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2.
World Neurosurg ; 184: e291-e298, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38286320

RESUMO

OBJECTIVE: To promote global equity in research, innovation, and care, sharing knowledge and grasping current benchmarks is crucial. Despite LIC/LMIC constituting around 80% of the global population, their contribution to neurosurgery research is less than 5%. This study aims to assess the status of neurosurgical oncology in LIC/LMIC using published data, offering strategic insights for progress. METHODS: Conducting a retrospective bibliometric analysis via PubMed and Scopus databases, we documented reports published (2015-2021) by neurosurgical department-affiliated investigators in LICs/LMICs. World Bank classifications identified LIC and LMIC. Reviewed papers underwent further scrutiny based on independent and associated keyword lists. RESULTS: Our systematic approach revealed 189 studies from LMIC in 10 neurosurgery journals. Of these, 53% were case reports, with 88% focusing on brain pathologies and 12% on the spine. Intra-axial brain tumors (45.8%), extra-axial/skull base (38.4%), and metastasis (3.68%) were prominent. Among noncase report publications, surgical technique and outcome were common themes. India, Egypt, and Tunisia led in publications, with 94% appearing in journals with an impact factor below 5. No papers originated from LIC. CONCLUSIONS: This study reinforces existing findings that data from LMIC inadequately represent their populations, impeding a comprehensive understanding of their neurosurgical oncology landscape. Language barriers and data collection difficulties contribute to this gap. Addressing these challenges could significantly enhance progress in shaping the future of neurosurgical oncology in these regions.


Assuntos
Países em Desenvolvimento , Neurocirurgia , Humanos , Estudos Retrospectivos , Procedimentos Neurocirúrgicos , Bibliometria
3.
World Neurosurg ; 168: e666-e674, 2022 12.
Artigo em Inglês | MEDLINE | ID: mdl-36220490

RESUMO

OBJECTIVE: In 2019, we highlighted the disparities in scientific production between high-income countries (HICs) and low- to middle-income countries (LMICs) by emphasizing how scientific research was underrepresented in the latter. The present study aimed to investigate research productivity in neurosurgery of low-income countries (LICs) and LMICs for the years 2018-2020 and to compare it with the results of our previous study for 2015-2017. METHODS: We performed a retrospective bibliometric analysis using PubMed and Scopus databases to record all the reports published in 2018-2020 by investigators affiliated with neurosurgical departments in LICs and LMICs. The attribution of the study to LMICs was based on the presence of either the first author or the majority of authors. RESULTS: Our systematic search identified 486 studies reported by LICs and LMICs for full text examination in 12 journals. These articles represent 4.9% of all published neurosurgical articles, compared with 4.5% in the 2015-2017 study. India remained the country with the highest contribution, with a 17.1% increase in reports. Other countries, such as Nigeria and Philippines, also show an increased percentage of reports (from 0.9% to 3.7% and from 0.6% to 2.1%, respectively). CONCLUSIONS: There is growing consensus in the neurosurgical scientific community that the dissemination and analysis of epidemiologic and clinical data from developing countries can provide guidelines and practical suggestions worldwide. However, our study shows that the number of neurosurgical articles published by low-income countries in 2018-2020 remained at approximately 5% of the total, resulting in a negative impact on the process of globalization.


Assuntos
Países em Desenvolvimento , Neurocirurgia , Humanos , Estudos Retrospectivos , Bibliometria , Procedimentos Neurocirúrgicos
4.
Front Surg ; 9: 864792, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35360432

RESUMO

Background: The use of augmented reality (AR) is growing in medical education, in particular, in radiology and surgery. AR has the potential to become a strategic component of neurosurgical training courses. In fact, over the years, there has been a progressive increase in the application of AR in the various fields of neurosurgery. In this study, the authors aim to define the diffusion of these augmented reality systems in recent years. This study describes future trends in augmented reality for neurosurgeons. Methods: A systematic review of the literature was conducted to identify research published from December 1st, 2011 to November 30th, 2021. Electronic databases (PubMed, PubMed Central, and Scopus) were screened. The methodological quality of studies and extracted data were assessed for "augmented reality" and "neurosurgery". The data analysis focused on the geographical distribution, temporal evolution, and topic of augmented reality in neurosurgery. Results: A total of 198 studies have been included. The number of augmented reality applications in the neurosurgical field has increased during the last 10 years. The main topics on which it is mostly applied are spine surgery, neuronavigation, and education. The geographical distribution shows extensive use of augmented reality in the USA, Germany, China, and Canada. North America is the continent that uses augmented reality the most in the training and education of medical students, residents, and surgeons, besides giving the greatest research contribution in spine surgery, brain oncology, and surgical planning. AR is also extensively used in Asia for intraoperative navigation. Nevertheless, augmented reality is still far from reaching Africa and other countries with limited facilities, as no publications could be retrieved from our search. Conclusions: The use of AR is significantly increased in the last 10 years. Nowadays it is mainly used in spine surgery and for neurosurgical education, especially in North America, Europe and China. A continuous growth, also in other aspects of the specialty, is expected in the next future.

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