Search PubMed⌕ Search

Biomedical subjects

J C Picaud

Publications and source records attributed to J C Picaud.

At least 19 recordsLinked to original sources

Formula-fed preterm neonates.

In very immature babies, nutrition often begined with human milk, but a lot of mothers have a difficulty in lactating and banked human milk is not always available. Therefore, preterm formulas have been specifically designed for very low birth weight (VLBW) infants during hospitalisation stay. They differ significantly from standard term formulas and their derivatives, such as extensively hydrolyzed protein formulas, which are not nutritionally adapted for these infants. Partially hydrolyzed protein formulas have been tried, but infants fed these formulas have a decreased nitrogen intestinal absorption rate. As a result the nitrogen content needs to be increased each time a partially hydrolyzed protein source is used in preterm formulas instead of an entire protein source. Although mineral retention in VLBW infants fed a formula is lower than in utero it might be sufficient. We recently observed an early catch up of bone mineralisation at theoretical term in VLBW infants fed a preterm formula containing highly soluble calcium salts. Probiotics and prebiotics are not yet well evaluated in preterm infants but might help in improving the development of physiologic intestinal flora and enteral feeding tolerance. There is still debate about optimal posthospital nutrition in preterm infants who are not breastfed. Feeding a nutrient-enriched formula provides a growth benefit when compared to infants fed a term formula, mainly during the first 2 to 3 months after discharge. Data about the harmful effects of using such formulas for a longer period are scarce. Therefore, the use of nutrient-enriched formula might be suggested for the first 2 months after discharge, as it is a crucial period in the development of these VLBW infants.

Dietary Proteins↗

Software and scan acquisition technique-related discrepancies in bone mineral assessment using dual-energy X-ray absorptiometry in neonates.

AIM: In adults, whole-body mineralization assessment by dual-energy X-ray absorptiometry can be affected by the densitometer and/or the software used. As there are no published data on neonates, the aim of this study was to evaluate the magnitude of such effects in growing preterm infants. METHODS: We analysed the absorptiometry results obtained from 44 preterm infants scanned at discharge and again 6 wk later using densitometers from the same manufacturer equipped with "Pediatric" (Group A, n = 24) or with "Infant" (Group B, n = 20) packages. Results of bone mineral content assessment were compared using an unpaired t-test and a linear regression analysis. RESULTS: At the time of the first absorptiometry (body weight = 2119 +/- 144 g, n = 44), the bone mineral content was three times lower in Group A (10 +/- 3 g) than in Group B (29 +/- 4 g) (p < 0.001). Subsequently, on the second absorptiometry (body weight = 4037 +/- 236 g, n = 44) such significant differences in bone mineral content (A: 65 +/- 19 g, B: 66 +/- 9 g, p = 0.85) were no longer in evidence. The differences in bone mineral content were related to differences in analysis algorithms between the two programs, which can lead to an overestimation of bone mineral content accretion when two successive measurements are made using the "Pediatric"package. CONCLUSION: Considering that significant differences in bone mineral assessment may depend upon which program is used, data previously collected in low birthweight infants using the "Pediatric" package should be analysed with caution. Data obtained using the "Pediatric" and "Infant" packages are not directly comparable. Careful validation studies of future densitometers and programs are required before their use in clinical paediatric studies.

Absorptiometry, Photon↗

Nutritional efficacy of preterm formula with a partially hydrolyzed protein source: a randomized pilot study.

BACKGROUND: Decreased nitrogen levels, calcium intestinal absorption rates, and plasma amino acid imbalances were reported for preterm infants who were fed partially hydrolyzed preterm formulas. In this pilot study, we evaluated a new formula with modified nitrogen and calcium sources. METHODS: During their second week of life, 16 preterm infants were randomly assigned to one of two groups: 9 were fed the new partially hydrolyzed formula and 7 were fed a conventional formula. Nutrient balance was performed at the end of the first month of life. Amino acid concentrations and anthropometric parameters were measured at theoretical term. RESULTS: Birth weight and gestational age (mean +/- SD) were similar in the two groups (28.9 +/- 7.0 weeks and 1183 +/- 242 g vs. 27.7 +/- 1.0 weeks and 1139 +/- 162 g). Median nitrogen absorption rates (85% vs. 89%; P = 0.03) and biological values (59% vs. 69%; P = 0.13) were lower for infants who were fed the new formula than for those fed the conventional formula. After correction for difference in nitrogen intake, there was no significant difference in nitrogen retained between the two groups (P = 0.11). Plasma amino acid concentrations were also similar in the two groups. Median calcium absorption tended to be higher in the new-formula group than in the conventional-formula group (54% vs. 45%, P = 0.19). At theoretical term, infants fed the conventional formula were heavier than infants fed the new formula (3559 +/- 362 g vs. 3193 +/- 384 g, P = 0.04). CONCLUSIONS: Because nitrogen content is 10% higher in hydrolyzed-protein formula than in entire-protein formula, appropriate nitrogen retention, plasma amino acid profile, and mineral use can be achieved with the new partially hydrolyzed formula. Further studies with larger groups are needed to evaluate the effect on growth.

