The impact of studying on the hippocampal volume in medical students and its correlation with the results of the Final Medical Examination: a single-centre, prospective observational cohort study.

IF 0.9 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Polish Journal of Radiology Pub Date : 2023-01-01 DOI:10.5114/pjr.2023.124433
Jakub Marek, Edyta Maj, Olga Katarzyna Przybyla, Witold Skrzynski, Katarzyna Pasicz, Ewa Fabiszewska, Andrzej Pruszynski, Olgierd Rowinski
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Abstract

Purpose: The hippocampus forms part of the limbic system and is involved in the learning process; it is responsible for transferring information from short-term to long-term memory. The aim of our study was to assess the effect of intensive studying on hippocampal volume and whether this correlates with exam results.

Material and methods: The analysis included volunteer final-year medical students who underwent 2 volumetric 3D T1 magnetic resonance imaging scans with an interval of 20 weeks: 19 weeks before and one week after the Final Medi-cal Examination. FreeSurfer software was used to compare the volumes of the whole hippocampus and its subfields between the 2 measurements. We assessed correlations between changes in hippocampal volume and the time students spent studying, between changes in hippocampal volume and the results of the exam, and between time spent studying and exam results.

Results: Forty participants (25 women and 15 men; mean age 25 years) were included in the analysis. The right hippocampus presubiculum area increased significantly over the study period (p = 0.029), whereas the volume of the left hippocampus remained unchanged. An increase in the volume of the right hippocampus correlated with longer study time (r = 0.371 in percentage and r = 0.397 in mm3) and better LEK exam results (r = 0.441 in percentage and r = 0.456 in mm3).

Conclusions: Our research confirms the role of the hippocampus, particularly the subicular complex, in the process of learning and remembering, and suggest that the plastic abilities of the hippocampus depend on the intensity of learning and translate into better skills.

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学习对医学生海马体积的影响及其与期末体检结果的相关性:一项单中心、前瞻性观察队列研究
目的:海马体是大脑边缘系统的一部分,参与学习过程;它负责将信息从短期记忆转移到长期记忆。我们研究的目的是评估强化学习对海马体积的影响,以及这是否与考试成绩相关。材料和方法:本研究的分析对象包括自愿接受2次体积三维T1磁共振成像扫描的大四医学生,扫描间隔为20周:期末体检前19周和后1周。使用FreeSurfer软件比较两次测量之间整个海马体及其子区体积。我们评估了海马体体积变化与学生学习时间、海马体体积变化与考试成绩、学习时间与考试成绩之间的相关性。结果:40名参与者(25名女性,15名男性;平均年龄25岁)纳入分析。在研究期间,右侧海马带前面积显著增加(p = 0.029),而左侧海马体积保持不变。右侧海马体积的增加与学习时间的延长(r = 0.371百分比,r = 0.397 mm3)和LEK考试成绩的提高(r = 0.441百分比,r = 0.456 mm3)相关。结论:我们的研究证实了海马体,特别是水下复合体在学习和记忆过程中的作用,并表明海马体的可塑性能力取决于学习的强度,并转化为更好的技能。
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Polish Journal of Radiology
Polish Journal of Radiology RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
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