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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.
Advancing active safety towards the protection of vulnerable road users: the PROSPECT project
(2017)
Accidents involving Vulnerable Road Users (VRU) are still a very significant issue for road safety. According to the World Health Organisation, pedestrian and cyclist deaths account for more than 25% of all road traffic deaths worldwide. Autonomous Emergency Braking Systems have the potential to improve safety for these VRU groups. The PROSPECT project (Proactive Safety for Pedestrians and Cyclists) aims to significantly improve the effectiveness of active VRU safety systems compared to those currently on the market by expanding the scope of scenarios addressed by the systems and improving the overall system performance. The project pursues an integrated approach: Newest available accident data combined with naturalistic observations and HMI guidelines represent key inputs for the system specifications, which form the basis for the system development. For system development, two main aspects are considered: advanced sensor processing with situation analysis, and intervention strategies including braking and steering. All these concepts are implemented in several vehicle prototypes. Special emphasis is put on balancing system performance in critical scenarios and avoiding undesired system activations. For system validation, testing in realistic scenarios will be done. Results will allow the performance assessment of the developed concepts and a cost-benefit analysis. The findings within the PROSPECT project will contribute to the generation of state -of-the-art knowledge, technical innovations, assessment methodologies and tools for advancing Advanced Driver Assistance Systems towards the protection of VRUs. The introduction of a new generation safety system in the market will enhance VRU road safety in 2020-2025, contributing to the "Vision Zero" objective of no fatalities or serious injuries in road traffic set out in the Transport White Paper. Furthermore, the test methodologies and tools developed within the project shall be considered for the New Car Assessment Programme (Euro NCAP) future roadmaps, supporting the European Commission goal of halving the road toll in the 2011-2020 timeframe.
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.
The presence and performance of Advanced Driver Assistance Systems (ADAS) has increased over last years. Systems available on the market address also conflicts with vulnerable road users (VRUs) such as pedestrians and cyclists. Within the European project PROSPECT (Horizon2020, funded by the EC) improved VRU ADAS systems are developed and tested. However, before determining systems" properties and starting testing, an up-to-date analysis of VRU crashes was needed in order to derive the most important Use Cases (detailed crash descriptions) the systems should address. Besides the identified Accident Scenarios (basic crash descriptions), this paper describes in short the method of deriving the Use Cases for car-to-cyclist crashes. Method Crashes involving one passenger car and one cyclist were investigated in several European crash databases looking for all injury severity levels (slight, severe and fatal). These data sources included European statistics from CARE, data on national level from Germany, Sweden and Hungary as well as detailed accident information from these three countries using GIDAS, the Volvo Cars Cyclist Accident database and Hungarian in-depth accident data, respectively. The most frequent accident scenarios were studied and Use Cases were derived considering the key aspects of these crash situations (e.g., view orientation of the cyclist and the car driver- manoeuvre intention) and thus, form an appropriate basis for the development of Test Scenarios. Results Latest information on car-to-cyclist crashes in Europe was compiled including details on the related crash configurations, driving directions, outcome in terms of injury severity, accident location, other environmental aspects and driver responsibilities. The majority of car-to-cyclist crashes occurred during daylight and in clear weather conditions. Car-to-cyclist crashes in which the vehicle was traveling straight and the cyclist is moving in line with the traffic were found to result in the greatest number of fatalities. Considering also slightly and seriously injured cyclists led to a different order of crash patterns according to the three considered European countries. Finally the paper introduced the Use Cases derived from the crash data analysis. A total of 29 Use Cases were derived considering the group of seriously or fatally injured cyclists and 35 Use Cases were derived considering the group of slightly, seriously or fatally injured cyclists. The highest ranked Use Case describes the collision between a car turning to the nearside and a cyclist riding on a bicycle lane against the usual driving direction. A unified European dataset on car-to-cyclist crash scenarios is not available as the data available in CARE is limited, hence national datasets had to be used for the study and further work will be required to extrapolate the results to a European level. Due to the large number of Use Cases, the paper shows only highest ranked ones.
