1.Incidence and determinants of posttraumatic stress disorder at three months following a road traffic accident
Luodong YANG ; Haohao LI ; Yao MENG ; Liang JIANG ; Min HU ; Guiqing ZHANG
Acta Universitatis Medicinalis Anhui 2026;61(2):314-320
ObjectiveTo investigate the incidence and influencing factors of posttraumatic stress disorder (PTSD) three months after a traffic accident, and to explore the role of social support and coping strategies. MethodsA total of 117 individuals exposed to trauma following road traffic accidents were recruited. General demographic and clinical information was collected within one week, and the hamilton anxiety rating scale (HAMA), the hamilton depression rating scale-24 (HAMD-24), the social support rating scale (SSRS), and the simplified coping style questionnaire (SCSQ) were administered. A 3-month follow-up was subsequently conducted, during which PTSD symptoms were assessed using the post-traumatic stress disorder checklist for DSM-5 (PCL-5). Participants were divided into a PTSD group and a non-PTSD group according to whether PTSD occurred. Between-group comparisons were performed using the Mann-Whitney U non-parametric test or the χ2 test, as appropriate. Spearman correlation analysis was used to examine the associations between general characteristics and PCL-5 scores. Binary Logistic regression was applied to identify factors influencing PTSD, and receiver operating characteristic (ROC) curve analysis was conducted to evaluate the diagnostic value of the SCSQ and SSRS. ResultsDuring the 3-month follow-up of the 117 trauma-exposed individuals, 17 cases developed PTSD, with a higher proportion of females (70.59%). Between-group comparisons showed that, compared with the PTSD group, the non-PTSD group had higher scores for positive coping, objective support, and subjective support (P<0.05), and lower scores for negative coping, HAMA, HAMD, and PCL-5 (P<0.05). Correlation analysis indicated that female gender, negative coping, and higher HAMA and HAMD scores were associated with greater PTSD severity. Logistic regression analysis demonstrated that educational level (OR=1.715, 95% CI: 1.020-2.883, P=0.042) and negative coping (OR=1.590, 95% CI: 1.003-2.522, P=0.048) were risk factors for PTSD, whereas objective support (OR=0.646, 95% CI: 0.451-0.925, P=0.017) was a protective factor. The ROC analysis showed that the total SCSQ score and its negative and positive coping dimensions, the total SSRS score and its subjective and objective support dimensions, as well as their combined use, all demonstrated good discriminative ability in distinguishing between the PTSD and non-PTSD groups. ConclusionThe results suggest that individuals who are female, with higher HAMA and HAMD scores after a motor vehicle accident, and those with lower social support and negative coping strategies, should be given particular attention. Early interventions for these individuals may reduce the incidence of PTSD.
2.Cage design-centric glider approach to full-endoscopic lumbar fusion: optimizing nerve root protection in facet-sparing and facet-resecting techniques
Yu-Chia HSU ; Hao-Chun CHUANG ; Yuan-Fu LIU ; Chao-Jui CHANG ; Yu-Meng HSIAO ; Yi-Hung HUANG ; Keng-Chang LIU ; Chien-Min CHEN ; Hyeun-Sung KIM ; Cheng-Li LIN
Asian Spine Journal 2026;20(2):343-353
Endoscopic transforaminal lumbar interbody fusion (TLIF) offers substantial advantages in the management of degenerative spinal diseases, including accelerated postoperative recovery. However, its technical complexity and steep learning curve pose risks for nerve root injury. Optimizing nerve root protection in full-endoscopic facet-sparing TLIF (FE fs-TLIF) and full-endoscopic facet-resecting TLIF (FE fr-TLIF) is essential for enhancing surgical safety. This study aimed to improve the nerve root protection in FE fs-TLIF and FE fr-TLIF by optimizing cage glider selection and insertion techniques based on the specific cage shape—banana-shaped or bullet-shaped. The goal was to ensure safe cage positioning and mitigate nerve root injury during discectomy, endplate preparation, and cage insertion. These strategies were validated through cadaveric simulations and clinical implementation. In FE fr-TLIF utilizing bullet-shaped (straight) cages, one-tip and two-tip cage gliders effectively protected the traversing nerve root by facilitating medial cage entry, thereby minimizing irritation of the exiting nerve root. Conversely, in FE fr-TLIF with banana-shaped cages, the lateral tilt of the cage holder during implantation required the use of a two-tip cage glider to protect the traversing and exiting nerve roots, thereby mitigating the potential risk of nerve irritation. In FE fs-TLIF, a one-tip cage glider is preferred for safeguarding the exiting nerve root, while the traversing root is inherently protected by the medial wall of the facet joint. The use of a two-tip cage glider in FE fs-TLIF can cause injury to the nerve root during glider insertion. In addition to the selection of cage gliders, improper cage insertion steps can also contribute to postoperative neurapraxia. The appropriate selection of cage gliders with corresponding insertion techniques is critical for nerve root protection in endoscopic TLIF. Tailoring these choices to the specific approach (FE fs-TLIF or FE fr-TLIF) and cage type (banana or bullet) enhances surgical safety and clinical outcomes.
