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1.
World Neurosurg ; 167: 28-36, 2022 11.
Article in English | MEDLINE | ID: mdl-36028110

ABSTRACT

BACKGROUND: Although surgical conditions account for 32% of the global burden of diseases, approximately 5 billion people worldwide lack access to timely and affordable, surgical and anesthetic services. Disparities in access to surgical care are most evident in low- and middle-income countries, often resulting from a lack of surgical infrastructure. However, the establishment of surgical infrastructure, particularly for specialty surgical services including neurosurgery, is challenging in countries with small populations, irrespective of income classification, due to the distribution of high costs among a lesser number of individuals. One such nation is Iceland. Despite high-income status, high quality of life, literacy, and educational attainment, the population of Iceland has often lacked access to local neurosurgical care, with the establishment of the domestic neurosurgical system in 1971 and continued externalization of complex neurosurgical procedures to neighboring nations and neurosurgeons. METHODS: A narrative review was conducted. RESULTS: This article provides the first-ever examination of neurosurgery in Iceland. We discussed the history and the social, political, and economical contexts in Iceland. We examined the history of neurosurgery in Iceland, which provided brief biographic sketches of pioneers who have catalyzed the establishment of neurosurgical care and training in Iceland, and characterize the current state of neurosurgery in Iceland. CONCLUSIONS: Recommendations derived from the experiences of Icelandic neurosurgeons may guide the international community in future initiatives.


Subject(s)
Neurosurgery , Humans , Neurosurgery/education , Iceland , Quality of Life , Developing Countries , Neurosurgical Procedures/education , Neurosurgeons
2.
Neuropsychiatr Dis Treat ; 4(2): 405-12, 2008 Apr.
Article in English | MEDLINE | ID: mdl-18728737

ABSTRACT

AIMS: To estimate the prognostic value of injury severity, location of event, and demographic parameters, for symptoms of pediatric traumatic head injury (THI) 4 years later. METHODS: Data were collected prospectively from Reykjavik City Hospital on all patients age 0-19 years, diagnosed with THI (n = 408) during one year. Information was collected on patient demographics, location of traumatic event, cause of injury, injury severity, and ICD-9 diagnosis. Injury severity was estimated according to the Head Injury Severity Scale (HISS). Four years post-injury, a questionnaire on late symptoms attributed to the THI was sent. RESULTS: Symptoms reported were more common among patients with moderate/severe THI than among others (p < 0.001). The event location had prognostic value (p < 0.05). Overall, 72% of patients with moderate/severe motor vehicle-related THI reported symptoms. There was a curvilinear age effect (p < 0.05). Symptoms were least frequent in the youngest age group, 0-4 years, and most frequent in the age group 5-14 years. Gender and urban/rural residence were not significantly related to symptoms. CONCLUSIONS: Motor vehicle related moderate/severe THI resulted in a high rate of late symptoms. Location had a prognostic value. Patients with motor vehicle-related THI need special consideration regardless of injury severity.

3.
Neuropsychiatr Dis Treat ; 3(6): 935-41, 2007 Dec.
Article in English | MEDLINE | ID: mdl-19300630

ABSTRACT

AIMS: To estimate differences in the incidence of recorded traumatic head injuries by gender, age, severity, and geographical area. METHODS: The study was prospective and nationwide. Data were collected from all hospitals, emergency units and healthcare centers in Iceland regarding all Icelandic children and adolescents 0-19 years old consecutively diagnosed with traumatic head injuries (N = 550) during a one-year period. RESULTS: Annual incidence of minimal, mild, moderate/severe, and fatal head injuries (ICD-9 850-854) was 6.41 per 1000, with 95% confidence interval (CI) 5.9, 7.0. Annual incidence of minimal head injuries (ICD-9 850) treated at emergency units was 4.65 (CI 4.2, 5.1) per 1000, mild head injuries admitted to hospital (ICD-9 850) was 1.50 (CI 1.3, 1.8) per 1000, and moderate/severe nonfatal injuries (ICD-9 851-854) was 0.21 (CI 0.1, 0.3) per 1000. Death rate was 0.05 (CI 0.0, 0.1) per 1000. Young children were at greater risk of sustaining minimal head injuries than older ones. Boys were at greater risk than girls were. In rural areas, incidence of recorded minimal head injuries was low. CONCLUSIONS: Use of nationwide estimate of the incidence of pediatric head injury shows important differences between urban and rural areas as well as between different age groups.

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