Cyclists are more likely to be injured in fatal crashes than motorised vehicles. To gain detailed and precise behavioural data of road users, i.e. trajectories, a measuring campaign was conducted. Therefore, a black-spot for accidents with cyclists in Berlin, Germany was selected. The traffic has been detected by a fully automated traffic video analysis system continuously for twelve hours. The video surveillance system is capable of automatically extracting trajectories, classifying road user types and precise determining and positioning of conflicts and accidents. Additionally, pre-conflict and pre-accident situations could be analysed to provide further in-depth understanding of accident causation. The evaluation of the measuring campaign comprised the investigation of traffic parameters, e.g. traffic flow, as well as traffic-safety related parameters based on Surrogate Safety Measures (SSM). Furthermore, the spatial and temporal distributions of conflicts involving cyclists were determined. As a result, three possible conflict clusters could be identified, of which one cluster could be confirmed by detailed video analysis, showing conflicts caused by right turning vehicles.
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).
Injury probability functions for pedestrians and bicyclists based on real-world accident data
(2017)
The paper is focusing on the modelling of injury severity probabilities, often called as Injury Risk Functions (IRF). These are mathematical functions describing the probability for a defined population and for possible explanatory factors (variables) to sustain a certain injury severity. Injury risk functions are becoming more and more important as basis for the assessment of automotive safety systems. They contribute to the understanding of injury mechanisms, (prospective) evaluation of safety systems and definition of protection criteria or are used within regulation and/or consumer ratings. In all cases, knowledge about the correlation between mechanical behavior and injury severity is needed. IRFs are often based on biomechanical data. This paper is focusing on the derivation of injury probability models from real world accident data of the GIDAS database (German In-depth Accident Study). In contrast to most academic terms there is no explicit term definition or definition of creation processes existing for injury probability models based on empirical data. Different approaches are existing for such kind of models in the field of accident research. There is a need for harmonization in terms of the used methods and data as well as the handling with the existing challenges. These are preparation of the dataset, model assumptions, censored/unknown data, evaluation of model accuracy, definition of dependent and independent variable, and others. In the presented study, several empirical, statistical and phenomenological approaches were analyzed regarding their advantages and disadvantages and also their applicability. Furthermore, the identification of appropriate prediction parameters for the injury severity of pedestrians has been considered. Due to its main effect on injuries of pedestrians and bicyclists, the importance of the secondary impact has also been analyzed. Finally, the model accuracy, evaluated by several criteria, is the rating factor that gives the quality and reliability for application of the resulting models. After the investigation and evaluation of statistical approaches one method was chosen and appropriate prediction variables were examined. Finally, all findings were summarized and injury risk functions for pedestrians in real world accidents were created. Additionally, the paper gives instructions for the interpretation and usage of such functions. The presented results include IRFs for several injury severity levels and age groups. The presented models are based on a high amount of real world accidents and describe very well the injury severity probability of pedestrians and bicyclists in frontal collisions with current vehicles. The functions can serve as basis for the evaluation of effectiveness of systems like Pedestrian-AEB or Bicycle-AEB.