3.Research on Electrical Impedance and Microwave Dual-modality Tomography Algorithm Based on Conditional Diffusion Models
Jin-Zhen LIU ; Xiang-Qian MENG ; Hui XIONG ; Li-Min ZHOU ; Chun-Chan LI
Progress in Biochemistry and Biophysics 2026;53(6):1780-1792
ObjectiveStroke poses a heavy burden due to its high mortality and morbidity rates. Accurate and real-time detection of lesions is pivotal for prompt clinical intervention and favorable prognosis. Electrical impedance tomography (EIT) and microwave tomography (MWT) have emerged as compelling alternatives for stroke screening, owing to their non-ionizing, non-invasive and portable nature. EIT provides information on tissue conductivity, and MWT offers high sensitivity to changes in dielectric properties. However, single-modality imaging is inherently limited, EIT suffers from low sensitivity to deep-seated tissues and severe ill-posedness of inverse problems, whereas MWT is challenged by strong nonlinearity in inverse scattering and susceptibility to modeling errors. Consequently, the clinical utility of standalone EIT or MWT for stroke diagnosis remains constrained by poor spatial resolution and imaging artifacts. To improve the accuracy and robustness of stroke imaging, a dual-modality fusion conditional denoising diffusion probabilistic model (DM-DDPM) was proposed for high-precision dual-modality image reconstruction. MethodsA dual-encoder network with a symmetric architecture and independently trained parameters was constructed to extract heterogeneous features separately from EIT boundary voltage measurements and MWT scattered field signals. Attentional feature fusion (AFF) is employed to integrate complementary information from the two modalities adaptively, generating robust fused priors that suppress redundant noise while preserving key physical characteristics. Subsequently, the fused priors are embedded into a Transformer-based diffusion model via a cross attention mechanism to guide the reverse denoising process. This approach effectively reduces artifacts and enhances the stability of conductivity distribution reconstruction. Time step embedding is introduced to enable the network to perceive the diffusion stage and further improve the accuracy of noise prediction. ResultsSimulated experiments demonstrated that DM-DDPM significantly outperforms single-modality and multi-modality networks under various noise levels. A head model simulation dataset was constructed based on COMSOL Multiphysics, and tests were carried out under 50 dB, 40 dB and 30 dB signal-to-noise ratio levels. At 30 dB, the average relative error (RE) was below 0.20, while the structural similarity index measure (SSIM) and correlation coefficient (CC) remained above 0.90 and 0.89, respectively. Compared with single-modality and multi-modality networks, artifacts were significantly reduced, lesion edges were clearer, and localization was more accurate. The model maintains high reconstruction quality and strong robustness for single, double, and triple lesions simultaneously. Furthermore, physical experiments were conducted using a 16-electrode EIT system and a 16-antenna MWT system with asynchronous data acquisition. These experiments confirmed the feasibility of the method in real-world scenarios and demonstrated that it can robustly reconstruct simulated lesions despite environmental interference and measurement noise, validating its reliability for practical clinical applications. ConclusionThe proposed method effectively combines complementary dual-modality information with a conditional diffusion model. Low accuracy and poor noise resistance in single-modality imaging were effectively addressed, while the noise amplification issue caused by direct multimodal data fusion was avoided. The proposed algorithm exhibits strong anti-noise interference ability and high imaging stability in both simulation and physical experiments. Precise localization of stroke lesions with different quantities was achieved, providing a high-precision, and practical technical support for clinical stroke detection.
