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Die Dokumentation befasst sich mit den Vorbereitungsarbeiten für die Initiierung der Verkehrssicherheitsaktion "Minus 10 Prozent". Österreichische Bundes- und Landesbehörden sollten durch eine private Institution, dem Kuratorium für Verkehrssicherheit, motiviert werden, der Durchführung dieser Aktion zuzustimmen bzw. diese zu unterstützen. Möglichst viele österreichische Bezirkskörperschaften sollten gewonnen werden, sich freiwillig an dieser Aktion zu beteiligen. Gegründet werden sollte ein Verkehrssicherheitskomitee, in das auch nichtbeamtete Personen aufgenommen werden sollten. Durch ein verstärktes Engagement über die amtlichen Aktivitäten hinaus sollten Unfälle mit Personenschäden binnen eine Jahres um 10 Prozent reduziert werden. Die Vorgangsweisen des Kuratoriums für Verkehrssicherheit zur Motivierung der Bundes-, Landes- und Bezirksbehörden werden ebenso dargestellt wie die ersten Resultate nach Ablauf von 4 Monaten der Aktion, an der alle Bezirkskörperschaften Österreichs teilnahmen.
Auf der Grundlage von 951 Unfallprotokollen aus den Jahren 1997 bis 2005, bei denen Bedienstete, Fahrzeuge oder Geräte der Straßenbauverwaltungen in Arbeitsstellen kürzerer Dauer (AkD) auf Autobahnen zu Schaden kamen, wurden relevante Unfallmuster herausgearbeitet. So konnte im Wesentlichen der Lkw als Hauptunfallverursacher mit einem Anteil von knapp 60 % am Gesamtunfallaufkommen identifiziert werden. Hauptsächlich sind AkD bei Sperrung des rechten Fahrstreifens oder des Standstreifens betroffen. Ein "Anprall von hinten" auf dem rechten Fahrstreifen und ein "seitliches Streifen" auf dem Standstreifen von zum Beispiel Absperrtafeln oder Fahrzeugen treten mit etwa gleichen Anteilen am häufigsten auf. Ferner zeigen die Auswertungen, dass 2/3 aller Unfälle bei stationären AkD aufgetreten sind. Besonders auffällig ist, dass fast 80 % der verunglückten Mitarbeiter in ihrem Fahrzeug zu beklagen sind, nur ca. 20 % der Verunglückten waren beim Unfall außerhalb der Fahrzeuge. Beim Ein- und Aussteigen sind nur 4 Unfälle dokumentiert, diese allerdings mit je zwei Getöteten und Verletzten. Hinsichtlich der relevanten Unfallmuster wurden Maßnahmen abgeleitet, die zum einen die Unfallvermeidung und zum anderen die Unfallfolgenminderung zum Ziel haben. Im Rahmen einer Abschätzung wurden diese Maßnahmen bewertet und das erwartete Reduzierungspotenzial, einerseits bezogen auf die Anzahl vermeidbarer Unfälle und andererseits auf die Vermeidung von Verletzten, abgeleitet. Die Maßnahmen zur Erhöhung der Sicherheit des Betriebsdienstpersonals in AkD wurden hinsichtlich ihrer Wirkungsweise (optisch, akustisch, haptisch) auf den Verkehrsteilnehmer bewertet. Aufgrund der haptischen Wirkungsweise auf die Verkehrsteilnehmer beim Überfahren von Warnschwellen könnte bei stationären AkD ein relativ großes Reduzierungspotenzial zu erreichen sein. Gleiches gilt auch beim Einsatz des Unfall-Vorwarn-Systems (UVS). Das größte Potenzial zur Vermeidung von Unfällen stellt die aktive Fahrzeugsicherheit bei den unfallverursachenden Verkehrsteilnehmern dar. Würden Lkw, die als Hauptunfallverursacher in Relation zu ihrer Fahrzeuganzahl deutlich überrepräsentiert sind, mit radarbasierten Fahrgeschwindigkeitsreglern und Spurassistenzsystemen ausgestattet, könnte mit relativ geringem Aufwand ein hohes Maß an Sicherheit erzielt werden. Nutznießer einer solchen Pflichtausstattung wären darüber hinaus natürlich auch alle anderen Verkehrsteilnehmer, die bei Auffahrunfällen etc. davon profitieren würden. Auf die Installation von aktiven Sicherheitssystemen in Fahrzeuge kann nur durch entsprechende Vorgaben des Gesetzgebers Einfluss genommen werden. Empfehlenswert erscheint außerdem der Einsatz von Unfalldatenschreibern (UDS) inklusive der Dokumentation des Fahrerverhaltens wie zum Beispiel Festhalten des Lenkrades, um den Unfallhergang im Nachhinein rekonstruieren zu können. Insgesamt bieten passive Schutzsysteme in den Betriebsdienstfahrzeugen wegen der hohen Anteile von Verunglückten in den Fahrzeugen das größte Potenzial zur Vermeidung von Verletzungen. So könnten bereits durch die generelle Empfehlung zum Anlegen des Sicherheitsgurtes, auch bei der Absicherung von Arbeitsstellen oder Kurzfahrten, rund 30 % der zu erwartenden verletzten Fahrzeuginsassen vermieden werden. Zur