Test and assessment procedures for passive pedestrian protection based on developments by the European Enhanced Vehicle-safety Committee (EEVC) have been introduced in world-wide regulations and consumer test programmes, with considerable harmonization between these programmes. Nevertheless, latest accident investigations reveal a stagnation of pedestrian fatality numbers on European roads running the risk of not meeting the European Union- goal of halving the number of road fatalities by the year 2020. The branch of external road user safety within the EC-funded research project SENIORS under the HORIZON 2020 framework programme focuses on investigating the benefit of modifications to pedestrian test and assessment procedures and their impactors for vulnerable road users with focus on the elderly. Injury patterns of pedestrians and cyclists derived from the German In-Depth Accident Study (GIDAS) show a trend of AIS 2+ and AIS 3+ injuries getting more relevant for the thorax region in crashes with newer cars (Wisch et al., 2017), while maintaining the relevance for head and lower extremities. Several crash databases from Europe such as GIDAS and the Swedish Traffic Accident Data Acquisition (STRADA) also show that head, thorax and lower extremities are the key affected body regions not only for the average population but in particular for the elderly. Therefore, the SENIORS project is focusing on an improvement of currently available impactors and procedures in terms of biofidelity and injury assessment ability towards a better protection of the affected body regions, incorporating previous results from FP 6 project APROSYS and subsequent studies carried out by BASt. The paper describes the overall methodology to develop revised FE impactor models. Matched human body model and impactor simulations against generic test rigs provide transfer functions that will be used for the derivation of impactor criteria from human injury risk functions for the affected body regions. In a later step, the refined impactors will be validated by simulations against actual vehicle front-ends. Prototyping and adaptation of test and assessment procedures as well as an impact assessment will conclude the work of the project at the final stage. The work will contribute to an improved protection of vulnerable road users focusing on the elderly. The use of advanced human body models to develop applicable assessment criteria for the revised impactors is intended to cope with the paucity of actual biomechanical data focusing on elderly pedestrians. In order to achieve optimized results in the future, the improved test methods need to be implemented within an integrated approach, combining active with passive safety measures. In order to address the developments in road accidents and injury patterns of vulnerable road users, established test and assessment procedures need to be continuously verified and, where needed, to be revised. The demographic change as well as changes in the vehicle fleet, leading to a variation of accident scenarios, injury frequencies and injury patterns of vulnerable road users are addressed by the work provided by the SENIORS project, introducing updated impactors for pedestrian test and assessment procedures.
Supported by field accident data and monitoring results of European Regulation (EC) No. 78/2009, recent plans of the European Commission regarding a way forward to improve passive safety of vulnerable road users include, amongst other things, an extension of the head test area. The inclusion of passive cyclist safety is also being considered by Euro NCAP. Although passenger car to cyclist collisions are often severe and have a significant share within the accident statistics, cyclists are neither considered sufficiently in the legislative nor in the consumer ratings tests. Therefore, a test procedure to assess the protection potential of vehicle fronts in a collision with cyclists has been developed within a current research project. For this purpose, the existing pedestrian head impact test procedures were modified in order to include boundary conditions relevant for cyclists as the second big group of vulnerable road users. Based on an in-depth analysis of passenger car to cyclist accidents in Germany the three most representative accident constellations have been initially defined. The development of the test procedure itself was based on corresponding simulations with representative vehicle and bicycle models. In addition to different cyclist heights, reaching from a 6-year-old child to a 95%-male, also four pedal positions were considered. By reconstruction of a real accident the defined simulation parameters could be validated in advance. The conducted accident kinematics analysis shows for a large portion of the constellations an increased head impact area, which can reach beyond the roof leading edge, as well as high average values for head impact velocity and angle. Based on the simulation data obtained for the different vehicle models, cyclist-specific test parameters for impactor tests have been derived, which have been further examined in the course of head and leg impact tests. In order to study the cyclist accident kinematics under real test conditions, different full scale tests with a Polar-II dummy positioned on a bicycle have been conducted. Overall, the tests showed a good correlation with the simulations and support the defined boundary test conditions. Typical accident scenarios and simulations reveal higher head impact locations, angles and velocities. An extended head impact area with modified test parameters will contribute to an improved protection of vulnerable road users including cyclists. However, due to significantly differing impact kinematics and postures between the lower extremities of pedestrians and cyclists, these injuries cannot be addressed by the means of current test tools such as the flexible pedestrian legform impactor FlexPLI. Based on the findings obtained within the project as well as the existing pedestrian protection requirements a cyclist protection test procedure for use in legislation and consumer test programmes has been developed, whose requirements have been transferred into a corresponding test specification. This specification provides common head test boundary conditions for pedestrians and cyclists, whereby the existing requirements are modified and two parallel test procedures are avoided.
