The number of injuries sustained by car occupants involving the head, thorax, spine, pelvis and the upper limbs have been reduced significantly during recent years. This is probably due to better safety features in the cars, especially the availability and usage of safety belts, airbags etc. Therefore one can notice clinically a relative increase in survivors of severe frontal crashes, but many of them have injuries to the lower extremities. To verify this, we analyzed the foot and ankle injuries of front seat passengers.
A reduction of around 48% of all road fatalities was achieved in Europe in the past years including a reduced number of fatalities with an older age. However, among all road fatalities, the proportion of elderly is steadily increasing. In an ageing society, the European (Horizon2020) project SENIORS aims to improve the safe mobility of older road users, who have different transportation habits compared to other age groups. To increase their level of safe mobility by determining appropriate requirements for vehicle safety systems, the characteristics of current road traffic collisions involving the elderly and the injuries that they sustain need to be understood in detail. Hereby, the paper focuses on their traffic participation as pedestrian, cyclist or passenger car occupant. Following a literature review, several national and international crash databases and hospital statistics have been analysed to determine the body regions most frequently and severely injured, specific injuries sustained and types of crashes involved, always comparing older road users (65 years and more) with mid-aged road users (25-64 years). The most important crash scenarios were highlighted. The data sources included European statistics from CARE, data on national level from Germany, Sweden, Italy, United Kingdom and Spain as well as in-depth crash information from GIDAS (Germany), RAIDS (UK), CIREN and NASS-CDS (US). In addition, familiar hospital data from Germany (TraumaRegister DGU-®), Italy (Italian Register of Acute Traumas) and UK hospital statistics (TARN) were included in the study to gain further insight into specific injury patterns. Comprehensive data analyses were performed showing injury patterns of older road users in crashes. When comparing with mid-aged road users, all databases showed that the thorax body region is of particularly high importance for the older car occupant with injury severities of AIS 2 or AIS 3+, whereas the body regions lower extremities, head and thorax need to be considered for the older pedestrians and cyclists. Besides these comparisons, the most frequent and severe top 5 injuries were highlighted per road user group. Further, the most important crash configurations were identified and injury risk functions are provided per age group and road user group. Although several databases have been analysed, the picture on the road safety situation of older road users in Europe was not complete, as only Western European data was available. The linkage between crash data and hospital data could only be made on a general level as their inclusion criteria were quite different.
Europe has benefited from a decreasing number of road traffic fatalities. However, the proportion of older road users increases steadily. In an ageing society, the SENIORS project aims to improve the safe mobility of older road users by determining appropriate requirements towards passive vehicle safety systems. Therefore, the characteristics of road traffic crashes involving the elderly people need to be understood. This paper focuses on car occupants and pedestrians or cyclists in crashes with modern passenger cars. Ten crash databases and four hospital statistics from Europe have been analysed to answer the questions on which body regions are most frequently and severely injured in the elderly, and specific injuries sustained by always comparing older (65 years and above) with midâ€aged road users (25â€64 years). It was found that the body region thorax is of particularly high importance for the older car occupant with injury severities of AIS2 or AIS3+, where as the lower extremities, head and the thorax need to be considered for older pedestrians and cyclists. Further, injury risk functions were provided. The hospital data analysis showed less difference between the age groups. The linkage between crash and hospital data could only be made on a general level as their inclusion criteria were quite different.
Every second counts when human lives are at stake. The increasingly safe design of vehicles presents rescuers with a serious challenge. Faced with high-strength steels and body reinforcements, even the most powerful cutters reach their limits. Therefore, incident commanders require information on the technical features and components installed, directly in the vehicle. Several tests have shown that such information helps to save valuable minutes. Therefore, a standardised A4 "rescue sheet" containing information on the location of cabin reinforcements, the tank, the battery, airbags, gas generators, control units etc. " and indicating adequate cutting points must be used throughout Europe. Hopefully, in a few years, the new eCall emergency call system will be in place everywhere in Europe. The system will transmit the relevant vehicle-specific data directly to the rescuers on-site. Until then, we need a simple and effective solution that saves lives.
There is a need to continue to set the right vehicle safety policy priorities in the future. Research has to point out the most cost efficient and safety relevant measures to further reduce the number of road traffic casualties. The overall development shows that the constant and rapid decrease in the number of road casualties slows down. New innovations need to enter the vehicle market soon, in order to continue the success achieved in the last decade. Priorities for vehicle safety are driven by safety and mobility demands. It is necessary to keep a strong lid on all aspects of elderly and vulnerable road users. The fraction of powered-two-wheelers (PTW) is a priority group. PTWs have a risk of being involved in an accident, 14times higher than that of a passenger car. However, the figures do also show that every second fatality is a car occupant. Therefore passenger car safety remains to be top priority. Heavy goods vehicles are overly represented in fatal accidents, addressing the need to make these vehicles more compatible with other road users. These facts highlight the necessity not only to increase vehicles" self protection, but also to make cars - and trucks - more compatible and safe. Cycling is a strongly increasing mode of transport. This is a further reason to demand better protection for cyclists and pedestrians from car design and car active and integrated safety systems. Another priority for future vehicle safety is related to demographics. It is less known that the purely demographic effect will be superimposed by an increasing wish of elderly people to be mobile. However, elderly people show deficits concerning their biomechanics. This emphasizes the need for better and more adaptive restraint systems, but also further technological challenges and demands for active safety systems. However, in order to progress, current technological limitations have to be overcome. Cost benefit considerations, but also consumer acceptance and desires, will drive this process.
