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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.
Accidents involving two wheels vehicles represent one of the more important types of accidents in Europe. These accidents are usually not easy to reconstruct specially for the analysis of the injuries and its correlation with accident dynamics and evidences. Different methodologies are applied in this work for the reconstruction of two wheeler accidents, especially accident involving motorcycles. From the typologies of road evidences like skid marks, to the use of Pc-Crash and the use of Madymo models, different reconstruction of real accidents are presented. One of the questions that sometimes arise for legal purposes when some type of head injuries arise is if the occupant was wearing or not a helmet. The correlation of head injuries with the use of the helmet is a very important issue, therefore an important legal aspect. One of the key questions for the reconstructions that is difficult to analyze, is if the vehicle occupant, was or not, wearing the helmet. Based on the previously collected information, a generic model of a helmet was developed on CAD 3D, followed by its conversion into finite elements, all in order to perform impact tests using the Madymo software that would help improve the helmet- safety, but that also can be used as a tool in accident reconstruction.
Portugal has the highest rate of road fatalities in Europe (2002 and for Eur-15 - CARE database). For this highest rate, the accidents involving pedestrians and motorcycle occupants have a higher contribution than the European average. In the last years, especially accidents involving motorcycles have been investigated and currently two different projects are being carried out, one related with motorcycles accidents and the other with pedestrian accidents. In these projects, countermeasures among others to reduce the fatalities between these two types of road users are being studied. These accidents are investigated with the commercial accident reconstruction software PCCRASH but also new methodologies based on multibody dynamics are in development in order to more accurately study these two types of accidents. In this paper, the methodologies in use for accident reconstruction and new methodologies in development are presented. Speeding his found to be one of the major causes of road fatalities for pedestrians and motorcycle occupants. In the case of motorcycle accidents, these involve mainly young drivers. Aspects as social behavior are also important to understand the causes of some of these accidents. Some examples of accidents occurring in Portugal, involving especially motorcycles and pedestrians are presented and discussed.
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.
Validation of human pedestrian models using laboratory data as well as accident reconstruction
(2007)
Human pedestrian models have been developed and improved continually. This paper shows the latest stage in development and validation of the multibody pedestrian model released with MADYMO. The biofidelity of the multibody pedestrian model has been verified using a range of full pedestrian-vehicle impact tests with a large range in body sizes (16 male, 2 female, standing height 160-192cm, weight 53.5-90kg). The simulation results were objectively correlated to experimental data. Overall, the model predicted the measured response well. In particular the head impact locations were accurately predicted, indicated by global correlation scores over 90%. The correlation score for the bumper forces and accelerations of various body parts was lower (47-64%), which was largely attributed to the limited information available on the vehicle contact characteristics (stiffness, damping, deformation). Also, the effects of the large range in published leg fracture tolerances on the predicted risk to leg fracture by the pedestrian model were evaluated and compared with experimental results. The validated mid-size male model was scaled to a range of body sizes, including children and a female. Typical applications for the pedestrian models are trend studies to evaluate vehicle front ends and accident reconstructions. Results obtained in several studies show that the pedestrian models match pedestrian throw distances and impact locations observed in real accidents. Larger sets of well documented cases can be used to further validate the models especially for specific populations as for instance children. In addition, these cases will be needed to evaluate the injury predictive capability of human models. Ongoing developments include a so-called facet pedestrian model with a more accurate geometry description and a more humanlike spine and neck and a full FE model allowing more detailed injury analysis.
Injury severity of e.g. pedestrians or bikers after crashes with cars that are reversing is almost unknown. However, crash victims of these injuries can frequently be seen in emergency departments and account for a large amount of patients every year. The objective of this study is to analyze injury severity of patients that were crashed into by reversing cars. The Hannover Medical School local accident research unit prospectively documented 43,000 road traffic accidents including 234 crashes involving reversing cars. Injury severity including the abbreviated injury scale (AIS) and the maximum abbreviated injury scale (MAIS) was analyzed as well as the location of the accident. As a result 234 accidents were included into this study. Pedestrians were injured in 141 crashes followed by 70 accidents involving bikers. The mean age of all crash victims was 57 -± 23 years. Most injuries took place on straight stretches (n = 81) as well as parking areas (n = 59), entries (n = 36) or crossroads (n = 24). The AIS of the lower extremities was highest followed by the upper extremities. The AIS of the neck was lowest. The mean MAIS was 1.3 -± 0.6. The paper concludes that the lower extremities show the highest risk to become injured during accidents with reversing cars. However, the risk of severe injuries is likely low.