4.The Role and Mechanism of Circadian Rhythm Regulation in Skin Tissue Regeneration
Ya-Qi ZHAO ; Lin-Lin ZHANG ; Xiao-Meng MA ; Zhen-Kai JIN ; Kun LI ; Min WANG
Progress in Biochemistry and Biophysics 2025;52(5):1165-1178
Circadian rhythm is an endogenous biological clock mechanism that enables organisms to adapt to the earth’s alternation of day and night. It plays a fundamental role in regulating physiological functions and behavioral patterns, such as sleep, feeding, hormone levels and body temperature. By aligning these processes with environmental changes, circadian rhythm plays a pivotal role in maintaining homeostasis and promoting optimal health. However, modern lifestyles, characterized by irregular work schedules and pervasive exposure to artificial light, have disrupted these rhythms for many individuals. Such disruptions have been linked to a variety of health problems, including sleep disorders, metabolic syndromes, cardiovascular diseases, and immune dysfunction, underscoring the critical role of circadian rhythm in human health. Among the numerous systems influenced by circadian rhythm, the skin—a multifunctional organ and the largest by surface area—is particularly noteworthy. As the body’s first line of defense against environmental insults such as UV radiation, pollutants, and pathogens, the skin is highly affected by changes in circadian rhythm. Circadian rhythm regulates multiple skin-related processes, including cyclic changes in cell proliferation, differentiation, and apoptosis, as well as DNA repair mechanisms and antioxidant defenses. For instance, studies have shown that keratinocyte proliferation peaks during the night, coinciding with reduced environmental stress, while DNA repair mechanisms are most active during the day to counteract UV-induced damage. This temporal coordination highlights the critical role of circadian rhythms in preserving skin integrity and function. Beyond maintaining homeostasis, circadian rhythm is also pivotal in the skin’s repair and regeneration processes following injury. Skin regeneration is a complex, multi-stage process involving hemostasis, inflammation, proliferation, and remodeling, all of which are influenced by circadian regulation. Key cellular activities, such as fibroblast migration, keratinocyte activation, and extracellular matrix remodeling, are modulated by the circadian clock, ensuring that repair processes occur with optimal efficiency. Additionally, circadian rhythm regulates the secretion of cytokines and growth factors, which are critical for coordinating cellular communication and orchestrating tissue regeneration. Disruptions to these rhythms can impair the repair process, leading to delayed wound healing, increased scarring, or chronic inflammatory conditions. The aim of this review is to synthesize recent information on the interactions between circadian rhythms and skin physiology, with a particular focus on skin tissue repair and regeneration. Molecular mechanisms of circadian regulation in skin cells, including the role of core clock genes such as Clock, Bmal1, Per and Cry. These genes control the expression of downstream effectors involved in cell cycle regulation, DNA repair, oxidative stress response and inflammatory pathways. By understanding how these mechanisms operate in healthy and diseased states, we can discover new insights into the temporal dynamics of skin regeneration. In addition, by exploring the therapeutic potential of circadian biology in enhancing skin repair and regeneration, strategies such as topical medications that can be applied in a time-limited manner, phototherapy that is synchronized with circadian rhythms, and pharmacological modulation of clock genes are expected to optimize clinical outcomes. Interventions based on the skin’s natural rhythms can provide a personalized and efficient approach to promote skin regeneration and recovery. This review not only introduces the important role of circadian rhythms in skin biology, but also provides a new idea for future innovative therapies and regenerative medicine based on circadian rhythms.
5.Exon Sequencing of HNF1β in Chinese Patients with Early-Onset Diabetes
Siqian GONG ; Hong LIAN ; Yating LI ; Xiaoling CAI ; Wei LIU ; Yingying LUO ; Meng LI ; Si-min ZHANG ; Rui ZHANG ; Lingli ZHOU ; Yu ZHU ; Qian REN ; Xiuying ZHANG ; Jing CHEN ; Jing WU ; Xianghai ZHOU ; Xirui WANG ; Xueyao HAN ; Linong JI
Diabetes & Metabolism Journal 2025;49(2):321-330
Background:
Maturity-onset diabetes of the young (MODY) due to variants of hepatocyte nuclear factor 1-beta (HNF1β) (MODY5) has not been well studied in the Chinese population. This study aimed to estimate its prevalence and evaluate the application of a clinical screening method (Faguer score) in Chinese early-onset diabetes (EOD) patients.
