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The Role of Anatomy Computer-Assisted Learning on Spatial Abilities of Medical Students. | LitMetric

AI Article Synopsis

  • New pedagogical methods, like computer-assisted learning (CAL), are being implemented in medical education to enhance anatomy knowledge and assess students' learning profiles.
  • A study with 671 medical students measured their spatial abilities before and after CAL sessions, showing significant improvement in scores after training (from 9.72 to 17.05).
  • Results indicated that while male students initially had better spatial skills, CAL training benefitted all students equally, and improvements in spatial abilities were linked to the amount of anatomy training received.

Article Abstract

Currently, medical education context poses different challenges to anatomy, contributing to the introduction of new pedagogical approaches, such as computer-assisted learning (CAL). This approach provides insight into students' learning profiles and skills that enhance anatomy knowledge acquisition. To understand the influence of anatomy CAL on spatial abilities, a study was conducted. A total of 671 medical students attending Musculoskeletal (MA) and Cardiovascular Anatomy (CA) courses, were allocated to one of three groups (MA Group, CA Group, MA + CA Group). Students' pre-training and post-training spatial abilities were assessed through Mental Rotations Test (MRT), with scores ranging between 0-24. After CAL training sessions, students' spatial abilities performance improved (9.72 ± 4.79 vs. 17.05 ± 4.57, P < 0.001). Although male students in both MA Group and CA Group show better baseline spatial abilities, no sex differences were found after CAL training. The improvement in spatial abilities score between sessions (Delta MRT) was correlated with Musculoskeletal Anatomy training sessions in MA Group (r = 0.333, P < 0.001) and MA + CA Group (r = 0.342, P < 0.001), and with Cardiovascular Anatomy training sessions in CA Group (r = 0.461, P = 0.001) and MA + CA Group (r = 0.324, P = 0.001). Multiple linear regression models were used, considering the Delta MRT as dependent variable. An association of Delta MRT to the amount of CAL training and the baseline spatial abilities was observed. The results suggest that CAL training in anatomy has positive dose-dependent effect on spatial abilities.

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Source
http://dx.doi.org/10.1002/ase.1795DOI Listing

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