Ziel dieses Projekts war es, die visuelle und akustische Wahrnehmung der Verkehrsumwelt von Radfahrern zu beschreiben, und Wahrnehmungsfehler und deren Ursachen zu identifizieren. In einer Literaturanalyse wurden die bisherigen Erkenntnisse zusammengetragen. Noch weiß man nicht viel über die visuellen und noch viel weniger über die akustischen Wahrnehmungsmechanismen und Wahrnehmungsfehler von Radfahrern, auch wenn das Thema zunehmend ins Forschungsinteresse rückt. Um herauszufinden wie viele Unfälle auf Wahrnehmungsfehler zurückgehen, und unter welchen Bedingungen sie besonders häufig auftreten, wurde eine Unfallanalyse durchgeführt. Bei 1232 Radverkehrsunfällen aus GIDAS wurden Art, Häufigkeit und mögliche (mit-)beeinflussende Faktoren von Wahrnehmungsfehlern haupt- oder alleinschuldiger Radfahrer bestimmt. So wurde bei jedem vierten Unfall ein visueller (nie ein akustischer!) Wahrnehmungsfehler des haupt-/alleinschuldigen Radfahrers in der Unfallhergangsbeschreibung berichtet. Explorativ geprüft wurde daraufhin, bei welchen Umwelt- und Fahrermerkmalen Wahrnehmungsfehler vergleichsweise häufiger auftreten als andere Fehler. Häufiger sind sie: - beim Einbiegen/Kreuzen, - an Grundstückszufahrten und Einmündungen, - bei Tage, - und bei Radfahrern unter 15 Jahren. Nicht (wesentlich) häufiger sind sie hingegen bei - schlechter Witterung, z.B. Regen und Nebel, - Radfahrern über 55 Jahren oder über 75 Jahren, - und (nicht korrigierten) Sehbeeinträchtigungen der Radfahrer. Dafür kommen verschiedene Erklärungen (z.B. Kompensationseffekte, methodische Artefakte) in Frage. Zu selten berichtet, um den Zusammenhang zu Wahrnehmungsfehlern zu prüfen wurden bspw. ablenkende Tätigkeiten (Underreporting möglich). Die oft knappen Unfallhergangsbeschreibungen erschweren die nachträgliche Identifikation von Wahrnehmungsfehlern. Ziel der Aufgabenanalyse war es, die Art der Bewältigung verschiedener Fahrsituationen durch Radfahrer zu erfassen. Der Fokus lag auf der Identifizierung typischer perzeptiver und auch kognitiver Prozesse, und der daraus resultierenden Beanspruchung in fünf auf Video aufgezeichneten Verkehrssituationen. Aufgabe der Probanden war es, laut zu denken, wo sie als Radfahrer hinschauen oder hinhören, welche Entscheidung sie treffen, wie sie handeln, von welchen Faktoren dies abhängt, und wie beanspruchend sie dies empfinden. Die Ergebnisse liefern einen Einblick in typische Wahrnehmungsmechanismen, wie z.B. den Wechsel zur gezielten Informationssuche von einer eher reizgesteuerten Aufmerksamkeit bei bestimmten Hinweisreizen, die akustische Überwachung des rückwärtigen Verkehrsraums, die erkannte Fehleranfälligkeit rein akustischer Wahrnehmung und deren Kompensation durch Kontrollblicke, auf die bei Entscheidungen unter Zeitdruck verzichtet wird. Zu Projektabschluss wurde ein Expertenworkshop durchgeführt, um Maßnahmen zur Erhöhung der Sicherheit des Radverkehrs zu diskutieren und weitere Forschungsbedarfe abzuleiten. Diskutiert wurden Maßnahmen zur Vermeidung von Wahrnehmungsfehlern bei Radfahrern aus folgenden Gründen: - Unaufmerksamkeit bzw. Ablenkung, - Unpassende Gestaltung der Verkehrsumwelt, - Eingeschränkte Kompetenz oder Bereitschaft zu sicherem Verkehrsverhalten. Die im Workshop diskutierten Maßnahmen zur Vermeidung von Wahrnehmungsfehlern setzen auf verschiedenen Ebenen (Unterstützung der Wahrnehmung, der Situationseinschätzung, der Bewusstmachung oder des Enforcements sicheren Verkehrsverhaltens) an. Weitere Forschungsbedarfe wurden aufgezeigt. Dazu gehören u.a. die Evaluation der Wirksamkeit von Maßnahmen, und das Verständnis der typischen visuellen und akustischen Wahrnehmungsprozesse von Radfahrern.