Amino Acids↗

Bone mineral metabolism in the micropremie.

Environmental factors, nutritional supplies, hormonal status, diseases, and treatments appear to affect postnatal skeletal growth and mineralization in VLBW infants. Compared with their term counterparts, ELBW infants are at risk of postnatal growth deficiency and osteopenia at the time of hospital discharge. From recent data, DXA is becoming one of the reference techniques to evaluate mineral status, whole-body composition, and effects of dietary manipulations on weight gain composition and mineral accretion in preterm infants. Weight gain and length increases need to be evaluated carefully during the first weeks of life, in the intensive care unit and out of it, in the step down unit. Nutritional survey is required to improve the nutritional supply and to maximize linear growth. As the critical epoch of growth extends, during the first weeks or months after discharge, follow-up and nutritional support need to be provided during the first years to promote early catch-up growth and mineralization. Further studies need to determine precisely the most optimal feeding regimen during this period but also need to evaluate the long-term implications of such a policy on stature, peak bone mass, and general health at adulthood.

Bone Development↗

High frequency oscillatory ventilation during repair of neonatal congenital diaphragmatic hernia.

We evaluated the use of high frequency oscillatory ventilation (HFOV) during congenital diaphragmatic hernia repair. After preoperative stabilization, 22 newborn infants were ventilated with HFOV during surgery. Ventilatory settings, blood gas values and oxygenation index were recorded before, during and after surgical repair. No differences were noted for these variables. No complications related to ventilation were recorded. According to the surgeon, diaphragmatic repair during HFOV is facilitated. This study confirms that CDH can be safely repaired using HFOV during anaesthesia.

Analysis of Variance↗

The use of low-EPA fish oil for long-chain polyunsaturated fatty acid supplementation of preterm infants.

Because docosahexaenoic acid (DHA) may be an essential nutrient for the visual and early cognitive development of preterm infants, DHA enrichment of preterm formulas has been recommended. This randomized trial was designed to study the n-6 and n-3 fatty acid status of healthy preterm infants fed a formula enriched with a low eicosapentaenoic-fish oil until 4 mo corrected age compared with that of infants fed a standard formula. A reference group of breast-fed infants was studied concurrently. The fatty acid content of red blood cell (RBC) phospholipid was assessed at enrollment, hospital discharge, expected term, and 3 and 6 mo postterm. The DHA content of RBC phospholipid was higher in infants fed the enriched versus the standard formula at hospital discharge, expected term, and 3 and 6 mo postterm. However, compared with infants fed the standard formula, infants fed the enriched formula had also higher RBC phospholipid eicosapentaenoic content (0.69 +/- 0.15% versus 0.25 +/- 0.12%, p < 0.001), and lower RBC phospholipid arachidonic acid content (15.1 +/- 0.93% versus 18.8 +/- 0.89%; p < 0.001). We conclude that supplementing preterm infants with low-eicosapentaenoic fish oil is effective in improving DHA status, but results in worsening of n-6 fatty acid status. We speculate that preterm infants may require a dietary supply of arachidonic acid as well as DHA if the same fatty acid status as that of breast-fed infants is to be achieved.

Arachidonic Acid↗

Bilateral cystic pleuropulmonary blastoma in early infancy.

We report 2 cases of multifocal cystic (type 1) pleuropulmonary blastoma, diagnosed during the first 6 months of life. This rare entity must be recognized before evolution into the prognostically unfavorable type 2 or type 3 pleuropulmonary blastoma.

Female↗

Cystic adenomatoid malformation of the lung: neonatal management of 21 cases.

