Layout 1 “Balancing” children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 Risk-adjusted behavior has been studied extensively in children, adolescents, and adults.1,2 However, the main focus is usually on children, as they are the most vulnerable to accidental injuries.3,4 Several factors seem to influence the assumed physical risk, that is, the result of all behaviors associated with numerical probabilities of undesirable results such as wounds, bruises, or fractures. As for children in the early years of life, it seems that the incidents are mainly due to the willingness for exploration and to the skills not yet fully developed, which, often, are overestimated by the children themselves. Both cognitive and emotional factors lead to children’s physical risk-taking, as they often assume «behaviors that could result in physical injury when there are alternative behaviors that do not do so».5 There is a difference between the perception of a child’s risk and that of an adult: adults use criteria like severity and probability of occurrence and associate them with cognitive, emotional, and social factors. On the contrary, children, due to the lack of experience, are not able to combine these factors and thus commit errors of estimation about the extent of the risk. The difference in risk-taking behaviors across ages has been suggested to rely on the relative strength of inhibitory control over positive impulses as age increases.6 First, it was noticed that the character is conditioned by the sex of the child. The male sex, in fact, involves a greater emotional activation, with consequent impulsive- ness and a greater tendency to exploration, implying in turn, a preference for physical games and aggressive and oppositional conduct. This is confirmed by studies car- ried out by Morrongiello and Dowber:7 by observing the behaviour of children and by applying IBC (Injury Be- havior Checklist) questionnaires to mothers with chil- dren between 30 and 42 months old, the authors concluded that boys tend to approach and touch poten- tially dangerous objects, while girls have a greater ten- dency to listen to the indications of their mothers. In addition to the biological conditions of the sex itself, the impetuous temperament of the male is also likely due to social and cultural conditions. A study by Granié in 20108 showed that, especially at preschool age, there is a stereotype that activities taken as masculine are more dangerous than those taken as feminine. Secondly, we have the temperament of the child himself. The studies carried out are different and focus on different aspects of temperament. Schwebel in 2004,9 for example, fo- cused on impulsiveness, Boles and his collaborators in 200510 on hyperactivity, as well as Garzon, Huang and Todd in 2008.11 Morrongiello, Corbett, and Brison in 2009 12 focused on poor inhibitory control. One of the features that has mostly attracted attention is the search Abstract Children are not fully able to associate severity and injury probability with cognitive, emotional, and social factors. This study focused on physical risk-taking by exploring the associations between risk propensity and physical balance during the developmental age. Specifically, sixteen girls aged 58 to 108 months (≈ 5 to 9 years), of whom 43.75% normal-weighted and all were active in rhythmic gymnastics, were subjected to a combination of physical tests (i.e., static and dynamic) and questionnaires to evaluate balance, sensation seeking, and risk propensity, respectively. Our results showed that the better the static balance, the higher the sensation seeking and risk propensity, while age had a negligible effect on these associations. Our study suggested that balance affects propensity towards risky behaviors in children. Key Words: girls, rhytmic gymnastics, coordination, sensation seeking. Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 “Balancing” children’s physical risks: relationship between balance and risk propensity in developmental age of an Italian children group Mara Pischetola,1 Simona Boncompagni,2,3 Danilo Bondi2 1School of Medicine and Health Sciences, University “G. d’Annunzio” Chieti-Pescara, Chieti, Italy; 2Department of Neuroscience, Imaging and Clinical Sciences (DNICS), University “G. d’Annunzio” Chieti-Pescara, Chieti, Italy; 3Center for Advanced Studies and Technology (CAST), University “G. d’Annunzio” Chieti-Pescara, Italy. This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (CC BY-NC 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited. - 57 - Balancing children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 for exciting sensations, the «sensation seeking», which deserved a questionnaire for its own assessment, released by Morrongiello, Sandomierski and Valla13 based on pre- vious observations by Sundelin and colleagues14 called the Sensation Seeking Scale. Last, but not least, is the role played by adult supervision and their perception of children’s attitudes. Supervision is defined by Saluja and her collaborators in 200415 as the union of three factors: i) attention in listening and observation, ii) physical proximity, and iii) continuity of supervisory behaviors. Just one of them, physical proximity, is defined as a probable cause of the increased probability of accidents, as with increasing age, the adults tend to move further