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.
Traffic accidents were ranked the third among the major causes of death in Thailand. About 13,438 deaths and the death rate from traffic accident was 21.5 per 100,000 of population in 2002. The deaths and death rate varied upon the economic situation. After the economic crisis, traffic accidents were increased as well as the period of the bubble economy. In the Central region of Thailand numbers of road traffic crashes were lower than Bangkok Metropolis, but the highest in the number of deaths, death rate and serious injuries in 2002. Men aged 15"29 years old had higher numbers of deaths than men in other age groups and higher than women. Deaths and injuries from road traffic crashes were the highest in April and January, because there was a long weekend in those months. About 80 percent of road traffic crashes were caused by private car and motorcycle. In 2000 about 51 percent of traffic accidents took place on the straight way, followed by the junction and curves. In 2002, about 97 percent of road traffic crashes were caused by human factors including improper passing, speeding and disregarding to traffic signal, however, the identification of causes of traffic accident needed to improve. Drunk driving, disregarding on safety equipment usage, inefficiency of law enforcement and discontinuing of road safety programs were the deepest causes of traffic accidents. Research based information, a broad coalition of stakeholder and urban planning policy were needed to incorporate for a comprehensive road safety policy formulation and actions.
Pedestrian and cyclist are the most vulnerable road users in traffic crashes. One important aspect of this study was the comparable analysis of the exact impact configuration and the resulting injury patterns of pedestrians and cyclists in view of epidemiology. The secondary aim was assessment of head injury risks and kinematics of adult pedestrian and cyclists in primary and secondary impacts and to correlate the injuries related to physical parameters like HIC value, 3ms linear acceleration, and discuss the technical parameter with injuries observed in real-world accidents based documented real accidents of GIDAS and explains the head injuries by simulated load and impact conditions based on PC-Crash and MADYMO. A subsample of n=402 pedestrians and n=940 bicyclists from GIDAS database, Germany was used for preselection, from which 22 pedestrian and 18 cyclist accidents were selected for reconstruction by initially using PC-Crash to calculate impact conditions, such as vehicle impact velocity, vehicle kinematic sequence and throw out distance. The impact conditions then were employed to identify the initial conditions in simulation of MADYMO reconstruction. The results show that cyclists always suffer lower injury outcomes for the same accident severity. Differences in HIC, head relative impact velocity, 3ms linear contiguous acceleration, maximum angular velocity and acceleration, contact force, throwing distance and head contact timing are shown. The differences of landing conditions in secondary impacts of pedestrians and cyclists are also identified. Injury risk curves were generated by logistic regression model for each predicting physical parameters.
Die als Pilotstudie gedachte Untersuchung stellt einen Versuch dar, aus den komplexen Wechselwirkungen zwischen Mensch, Umwelt und Fahrzeug diejenigen Einflussgrößen zu bestimmen, die das Unfallgeschehen wesentlich und langfristig bestimmen, Umfang und Intensität des Einflusses auf betroffene Verkehrsteilnehmergruppen einzugrenzen und Gesamteffekte abzuschätzen. Die Prognosen beziehen sich im Detail auf Verunglückte und Schwerverunglückte nach Straßenart, Unfallfolgen, Lebensalter und Unfallursachen. Als in besonderer Weise besorgniserregend wird die prognostische Entwicklung der Verunglücktenzahlen beim Kraftrad herausgestellt, wobei eine gravierende Reduktion wegen der Kopplung von hoher Geschwindigkeit, Ungeschütztheit und Risikofreudigkeit ohne unpopuläre, einschneidende Maßnahmen als kaum möglich erachtet wird.
An eCall device has been mounted on some vehicles in France since 2003. It is an integrated car radio/GSM/GPS system that can be used with a SIM card. When an accident occurs, a call can be sent manually or automatically made to a telephone call centre. Knowing the geographic location, the vehicle identity and the possibility of a direct communication with the people involved enables the nearest emergency services to be called out. In this context, the LAB / CEESAR have set up a study aimed at evaluating the effectiveness of this system. The purpose of this paper is to detail the E-call system evaluation method of effectiveness used and give a global synthesis of the results.
The need of passive safety devices, able to reduce the accidents and the severity of injuries suffered by motorcyclist, distinctly arises from data on accident statistics. In this paper, the effectiveness of an airbag device fitted in the biker- garments has been verified through various numerical simulations. Two simple test conditions were defined, in order to investigate the performance of the device both for back and front impacts, and simulated at various impact speeds. With the aim of providing more information about the actual capability of the airbag to reduce the severity of the injuries, one of accident scenario described by ISO 13232:2005 has been also investigated, checking the real effectiveness of the airbag strap-based firing system too. Confrontation of injury indexes resulting from simulation with and without airbag made possible a realistic evaluation of the harm reduction induced by the airbag presence.