Unterstreichung dieser Maßnahme sollte in entsprechenden Sicherheitsunterweisungen auf die Unfallgefahr hingewiesen werden. Diese sollten nicht nur das jederzeit gegenwärtige Gefährdungsrisiko ins Bewusstsein rufen, sondern auch die Eigensicherung, wie zum Beispiel erhöhte Aufmerksamkeit beim Ein- und Aussteigen, das Anlegen der Sicherheitsgurte, die korrekte Sitzposition sowie die persönliche Kopfstützeneinstellung betreffen. Ein sehr großes Vermeidungspotenzial insbesondere von HWS-Verletzungen bieten zum Beispiel Nackenairbags, aber auch Kopfstützensysteme in Verbindung mit Gurtstraffern mit zu erwartenden Reduzierungen von über 80 % der Verunglückten in den Fahrzeugen.
An approach to the standardization of accident and injury registration systems (STAIRS) in Europe
(1998)
STAIRS is a European Commission funded study whose aim is to produce a set of guidelines for a harmonised, crash injury database. The need to evaluate the effectiveness of the forthcoming European Union front and side impact directives has emphasised the need for real world crash injury data-sets that can be representative of the crash population throughout Europe. STAIRS will provide a methodology to achieve this. The ultimate aim of STAIRS is to produce a set of data collection tools which will aid decision making on vehicle crashworthiness as well as providing a means to evaluate the effectiveness of safety regulations. This paper will disseminate the up-to-date findings of the group as they try to harmonise their methods. The stage has been reached where studies into the diverse methods of the UK, French and German systems of crash injury investigation have been undertaken. An assessment has already been made of the relationships between the three current systems in order to define the areas of agreement and divergence. The conclusions reached stated that there were many areas that are already closely related and that the differences were only at the detailed level. With the emphasis on secondary safety and injury causation, core data sets were decided upon, taking into account: vehicle description, collision configuration, structural response of vehicles, restraint and airbag performance, child restraint performance, Euro NCAP, pedestrian and vehicle occupant kinematics, injury description and causation. Each variable was studied objectively, the important elements isolated and developed into a form that all partners were agreeable on. A glossary of terms is being developed as the project progresses which includes ISO standards and other definitions from the associated CAREPLUS project, which addresses the comparability of national data sets. A major consideration of the group was the data collection method to be employed. The strengths and weaknesses of each study were investigated to obtain a clear idea of which aspects offered the best way forward. The quality of this information and transference into a common format, as well as the necessary error checking systems to be employed have just been completed and are described. In tandem with this area of study the problem of the statistical relationship of each sample to the national population is also being investigated. The study proposes a mechanism to use a sample of crash injury data to represent the national and international crash injury problem
Females sustain Cervical Spine Distortion injury (CSD) more often than males. Most work dealing with the biomechanics background (e.g. injury mechanism/criteria) as well as the application in seat design/testing, focuses on the occupant model of an average male. Therefore the EU-Project ADSEAT (Adaptive Seat to Reduce Neck Injuries for Female and Male Occupants) is aimed at adding a female model for gender balanced research of CSD and improving seat design. An extensive literature review, searching for risk factors and injury criteria for males and females, was accompanied by the evaluation of different databases containing CSD cases. The database evaluations suggests that an anthropometry quite close to the 50%ile female anthropometry as known from crash test dummy design is appropriate. The results presented here form the basis for the future development of a computational female model and the improvement of seat design for better protection of both males and females in the frame of the ADSEAT-Project.