and further away from supervision. Although parental and environmental strategies reduce children’s risk of in- home injury, continuous and close supervision does not always lead to a lower incidence of unwanted events; in- deed, the occurrence of child injuries results from mul- tiple interacting factors 16,17. The significant difference in the outcomes is probably due to the adults’ involve- ment, whether they are extremely protective or com- pletely intolerant of risk. Differences in the approaches of parents, which rely on different methodologies and cultural characteristics, may also determine differences in outcomes across studies. The child factors in pre-school children have been re- ported to rely on search for exciting sensations and reck- lessness, associated with risk propensity behavior, at least for light injuries.18 Greater balance skills improve the developmental trajectories for coordination,19,20 thereby likely reducing the rate of sustaining injuries and falls, which in turn may influence the choice of risky behaviors. However, the relationship between physical performance, risk propensity, and the search for exciting sensations, although empirically plausible, has been poorly investigated, particularly during devel- opmental ages. This work aimed to find original new factors which may determine an increase in propensity to physical risk by investigating the associations between risk propensity and balance, on an Italian group of young girls involved in rhythmic gymnastics. Materials and Methods Participants The study includes sixteen female children of Italian na- tionality aged between 58 and 108 months. Girls were members of the «Leviosa Amateur Sports Association», where the girls engage in both recreational activities, motor activities, and sports specialization toward rhyth- mic gymnastics. All the subjects except one lived and at- tended schools in the same municipality. One subject lived and attended school in an adjacent municipality. None of the participants had diagnosed neurological, neuromotor, sensorial, psychological or behavioral dis- orders. Following the signing of the authorizations by parents or legal guardians, the project was carried out in the Lev- iosa ASD’s facilities; a sports technician conducted all activities. Participants underwent: i) two specific motor function assessment tests to discriminate balance ability, ii) two balance assessment tests, and iii) two question- naires to assess risk propensity. Inclusion criteria of non-pathological balance were based on two assessments. The first assessment was the Oseretsky-Guilman battery test 21, which requires: children of 4-5 years to maintain balance on united tiptoes with eyes opened and arms ex- tended along the sides for at least 10 s, children of 6 years old to support themselves on one leg with the other flexed at 90° for at least 10’ s in both sides, children of 7 years old to maintain on tiptoe position with closed heels and knees bent apart, eyes closed and arms ex- tended out for at least 10’ s, and children of 8 years to remain on tiptoe with trunk flexed to 90° and arms be- hind for at least 10 s; outcome of functional development requires success in at least one out of three trials; rock- ing, stepping, loss of balance, falling and lossof position were counted as failures. The second assessment was the Babinsky and Weil test,22 which requires participants to advance four steps for- ward and four steps backward with eyes closed; success was considered when the subject was able to draw a straight line, while pathological outcomes include typi- cally either star gait, slight deviation towards one side, or irregular steps with excessive deviation and hes- itant gait. Procedures The participants that were considered approved in tests 1 and 2 had then weight and high registered and followed the tests required to answer the main study’s questions: i) the Fleshman test, consisted in a version modified by Italian Olympic Committee (CONI) - section Carrara:23 the participant stands with one foot on a metal board ≅30 cm long and 2 cm thick while supporting with one hand to a side wall; following the start signal, the hand must be detached from the wall and participant holds the po- sition as long as possible; two attempts per leg were car- ried out and the average of the trial times was registered; this test was used for assessing static balance; ii) the Walking Test named as «ant» test, which is part of the MABC-2 battery24 and requires subjects to walk in a straight line for 4.5 m while alternately placing the heel of front foot touching the toe of the rear foot; one famil- iarization trial and two effective trials were conducted thus registering the lowest; failures were marked if leaving the line, losing balance, and not following direc- tions for foot position; this test was used to assess dy- namic balance. Both i) and ii) tests constituted the coordination assess- ment. The two questionnaires were administered by ensuring not too much time to answer in order to leave the true inclination come out and to avoid influences from exter- nal thoughts and factors. The “Sensation Seeking Scale” for children (SSS) was used as described by Hoyle25 The Scale is composed by - 58 - Balancing children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 14 items in which responses range from «totally dis- agree» (score 1) to «totally agree» (score 5). The higher the total average, the greater the risk propensity. When the final score reaches above 3.10 points the SSS and consequently risk propensity is considered high. The Risk Propensity Scale (RPS) was adapted from Meertens & Lion, 200826 and consists of 7 items with a rating scale from 1 («totally disagree») to 9 («totally agree»); for calculating the total score, 1, 2 and 3 items’ scores are considered in reverse order. We removed item 5 due to the girls’ difficulty in understanding the double negation of the text. Nevertheless, the adaptation of items, the score was not adapted, since it relies on the average. The higher the total average, the greater the risk propensity. When the final score reaches above 4.29 points, the degree of risk propensity is considered high. Statistical analysis After all the tests were completed, we compared results from the coordinative tests and risk propensity question- naire. Before that, in order to confirm that weight would- n’t influenced the main results, we analyzed three variables by separating the participants in categories using the FitBack Class Report (www.fitbackeurope.eu/ en-es/fitness-report).27 After categorization, one-way ANOVA was used to compare the 3 graphs, considering p≤ 0.05 as significant. Pearson’s Correlation was also applied, and r was considered a strong correlation when > 0.7. After that, and in order to verify if there was any correlation between the test’s results, questionnaires and age. Statistical analyses and graphs were made with Ja- movi (v. 2.3.21.0) and GraphPad Prism (v. 10.0.1). Results The results generated four categories: i) underweight, ii) normal weight, iii) overweight, and iv) obese. All sixteen girls successfully completed the two pre-assessments for non-pathological balance and were then considered for this study. BMI categorized using Fitback data,27 a large- scale European survey on fitness in developmental age, revealed that 43.75% of them were categorized as normal weight, 25% as overweight, 25% percent as underweight, and only one subject categorized as obese. Summary of descriptive age and BMI characteristics and the main re- sults of Linear, Fleshman, RPS, SSS tests are shown in Table 1. The comparisons by weight categories were far from sta- tistically different for all the tests, as demonstrated in Table 2. Considering all these results, we can assume that weight does not influence the test results. - 59 - Table 1. Descriptive characteristics of participants and results of physical tests and questionnaires. Age Linear test Fleshman test RPS SSS (months) (seconds) (seconds) N 16 16 16 16 16 Mean 86.31 20.81 3.46 4.29 3.10 St. dev. 15.76 3.82 0.80 2.21 0.63 RPS, risk propensity scale; SSS, sensation seeking scale. Table 2. Statistical results of comparisons grouping all weight categories; one-way ANOVAs were carried out with Welch method. F df1 df2 p Linear 0.262 2 5.204 0.779 Fleshman 0.133 2 6.191 0.878 RPS 0.208 2 7.085 0.817 SSS 0.238 2 6.529 0.795 df, degree of freedom; RPS, risk propensity scale; SSS, sensation seeking scale. http://www.fitbackeurope.eu Balancing children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 Correlation analysis among variables without weight grouping revealed that static balance is positively related (Fleshman test) with seeking sensation (SSS) (r=0.715, p=0.002). Static balance showed to be borderline cor- related to risk propensity (RPS) (r = 0.575, p = 0.020). Dynamic balance showed no correlation with sensation seeking or risk propensity. See Table 3 for data. In ad- dition, static and dynamic balance were revealed to be in- versely associated: the longer participants maintained the static balance, the lower the time for the «ant» test (r=- 0.595, p=0.015). In the same way, SSS and RPS were pos- itively associated, as to confirm both focus on the same psychological construct (r=0.674, p = 0.004). When age was used as a controlling factor (pairwise cor- relation), it had a a negligible effect in all associations, These results are shown in Figure 1 by plotting test results on age. Discussion The main objective of this study was to find a novel vari- able that determines an increase in propensity to physical risk, which has not been studied yet. By observing the be- haviors of girls in the developmental age group, we hy- pothesized that balance was a good candidate to investigate. All the tests used proved to be greatly feasible for the evaluation of skills in girls of developmental age, both for their simplicity and for the speed at which they can be performed. None of the participants felt discour- aged or frightened by the tests; on the contrary, they en- joyed their involvement in the test. The two questionnaires proved to be useful and comprehensible. The speed and simplicity of the administration were useful in order to avoid boredom and unwillingness in the compilation by the girls. Both static and dynamic balance were herein considered pillars for building movement patterns during early childhood, relying on the complexity of balance, which results from multiple sensorimotor processes. In addition to the clinical assessment of children who strug- gle with their balance or experience dizziness, we consid- ered stability skills at the forefront of fundamental motor skills for leading the