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Gefragt ist nach alterstypischen Verkehrsverstößen, die bei Senioren auf eine zunehmende Verkehrsunsicherheit hinweisen. Die Studie basiert auf Stichprobendaten des Verkehrszentralregisters (VZR) von 350.000 Personen zwischen 35 und 84 Jahren, deren Verkehrsauffälligkeit im Anschluss an eine VZR-Eintragung über zwei Jahre beobachtet wurde. Tatsächlich lässt sich ein alterstypisches Fehlverhalten identifizieren: überwiegend Vorfahrtfehler sowie Fahrmanöver mit hohem Unfallanteil. Zwei gegenläufige Effekte halten sich etwa die Waage: Zum einen weisen Personen mit einem alterstypischen Fehlverhalten in den nachfolgenden Jahren im Vergleich zu Personen mit anderen Delikten erheblich weniger Verkehrsverstöße auf, zum anderen zeigen sie einen bedeutend höheren Unfallanteil an den (reduzierten) VZR-Eintragungen. Beide Effekte werden mit dem Alter prägnanter. Entsprechend dem "Risiko-Homöostase-Modell" versuchen Verkehrsteilnehmer, beide Komponenten im Gleichgewicht zu halten, was mit zunehmendem Alter aber nicht mehr allen gelingt. Diese Ergebnisse wie auch Zahlen der amtlichen Statistik zeigen gegenwärtig aber (noch) kein mit dem Alter bedrohlich steigendes Verkehrsrisiko an. Die vorhandenen Mechanismen " neben der Selbstbeschränkung der Fahrleistung auch die Entziehung der Fahrerlaubnis sowie der Verzicht " scheinen für die weitaus meisten Kraftfahrer auszureichen, ihr steigendes Risiko wegen höherer Fahrunsicherheit im Alter auszugleichen. Auf die Übrigen könnte aufgrund einer VZR-Eintragung mit einem alterstypischen Fehlverhalten durch Verwarnung und Aufklärung, und wenn dies nachweislich einer erneuten Verkehrsauffälligkeit nicht ausreicht, durch weitere Maßnahmen gezielt Einfluss genommen werden. Dies wäre ab einem Alter von 75 Jahren zu erwägen, doch schon ab 70 Jahren zu rechtfertigen. Eine Verwarnung würde ab 70 Jahren gegenwärtig maximal 30.000 Personen pro Jahr betreffen. Mit einer Wiederauffälligkeit innerhalb von zwei Jahren wäre im heutigen System " also ohne Verwarnung " in maximal 2.800 Fällen zu rechnen.
Active safety systems are aimed at accident prevention, hence the knowledge required for their development is different from that required for passive safety systems aimed at injury prevention. Particularly, knowledge about accident causation is required. When looking at existing accident causation data, it is argued it fails to explain in sufficient detail how and why the accidents occur. Therefore, there is a need for detailed micro-level descriptions of accident causation mechanisms, and also of methodologies suitable for creating such descriptions. One study addressing these needs is the Swedish project FICA (Factors Influencing the Causation of Accidents and Incidents), where an accident investigation methodology suitable for active safety is developed, and in-depth accident investigations following this methodology are carried out on-scene in the area of Gothenburg by a multidisciplinary team. A preliminary aggregated analysis of different cases shows that the methodology developed is adequate for pointing out common contributing factors and devising principal countermeasures.
The NHTSA-sponsored Crash Injury Research and Engineering Network (CIREN) has collected and analyzed crash, vehicle damage, and detailed injury data from over 4000 case occupants who were patients admitted to Level-I trauma centers following involvement in motor vehicle crashes. Since 2005, CIREN has used a methodology known as "BioTab" to analyze and document the causes of injuries resulting from passenger vehicle crashes. BioTab was developed to provide a complete evidenced-based method to describe and document injury causation from in-depth crash investigations with confidence levels assigned to the causes of injury based on the available evidence. This paper describes how the BioTab method is being used in CIREN to leverage the data collected from in-depth crash investigations, and particularly the detailed injury data available in CIREN, to develop evidence-based assessments of injury causation. CIREN case examples are provided to demonstrate the ability of the BioTab method to improve real-world crash/injury data assessment.
