy, the Netherlands and Spain were analysed. Amongst other things parameters like accident location, road conditions, road alignment and injury severity have been explored. The main focus of the analysis was on serious and fatal motorcycle accidents and the results showed similar trends in all four countries. From these results 7 accident scenarios were selected for further investigation via such in-depth databases as the DEKRA database, the GIDAS 2002 database, the COST 327 database and the Dutch element of the MAIDS database. Three tasks, namely the study of PTW collisions with passenger cars, PTW accidents involving road infrastructure features, and motorcyclist protective devices have been assessed and these will concentrate inter alia on accident causes, rider kinematics and injury patterns. A detailed literature review together with the findings of the in-depths database analysis is presented in the paper. Conclusions are drawn and the further stages of the project are highlighted.
Ziel des Forschungsvorhabens war es zu untersuchen, ob in verschiedenen Prüfstellen mit dem Walzsektor-Verdichtungsgerät hergestellte Asphalt-Probeplatten gleiche Eigenschaften aufweisen, damit z.B. verträgliche Ergebnisse für Performance-Prüfungen ermittelt werden können. Dazu wurde in 12 Prüfstellen ein Verfahrens-Audit durchgeführt, um eine einheitliche Vorgehensweise bei der Herstellung dieser Platten zu gewährleisten. Anschließend wurden aus verschiedenen Asphaltvarianten WSV-Platten hergestellt und an daraus gewonnenen Probekörpern umfangreiche Performance-Prüfungen durchgeführt. Die ermittelten Ergebnisse zeigen, dass es möglich ist WSV-Platten mit verträglicher Raumdichte in unterschiedlichen WSV-Geräten sowie verschiedenen Prüfstellen herzustellen. Die Ergebnisse der Spurbildungs-, Druck-Schwell- und Zugversuche haben gezeigt, dass die WSV-Platten trotz ähnlicher Raumdichten nicht zwangsläufig verträgliche Ergebnisse im Versuch aufweisen und sich daher in verschiedenen Prüfstellen keine vergleichbaren Ergebnisse für diese Versuche ermitteln lassen. Lediglich bei den Abkühl- und Spaltzug-Schwellversuchen konnten verträgliche Ergebnisse erzielt werden. Für keine der ermittelten Kenngrößen der Performance-Prüfungen ließen sich Zusammenhänge mit der Raumdichte ermitteln. Somit lässt sich die Größe der Ergebnisse bei den Versuchen nicht auf unterschiedliche Größen der Raumdichten der Probekörper zurückführen. Da sich trotz geringer Unterschiede in den Raumdichten nur in ausgewählten Performance-Untersuchungen Unterschiede zeigen, ist davon auszugehen, dass die Streuungen in den Performance-Untersuchungen vornehmlich auf die Sensitivität dieser Versuche zurückzuführen sind. Das Verfahren zur Herstellung von Probekörpern für Performance-Prüfungen aus WSV-Platten scheint aufgrund der Gesamtheit der ermittelten Kenngrößen (Raumdichte, etc.), deren Aussehen, den Erkenntnissen aus dem Verfahrensaudit sowie der Performance-Prüfungen das richtige Verfahren zu sein.
Zentrale Zielsetzung dieses Forschungsvorhabens ist die Ableitung einer Grundlage für die quantitative Abschätzung der Sicherheitswirkungen verschiedener Bau-, Gestaltungs- und Betriebsformen von Landstraßen. Hierzu wurden erreichbare Unfallraten und Unfallkostenraten von Landstraßen differenziert nach Ausbaustandard und Betriebsformen abgeleitet. Die Unfallkenngrößen wurden dabei getrennt für die drei Teilbereiche eines Landstraßenzuges (freie Streckenabschnitte, Einflussbereiche von Knotenpunkten, Knotenpunkte) ermittelt. Während die mittlere Unfallkostenrate eines Untersuchungskollektives von Straßenabschnitten nur eine Aussage über die durchschnittlichen Unfallkosten in Bezug auf die Fahrleistung dieses Kollektives treffen, soll die Grundunfallkostenrate die bei richtliniengerechter Anlage einer Straße (Gestaltung und Betrieb) möglichen fahrleistungsabhängigen Unfallkosten widerspiegeln. Bei der Ermittlung der Grundunfallkostenraten dürfen prinzipiell nur richtliniengerecht ausgebildete Straßen Berücksichtigung finden. Aus der zugrunde liegenden Datenbasis war allerdings nicht erkennbar, ob es sich im Einzelfall um richtliniengerechte oder nicht richtliniengerechte Straßen handelt. Es war davon auszugehen, dass das Untersuchungskollektiv auch nicht richtliniengerechte Anlagen umfasst. Dabei ist zusätzlich das Maß der Abweichung von einer richtliniengerechten Straße unbekannt, sodass keine Aussage darüber getroffen werden kann, inwieweit sich der "Grad der Unsicherheit" auch auf das Unfallgeschehen auswirkt. Bislang existiert kein Verfahren, um aus einem inhomogenen Untersuchungskollektiv, das sowohl richtliniengerechte Straßen als auch nicht richtliniengerechte Straßen umfasst, Grundunfallkostenraten abzuleiten. Daher wurde ein Verfahren entwickelt, das durch statistische Analysen eine Abschätzung der Grundunfallkostenraten aus einem inhomogenen Untersuchungskollektiv ermöglicht. Anhand des entwickelten Verfahrens wurden anschließend die Grundunfallkostenraten für alle im Rahmen der vorliegenden Untersuchung betrachteten Straßen (differenziert nach Querschnittstypen und Knotenpunktarten) abgeleitet.