In-depth accident investigation offers many advantages for the analysis and comprehension of crash mechanisms. IFSTTAR makes such investigations since 1992 without interruption. The corresponding database contains more than 1200 accident case studies. Currently, in-depth accident investigation is one of the best ways to determine the speed or cars involved in accidents. This paper first presents the methods used for accident investigation and for accident kinematic reconstruction. Then, in order to illustrate the interest and possible applications of such accident data, it shows some results from a recent study based on the IFSTTAR in-depth accident study programme (IDAS) and dealing with the link between travelling speed and accident risk.
Optimierung der Fahrerlaubnisprüfung : Ein Reformvorschlag für die theoretische Fahrerlaubnisprüfung
(2005)
Der vorliegende Bericht enthält konzeptionelle Vorschläge, wie es künftig unter Einbeziehung moderner Multimediatechnik bei der theoretischen Fahrerlaubnisprüfung besser gelingen soll, Fahrerlaubnisbewerber ohne ausreichende Befähigung zum Führen von Kraftfahrzeugen zu erkennen. Dafür wurden zunächst der einschlägige prüfungstheoretische Wissensstand aufgearbeitet und Gütekriterien für ein neues Prüfungssystem dargestellt. Weiterhin wurden in einer Reihe von europäischen Ländern Recherchen über Innovationen im Prüfungswesen durchgeführt; diesbezügliche Erfahrungen sind in das vorliegende Prüfungskonzept eingeflossen. Die gegenwärtige Praxis der theoretischen Fahrerlaubnisprüfung erscheint aus heutiger Sicht unter inhaltlichen und methodischen Gesichtspunkten als unbefriedigend. Die Kritik am derzeitigen Prüfungssystem lässt sich auch durch die Verwendung von transponierten computergestützten Versionen der bisherigen Prüfbogen nicht beheben. Deshalb wurden im vorliegenden Prüfungskonzept die Systematik und die Merkmale eines grundsätzlich neuen computergestützten Prüfungssystems dargestellt. Weiterhin wurden die zu erwartenden Prüfungsabläufe sowie die rechtlichen, technischen und organisatorischen Bedingungen für die Einführung dieses Systems einschließlich eines begrenzten Vorlaufprojekts skizziert. Um die wissenschaftliche Reflexion der methodischen Qualität des Prüfungssystems zu sichern, wurden auch Vorschläge für die Evaluation der neuen theoretischen Fahrerlaubnisprüfung entwickelt. Die Einführung des vorgeschlagenen Prüfungskonzepts lässt neben weiteren Vorzügen drei wesentliche Verbesserungen im deutschen Prüfungssystem erwarten: Eine engere Verbindung des Ausbildungsund Prüfungssystems soll die Lernmotivation der Fahrerlaubnisbewerber steigern, eine bessere Visualisierung der Prüfungsaufgaben wird die Ähnlichkeit der Prüfungsanforderungen mit realen Verkehrsanforderungen verbessern, und es wird ermöglicht, nicht nur die Qualität der Prüfungsaufgaben an sich zu analysieren, sondern auch die Vorhersagekraft der Prüfungsergebnisse für die spätere Unfall- und Delinquenzbelastung der Fahranfänger im Straßen-verkehr. Der Bericht enthält neben Vorschlägen zur Optimierung der theoretischen Fahrerlaubnisprüfung auch Anregungen zur ergänzenden Weiterentwicklung der praktischen Fahrerlaubnisprüfung.