Im Hinblick auf die prozessbezogenen Beiträge nicht-motorischer Partikelemissionen durch Abriebs- und Aufwirbelung existieren derzeit lediglich Studien, die an stark belasteten Innerortsstraßen oder in Tunneln durchgeführt wurden. Für die Emissionen von Autobahnen konnten die so gewonnenen Ergebnisse daher nicht ohne Weiteres als repräsentativ für die wesentlich häufiger anzutreffende Situation frei angeströmter Autobahnabschnitte betrachtet werden. Um diese Wissenslücke zu schließen, wurden im vorliegenden Projekt an der Autobahn A61 für mehr als 1 Jahr Luv-Lee Messungen durchgeführt. Mittels der NOx-Tracer-Methode wurden die in Tabelle 16 des Berichtes wiedergegebenen partikelmassen-bezogenen Emissionsfaktoren (EFs) ermittelt. Die EFs für PM10 sind mit Ergebnissen anderer Studien aus Deutschland beziehungsweise der Schweiz gut vergleichbar, während sich für die PM1-10-Fraktion geringere EFs ergaben, als aktuell angenommen. Mittels der Positiv-Matrix-Faktorisierung konnten neben den motorischen Emissionen vier nicht-motorische Quellfaktoren identifiziert und quantifiziert werden. Dabei zeigte sich neben einem deutlichen Einfluss durch Tausalzausbringung insbesondere die Relevanz von Bremsabrieb Diese Ergebnisse bestätigen somit auch für freiliegende Autobahnabschnitte die Signifikanz der nicht-motorischen Partikelemissionen für die PM10-Emissionen.
This contribution introduces a number of psychological methods of analysis that are based on the practice-oriented collection of information directly at the site of an accident and that allow for an analysis and coding of the accident causes. Investigation examples and examples of the data combinations with basic medical and technical data are outlined. Objective of the collection is the inter-disciplinary investigation of human factors in the causes of accidents ("human-factor-analysis"). The psychological data are incorporated according to an integrative model for accident causes based on empiric algorithms in the data base of the accident research, where the clustered evaluation potential of comprehensive factors of the accident development can be illustrated. The central theoretical concept for the basic model of the progress of the accident from a psychological point of view comprises psychological indicators for the evaluation of the site of the accident for the analysis of the perception conditions as well as a classification of the gleaned data into the accident progress model according to chronological and local criteria. Perception conditions, action intentions and executions as well as conditions limiting perception and actions are acquired, using a questionnaire for persons involved in an accident, and are also integrated into the data structure concerning weighted feature characteristics as well as combined with other relevant features. Suitable systematization tools for the collection and coding of psychological accident development parameters have to be provided, which require primarily a model image of the corresponding processes from the persons involved in the accident (perceptions, expectations, decisions, actions). The interactive accident model contains components of the models by KÜTING 1990, MC DONALD 1972, SURREY 1969 and RASMUSSEN 1980. Based on the inter-action of the three partial systems "person", "vehicle" and "environment", the first step is the assessment of the situation by the persons involved in the accident. This is dependent on the personal attitudes and motives, on experiences and expectations concerning the progress of the situation. Subsequently, data concerning the manner of the coping with the ambiguous state as well as with the instable state (emergency reaction immediately before the accident occurs) are collected. The factors relating to the persons involved in the accident are gathered on several levels using corresponding questionnaires. The coding of the found and collected characteristics is conducted in a multidimensional evaluation relating to the technical results of the accident reconstruction and of the psychological classification, which are subsequently integrated in coded form into the data base of the accident research. The result of this analysis is a description of the development of the accident depicted on a chronological vector from a perception and decision theoretical perspective. This is explained in detail using exemplary cases.
For the avoidance of traffic accidents by means of advanced driver assistance systems the knowledge of failures and deficiencies a few seconds before the crash is of increasing importance. This information e.g. is collected in the German accident survey GIDAS by an interview derived from the ACAS methodology. However to display the whole range of accident causation factors additional information is needed on enduring factors of the system components "human", "infrastructure" and "machine". On the strategic level these accident moderating factors include long term influences such as medical preconditions or a general higher risk taking behavior as well as influences on the immediate conflict level such as an aggressive response to a perceived previous traffic conflict. This study was conducted to examine the feasibility of collecting such causation information in the scope of an in-depth accident investigation like GIDAS. Due to the comprehensive amount of information necessary to estimate the moderating factors the collection of the information is distributed to different methods. 5 cases of real world crashes have been investigated where information was collected on-scene and retrospective by interviews. The identified moderating factors of the accidents and the method for collecting the information are displayed.
Introduction: The method of causation analysis applied under the German accident survey GIDAS, which is based on Accident Causation Analysis System (ACAS) focuses on an on-scene data collection of predominantly directly event-related causation factors which were crucial in the accident emergence as situational resulting events and influences. The paradigm underlying this method refers to the findings of the psychological traffic accident research that most causally relevant features of the system components human, infrastructure and vehicle technology are found directly in the situation shortly before the accident. This justifies the survey method which is conducted directly at the accident (on-scene), shortly after the accident occurrence (in-time) with the detection of human-related causes (in-depth). Human aspects of the situation analysis that interact and influence the risk situations shortly before the collision are reported as errors, lapses, mistakes and failures in ACAS in specific categories and subcategories. Thus methodically ACAS is designed primarily for the collection of accident features on the level of operational action, which certainly leads to valid findings and behavioral causes of accidents. The enhancement by means of Moderating Conditions concerns the pre-crash phase in different levels: strategical, tactical and operational.
