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Biomedical subjects

C E Flodmark

Publications and source records attributed to C E Flodmark.

14 recordsLinked to original sources

[Family therapy appropriate even in somatic care. Study review of medically oriented family therapy].

By observing and analyzing the influence of the therapist on the family as well as interactions between family members, the encounter with a family in a medical setting can serve to improve the health of its members, by improving their ability to use their own resources. This method of focusing on the interaction between individuals in a family or other systems has been a valuable addition to medical treatment of chronic disease. Family therapy has been shown to effectively improve treatment of diabetes, asthma and obesity. A review of the literature is presented.

Adult↗

Hereditary dyslipidemias and combined risk factors in children with a family history of premature coronary artery disease.

AIM: Schoolchildren aged 10-11 with a family history of premature coronary artery disease (CAD), were examined in order to identify children with genetically determined dyslipidemias and a combination of risk factors. METHODS: A total of 4000 questionnaires were distributed by the school; 55% of the families answered and returned the questionnaire. Blood lipids, apolipoprotein B, and Lp(a) lipoprotein were analysed in high risk children and their parents. RESULTS: A family history of premature CAD in parents or grandparents was identified in 208 families; 175 agreed to take part in a clinical examination and laboratory tests. Normal blood lipid tests were found in 89 children. Another 48 had an isolated increase of Lp(a) lipoprotein of minor clinical importance. Of the remaining 38 children, 23 had non-hereditary abnormalities of low (LDL) or high density lipoprotein (HDL) cholesterol or apolipoprotein B. Fifteen children were suspected to have genetically determined dyslipidemias or a combination of risk factors: in four, possible familial hypercholesterolaemia (FH); in five, possible familial combined hyperlipidaemia; in three, hereditary low HDL cholesterol; and in three a combination of high LDL cholesterol and Lp(a) lipoprotein concentrations. In addition, possible FH was detected in eight of the parents. CONCLUSION: It is worthwhile asking parents about the occurrence of premature CAD among their child's closest relatives.

Apolipoproteins↗

Ultrasound measurements of subcutaneous adipose tissue in infants are reproducible.

BACKGROUND: The purpose of this study was to evaluate the ultrasound technique for measuring subcutaneous adipose tissue in infants. METHODS: Twenty infants were investigated at 3, 6, and 12 months of age. All measurements were made by the same investigator in triplicate on the left side of the body at the triceps and subscapular anatomic landmarks and at the abdomen and thigh. An ultrasound system equipped with a linear 7.0-MHz transducer was used. RESULTS: The intraclass correlation coefficients were 0.88 to 0.99. Random errors ranged from 0.01 to 0.19 mm. For log-transformed values, the random error ranged from 2.4% to 5.7%. CONCLUSIONS: Measurements of subcutaneous fat in infants using ultrasound are reproducible when performed by the same observer.

Abdomen↗

The influence of dietary nucleotides on erythrocyte membrane fatty acids and plasma lipids in preterm infants.

OBJECTIVE: The objective of this study was to evaluate whether a regular formula for premature infants supplemented with nucleotides has any influence on plasma lipids and erythrocyte membrane fatty acids. METHODS: Preterm infants fed either human milk supplemented with human milk protein (HM, n = 14), nucleotide-supplemented preterm formula (NF, n = 13), or a regular preterm formula (F, n = 13) were included in the study. The NF was supplemented with 18.2 mg cytidine monophosphate/l (CMP), 7.0 mg uridine monophosphate/l (UMP), 6.4 mg adenosine monophosphate/l (AMP), 3.0 mg inosine monophosphate/l (IMP) and 3.0 mg guanosine monophosphate/l (GMP). RESULTS: There were significantly higher concentrations of triglycerides (TG) in infants fed NF compared to those fed F (191.42 +/- 79.58 vs 108.21 +/- 43.73, p < 0.001, mean +/- SD lipid concentrations, mg/100 ml plasma). Infants fed F had significantly lower concentrations of total cholesterol (94.34 +/- 11.71 vs 115.69 +/- 39.29, p < 0.01) and TG in plasma (108.21 +/- 43.73 vs 172.27 +/- 68.19, p < 0.001, mean +/- SD lipid concentrations, mg/100 ml plasma) when compared to HM-fed infants. There were no significant differences in any of the erythrocyte membrane fatty acids and total long-chain polyunsaturated fatty acids (LC-PUFA) between NF and F during the study period (6 weeks). Furthermore, total LC-PUFA and docosahexaenoic acid (DHA) concentrations in red blood cell were not significantly different when infants fed NF were compared to those fed HM. In contrast, however, infants fed F had significantly lower concentrations of total n-3 LC-PUFA (p < 0.01) and DHA (p < 0.01) than those found in HM-fed infants. CONCLUSIONS: These results do not suggest an effect of nucleotides on the red blood cell LC-PUFA profile in preterm infants. However, the nucleotides may increase the concentrations of triglycerides in plasma.