differences in motor behaviors and sensation seeking during early childhood. The most important result was that the better the static balance, the higher the risk propensity and sensation seeking of girls. Therefore, in the model that strongly links self-reported sensation seeking to a child’s risk-tak- ing and history of injuries,18 balance can represent a novel layer of interest. Overweight did not affect our re- sults, since differences in performance by weight cate- gory were negligible. Age only partially mitigated the associations between variables. An explanation for our results can rely on self-esteem and self-confidence as a result of a better ability to maintain balance. Other ex- planations could, instead, be found by analyzing the ef- fect of the vestibular apparatus on the general vision, i.e., the appearance of the world, but this last possibility should be investigated in future studies through appro- priate instruments and by including children with dys- functions. Obviously, the nature of this work - i.e., pilot study - limits the possibility to infer our insights, and it has to be con- sidered a starting point for broader and more general fu- ture studies with more participants, wider age groups and both genders. However, our insights contribute to extend- ing the model of risk propensity during developmental ages. During infancy, to limit unintentional injuries, in ad- dition to parents’ supervision, attention can be paid to haz- ard removal, particularly during the emergence of motor milestones,28 since the greater the motor skills devel- opment, the more frequent the individual infant injury-risk behaviors.29 During pre-school and school ages, risk pro- pensity can result in unintentional injuries, when the fine trade-off between risk acceptance and avoidance, nec- essary for motor development through physical activity, does not guarantee the safety of children. More frequently, unintentional injury occurrence during school age has been linked to psychological difficulties, behavioural problems, and risk-taking behaviour; however, other child factors such as history of injury, having a sensory deficit, and poor learning ability have not often been explored 30. In our sample of pre-school, early and middle-aged school - 60 - Table 3. Statistical correlation between variables using Pearson’s method. Dynamic balance Static balance Risk propensity Static Balance p=0.015 r=–0.595 Risk propensity p=0.443 p=0.020 r=–0.207 r=0.575 Sensation seeking p=0.257 p=0.002 p=0.004 r=–0.301 r=0.715 r=0.674 Balancing children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 children, we found a positive association between static balance and self-reported sensation seeking and risk pro- pensity. In conclusion, our study suggests that broadly motor skills proficiency, and particularly balance, are important factors to be considered in studies aiming to determine the pro- pensity towards risky behaviors. List of abbreviations ASD, Associazione Sportiva Dilettantistica (Amateur sports association) MABC, Movement assessment battery for children SSS, Sensation seeking scale RPS, Risk propensity scale ANOVA, Analysis of variance BMI, Body mass index Funding This manuscript has not been supported by any external funding. Conflict of interest The authors declare no conflicts of interest. Ethics approval The study is conformed with the Helsinki Declaration. All children participated in this study after a signed informed consent from parents or legal tutors. Ethics approval was not required in accordance with national guidelines as re- ported in The Italian Ministry of Health circular n. 6, 2002 and The Italian Legislative Decree n. 211/2003, which de- fine interventional and non-interventional trials that are subject to ethical approval; this study did not involve pa- tients and did not involve drugs, genetic samples or inva- sive techniques. Contributions MP conceived the study and performed the experiments. DB and MP designed and directed the study and wrote the manuscript. MP, DB e SB analyzed and interpreted the data, and edited the manuscript. - 61 - Figure 1. Linear regressions with age as predictor variable. RPS, risk propensity scale; SSS, sensation seeking scale. Balancing children’s physical risks Eur J Transl Myol 35 (4) 13404, 2025 doi: 10.4081/ejtm.2025.13404 Corresponding author Danilo Bondi, Department of Neuroscience, Imaging and Clinical Sciences (DNICS), University «G. d’Annunzio» Chieti-Pescara, Via dei Vestini 31, 66100 Chieti, Italy ORCID ID: 0000-0003-1911-3606 E-mail: danilo.bondi@unich.it Co-authors Mara Pischetola E-mail: mara.pischetola@studenti.unich.it Simona Boncompagni ORCID ID: 0000-0001-5308-5069 E-mail: simona.boncompagni@unich.it References 1. Amato S, Culbreath K, Dunne E, et al. Pediatric trauma mortality in India and the United States: A comparison and risk-adjusted analysis. 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Uninten- tional injuries in school-aged children and adolescents: lessons from a systematic review of cohort studies. Inj Prev 2009;15:111–24. Disclaimer All claims expressed in this article are solely those of the authors and do not necessarily represent those of their af- filiated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher. Submitted: 19 November 2024. Accepted: 11 December 2024. Early access: 4 September 2025. - 63 -