Methods:
Among 679 EOD patients clinically diagnosed with type 2 diabetes mellitus (age at diagnosis ≤40 years), the exons of HNF1β were sequenced. Functional impact of rare variants was evaluated using a dual-luciferase reporter system. Faguer scores ≥8 prompted multiplex ligation-dependent probe amplification (MLPA) for large deletions. Pathogenicity of HNF1β variants was assessed following the American College of Medical Genetics and Genomics (ACMG) guidelines.
Results:
Two rare HNF1β missense mutations (E105K and G454R) were identified by sequencing in five patients, showing functional impact in vitro. Another patient was found to have a whole-gene deletion by MLPA in 22 patients with the Faguer score above 8. Following ACMG guidelines, six patients carrying pathogenic or likely pathogenic variant were diagnosed with MODY5. The estimated prevalence of MODY5 in Chinese EOD patients was approximately 0.9% or higher.
Conclusion
MODY5 is not uncommon in China. The Faguer score is helpful in deciding whether to perform MLPA analysis on patients with negative sequencing results.
6.Exon Sequencing of HNF1β in Chinese Patients with Early-Onset Diabetes
Siqian GONG ; Hong LIAN ; Yating LI ; Xiaoling CAI ; Wei LIU ; Yingying LUO ; Meng LI ; Si-min ZHANG ; Rui ZHANG ; Lingli ZHOU ; Yu ZHU ; Qian REN ; Xiuying ZHANG ; Jing CHEN ; Jing WU ; Xianghai ZHOU ; Xirui WANG ; Xueyao HAN ; Linong JI
Diabetes & Metabolism Journal 2025;49(2):321-330
Background:
Maturity-onset diabetes of the young (MODY) due to variants of hepatocyte nuclear factor 1-beta (HNF1β) (MODY5) has not been well studied in the Chinese population. This study aimed to estimate its prevalence and evaluate the application of a clinical screening method (Faguer score) in Chinese early-onset diabetes (EOD) patients.
Methods:
Among 679 EOD patients clinically diagnosed with type 2 diabetes mellitus (age at diagnosis ≤40 years), the exons of HNF1β were sequenced. Functional impact of rare variants was evaluated using a dual-luciferase reporter system. Faguer scores ≥8 prompted multiplex ligation-dependent probe amplification (MLPA) for large deletions. Pathogenicity of HNF1β variants was assessed following the American College of Medical Genetics and Genomics (ACMG) guidelines.
Results:
Two rare HNF1β missense mutations (E105K and G454R) were identified by sequencing in five patients, showing functional impact in vitro. Another patient was found to have a whole-gene deletion by MLPA in 22 patients with the Faguer score above 8. Following ACMG guidelines, six patients carrying pathogenic or likely pathogenic variant were diagnosed with MODY5. The estimated prevalence of MODY5 in Chinese EOD patients was approximately 0.9% or higher.
Conclusion
MODY5 is not uncommon in China. The Faguer score is helpful in deciding whether to perform MLPA analysis on patients with negative sequencing results.
7.Interpretation of"Guidelines 9211 for application of water activity in the microbial control of nonsterile pharmaceutical drugs"in Chinese Pharmacopoeia 2025 Edition
Meng JIA ; Hong MIN ; Linyue LI ; Yuhua XIE ; Xiaoli YANG
Drug Standards of China 2025;26(5):468-472
The 2025 edition of the Chinese Pharmacopoeia Volume Ⅳ has added General Chapter 9211"Guidelines for the Application of Water Activity in Microbial Control of Non-sterile Pharmaceuticals".This guideline is rela-tively new in China's pharmaceutical industry,and it also serves as an important concept and measure to compre-hensively promote microbial process control of pharmaceuticals,conduct microbial quality risk management,and optimize microbial limit setting for non-sterile pharmaceuticals.This article elaborates and interprets the guidelines from four aspects:the background of establishing the guidelines,the necessity and significance of adding the guide-lines,the process of adding the guidelines,and the main framework and key content of the guidelines.It aims to guide enterprises to optimize formulations,formulate personalized microbial control strategies,and realize the trans-formation from terminal quality control to process control,so as to provide important tools and theoretical guidance for microbial quality risk management.