To date, the Trauma Registry (TraumaRegister DGU-® contains data of approximately 100.000 severely injured patients, 65% of which suffered from a road traffic crash. Thus, it is the world's largest data base for severely injured patients. The article describes the development of the registry and explains how it was rolled out over Germany using the established structure of the German Trauma Network (TraumaNetzwerk DGU-®). In addition, this article presents three typical use cases from the fields of quality management, policy making and system-wide interventions, clinical research and injury prevention. In conclusion, the TraumaRegister DGU-® is a well-established tool for various purposes related to the control and reduction of the burden of road injury. Its ongoing expansion to other countries will support the goal of international benchmarking of hospitals and trauma systems.
The primary goal of this investigation was to determine the relative risk of traffic accidents in students. In a two year period, a survey amongst 2,325 students was carried out, and 3,645 injuries sustained by students treated at our hospital were analyzed. Moped-riding in adolescents were associated with a 23.75-fold increased risk for injury as compared to biking. Children who ride bicycles have a 2.2-fold increased risk for an injury sustained by traffic accidents compared to pedestrians. None of 50 injured bicycle riders with helmet had an AIS for head injuries of more than 2. 24 of 233 injured bicycle drivers without helmet had an AIS for head injuries of more than 2. The use of a protective helmet significantly reduced the severity of head injuries. The level of awareness towards danger and a history of previous accidents correlate with the likelihood of future accidents. Due to the severity of traffic accidents, more adequate prevention measures (wearing of bicycle helmets and better education for moped riders) are urgently needed.
Nowadays airbags are part of the standard equipment in almost all new cars. While airbags are saving an increasing number of people from severe injuries and death in moderate and high speed crashes, they do not completely prevent dashboard injuries. The most common mechanism in dashboard injuries is a posteriorly directed force to the proximal tibia with the knee flexed. This may occur during a motor vehicle frontal impact accident when a knee of the driver or the front-seat passenger strikes the dashboard. The posterior force can be combined with a abducting or rotational force leading to concomitant lateral or posterolateral injury. Car and airbag manufacturers therefore develop special inflatable systems to reduce the impact force in dashboard injuries. Every new inflatable system, however, has to be evaluated in out of position situations in which the system might cause injuries to certain body areas. Therefore, we investigated a new kneebag system in different critical seating positions of post mortem test subjects (PMTS). The tested knee airbag module is a folded airbag (18 litre volume) which is installed below the lower section of the instrument panel of a passenger car. Using four PMTS (2 male, 2 female, age 36"67) the following positions were tested: normal seating position, knee flexed >90 degrees and knee flexed <60 degrees in static deployment tests with direct contact. In addition a dynamic test (48.8kph, AAMA-pulse) was carried out with the PMTS belted in a normal seating position. The inflation phase and the impact of the system on the knee/lower leg were analysed by high speed videos. After the test the lower legs of the PMTS were examined by Xray and autopsy. All soft tissue injuries and bone fractures were recorded. All the tests could be evaluated. Except some superficial skin lesions in the impact area no fracture of the bones around the knee and no knee ligament and tendon injuries were observed. Neither video analysis nor autopsy of the PMTS showed any critical contact injuries caused by the inflation process of the bag. Therefore, it can be concluded that in the tested seating positions which are the most critical for the knee area the knee bag system is safe.