From literature well-known analyzes on risks, hazards and causes of accidents of older drivers are amended by the present study in which a comparison of the specific features of accident causes of older car drivers (older than 60 years) and of younger car drivers (under 25 years) is conducted. Mainly the question is pursued if specific errors, mistakes and lapses are predominant in the two different age groups. The analysis system ACAS (Accident Causation Analysis System) used hereby consists of a sequential system of accident causation factors from the human, the technical and the infrastructural field, whereupon for this study the influence of the human features on the accident development in two different age groups is of interest. ACAS is both an accident model and an analysis and classification system, which describes the human participation factors of an accident and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. In five steps (categories) of a logical and temporal sequence the hierarchical system makes human functions and processes as determinants of accident causes identifiable. The methodology specifically focuses on the use in so-called "In-Depth" and "On-Scene" investigation studies. With the help of the system for each accident participant one or more of five hypotheses of human cause factors are formed and then specified by appropriate verification criteria. These hypotheses in turn are further specified by indicators in such manner that the coding of the causation factors by a code system meets the needs of database processing and are accessible to a quantitative data analysis. The first results of the descriptive comparison of the two age groups concern mainly differences in the functional levels "information admission/perception" (where the elderly drivers have more difficulties than the young ones) and "information processing/evaluation" (where the younger drivers show more problems). Concerning the cognitive function of "planning" the group of younger drivers seems to be more often involved in an accident because of excessive speed.
The "Seven Steps Method" is an analysis and classification system, which describes the human participation factors and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. By means of the "seven steps" it is possible to describe the relevant human causes of accidents from persons involved in the accident in an economic way with a sufficient degree of exactitude, because the causes can be further differentiated in their value (e.g. diversion as external diversion with regard to impact due to surroundings) and their sub values (e.g. external diversion with regard to impact due to surroundings in the shape of a "capture" of the perception by a prominent object of the traffic environment). Theoretically it is possible that one or more causing moments can be assigned to a person involved in an accident in each of the "seven steps"; however it is also possible to sufficiently clarify the cause in only one level (examples for this are described). In the practice of accident investigation at the site of the accident, the sequence chart is also relevant. With its assistance the questioning of the people involved in an accident can be accomplished in a structured way by assigning a set of questions to each step.
Die steigende Lebenserwartung sowie die geringe Geburtenrate führen zu einer Alterung der Gesellschaft, die sich schon heute bemerkbar macht und sich in den nächsten Jahrzehnten noch verstärkt auswirken wird. Damit verbunden ist eine relative Zunahme von Auto fahrenden Senioren. Immer mehr ältere Menschen orientieren sich an einem aktiven Lebens- und Freizeitstil. Dabei spielt der Pkw eine herausragende Rolle - ermöglicht er doch oft erst die Aufrechterhaltung von Mobilität und Unabhängigkeit. Gleichzeitig kann es jedoch mit fortschreitendem Alter zu verschiedenen körperlichen oder geistigen Leistungseinbußen kommen, die möglicherweise die Fahrleistung beeinflussen. Vor diesem Hintergrund rückt die Frage nach den Unfallrisiken älterer Kraftfahrer weiter in den Mittelpunkt des Interesses. Das von der Bundesanstalt für Straßenwesen geförderte Projekt PROSA (Profile von Senioren mit Autounfällen) setzte sich zum Ziel, den Einfluss altersbedingter Leistungseinbußen auf das Unfallrisiko differenzierter zu betrachten. Am Zentrum für Alternskulturen der Universität Bonn wurden Profile von Senioren untersucht, die in einen Autounfall verwickelt waren, und es wurde der Frage nachgegangen, welche Bedeutung diese für die Ableitung von Interventionsmaßnahmen haben. Im Großraum Bonn wurden dazu 180 Senioren mit einem Mindestalter von 65 Jahren interviewt, die in den letzten fünf Jahren als Fahrer eines Pkws in einen Unfall verwickelt waren. Die Teilnehmer wurden zu individuellen Leistungsbeeinträchtigungen und Persönlichkeitsmerkmalen sowie zu ihrer Fahrbiographie und Unfallgeschichte befragt. Darüber hinaus wurde eine Teilstichprobe von 50 Teilnehmern einer internistisch-verkehrspsychologischen Untersuchung sowie einer Fahrverhaltensprobe unterzogen. Die Ergebnisse verdeutlichen, dass das Alter allein kein Prädiktor für individuelle Leistungsfähigkeit und Unfallrisiko darstellt. Vielmehr scheinen spezifische Kombinationen aus alterskorrelierten Einbußen und Krankheit zu einem erhöhten Risiko zu führen. Diese Heterogenität sollte vor allem bei interventiven Maßnahmen und bei künftigen Forschungen berücksichtigt werden.