Für das Forschungsvorhaben wurden Performance-Kennwerte in den Phasen der Asphaltmischgutkonzeption, Asphaltmischgutproduktion und nach dem Asphalteinbau an 21 Baumaßnahmen für die Asphaltdeck-, -binder- und -tragschicht systematisch erfasst und ausgewertet. Als Performance-Kennwerte dienten die Ergebnisse aus den Prüfungen zur Steifigkeit, zum Widerstand gegen Kälterissbildung, zum Ermüdungs- und Verformungs-widerstand sowie zur Griffigkeitsentwicklung. Die Untersuchungen lieferten wichtige Erkenntnisse und Tendenzen bei einzelnen Performance-Kennwerten, die bereits jetzt für zwei methodische Ansätze zur Festlegung künftiger vertragsrelevanter Anforderungen genutzt werden konnten: Einerseits wurde ein Vorschlag für eine spezifische Kategorisierung von Performance-Kennwerten innerhalb der europäischen Normung aufgezeigt, andererseits konnte mit Hilfe multipler linearer Regressionsanalysen ein möglicher Weg zur Abschätzung von Performance-Kenngrößen der fertigen Schicht aus der Erstprüfung aufgezeigt werden, sodass Anforderungswerte vorab definiert werden können. Zudem zeigte sich, dass, auch wenn im Wesentlichen die Ergebnisse der konventionellen Asphaltkontrollprüfungen die Anforderungen der ZTV Asphalt erfüllen, es nicht sichergestellt ist, dass Nutzungsdauern von mindestens 30 Jahren erreicht werden können. Dies resultiert im Wesentlichen aus den Unterschieden der Performance-Kenngrößen der drei Phasen, vor allem der Ermüdungsversuche. Deshalb wurden für die Modifikation des Sicherheitskonzeptes für die rechnerische Dimensionierung zwei Ansätze vorgestellt. Es erscheint aber zwingend erforderlich, dass durch weitere Untersuchungen die erstellte Datenbank ergänzt wird. Zudem sollten die im Projekt untersuchten Strecken einer weiteren Beobachtung unterzogen werden, um den Prozess der Alterung erfassen zu können. Damit kann auch eine Validierung des Dimensionierungsverfahrens erfolgen.
Since the compulsory use of child restraints for children up to 5 years of age was introduced in 2000, restraint use among younger children has increased significantly. However, the observed rate of child restraint use plateaus at around 50%, and apparently little spillover effect has been found for older children who are not covered by the law. This report examines the restraint use patterns for children who were injured in cars in relation to driver and child passenger characteristics. Univariate and multivariate analyses were conducted to describe the association between the outcome measure (the proper use of restraints for children) and relevant variables. Better ways for parents and caregivers to improve the use of restraints for children are also discussed.
While cyclists and pedestrians are known to be at significant risk for severe injuries when exposed to road traffic accidents (RTAs) involving trucks, little is known about RTA injury risk for truck drivers. The objective of this study is to analyze the injury severity in truck drivers following RTAs. Between 1999 and 2008 the Hannover Medical School Accident Research Unit prospectively documented 43,000 RTAs involving 582 trucks. Injury severity including the abbreviated injury scale (AIS) and the maximum abbreviated injury scale (MAIS) were analyzed. Technical parameters (e.g. delta-v, direction of impact), the location of accident, and its dependency on the road type were also taken into consideration. The results show that the safety of truck drivers is assured by their vehicles, the consequence being that the risk of becoming injured is likely to be low. However, the legs especially are at high risk for severe injuries during RTAs. This probability increases in the instance of a collision with another truck. Nevertheless, in RTAs involving trucks and regular passenger vehicles, the other party is in higher risk of injury.
