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עמוד בית
Thu, 21.11.24

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May 2012
Y. Gofin, A. Afek, E. Derazne, A. Toker and A. Shamiss

Background: The medical workforce shortage worldwide varies for different residencies.

Objectives: To determine future gaps in medical specialties in Israel by means of a model and to identify trends and considerations among medical students when they choose their residencies.

Methods: The gap (Gi) assessment model was based upon current demand (Di) and existing (Ei) status for each residency, using the formula [Gi=(Di-Ei)/Ei]. Ei represented the proportion of specific residencies in 2006–2010 out of all Israeli residency graduates and Di was based upon questionnaires filled out by medical students at Sackler and Hadassah medical schools in Tel Aviv and Jerusalem respectively (N=909).

Results: The largest relative shortages (Gi ranges from -1 to 1) were in Pathology (G=-1), Rehabilitation Medicine (-0.9), Radiology (-0.8), General Practice (-0.8) and Anesthesiology (-0.8). The highest relative demands were in Surgical subspecialties (2.9) and Obstetrics/Gynecology (OB/GYN) (1.6). More females than males chose residencies in OB/GYN (19.5% vs. 7.1%, P < 0.001) and pediatrics (28.1% vs. 15.4%, P < 0.001). Surgery subspecialties (9% vs. 23.7%, P < 0.001) were male-predominant. The workload consideration was rated higher among females, while income was rated higher among males. Among students in clinical years, compared to pre-clinical, there was a decline in the selection of some professions, including Surgical subspecialties (9.7% vs. 19.5%, P < 0.001).

Conclusions: The suggested model, based on a survey of demand and current or projected future needs, can be used to assess gaps and plan early interventions. Programs at the level of medical school may affect residency preferences. The decline in selection of surgical professions and the increasing workload as a consideration for residency choice should be given attention.

 


April 2010
I. Besser, Z.H. Perry, O. Mesner, E. Zmora and A. Toker

Background: Hyperbilirubinemia of the newborn is common. Rarely is an underlying disease other than physiologic hyperbilirubinemia considered the cause of high bilirubin levels. Some of the laboratory tests recommended by the American Academy of Pediatrics are expensive and do not always lead to diagnosis.

Objective: To evaluate the efficacy of standard laboratory tests performed on newborn infants requiring phototherapy for hyperbilirubinaemia.

Methods: We conducted a retrospective chart review that included neonates born during a 6 month period with birth weight > 2500 g treated with phototherapy for hyperbilirubinemia (n=282) according to published guidelines. The main outcome measures were primary and maximal bilirubin values (mg/dl), time to jaundice (in days), the number of bilirubin tests undertaken and whether the patient showed abnormal functioning, and the number of days in follow-up.

Results: Thirty-three neonates (11.7%) were positive in at least one laboratory test (defined as "Abnormal" in our study), 45.5% of whom met the criteria for phototherapy during the first 48 hours of life. Among the newborns who were negative for all laboratory tests (defined as "Normal"), only 6.8% met phototherapy criteria within their first 48 hours of life (P < 0.001). In the Normal group there was a consistent decrease in total serum bilirubin values shortly after phototherapy was begun, while the Abnormal group presented an increase in serum bilirubin values during the first 12 hours of phototherapy. None of the infants had conjugated (direct) hyperbilirubinemia during the study period.

Conclusions: Most neonates presenting with a laboratory identifiable etiology for hyperbilirubinemia (i.e., hemolysis) can be distinguished from those who test negative, mainly based on the timing of presentation and response to phototherapy. A more meticulous selection of patients and reduction in the magnitude of routine laboratory testing can safely reduce discomfort to infants with hyperbilirubinemia as well as costs.

July 2009
A. Toker, Z.H. Perry, E. Cohen and H. Krymko

Background: The rate of cesarean section is increasing and recently exceeded 30% of all deliveries in the United States. Birth injuries during CS[1] are relatively rare. Femur fractures have a very low incidence during both vaginal delivery and CS.

Objectives: To assess our 10 year experience (2008–1997) in managing fractured femur during CS, including a typical case.

Methods: We reviewed the prevalence of femur fractures in two tertiary, academic, level one trauma center hospitals in Israel (Hadassah in Jerusalem and Soroka in Beer Sheva).

Results: During the study period 221,939 deliveries occurred in both hospitals. Of these, 17.6% were cesarean sections (33,990 CS). Of the total number of deliveries, the incidence of femur fracture was 0.082 per 1000 deliveries (17 fractures), and the incidence of femur fracture during CS was 0.308 per 1000 CS (12 fractures).

Conclusions: Cesarean section increases the risk of femur fractures (P < 0.001) with an odds ratio of 11.26 (confidence interval 3.97–31.97).






[1] CS = cesarean section



 
September 2008
Y. Bloch and A. Toker

Background: Children report various types of fear in the context of hospitalization, such as fear of separation from the family, having injections and blood tests, having to stay in the hospital for a long time, and being told “bad news” about their health.

Objectives: To examine the effects of the “Teddy Bear Hospital” method on preschool children’s fear of future hospitalization.

Methods: The study group comprised 41 preschool children aged 3–6.5 years (mean 5.1 ± 0.7 years), and 50 preschool children, age matched and from a similar residential area, served as the control group. Assessment included a simple one-item visual analog scale of anxiety about hospitalization. This was assessed individually one day prior to the intervention and again a week after the intervention in both groups

Results: While baseline levels of anxiety were not different between groups [t(89) = .4, NS], children in the “Teddy Bear Hospital” group reported significantly lower levels of anxiety than the control group at follow-up

Conclusions: Our results indicate that by initiating a controlled pain-free encounter with the medical environment in the form of a “Teddy Bear Hospital,” we can reduce children’s anxiety about hospitalization.

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