Der Artikel fasst mögliche Probleme, die nach Ansicht von Mitarbeitern des Arbeitskreises 3.3.6 "Aktuelle Themen der Lichtsignalsteuerung" der Forschungsgesellschaft für Straßen- und Verkehrswesen (FGSV) bei der Aufhebung der Radwegbenutzungspflicht aus verkehrssicherheitlicher und verkehrstechnischer Sicht an Knotenpunkten mit Lichtsignalanlagen entstehen können, zusammen. Nach derzeitigem Erkenntnisstand kann nicht ausgeschlossen werden, dass die Aufhebung der Benutzungspflicht von Radwegen und die damit zu erwartende Führung des Radverkehrs, sowohl gemeinsam mit dem Kraftfahrzeugverkehr auf der Fahrbahn als auch gleichzeitig auf einem im Seitenraum verlaufenden nicht benutzungspflichtigen Radweg, im täglichen Betrieb zu Problemen führen kann. Aus Sicht der Verkehrssicherheit sind an Knotenpunkten das Unterschreiten von seitlichen Sicherheitsabständen, Probleme wegen doppelten Konfliktpunkten, das Fahren auf falsche Signale und eine Überforderung der Verkehrsteilnehmer zu befürchten. Aus verkehrstechnischer Sicht ist zu beachten, dass vor allem an hoch belasteten Knotenpunkten Auswirkungen auf die Leistungsfähigkeit zu erwarten sind. Die im Beitrag genannten möglichen Auswirkungen sollten stets in den Abwägungsprozess zur Aufhebung der Benutzungspflicht mit einbezogen werden.
Die Radfahrausbildung (RA) im vierten Schuljahr ist der wichtigste Baustein der Verkehrssicherheitsarbeit in der Schule. Ihr Stellenwert entspricht der Bedeutung, die das Fahrrad für Kinder und Jugendliche zunächst als Spielgerät, dann zunehmend als Verkehrsmittel hat. Die Verkehrsteilnahme von Kindern hat sich in den letzten Jahren jedoch stark verändert, die eigenständige Mobilität hat abgenommen. Das Fahrrad stellt zwar weiterhin ein für Kinder aller Altersgruppen wichtiges Verkehrsmittel dar, Kinder haben jedoch insbesondere in den Städten immer weniger Gelegenheit, es eigenständig zu nutzen. Auch deshalb nehmen Kinder heute mit anderen motorischen Voraussetzungen an der schulischen RA teil als früher. Im vorliegenden Forschungsprojekt war zu untersuchen, mit welchen Inhalten und Vorgehensweisen die heutige Radfahrerziehung in der Grundschule arbeitet. Andererseits war auch zu klären, wie sich individuelle Leistungsunterschiede und -schwächen von Kindern beim Beherrschen des Fahrrads empirisch erfassen lassen und von welchen individuellen, sozialen oder physischen Randmerkmalen sie vorrangig beeinflusst werden; der derzeitige Forschungsstand hierzu wurde diskutiert und bildete die Grundlage für die Planung der breit ausgelegten empirischen Erhebungen. Auf der Grundlage der Erkenntnisse sollten Vorschläge für eine künftige Radfahrausbildung in der Schule erarbeitet werden. Dazu wurden während laufender Kurse zur Radfahrausbildung Polizisten, Lehrerinnen, Eltern und Kinder (insgesamt etwa 3.000) schriftlich befragt, zusätzlich erfolgte eine bundesweit repräsentative Online-Befragung von 1.000 Eltern 8-10-jähriger Kinder. In einer weiteren Befragung von Polizeiverkehrslehrern wurde nach innovativen Modellen der motorischen Förderung gesucht, von denen 17 Polizeidienststellen, die