The present study aimed to compare the peak pressure, maximum force, contact area, and contact time between the right and left foot of elite weightlifters. The previous studies have demonstrated the preference of the dynamic state versus the static state using plantar pressure measurement devices (
8,
19,
20).
The findings of the current research indicated significant differences between the right and left foot in terms of the maximum force in region nine (second toe) and peak pressure in region three (medial midfoot), the values of which were higher in the left foot compared to the right foot. Since we could not find a similar study conducted on weightlifters to compare the results, we referred to similar studies focused on other sports fields. In the present study, the pattern of maximum force in the right and left foot was the same, with the highest force observed in the thumb compared to the other toes. On the other hand, the pattern of maximum force increased in the forefoot, midfoot, and heel regions from the inside to the outside, and the change was considered significant in the metatarsal bones. In addition, the highest maximum force was denoted in region seven (third, fourth, and fifth metatarsal heads), while the lowest force value was in toes 2 - 5.
According to the current research, the pattern of pressure distribution in the right and left foot of the subjects was identical, so that the highest pressure was applied to the third to fifth metatarsal bones in both feet, and the lowest amount was observed in toes 3 - 5. In the studies by Memar and Noori (
8) and Aydos (
7) on wrestlers, the lowest pressure was reported on toes 3 - 5, which is consistent with the current research. On the other hand, the studies conducted on non-athletic healthy individuals have reported the lowest pressure on the midfoot and the highest pressure on the thumb (
21), while some findings have also indicated the highest pressure to be on the heels (
22), which is inconsistent with our findings. This discrepancy could be due to the effects of physical exercise on the pattern of gait in athletes, which in turn affects the pattern of plantar pressure distribution as well. Moreover, other studies have demonstrated significant differences between elite athletes and healthy non-athletes (beginners) in terms of the factors associated with the plantar pressure distribution pattern (
9,
23).
According to the results of the present study, the pattern of pressure increase was mainly in the midfoot, as well as the metatarsal bones from the inside to the outside. In the heel region, almost the same pressure was applied to the medial and lateral regions. As for the toes, the thumb, second toe, and toes 3 - 5 tolerated the highest pressure, respectively. This is in line with the findings of Memar and Noori (
8) and Aydos (
7). In the current research, the highest and lowest contact area was observed in the midfoot and second toe, respectively. Furthermore, the contact area in the medial heel was higher compared to the lateral heel, and a significant increase was observed in the lateral midfoot relative to the medial midfoot. In the metatarsal bone region, the second and first metatarsals showed the highest contact area, followed by the third to fifth metatarsal bones. The contact area was also highest in the thumb, toes 3 - 5, and at the end of the second toe.
Contact time is an important parameter to indicate different walking conditions and foot problems (
24). According to the results of the present study, the contact time was highest in the region of the third to fifth metatarsal bones, while the lowest value was observed in the medial midfoot of the right foot and lateral midfoot of the left foot. The higher contact time in the forefoot could be attributed to the higher flexibility of the medial longitudinal arch, as well as the weakness of the ligaments in this region (
25) due to the degree of flatfoot present in all athletes to some extent. On the other hand, the low contact time in the midfoot could be due to the rapid passage of the body weight after the heel from the midfoot (regions three and four) to the forefoot (metatarsal bones) (
26,
27).
In some sports, feet may not have the same function, and there might be no dominant and non-dominant foot in performing the skills of a particular sport. As a result, the differences in the pattern of the plantar pressure distribution between the dominant and non-dominant foot is quite expected. In this regard, Wong et al. (
28) evaluated the distribution of the plantar pressure between the dominant and non-dominant foot of soccer players in exclusive moves, and the results indicated a difference in the distribution of the pressure between the dominant and non-dominant limbs. On the other hand, Memar and Noori (
8) compared the right and left food patterns of plantar pressure distribution in elite wrestlers, reporting a significant difference only in the contact area of the lateral midfoot between the right and left foot, while the maximum force, peak pressure, and contact time had no significant differences. In the present study, the feet showed very close patterns in terms of the distribution of the maximum force, peak pressure, contact area, and contact time in the right and left foot, which could be due to the lack of a dominant foot and identical movement pattern of the feet in wrestling.
In the current research, we also investigate the correlations between the maximum force, peak pressure, contact area, and contact time with the height and weight of the athletes, observing positive, significant correlations between height and weight with the peak pressure, maximum force, contact area, and contact time in right and left foot; only the maximum force had an inverse association with height in region four (lateral midfoot). These findings are consistent with the studies by Memar and Noori (
8) and Aydos (
7) in wrestlers. In addition, Uzun et al. (
9) compared female soccer players and non-athlete healthy females, reporting positive, significant associations between height, weight, and contact area. Similarly, Hennig and Milani (
16) and Snow et al. (
17) denoted a positive correlation between the body weight and peak pressure in the lateral region of the foot and medial forefoot, which is consistent with the findings of the current research.
5.1. Conclusions
According to the results, feet have the same function and pattern of motion in weightlifting, which leads to the emergence of the same pattern of force and pressure distribution on the plantar of both the right and left foot. The pattern obtained in the present differed from the pattern observed in non-athlete healthy subjects, as well as the studies focused on other sports, which confirms the effects of various sports activities on the pattern of plantar pressure distribution. Since clinical evaluation is one of the goals of measuring the distribution of plantar pressure, it is recommended that insoles designers pay special attention to the reduction of the point load under the third to fifth metatarsal bones in the design of shoes for weightlifters in order to prevent complications such as metatarsalgia and other complications associated with increased point pressure on the plantar of foot in the long run.