Die Schätzung der Fahrleistung von Kraftfahrzeugen auf dem deutschen Straßennetz 2014 (Inlandsfahrleistung) basiert auf einer bundesweiten, automatisierten Verkehrszählung an 520 zufällig ausgewählten Straßenabschnitten während jeweils etwa 24 Stunden. In der Verkehrszählung werden alle Tages- und Jahreszeiten abgedeckt. Die Stichprobe der Straßenabschnitte ist nach Straßenklasse und Ortslage (inner-/außerorts) geschichtet, dabei werden alle Straßenklassen in der Erhebung berücksichtigt. Mithilfe der Abschnittslängen werden die empirisch erhobenen Verkehrsstärkewerte in Fahrleistungen transformiert und auf die Grundgesamtheit aller Abschnitte, d. h. das gesamte Straßennetz und das Gesamtjahr 2014 hoch gerechnet. Durch den kombinierten Einsatz von Detektoren und Videotechnik liegen die gezählten Verkehrsstärken nach Fahrzeugart und -nationalität untergliedert vor, sodass Fahrleistungen für 9 Fahrzeugarten ("8+1-Messung") und 38 Nationalitäten geschätzt werden können. Der Totalwert der Inlandsfahrleistung wird für das Jahr 2014 auf 743,82 Mrd. Fahrzeugkilometer (Fzgkm) geschätzt. Rund 81 % der Inlandsfahrleistung (ca. 601 Mrd. Fzgkm) entfallen auf Personenkraftwagen bzw. Pkw mit Anhänger. Die zweithöchste Fahrleistung findet sich bei Lieferwagen mit 51,8 Mrd. km. Im Schwerverkehr dominieren die Sattelzüge mit 26,2 Mrd. km. Aus der Hochrechnung der Daten der Verkehrszählung ergibt sich für 2014 ein Totalwert der Fahrleistung ausländischer Kraftfahrzeuge auf dem deutschen Straßennetz von knapp 42 Mrd. Fahrzeugkilometern. Der Ausländeranteil an der Inlandsfahrleistung 2014 liegt damit bei 5,6 %. Im Jahr 2002 lag die km-Summe der ausländischen Kfz auf dem deutschen Straßennetz noch bei 27,4 Mrd. km. Der aktuelle Wert von 41,8 Mrd. km entspricht somit einem Zuwachs um 53 %. Werden die amtlichen Unfallzahlen aus dem Jahr 2014 auf die entsprechenden Jahrestotale der Fahrleistungen von Kraftfahrzeugen bezogen, so lassen sich dadurch Risikokennziffern berechnen. Zum einen ist dies das Risiko der Unfallbeteiligung von Kraftfahrzeugen und zum anderen das Risiko von Kraftfahrzeugbenutzern, bei einem Unfall verletzt oder getötet zu werden. Beide Risikokennziffern lassen sich weiter nach Fahrzeuggruppe und Unfallschwere bzw. Verletzungsschwere differenzieren. Hierbei zeigt sich, dass Busse und vor allem motorisierte Zweiräder ein besonders hohes Risiko aufweisen. Eine Unterscheidung nach Straßenklasse erlaubt die Schlussfolgerung, dass die Unfallrisiken auf Bundesautobahnen mit Abstand am niedrigsten sind. Ein Vergleich der Unfallrisikokennziffern des Jahres 2014 mit denjenigen aus dem Jahr 2002 zeigt, dass zum Teil deutliche Verringerungen festzustellen sind. So ist die Gefahr einer Beteiligung an einem Unfall mit Personenschaden über alle Kraftfahrzeuge um 26 % zurückgegangen. Sogar noch stärker ist das Risiko gesunken, als Fahrzeugbenutzer in einem Straßenverkehrsunfall verletzt oder gar getötet zu werden (-29 %).
Zielsetzung des Projektes war die Weiterentwicklung der Unfallfolgenbewertung entsprechend neuerer Ergebnisse vor allem aus der Umwelt- und Gesundheitsökonomie, unter Beachtung objektiver wie subjektiver Bewertungsansätze und mit Schwerpunktsetzung auf Personenschäden. Vorgehensweise: Auswertung der vorliegenden Arbeiten unter inhaltlichen und methodischen Gesichtspunkten. Erarbeitung von Verbesserungsvorschlägen unter theoretischen Aspekten sowie unter Beachtung von Möglichkeiten und Problemen der Datenverfügbarkeit. Zentrale Ergebnisse: Ansatzpunkte, die gängige Unfallfolgenbewertung sowohl in theoretischer als auch in methodischer Hinsicht neu zu überdenken, wurden vor allem in folgenden Bereichen identifiziert: 1. Kosten der medizinischen Behandlung: Bei der Erfassung der Behandlungskosten von Unfallopfern wäre ein Verfahren wünschenswert, das auf vorhandenem Datenmaterial aufbaut und die angefallenen Behandlungskosten differenzierter als die Zweiteilung in Schwer- und Leichtverletzte vornimmt. Hier würden sich zunächst vor allem ICD-basierte Fallpauschalen anbieten. 2. Kosten der Invalidität: Zur Ermittlung der langfristigen Kosten von unfallbedingten Invaliditätsfällen bietet sich die Ermittlung und die Bewertung solcher dauerhafter Unfallfolgen auf der Basis von Funktionsniveaueinschränkungen an. Im Vergleich zum Grad der Minderung der Erwerbsfähigkeit ermöglicht diese Vorgehensweise eine realistische Einteilung der unterschiedlichen Grade langfristiger Beeinträchtigungen. 3. Kosten unfallinduzierter Todesfälle: Als Alternative zur Berechnung der Kosten unfallbedingter Todesfälle mit Hilfe des Ertragswert- beziehungsweise Kostenwertansatzes besteht die Möglichkeit zur Ermittlung eines subjektiven Wertansatzes. Diese, zumindest im deutschsprachigen Raum noch wenig berücksichtigten Verfahren, versuchen auf der Basis von Marktbeobachtungen beziehungsweise Befragungen den Wert eines Menschenlebens zu ermitteln. Verfahren aus der Umweltökonomie haben gezeigt, dass inzwischen verfeinerte Instrumentarien entwickelt wurden, dass auch empirische Untersuchungen im Bereich der Verkehrsunfälle durchgeführt werden sollten.