zuständigen Klassenlehrerinnen, Eltern sowie Kindern als zweite Welle der Hauptbefragung näher untersucht wurden. Zur qualitativen Analyse der Abläufe bei der Radfahrausbildung und zur Entwicklung von Vorschlägen wurden vier Fachkonferenzen und ergänzende Interviews bundesweit durchgeführt. Die Auswertung der Befragungen zeigte, dass die Radfahrausbildung nach wie vor flächendeckend im ganzen Land durchgeführt wird, in der Regel in der Arbeitsteilung von Schule und Polizei. Allerdings gibt es auf Seiten der Polizei in den letzten Jahren Veränderungen. Die Inklusion wird zunehmend wichtiger, stößt aber bei der praktischen Radfahr-Ausbildung vor allem im Verkehrsraum an ihre Grenzen. Die von allen Beteiligten intensiv diskutierten motorischen Schwächen der Kinder beim Radfahren lassen sich anhand der erhobenen Kenngrößen (Einschätzungen von Eltern, Selbsteinschätzungen der Kinder, Ergebnisse von experimentellen Kurztests, Schulnoten) ausreichend präzise erfassen, wobei eine Fülle verschiedener Faktoren als Ursachen anzusehen sind. Allerdings ist das Thema für die Polizei wichtiger als für Lehrkräfte, die motorische Schwächen der Kinder vergleichsweise seltener erkennen. Eine vielfältige motorische Förderung gehört heute zur Praxis der Schulen, ist aber oft nicht umfassend und kontinuierlich genug. In einem Umfeld, das Bewegungserfahrungen der Kinder einschränkt, wird vermehrt eine besonders intensive Förderung angeboten, wie die Untersuchung belegt. Fast alle Kinder haben ein Kinderrad (im Mittel seit dem Alter von 3,6 Jahren), 50 % der Kinder haben vorher mit einem Laufrad gespielt. Die Laufradnutzung wirkt sich positiv auf die motorischen Fertigkeiten aus. Etwa 1/6 der Kinder hat im Umfeld der Wohnung keine Möglichkeit zum Radfahren. Der Großteil der Eltern hat mit dem Kind das Radfahren geübt, am intensivsten zwischen dem 5. und 8. Lebensjahr. Ein Drittel der Eltern hatte die Kinder dabei jedoch nicht oder nur wenig unterstützt. Die Autoren empfehlen, wegen des großen Stellenwertes der Polizei-Mitwirkung diese unbedingt zu erhalten. In Bundesländern, wo Kürzungen nicht verhindert werden können, sollte vorab versucht werden, durch Absprachen zwischen allen Beteiligten (Schule, Polizei, Elternvertreter, außerschulische Unterstützer) Erfolg und Qualität der Ausbildung langfristig zu sichern. Unabhängig davon sollte auch überlegt werden, wie Eltern in stärkerem Maße selber unterstützen können und in stärkerem Maße beteiligt werden können. Ein gewisses grundlegendes Maß an Polizeiunterstützung ist aber aus Sicht der Autoren unverzichtbar, damit das System funktionsfähig bleibt. Optimierungspotenziale werden auch bei einer intensiveren Abstimmung und Kommunikation zwischen allen Beteiligten (Kindergärten, Schulen, Polizei, Eltern), bei einer umfassenderen motorischen Förderung sowie bei der Lehrerausbildung gesehen. Eltern sollten frühzeitig schon im Kindergarten informiert werden (z. B. über den Nutzen von Laufrädern) und klare Hinweise sowie Übungsangebote erhalten, z.B. in Form von Hausaufgaben mit Bewegungsanteil oder zu Radfahrübungen.
