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1.
Journal of Preventive Medicine ; (12): 307-310, 2023.
Artigo em Chinês | WPRIM | ID: wpr-971787

RESUMO

@#The coronavirus disease 2019 (COVID-19) pandemic poses negative impacts on psychological health among healthcare workers. If timely diagnosis and interventions are not given, the pandemic not only threatens physical and psychological health among healthcare workers, and greatly reduces the quality and efficiency of medical treatment. Based on review of national and international publications pertaining to psychological problems and interventions among healthcare workers during the COVID-19 pandemic, this article describes the prevalence of psychological problems among healthcare workers, influencing factors and psychological interventions, so as to provide insights into the protection of psychological health among healthcare workers.

2.
Int. j. morphol ; 39(5): 1412-1419, oct. 2021. ilus, tab
Artigo em Inglês | LILACS | ID: biblio-1385482

RESUMO

SUMMARY: The purpose of this study was to reveal the overall distribution pattern of the intramuscular nerves of each extraocular muscle and provide morphological guidance for the selection of the neuromuscular compartment during extraocular muscle transplantation and target localization of the botulinum toxin A injection to correct strabismus. We studied 12 Chinese head specimens that were fixed with formalin. The extraocular muscles from both sides of each head were removed, and a modified Sihler's staining technique was used to reveal the overall distribution pattern of the intramuscular nerves. We observed an intramuscular nerve-dense region formed by the intramuscular arborized branches in the semitransparent superior rectus, inferior rectus, medial rectus, lateral rectus, superior oblique, inferior oblique, and levator palpebrae superioris muscles with Sihler's staining technique. The seven extraocular muscles can each be divided into two neuromuscular compartments. The intramuscular nerve-dense regions of the superior, inferior, medial, and lateral rectus and the superior oblique, inferior oblique, and levator palpebrae superioris muscles were positioned at 33.50 % -72.72 %, 40.21 % - 66.79%, 37.92 % - 64.51 %, 31.69 % - 56.01 %, 26.35 % - 64.98 %, 40.46 % - 73.20 %, and 27.72 % - 66.07 % of the lengths of the muscle bellies, respectively, and the centers of intramuscular nerve dense regions were located at 59.50 %, 54.18 %, 51.68 %, 50.08 %, 48.38 %, 56.49 %, and 50.77 % of the length of each muscle belly, respectively. The aforementioned values are the means of the actual values. These results suggest that when the strabismus is corrected with muscle transplantation, the extraocular muscle should be transplanted based on the neuromuscular compartment, which would benefit the function of both donor and recipient muscles. The localization of these nerve dense regions is recommended as an optimal target for the injection of botulinum toxin A to treat strabismus.


RESUMEN: El objetivo de este estudio fue revelar el patrón de distribución de los nervios intramusculares de cada músculo extraocular y, proporcionar una guía morfológica para la selección del compartimento neuromuscular durante el trasplante de músculo extraocular, y la localización de la inyección de toxina botulínica A para corregir el estrabismo. Estudiamos 12 muestras de cabezas de individuos chinos fijadas en formalina. Se extrajeron los músculos extraoculares de ambos lados de cada cabeza y, se utilizó una técnica de tinción de Sihler modificada para revelar el patrón de distribución general de los nervios intramusculares. Observamos una región densa en nervios intramusculares formada por los ramos intramusculares en los músculos recto superior semitransparente, recto inferior, recto medial, recto lateral, oblicuo superior, oblicuo inferior y elevador del párpado superior con técnica de tinción de Sihler. Los siete músculos extraoculares se pueden dividir cada uno en dos compartimentos neuromusculares. Las regiones intramusculares densamente nerviosas de los músculos recto superior, inferior, medial y lateral y los músculos oblicuo superior, oblicuo inferior y elevador del párpado superior se colocaron en 33,50 % -72,72 %, 40,21 % -66,79 %, 37,92 % -64,51 % , 31,69 % -56,01 %, 26,35 % -64,98 %, 40,46 % -73,20 % y 27,72 % -66,07 % de las longitudes de los vientres musculares, respectivamente, y los centros de las regiones densamente nerviosas intramusculares se ubicaron en 59,50 %, 54,18 % , 51,68 %, 50,08 %, 48,38 %, 56,49 % y 50,77 % de la longitud de cada vientre muscular, respectivamente. Los valores antes mencionados son medios de los valores reales. Estos resultados sugieren que cuando el estrabismo se corrige con trasplante de músculo, el músculo extraocular debe trasplantarse en función del compartimento neuromuscular, lo que beneficiaría la función tanto de los músculos donantes como receptores. Se recomienda la localización de estas regiones densas en nervios, como un objetivo óptimo para la inyección de toxina botulínica A para tratar el estrabismo.


Assuntos
Humanos , Masculino , Feminino , Adulto , Pessoa de Meia-Idade , Idoso , Músculos Oculomotores/inervação , Nervo Oculomotor/anatomia & histologia , Coloração e Rotulagem
3.
Chinese Journal of Plastic Surgery ; (6): 205-208, 2015.
Artigo em Chinês | WPRIM | ID: wpr-353176

RESUMO

<p><b>OBJECTIVE</b>To explore the effect of the expanded capsule on biomechanics of the transplanted autologous costal cartilage.</p><p><b>METHODS</b>Ten New Zealand white rabbits aged 3 months were involved and four 15 ml tissue expanders were implanted symmetrically on the back of each rabbit. After 1 month, expanded capsules were removed (experimental group) on the left side and were reserved (control group) on the right side. Meanwhile, the 6th and 7th costal cartilage without the perichondrium were taken out and each cartilage was divided into two pieces and put under the expanded capsule symmetrically. The cartilage at the upper sides and lower sides were taken out at 4 weeks and 8 weeks later, respectively. All the cartilages were sculptured for the demand of the machine text. The tension and compression property of the cartilages were assessed by the material testing machine (Instron 5967) and the results were analyzed statistically.</p><p><b>RESULTS</b>8 weeks lateral, the average ultimate tension strength was (4. 954 + 2. 8) MPa in experimental group and (2.939 + 0.842) MPa in control group. The average compressive strength was (58.74 ± 13.77) MPa in experimental group, and (47.61 ± 11.41) MPa in control group. The biomechanics property of the cartilages in the experimental group is better than the control group, and the differences were statistically significant.</p><p><b>CONCLUSIONS</b>Removing the expanded capsule is benefical to maintain the biomechanics of autologous costal cartilage.</p>


Assuntos
Animais , Humanos , Coelhos , Autoenxertos , Fenômenos Biomecânicos , Cartilagem Costal , Fisiologia , Transplante , Costelas , Expansão de Tecido , Dispositivos para Expansão de Tecidos
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