Sedan type vehicles in which adult rear seat passengers were present and which were involved in frontal collisions were investigated, and the influence of unbelted rear seat passengers on the injuries of front seat occupants was studied. Unbelted rear seat passengers move forward during impact. It was observed that there were not only cases in which front seat occupants sustained injuries caused by direct contact with rear seat passengers, but also cases where front seat occupants received severe injuries due to additional force from rear seat passengers, either impacting directly or indirectly as a result of deformation of the front seat. Severe injuries of front seat occupants were observed in the latter cases. This research validates the importance of seat-belt use for rear seat passengers, not only to protect themselves but also to mitigate injuries of front seat occupants.
Seit 1997 gibt es in Europa unter dem Namen Euro NCAP (European New Car Assessment Programme) einheitliche Test- und Ratingverfahren. Sie liefern Informationen über den Insassen- und über den Fußgängerschutz. Euro NCAP hat seither fast 90 Fahrzeugmodelle in jeweils drei unterschiedlichen Crashtest-Konfigurationen untersucht und die Ergebnisse den europäischen Konsumenten zugänglich gemacht. Im Beitrag wird auf die Testbedingungen, die Euro NCAP-Ratingverfahren sowie auf die Weiterentwicklung von Euro NCAP eingegangen. Ein wichtiger Aspekt wird dabei auch die weltweite Harmonisierung der Test- und Ratingverfahren sein.
The improvement of passive car security devices led to a reduction of injuries, especially of the head, the neck and the torso mainly due to the airbag function. The passenger's foot and ankle could not profit from this development. Some investigators even reported a progression of leg injuries (1). In this study, we investigated a current collective of patients with foot and ankle fractures or severe soft tissue injuries in relation with defined crash parameters. Special interest was paid to the car's footwell.
Entwicklung eines Prüfverfahrens zur Beurteilung der Hochgeschwindigkeitsstabilität von Motorrädern
(1991)
Ziel des Forschungsvorhabens war die Erarbeitung eines Prüfverfahrens, welches die objektive Beurteilung der Hochgeschwindigkeitsstabilität von Motorrädern ermöglicht. Insgesamt beteiligten sich 17 Fahrer an den Fahrversuchen, die auf der Hochgeschwindigkeitsstrecke eines Prüffeldes erfolgten. Zum Einsatz kamen vier Motorradmodelle, von denen zwei jeweils mit und ohne Gepäck erprobt wurden. Ein eindeutiger Zusammenhang zwischen der Hochgeschwindigkeitsstabilität von Motorrädern und grundlegenden Fahrerparametern war nur in einem Punkt zu erkennen: Oberhalb einer im Zusammenhang mit den Untersuchungen ermittelten Mindestfahrerfahrung kann ein Einfluss weitergehender Fahrerfahrung ausgeschlossen werden. Die anderen untersuchten, objektiv leicht messbaren Fahrerparameter waren Körpergröße und Masse. Eindeutig isolierbare Zusammenhänge zwischen der Pendeldämpfung und einem dieser Werte waren nicht festzustellen. Bei einem der beiden mit Gepäck untersuchten Motorrädern wurde in Analogie zu früheren Untersuchungen ermittelt, dass die Zuladung die Pendeldämpfung reduziert. Bei Mitnahme eines Beifahrers stellten sich höhere Dämpfungsgrade ein als bei den überwiegend durchgeführten Solofahrten. Das vorgeschlagene Prüfverfahren basiert größtenteils auf den Ergebnissen früherer Untersuchungen und enthält eine engere Beschreibung des einzusetzenden Versuchsfahrers. Weiterhin wurde zusätzlich die Beladung mit Gepäck im üblichen Rahmen in den vorgeschlagenen Prüfungsablauf aufgenommen.
Die schnell fortschreitende Entwicklung der Sensortechnologie und der Aktuatorik bietet Ansätze für neuartige Rückhaltesysteme und kann somit den Schutz des Insassen bei Unfällen erheblich verbessern. Kommende Generationen adaptiver Rückhaltesysteme werden eine dosierte Aktivierung der Schutzwirkung (z.B. mehrstufige Airbags oder Gurtstraffer) abhängig von der Unfallschwere und der Fahrzeugbesetzung erlauben. Um solche Systeme voll auszunutzen, werden Sensoren entwickelt, die die Schwere eines Unfalls in weitaus höherer Auflösung als bisher erkennen können und somit das Einleiten adaptiver Maßnahmen ermöglichen. Diese Systeme werden unter dem Begriff der intelligenten oder adaptiven Rückhaltesysteme zusammengefasst. Ziel des Projektes "Intelligente Rückhaltesysteme" ist es, die möglichen Verbesserungen der passiven Sicherheit durch die neuen Technologien zu analysieren und darzustellen. Außerdem sind die Auswirkungen auf die gesetzlichen Regelungen zu untersuchen, um so mögliche zusätzliche Schutzpotentiale schnell umzusetzen und eventuelle Risiken zu vermeiden. In einer umfangreichen Literaturrecherche wurde zum einen das Unfallgeschehen analysiert. Ergänzend wurden die Schwerpunkte des Pkw-Unfallgeschehens durch eine Auswertung von Unfalldaten der GIDAS untersucht und dargestellt. Zum anderen wurde der Stand der Technik heutiger und zukünftiger Rückhaltesysteme aufgearbeitet und systematisiert. Dabei wurden die bestehenden und zukünftigen Systeme in ihrer Funktionsweise analysiert und durch ein 3-Ebenen-Modell charakterisiert. Mit Hilfe des Abgleichs der Schwerpunkte des realen Unfallgeschehens mit den RHS und der bestehenden Gesetzgebung wurden Potenziale und Wirkbereiche möglicher Maßnahmen skizziert. Auf der Basis einer Expertenbefragung konnten der Entwicklungsstand der iRHS aufgezeigt und Vorschläge zur Erweiterung der bestehenden Sicherheitsgesetzgebung gemacht werden.