This work aims at bringing evidence for mass incompatibility in frontal impact for cars built according to the UNECE R94 regulation. French national injury accidents database census for years 2005 to 2008 were used for the analysis. The heterogeneity of frontal self-protection among cars of different masses is investigated, as well as the partner protection parameter offered by these cars. The last part of the analysis deals with the estimation of the benefit, in terms of fatal and severe injuries avoided, if crashworthiness was harmonized for the whole fleet of vehicle. This calculation is done for France and is extended to all Europe.
In most of developed countries, the progress made in passive safety during the last three decades allowed to drastically reduce the number of killed and severely injured especially for occupants of passenger cars. This reduction is mainly observed for frontal impacts for which the AIS3+ injuries has been reduced about 52% for drivers and 38% for front passengers. The stiffening of the cars' structure coupled with the generalization of airbags and the improvement of the seatbelt restraint (load limiter, pretension, etc.) allowed to protect vital body regions such as head, neck and thorax. However, the abdomen did not take advantage with so much success of this progress. The objective of this study is to draw up an inventory on the abdominal injuries of the belted car occupants involved in frontal impact, to present adapted counter-measures and to assess their potential effectiveness. In the first part the stakes corresponding to the abdominal injuries will be defined according to types of impact, seat location, occupants' age and type of injured organs. Then, we shall focus on the abdominal injury risk curves for adults involved in frontal impact and on the comparisons of the average risks according to the seat location. In the second part we will list counter-measures and we shall calculate their effectiveness. The method of case control will be used in order to estimate odds ratio, comparing two samples, given by occupants having or not having the studied safety system. For this study, two type of data sources are used: national road injured accident census and retrospective in-depth accident data collection. Abdominal injuries are mainly observed in frontal impact (52%). Fatal or severe abdominal occupant- injuries are observed at least in 27% of cases, ranking this body region as the most injured just after the thorax (51%). In spite of a twice lower occupation rate in the back seats compared to the front seats, the number of persons sustaining abdominal injuries at the rear place is higher than in the front place. In recent cars, the risk of having a serious or fatal abdominal injury in a frontal impact is 1.6% for the driver, 3.6% for the front passenger and 6.3% for the rear occupants. The most frequently hurt organs are the small intestine (17%), the spleen (16%) and the liver (13%). The most common countermeasures have a good efficiency in the reduction of the abdominal injuries for the adults: the stiffness of the structure of the seats allows decreasing the abdominal injury risk from 54% (driver) to 60% (front occupant), the seatbelt pretensioners decrease also this risk from 90% (driver) to 83% (front passenger).
In Germany averagely two million traffic accidents happen each year and emergency medical services are called to more than 400 000 patients. Even though this number is decreasing continuously (due to improvements in the fields of vehicle safety, road construction, and accident prevention) every case is yet a challenge for the rescuers and requires improvements in emergency medicine as well. Especially during diagnostics right at the accident scene, there are only limited instruments available to gain the necessary knowledge of the injuries suffered, to come to essential decisions about treatment or transport. To provide an additional diagnostic aid by scouting and estimating the situation, a software-tool calculating the likeliness of the most frequent severe injuries (AIS 3-6) of front occupants in passenger cars has been developed to deliver this necessary information about particular accident scenarios. To achieve this, logistic likelihood functions have been calculated in a multivariate regression analysis analysing all AIS 3+ injuries in the GIDAS database of the years 1999-2006 that happened more than four times
To elucidate the risk of pedestrians, bicycle and motorbike users, data of two accident research units from 1999 to 2014 were analysed in regard to demographic data, collision details, preclinical and clinical data using SPSS. 14.295 injured vulnerable road users were included. 92 out of 3610 pedestrians ("P", 2.5%), 90 out of 8307 bicyclists ("B", 1.1%) and 115 out of 4094 motorcycle users ("M", 2.8%) were diagnosed with spinal fractures. Thoracic fractures were most frequent ahead of lumbar and cervical fractures. Car collisions were most frequent mechanism (68, 62 and 36%). MAIS was 3.8, 2.8 and 3.2 for P, B and A with ISS 32, 16 and 23. AIS-head was 2.2, 1.3 and 1.5). Vulnerable road users are at significant risk for spine fractures. These are often associated with severe additional injuries, e.g. the head and a very high overall trauma severity (polytrauma).