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.
This study aimed at comparing head Wrap Around Distance (WAD) of Vulnerable Road User (VRU) obtained from the German in-depth Accident Database (GIDAS), the China in-depth Accident Database (CIDAS) and the Japanese in-depth Accident Database (ITARDA micro). Cumulative distribution of WAD of pedestrian and cyclist were obtained for each database (AIS2+) showing that WAD of cyclists were larger than the ones of pedestrians. Comparing three regions, the 50%tile WAD of GIDAS was larger than that of both Asian accident databases. Using linear regression that might predict WAD of pedestrians and cyclists from Impact speed and VRU height, WADs were calculated to be 206cm/219cm (Pedestrian/Cyclist) for GIDAS, 170cm/192cm for CIDAS and 211cm/235cm for ITARDA. In addition, this study may be helpful for reconsideration of WAD measurement alignment between accident reconstruction and test procedures.
Within the COST Action TU1101 the working group WG 1 is dealing with acceptance criteria and problems in helmet use while bicycling concerning conspicuity, thermal stress, ventilation deficits and other potential confounding. To analyze the helmet usage practice of bicyclists in Europe a questionnaire was developed in the scope of working group 1 to collect relevant information by means of a field study. The questionnaire consists of some 66 questions covering the fields of personal data of the cyclist, riding und helmet usage habits, information concerning the helmet model and the sensation of the helmet, as well as information on previous bicycle accidents. A second complementary study is conducted to analyze if the use of a bicycle helmet influences the seating geometry and the posture of cyclists when riding a bicycle and if the if the helmet vertically limits the vision. For this purpose cyclists with and without helmets were photographed in real world situations and relevant geometrical values such as the decline of the torso, the head posture of the upper vertical vision limit due to the helmet were established from the photos. The interim results of the field studies which were conducted in Germany by the Hannover Medical School are presented in this study. Some 227 questionnaires were filled out, of which 67 participants had used a helmet and 42 of the 227 participants have had a bicycle accident before. For the analysis of the riding position and posture of the cyclist over 40 pictures of riders with a helmet and over 240 pictures of riders without a helmet were measured concerning the seating geometry to describe the influence of using a bicycle helmet. Some results in summary: From the riders interviewed with the questionnaire only 11% of the city bike riders and 12% of the mountain bike riders always used the helmet, while 38% of the racing bike riders and 88% of the e-bike-riders always used the helmet. The helmet use seems not to change the sensation of safety of cycling compared to the use of a car. The arguments for not wearing a helmet are mostly stated to be the short distance of a trip, high temperatures or carelessness and waste of time. The reasons for using a helmet are stated to be the feeling of safety and being used to using a helmet. Being a role model for others was also stated to be a reason for helmet use. Concerning the sensation of the helmet 9% of the riders reported problems with the field of vision when using a helmet, 57% saw the problem of sweating too much, and 10% reported headaches or other unpleasant symptoms like pressure on the forehead when using the helmet. The analysis of the seating posture from the pictures taken of cyclists revealed that older cyclists generally have a riding position where the handle bar is higher than the seat (0-° to 10-° incline from seat to handlebar), while younger riders had a higher variance (between -10-° decline and 20-° incline). Further, elderly riders and riders with helmets seem to have a more upright position of the upper body when cycling. The vertical vision limit due to the helmet is determined by the front rim of the helmet (mostly the sun shade). Typical values here range from 0-° (horizontal line from the eye to the sun shade) to 75-° upwards, in which elderly riders tend to have a slightly higher vertical vision limit possibly due to the helmet being worn more towards the face.