Cholesterol↗

Waist measurement correlates to a potentially atherogenic lipoprotein profile in obese 12-14-year-old children.

Epidemiological studies have indicated a relationship between overweight and cardiovascular disease. The present investigation was undertaken to identify anthropometric variables in childhood which may reflect the risk of cardiovascular disease in terms of unfavourable changes in apolipoprotein and lipid concentrations. Twenty-nine obese 14-year-olds and 32 obese 12-year-olds were recruited from a school screening programme and anthropometric data reflecting overweight and fat distribution were subjected to analysis of covariance, with blood pressure, apolipoprotein and lipid concentrations as dependent variables. Results from the two groups were adjusted for puberty, gender and screening group, allowing pooling of data. After such an adjustment, waist circumference was significantly correlated (r = partial correlation coefficient) to high density lipoprotein (HDL) cholesterol (r = -0.08, p < 0.05) and triglycerides (r = +0.24, p < 0.01). The waist:hip ratio was significantly correlated to HDL-cholesterol (r = -0.10, p < 0.01) and triglycerides (r = +0.22, p < 0.01). BMI was significantly correlated to triglycerides (r = +0.25, p < 0.001), and diastolic blood pressure (r = +0.08, p < 0.05). The partial regression coefficients for waist circumference versus apolipoprotein B (r = +0.07) and the apolipoprotein B:A-I ratio (r = +0.06) were as strong as those for waist:hip ratio (r = +0.03 and r = +0.05, respectively). Our results demonstrate that abdominal obesity is associated with an unfavourable lipid profile in obese 12-14-year-old children. This may be related to an increased cardiovascular risk later in life. The waist measurement appears to be a convenient and informative anthropometric indicator of such metabolic alterations.

Adolescent↗

Breastfeeding patterns: comparing the effects on infant behavior and maternal satisfaction of using one or two breasts.

In the Western world advice given by breastfeeding consultants about the use of one or two breasts at each feed has resulted in apparently arbitrary changes over time. This study compared 1-month-old breastfed infants' reactions to single- and two-breast feeds in terms of restlessness, crying, sleeping, and frequency of feeds, wet diapers, and loose stools. Eighty mothers were randomly assigned at the maternity ward, 44 to the single-breast group and 36 to the two-breast group. At one-month follow-up no differences between the groups were seen regarding any infant behavior variables, or in terms of maternal satisfaction, confidence, and mood throughout the full 24-hour observation period or during a 6-hour period in the evening. Compliance with the assigned feeding method was better in the two-breast than in the one-breast group. This may partly be due to tradition, since the two-breast practice has been recommended by child health nurses in Sweden for over 50 years. It seems reasonable that a baby should be allowed to finish the first breast and, if still hungary, be offered the second breast. The baby's appetite is the deciding factor.

Adolescent↗

Prevention of progression to severe obesity in a group of obese schoolchildren treated with family therapy.

STUDY OBJECTIVE: To evaluate the effect of family therapy on childhood obesity. DESIGN: Clinical trial. One year follow-up. SETTING: Referral from school after screening. PARTICIPANTS: Of 1774 children (aged 10 to 11), screened for obesity, 44 obese children were divided into two treatment groups. In an untreated control group of 50 obese children, screened in the same manner, body mass index (BMI) values were recorded twice, at 10 to 11 and at 14 years of age. INTERVENTION: Both treatment groups received comparable dietary counseling and medical checkups for a period of 14 to 18 months, while one of the groups also received family therapy. RESULTS: At the 1-year follow-up, when the children were 14 years of age, intention-to-treat analyses were made of the weight and height data for 39 of 44 children in the two treatment groups and for 48 of the 50 control children. The increase of BMI in the family therapy group was less than in the conventional treatment group at the end of treatment, and less than in the control group (P = .04 and P = .02, respectively). Moreover, mean BMI was significantly lower in the family therapy group than in the control group (P < .05), and the family therapy group also had fewer children with BMI > 30 than the control group (P = .02). The reduction of triceps, subscapular, and suprailiac skinfold thicknesses, expressed as percentages of the initial values, was significantly greater in the family therapy group than in the conventional treatment group (P = .03, P = .005 and P = .002, respectively), and their physical fitness was significantly better (P < .05). CONCLUSIONS: Family therapy seems to be effective in preventing progression to severe obesity during adolescence if the treatment starts at 10 to 11 years of age.