8.Effects of Inonotus obliquus polysaccharides on main organs and hormones in male mice infected with Neospora caninum
Meng LIU ; Sicheng LIN ; Fanglin ZHAO ; Zhenyu WANG ; Yang WANG ; Pengfei MIN ; Lu LI ; Lijun JIA
Chinese Journal of Veterinary Science 2025;45(2):249-254
The aim of this study is to determine the effects of Inonotus obliquus polysaccharides on the main organs and hormones of male mice infected with Neosporidium.The animal model of neosporidiosis in BALB/c mice was established.After intragastric administration,the pathological changes of brain,liver and spleen were observed by histopathology,the worm load in brain,liver and spleen was detected by qPCR,and the levels of FSH,LH and T4 in serum of male mice were detected by ELISA.The results showed that compared with the blank control group,granular spherical lesions could be seen in the brain tissue of mice in the model group,with patchy necrosis of hepatocytes,splenic hemorrhage,red pulp hyperemia and a large number of red blood cell infil-tration.Inonotus obliquus polysaccharides can improve the injury of brain,liver,spleen and other organs and tissues.The worm load in the brain of the Inonotus obliquus polysaccharide group was significantly lower than that of the model group on the 14th day and 21st day(P<0.01),and that of the liver and spleen on the 21st day was significantly lower than that of the model group(P<0.01).The level of FSH in the model group and Inonotus obliquus polysaccharide group was signif-icantly lower than that in the blank control group(P<0.05 or P<0.01),while that in the Inono-tus obliquus polysaccharide group was significantly higher than that in the model group(P<0.05 or P<0.01).The level of LH in the model group was significantly higher than that in the blank control group(P<0.01),while that in the Inonotus obliquus polysaccharide group was significant-ly higher than that in the blank control group on the 7th day and 42nd day(P<0.05).There was significant difference in T4 level between the model group and the blank group(P<0.05 or P<0.01),while the Inonotus obliquus polysaccharide group was similar to the blank control group on the 21st and 35th day(P>0.05).Inonotus obliquus polysaccharides can improve the damage of Neosporidium on brain,liver and spleen of male rats,reduce the insect load in brain,liver and spleen,regulate the levels of FSH,LH and T4 hormones,and maintain the stability of reproductive system.
9.Changes in myelin basic protein expression in the hippocampus and prefrontal cortex of model mice with post-traumatic stress disorder
Jixin LI ; Min HU ; Yuanyuan HU ; Yao MENG ; Guiqing ZHANG
Chinese Journal of Behavioral Medicine and Brain Science 2025;34(2):97-103
Objective:To investigate changes in behavior and hippocampal and prefrontal cortical myelin basic protein(MBP) in model mice with post-traumatic stress disorder(PTSD).Methods:Thirty-two clean-grade male C57BL/6J mice were randomly divided into control group, PTSD 3 d group, PTSD 7 d group and PTSD 14 d group based on matching body mass, with 8 mice in each group. The mice in PTSD 3 d, 7 d and 14 d groups were decapitated at 3 d, 7 d, and 14 d after modeling.The PTSD mouse model was established through conditioned foot shock and single prolonged stress. Anxious- and depressive-like behaviors of mice were assessed by the open field test(OFT). The mouse step-through passive avoidance experiment was used for electric shock training and learning and memory retention. Myelin morphology alterations in the hippocampus and prefrontal cortex of the mouse were examined via myelin staining.The expression levels of MBP were quantified using Western blot and immunohistochemical staining techniques. All experimental data were analyzed and visualized using GraphPad Prism 8.0.2 and SPSS 25.0, the multi groups comparison of behavioral and molecular indicator data was conducted by one-way ANOVA, and the correlation between MBP relative protein expression level and behavioral indicators was analyzed by Pearson correlation analysis.Results:(1) Behavioral results: in OFT, there were significant differences in total distance, average speed, time of stationary and times of entering the central area among all groups( F=16.72, 16.74, 7.37, 5.93, all P<0.05).The total distance and the average speed time of PTSD 3 d, 7 d, 14 d group were all lower than those in control group(all P<0.05).In the mouse step-through passive avoidance experiment, significant differences were observed across all groups in terms of total distance traveled, average speed, dark box entries, and activity time( F=52.78, 55.47, 9.07, 24.88, all P<0.05).All the indexes of PTSD 3 d group and PTSD 7 d group were all higher than those in control group and PTSD 14 d group(all P<0.05).