Cycling supports the independence and health of the aging population. However, elderly cyclists have an increased injury risk. The majority of injured cyclists is victim of a single-sided accident, an accident in which there is no other party involved. The aim of the project "Safe and Aware on the bicycle" is to develop guidelines for an advisory system that is useful in preventing single-sided accidents. This system is able to support the elderly cyclist; enabling the cyclist to timely adapt his cycling behaviour and improve cycling safety and comfort. For the development of such advisory system the causes of singles accidents and the wishes of the elderly cyclist must be known. First step to obtain this insight was a literature survey and an GIDAS research. Unfortunately accidentology research with GIDAS did not give the full understanding of the pre-crash situations and (especially the behaviour related) factors leading to the accident. The second step was consultation of elderly cyclist through a questionnaire (n=800), in-depth interviews (n=12) and focus group sessions (n=15). This offered complementary information and a much better understanding of the behavioural aspects. Results concern the behaviour in traffic and identify specific physical (i.e. problems looking backwards over the shoulder) and mental issues. Furthermore, the needs and wishes for support in specific cycling situations were identified. In conclusion; The GIDAS results together with the information obtained contacting the elderly cyclists enabled setting up requirements for an advisory system, which is useful in preventing single-sided accidents.
The Traffic Accident Research Institute at University of Technology Dresden investigates about 1,000 accidents annually in the area around and in Dresden. These datasets have been summarized and evaluated in the GIDAS (German Accident In-Depth Study) project for 13 years. During the project it became apparent that the specific traffic situation of a covert exit of a passenger car and an intersecting two-wheeler involves a high risk potential. This critical situation develops in a large part due to the lack of visibility between the driver and the intersecting bike. In this paper the accident avoidance potential of front camera systems with lateral field of view, which allows the driver to have an indirect sight into the crossing street area will be presented.
The objective of the study is to measure the risk of pedestrian and bicyclist in urban traffic through an analysis of real-world accident data. The kinematics and injury mechanisms for both pedestrian and bicyclists are investigated to find the correlation of injury risks with injury related parameters. For this purpose, firstly 338 cases are selected as a sample from an IVAC accident database based on the In-depth Investigation of Vehicle Accident in Changsha of China. A statistic measurement of the fatality and serious injury risks with respect to impact speed was carried out by logistic regression analysis. Secondly, 12 pedestrian and 12 bicyclist accidents were further selected for reconstruction with MADYMO program. A comparative analysis was conducted based on the results from accident analysis and computer reconstructions for the injury risk, head impact conditions and dynamic response of pedestrians and bicyclists. The results indicate that bicyclists suffered lower risks of severe injuries and fatalities compared with pedestrians. The risks of AIS 3+ injury and fatality are 50% for pedestrians at impact speeds of 53.2 km/h and 63.3 km/h, respectively, while that for bicyclists at 62.5 km/h and 71.1 km/h, respectively. The findings could have a contribution to get a better understanding of pedestrians" and bicyclists" exposures in urban traffic in China, and provide background knowledge to generate strategies for pedestrian protection.
Cycle helmets have continued to increase in popularity since their introduction half a century ago. Many studies indicate that overall, head injury can be significantly reduced by wearing them. This study was conducted using two distinct sets of real-world cycling collision data from Ireland, namely cases involving police collision reports and cases involving admission to a hospital emergency department. The analyses sought to simulate and analyse the protective performance of cycle helmets in such collision scenarios, by comparing the Head Injury Criterion score and peak head accelerations, both linear and angular. Cycle collisions were simulated using the specialised commercial software MADYMO. From the simulation results, these key metrics were compared between the same-scenario helmeted and unhelmeted cyclist models. Results showed that the inclusion of bicycle helmets reduced linear accelerations very significantly, but also increased angular accelerations significantly compared to unhelmeted situations. Given the modest protective performance of cycle helmets against angular accelerations, it is recommended that cycle helmet manufacturers and international test standards need to pay more attention to head angular accelerations.