Teil 1: In der Verkehrssicherheitsforschung können Sicherheitswirkungen zumeist nicht im (Labor)experiment sondern nur durch Feldversuche, die einem Experiment ähnlich anzulegen sind, erfasst werden. In diesem Zusammenhang spricht man von einem Quasi-Experimentellen-Design. Da sich bei solchen Quasi-Experimenten immer die Frage stellt, ob die gemessenen Änderungen maßnahmebedingt sind oder auf andere Einflüsse zurückgeführt werden können, werden verschiedene Gefahrenquellen benannt und mit Beispielen belegt, die die Gültigkeit der Ergebnisse von Wirksamkeitsuntersuchungen beeinträchtigen können. Es werden darüber hinaus eine Reihe wichtiger Quasi-Experimenteller-Designs dargestellt, die Vor- und Nachteile der Designs diskutiert und Hinweise auf mögliche Einsatzfelder gegeben. Um die Qualität der Ergebnisse von Wirksamkeitsuntersuchungen zu verbessern, wird vorgeschlagen, mehrere Erhebungen mittels ein und derselben Untersuchungsanordnung zugleich an mehreren Orten oder an mehreren Untersuchungsgruppen durchzuführen. Es werden mehrere simultane Untersuchungsdesigns vorgestellt und Einsatzbereiche erläutert. Teil 2: Simultane Wirksamkeitsuntersuchungen von Maßnahmen zur Hebung der Verkehrssicherheit erfordern häufig statistische Methoden zur Analyse von Kennzahlen, die auf andere Kennzahlen bezogen sind. Diese bezogenen Kennzahlen bezeichnet man als Risikogrößen. Es werden Methoden vorgestellt und diskutiert, die eingesetzt werden können, wenn entweder die Bezugsgrößen fest oder stochastisch sind.
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
Each year the traffic accident research teams in Dresden and Hanover provide an in-depth investigation of approximately two thousand accidents, aggregated in the GIDAS database. To accomplish a comprehensive review of each traffic accident recorded, a sensible and thorough encoding of suffered injuries is indispensable. The Abbreviated Injury Scale by AAAM offers a valuable and handy solution to achieve this goal. However, there were a few difficulties in the use of the AIS that came up in the past, which let to necessary improvements for the utilization of the AIS 2005 for GIDAS.
Still correlated with high mortality rates in traffic accidents traumatic aortic ruptures were frequently detected in unprotected car occupants in the early years. This biomechanical analysis investigates the different kinds of injury mechanisms leading to traumatic aortic injuries in todays traffic accidents and how the way of traffic participation affects the frequency of those injuries over the years. Based on GIDAS reported traffic accidents from 1973 to 2014 are analyzed. Results show that traumatic aortic injuries are mainly observed in high-speed accidents with high body deceleration and direct load force to the chest. Mostly chest compression is responsible for the load direction to the cardiac vessels. The main observed load vector is from caudal-ventral and from ventral solely, but also force impact from left and right side and in roll-over events with chest compression lead to traumatic aortic injuries. Classically, the injury appeares at the junction between the well-fixed aortic arch and the pars decendens following a kind of a scoop mechanism, a few cases with a hyperflexion mechanism are also described. In our analysis the deceleration effect alone never led to an aortic rupture. Comparing the past 40 years aortic injuries shift from unprotected car occupants to today's unprotected vulnerable road users like pedestrians, cyclists and motorcyclists. Still the accident characteristics are linked with chest compression force under high speed impact, no seatbelt and direct body impact.