2.Response-Style Preferences for Doctor-Patient Communication and Psychobehavioral Traits of Medical Students Not Trained in Communication
Kumiko YAMAZAKI ; Sachiko YAMASAKI
Medical Education 2004;35(2):77-82
A questionnaire presenting examples of doctor-patient communication was used to determine which of 5 response styles were preferred by 93 medical students not trained in communication. The students' psychobehavioral traits were also assessed with four scales. The results show that many medical students have their own way of communicating. Preferred response styles correlated with specific psychobehavioral traits. These results suggest that communication instructors should attempt to understand each student's communication level and guide students to learn useful communication styles in the medical setting.
3.Relationship between the perioperative prognostic nutritional index and postoperative gait function in elderly hip fractures
Kumiko YOTSUYA ; Kaoru YAMAZAKI ; Junichiro SARUKAWA ; Tatsuya YASUDA ; Yukihiro MATSUYAMA
Osteoporosis and Sarcopenia 2024;10(2):72-77
Objectives:
We investigated the relationship between the perioperative nutritional status and postoperative walking ability in patients with hip fractures.
Methods:
We included 246 surgically treated elderly patients with hip fractures who were ambulatory before the injury. Patients were divided into two groups: group A, who were able to walk at discharge, and group B, who were unable to walk at discharge. We pair-matched these two groups according to age, preoperative subdivided walking ability, and fracture site to form groups A′ and B’. The prognostic nutritional index (PNI; PNI = 10 × serum albumin (g/dL) + 0.005 × blood total lymphocyte count (/mm 3 )) before surgery and 1 day, 1 week, and 2 weeks after surgery and energy intake 1 and 2 weeks after surgery were compared.
Results:
After adjustments for age, preoperative subdivided walking ability, and fracture site, there were 51 patients in group A’ (mean age 84.6 years) and 51 patients in group B’ (mean age 84.7 years). In group A’/group B′, PNI was 43.38/42.60 (P = 0.19) before surgery, 33.87/33.31 (P = 0.44) 1 day after surgery, 34.99/32.35 (P = 0.01) 1 week after surgery, and 37.33/35.69 (P = 0.15) 2 weeks after surgery. Energy intake was 1380.8/ 1203.1 kcal (P = 0.01) 1 week after surgery and 1382.0/1335.6 kcal (P = 0.60) 2 weeks after surgery.
Conclusions
PNI and energy intake at 1 week postoperatively were associated with early postoperative nutrition and the recovery of walking ability.
4.Experience on an Education Method for Medical Psychology for Medical Students with Approach of Behavioral Science.
Kumiko YAMAZAKI ; Michinari KANEKO ; Wakana FURUSHIMA ; Tatsushi KAWAGUCHI ; Kaori IKEDA ; Kiyo OOTANI ; Eiichiro KANDA ; Yoshihide NISHIYAMA ; Miho FUKUHARA ; Sanae YOKOMIZO ; Yumi MADARAME ; Mutsumi TSUKADA ; Masami MOTEGI ; Yasuko NAKAYAMA ; Tomoko OKANO ; Ichin YUU ; Mariko MIYAMOTO ; Satoshi OOURA ; Akio SHIROKI ; Atsushi YOSHIOKA ; Mako YOKOTA
Medical Education 1994;25(4):216-220
5.Hokkaido birth cohort study on environment and children's health: cohort profile 2021.
Reiko KISHI ; Atsuko IKEDA-ARAKI ; Chihiro MIYASHITA ; Sachiko ITOH ; Sumitaka KOBAYASHI ; Yu AIT BAMAI ; Keiko YAMAZAKI ; Naomi TAMURA ; Machiko MINATOYA ; Rahel Mesfin KETEMA ; Kritika POUDEL ; Ryu MIURA ; Hideyuki MASUDA ; Mariko ITOH ; Takeshi YAMAGUCHI ; Hisanori FUKUNAGA ; Kumiko ITO ; Houman GOUDARZI
Environmental Health and Preventive Medicine 2021;26(1):59-59
BACKGROUND:
The Hokkaido Study on Environment and Children's Health is an ongoing study consisting of two birth cohorts of different population sizes: the Sapporo cohort and the Hokkaido cohort. Our primary objectives are to (1) examine the effects that low-level environmental chemical exposures have on birth outcomes, including birth defects and growth retardation; (2) follow the development of allergies, infectious diseases, and neurobehavioral developmental disorders, as well as perform a longitudinal observation of child development; (3) identify high-risk groups based on genetic susceptibility to environmental chemicals; and (4) identify the additive effects of various chemicals, including tobacco.
METHODS:
The purpose of this report is to provide an update on the progress of the Hokkaido Study, summarize recent results, and suggest future directions. In particular, this report provides the latest details from questionnaire surveys, face-to-face examinations, and a collection of biological specimens from children and measurements of their chemical exposures.
RESULTS:
The latest findings indicate different risk factors of parental characteristics on birth outcomes and the mediating effect between socioeconomic status and children that are small for the gestational age. Maternal serum folate was not associated with birth defects. Prenatal chemical exposure and smoking were associated with birth size and growth, as well as cord blood biomarkers, such as adiponectin, leptin, thyroid, and reproductive hormones. We also found significant associations between the chemical levels and neuro development, asthma, and allergies.
CONCLUSIONS
Chemical exposure to children can occur both before and after birth. Longer follow-up for children is crucial in birth cohort studies to reinforce the Developmental Origins of Health and Disease hypothesis. In contrast, considering shifts in the exposure levels due to regulation is also essential, which may also change the association to health outcomes. This study found that individual susceptibility to adverse health effects depends on the genotype. Epigenome modification of DNA methylation was also discovered, indicating the necessity of examining molecular biology perspectives. International collaborations can add a new dimension to the current knowledge and provide novel discoveries in the future.
Biomarkers/blood*
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Child
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Child Health
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Child, Preschool
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Cohort Studies
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Environmental Exposure/adverse effects*
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Environmental Health
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Environmental Pollutants/adverse effects*
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Female
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Fetal Blood/chemistry*
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Follow-Up Studies
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Growth/drug effects*
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Humans
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Hypersensitivity/etiology*
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Infant
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Japan/epidemiology*
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Male
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Neurodevelopmental Disorders/etiology*
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Pregnancy
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Prenatal Exposure Delayed Effects/etiology*
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Prevalence
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Smoking/adverse effects*