Body Mass Index↗

Red cell sodium-potassium adenosine triphosphatase sites and intracellular sodium increased in obese school children.

Principally to ascertain whether mineral metabolism is involved in weight regulation, the 40 most obese of 1,774 children, aged 10-11 years, screened for obesity were compared with 46 age-matched controls. The obese children had more 3H-Ouabain erythrocyte binding sites (p = 0.04), higher intracellular sodium (p = 0.04), and lower plasma sodium (p = 0.002). After exclusion of the non-Scandinavians, the p values were p = 0.02, p = 0.03, and p = 0.03, respectively. Analysis of variance also showed the differences to be more dependent on obesity than on gender or nationality. It is concluded that obese children have more 3H-Ouabain erythrocyte binding sites indicating an increase of the sodium-potassium adenosine triphosphatase activity. The increase of intracellular sodium may increase the risk of future hypertension.

Binding Sites↗

Apolipoprotein A-I:B ratio and B screening: a preliminary study of 10- and 11-year-old children.

The apolipoprotein (apo) A-I:B ratio and the apo B concentration were determined by radial immunodiffusion in dried blood spot samples from 1,767 10- and 11-year-old children. Children with either apo A-I:B ratios below the first percentile or apo B levels above the 99th were recalled and plasma lipid and apolipoprotein profiles were determined for both children and parents. Of 17 children (one family was lost to follow-up) recalled due to abnormal apo A-I:B ratios, apo B levels were above the 95th percentile in 13 children, and of 18 children with abnormal apo B screening levels (three of them also had abnormal apo A-I:B ratios), the plasma apo B level was elevated in 13 children. The 23 children with abnormal blood lipid and/or apolipoprotein concentrations were divided into two main groups: (a) children with type IIa hyperlipoproteinemia and (b) children with hyperapo B lipoproteinemia (hyperapo B) and normal blood lipid levels. Twelve children had the type IIa pattern. Five children likely had familial hypercholesterolemia (FH), the other seven children may have hypercholesterolemia due to obesity or environmental factors. Eleven children had the hyperapo B abnormality. In four children, the elevated apo B level probably was an indication of the occurrence of familial combined hypercholesterolemia (FCH) in the family. Of the remaining seven hyperapo B children, three children also had a parent with hyperapo B and a fourth family suffered from obesity.(ABSTRACT TRUNCATED AT 250 WORDS)

Apolipoprotein A-I↗

Apolipoproteins A-I and B in obese children.

Body mass index (BMI), the distribution of fat, birth weight, physical fitness, apolipoproteins (apo) A-I and B, total cholesterol (TC), and high-density lipoprotein cholesterol (HDLC) were studied in 38 obese 10- to 11-year-olds in comparison to 52 age-matched controls. Obese children had higher concentration of apo B and a lower apo A-I:B ratio. Significant correlations were found between (a) apo A-I and physical fitness (r = 0.35, p less than 0.015), triceps skinfold thickness (r = 0.44, p less than 0.01), and birth weight (r = -0.33, p less than 0.05); (b) physical fitness and triceps skinfold thickness (r = 0.38, p less than 0.05), and (c) the apo A-I:B ratio and triceps skinfold thickness (r = 0.31, p less than 0.05). When both obese and control children were grouped together, a correlation was found between BMI and TC (r = 0.24, p less than 0.05), apo B (r = 0.37, p less than 0.001), and the apo A-I:B ratio (r = -0.31, p less than 0.01). Multiple regression analyses indicated a significant positive contribution to the apo A-I level by HDLC and physical fitness and a negative one by birth weight.

Apolipoprotein A-I↗