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.
The accident research of Hanover and (from 1999 on) Dresden registered 736 leg injuries (AIS ≥ 2) from 1983 to March 2007. 174 of these injuries (23.6 %) were fractures or dislocations of foot and ankle. 149 feet of 141 front seat car occupants in 140 cars were affected. Of these 117 were drivers, 24 were front seat passengers. The mean age of occupants was 38.5 -± 16.8 years. Ankle fractures were the most frequent injury (n = 82; 80 malleolar fractures, 2 pilon fractures). 34 fractures and dislocations affected the hindfoot (5 talus and 26 calcaneal fractures, 2 subtalar dislocations and 1 subtotal amputation) , 16 to midfoot (4 navicular fractures, 5 cuboid fractures, 3 fractures of cuneiformia, 2 dislocations of chopart joint, 1 subtotal amputation, and one severe decollement) and 39 the forefoot (metatarsal fractures). Open fractures were seldom seen (2 malleolar fractures, 1 metatarsal fracture). Both feet were injured in 10 cases. 33 occupants (23.4 %) were polytaumatic had a polytrauma, 17 of them died. 81 percent of the occupants were belted. The cars were divided in pre EuroNCAP (year of manufacture 1997 and older) and post EuroNCAP cars (year of manufacture 1998 and newer). Most of the foot injuries were seen in pre EuroNCAP cars. Most of the occupants sat in compact cars (40 drivers and 9 front seat passengers) and large family cars (27 drivers and 7 co-drivers). 49 of 140 accidents occurred on country roads, 26 on main roads and 13 on motorways. The crash direction was mostly frontal. Generally were found no differences of delta v- and EES-level between the injured foot regions, but divided into pre- and post-EuroNCAP cars there was a tendency to higher delta v- and EES-levels in newer cars. The frequency of foot injuries increased linearly with increasing delta v-level; but above delta v-level of 55 km/h the linear increase only was seen in pre-EuroNCAP cars, post-EuroNCAP cars showed no further increase of injuries. The footwell intrusion showed no difference between the injured foot regions but pre-EuroNCAP cars had a tendency to higher footwell intrusion. There were no differences in footwell intrusion between the car types. Only 29 of 174 fractures or dislocations of foot were seen in post-EuroNCAP cars, the predominate number of these injuries (n = 145) were noticed in pre-EuroNCAP cars. A lower probability of long-term impairment was found in post-EuroNCAP cars for equal delta v levels, using the AIS2008 associated Functional Capacity Index (FCI) for the foot region.
Real world accident reconstruction with the Total Human Model for Safety (THUMS) in Pam-Crash
(2013)
Further improvement of vehicle safety needs detailed analysis of real world accidents. According to GIDAS (German In-Depth Accident Study) most car to car front accidents occur at mid-crash severity. In this range thoracic injuries already occur. In this study a real world frontal crash with mid-crash severity out of the AARU database was reconstructed. The selected car to car accident was reconstructed by AARU by means of pc-crash software in order to get the initial dynamic accident conditions. These initial conditions were used to reconstruct the complete accident in more detail using FE models for the car structure and the occupants. Occupant simulations were performed with FE HIII-dummy models and the THUMS using Pam-Crash code. An initial THUMS validation was performed in order to verify the model-´s biofidelity by means of table-top test simulations. THUMS bone stiffness values were modified to match the real word occupant age. A comparison between driver and passenger restraint system loading was done, as well as an injury prediction comparison between the HIII-dummy model and THUMS response for both cases. Detailed comparison between the HIII-dummy models and THUMS regarding thoracic loading are discussed.