(2)Myelin staining revealed statistically significant differences in the myelin staining areas of the hippocampal CA1 region and the prefrontal cortex across all groups( F=6.67, 5.77, all P<0.05). The stained myelin area in the CA1 region of the hippocampus in the PTSD 3 d group((123.30±11.62)μm 2)was significantly lower compared to the control group((153.00±2.61)μm 2)( P<0.05). The stained myelin area in the prefrontal cortex of the PTSD 3 d group((119.50±9.26)μm 2)was significantly lower compared to that in the control group((154.80±12.40)μm 2)( P<0.05). (3) Western blot results demonstrated significant variations in the expression levels of myelin basic protein (MBP) within the hippocampus and prefrontal cortex across all experimental groups ( F=10.15, 5.28, all P<0.05). The expression levels of MBP in the hippocampal tissue of the PTSD 3 d group (0.89±0.07), PTSD 7 d group (0.90±0.14), and PTSD 14 d group (0.85±0.13) were significantly lower compared to those in the control group(1.17±0.02)(all P<0.05). The expression levels of MBP protein in the prefrontal cortex of the PTSD 3 d group(0.73±0.16) and PTSD 7 d group (0.70±0.12)were significantly lower compared to those in the control group (0.94±0.04)(all P<0.05). (4) Immunohistochemical staining revealed significant variations in the number of MBP-positive cells within the hippocampal CA1 region and the prefrontal cortex across all groups ( F=39.32, 21.81, both P<0.05). The quantity of MBP-positive cells in the hippocampal tissue of mice in the PTSD 3 d group((187.10±1.12)/mm 2)and PTSD 7 d group((193.10±2.18) /mm 2)was significantly reduced compared to the control group((204.80±3.25)/mm 2)(all P<0.05). The quantity of MBP-positive cells in the prefrontal cortex of the PTSD 7 d group((183.90±1.71)/mm 2) was significantly reduced compared to the control group((191.60±1.04) /mm 2)( P<0.05). Conclusion:The PTSD model mice showed anxious- and depression-like behavior, impaired learning and memory ability, and myelin damage in the hippocampus and prefrontal cortex.
10.Application and evaluation of entrustable professional activities in the general practice internship of clinical medicine undergraduates
Chao MENG ; Yi LI ; Xiafeng XU ; Qi WANG ; Liying HUANG ; Shengying LING ; Li WANG ; Min ZHU ; Xingnan YANG ; Meijuan ZHU ; Li SHAO
Chinese Journal of Medical Education Research 2025;24(6):736-743
Objective:To evaluate the effectiveness of entrustable professional activities (EPAs) in the general practice internship of undergraduate clinical medicine students, identify issues that need improvement in the internship, and enhance medical students' competence.Methods:A total of 75 students in the five-year (English class) clinical medicine program enrolled in 2018 and 2019 who participated in general practice internship in Renji Hospital affiliated to Shanghai Jiao Tong University School of Medicine from October 2021 to October 2023 were selected as study subjects. The design of core EPAs was adopted to assess the correlation among different EPA dimensions and to analyze the qualified rates.Results:The evaluation of EPAs showed that EPA2 (practicing respect, understanding and teamwork) had the highest mean score of 9.33, and EPA10 (chronic disease management and management of key populations) had the lowest mean score of 8.08. A supervision level of 3a and above was used as the criterion for qualification. The supervision levels of the students' EPAs were mostly concentrated at levels 3a and 3b. The highest qualified rate was for EPA2 (practicing respect, understanding and teamwork) at 85.33%, followed by EPA1 (complying with the rules of the profession and demonstrating professionalism) at 80.00% and EPA8 (reviewing information and solving clinical problems) at 72.00%. The lowest qualified rate was for EPA10 (chronic disease management and management of key populations) at 33.33%, followed by EPA4 (analyzing and interpreting test results) at 57.33%.Conclusions:EPAs concretize competency evaluation, which can effectively reflect the "competency-oriented" training objectives encompassing multiple elements such as knowledge, skills, values, and attitudes, while maintaining professional specificity. Undergraduates demonstrated strengths in professionalism and academics, but showed deficiencies in community chronic disease management and management of key populations. These findings suggest the need to strengthen the training in health and social care to better align with the competencies required during standardized residency training.

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