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The parental care-seeking behavior of children with osteogenesis imperfecta based on the Anderson's model: a qualitative study.

BMC Nurs

January 2025

Department of Orthopedic, National Clinical Research Center for Child Health and Disorders, Ministry of Education Key Laboratory of Child Development and Disorders, Children's Hospital of Chongqing Medical University, Chongqing, China.

Objective: This study aims to analyze the medical-seeking behavior of Osteogenesis Imperfecta(OI) children in Southwest China, summarize and analyze the issues in their medical process, and propose corresponding improvement strategies.

Methods: A phenomenological study involving semi-structured interviews with 20 OI caregivers at a tertiary centre for children from March to August 2021 was analyzed thematically, following Anderson's model.

Results: We identified eight themes in the data: 1)Regional disparities of OI management, 2)Big economic burden, 3)High-risk population, 4)Lack of health education, 5)Multiple treatments,6)Strict treatment indications,7)Disappointing therapeutic outcomes,8)Effective or ineffective treatment results.

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Purpose: Given the importance of musculoskeletal knowledge but the limited orthopaedic instruction offered in medical school, our Orthopaedic Surgery Department developed a three-week clerkship for interested students. This study assesses the clerkship's impact on medical student musculoskeletal knowledge through administration of the Freedman and Bernstein Basic Cognitive Musculoskeletal Examination.

Methods: Medical students enrolled in the orthopaedic surgery clerkship between February 2019 and May 2024 were asked to participate in pre- and post-clerkship surveys using the Freedman and Bernstein Basic Cognitive Musculoskeletal Examination.

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Bone Tissue Engineering: From Biomaterials to Clinical Trials.

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January 2025

Department of Stem Cells & Regenerative Medicine, Centre for Interdisciplinary Research, D Y Patil Education Society (Deemed to be University), Kolhapur, India.

Bone tissue engineering is a promising field that aims to rebuild the bone tissue using biomaterials, cells, and signaling molecules. Materials like natural and synthetic polymers, inorganic materials, and composite materials are used to create scaffolds that mimic the hierarchical microstructure of bone. Stem cells, particularly mesenchymal stem cells (MSCs), play a crucial role in bone tissue engineering by promoting tissue regeneration and modulating the immune response.

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Analysis of scoliosis rod deformation after cutting with a surgical rod cutter.

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Department of Orthopedic Surgery, Children's Mercy Kansas City, Kansas City, Missouri, USA.

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Construction of a rodent neural network-skeletal muscle assembloid that simulate the postnatal development of spinal cord motor neuronal network.

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Key Laboratory for Stem Cells and Tissue Engineering Ministry of Education, Guangdong Provincial Key Laboratory of Brain Function and Disease, Institute of Spinal Cord Injury, Department of Histology and Embryology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.

Neuromuscular diseases usually manifest as abnormalities involving motor neurons, neuromuscular junctions, and skeletal muscle (SkM) in postnatal stage. Present in vitro models of neuromuscular interactions require a long time and lack neuroglia involvement. Our study aimed to construct rodent bioengineered spinal cord neural network-skeletal muscle (NN-SkM) assembloids to elucidate the interactions between spinal cord neural stem cells (SC-NSCs) and SkM cells and their biological effects on the development and maturation of postnatal spinal cord motor neural circuits.

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