Currently, congenital cystic adenomatoid malformation of the lung (CCAM) is often diagnosed antenatally by ultrasound, allowing prompt and appropriate medical and surgical management after birth. The authors report 21 cases of CCAM admitted from 1988 to 1997 to a neonatal intensive care unit and treated by high-frequency oscillation (HFO) and early surgery. Six infants developed respiratory distress, of whom 4 required ventilation by HFO. HFO was also the mode of ventilation used in all cases except 1 during the perioperative period. There was no death from respiratory failure. The authors emphasize the usefulness of antenatal diagnosis, the efficiency of HFO in cases with severe respiratory failure, and well-tolerated early surgery.

Combined Modality Therapy↗

[Iron supplementation in preterm infants treated with erythropoietin].

Anemia in premature infants can be prevented by prophylactic treatment with recombinant human erythroprotein (r-huEPO). r-HuEPO as been used for a long time in patients with end-stage renal failure. The main factor which can limit r-HuEPO efficiency is limited iron bioavailability. Adapted iron supplementation is needed when preterm infants receive r-HuEPO in order to avoid the depletion of iron stores. Oral iron supplementation is simple but indigestibility is frequent. Furthermore, the intestinal absorption and utilization of oral iron is limited. Parenteral iron supplementation is possible in infants who are very pre-term as they are parenterally fed during the first weeks of life. There are various preparations of intravenous iron with different physicochemical properties. Toxicity and side-effects of parenteral iron preparations depend on these properties. Two parenteral iron preparations are available in France: iron-saccharate (Venofer) and iron-dextrin (Maltofer). Iron delivery and possible side-effects of these preparations are different and need to be considered before use in preterm infants.

Adult↗

Dual-energy X-ray absorptiometry in small subjects: influence of dual-energy X-ray equipment on assessment of mineralization and body composition in newborn piglets.

There is a growing body of literature that describes the use of dual-energy x-ray absorptiometry (DXA) for bone mineral content (BMC) and fat mass (FM) assessment in neonates, but the reproducibility and accuracy of the method are still controversial. Two different software programs have been developed for use on Hologic densitometers: the Pediatric Whole Body (PWB) and the Infant Whole Body (IWB) programs. They differ in scan time, radiation exposure, and in the algorithm used to assess BMC. We evaluated the reproducibility and accuracy of PWB and IWB in newborn piglets. Reproducibility of body mass (BM), FM, and BMC measurements from PWB and IWB were similar. BM agreed well with scale weight with both software programs; IWB was within +/- 0.5% and PWB was within +/- 0.3% of scale weight. FM was highly correlated with carcass fat (PWB: r = 0.962; IWB: r = 0.980). Errors in the DXA estimation of fat were similar with PWB and IWB. With both software programs, BMC was highly correlated with carcass calcium (PWB: r = 0.925, IWB: r = 0.987), but errors in the DXA estimation of calcium were about twice as high with PWB (+/- 16.9%) than with IWB (+/-9.2%). In four piglets, the addition of a layer of porcine lard was associated with an increase in BMC; this effect was more pronounced with PWB (+ 156%) than with IWB (+ 15%). The IWB software provided BMC measurements that were more precise, accurate, and stable in the presence of added fat than the measurements obtained with PWB, indicating that IWB is superior to PWB for in vivo determination of BMC and body composition.

Absorptiometry, Photon↗

Reference values of body composition obtained by dual energy X-ray absorptiometry in preterm and term neonates.

BACKGROUND: As previously reported, dual-energy x-ray absorptiometry provides reliable and accurate values for bone mineralization in piglets and infants, but overestimates fat content in small infants. The purpose of the current study was to determine an appropriate equation of correction for fat mass measurement and to establish reference values of body composition of preterm and term neonates. METHODS: Fat mass and chemical whole-body fat content were evaluated by dual-energy x-ray absorptiometry in eight piglets with a body weight between 1408 and 5151 g. The results were combined with previous data obtained in 13 piglets, and two correction equations were determined according to fat mass content. Close to birth, 106 healthy appropriate-for-gestational-age preterm and term infants were scanned by dual-energy x-ray absorptiometry to determine bone mineral content, bone area, and fat mass. Fat mass content determined by dual-energy x-ray absorptiometry was corrected using the equations obtained in piglets after which lean body mass was recalculated. RESULTS: Multivariate analysis showed that dual-energy x-ray absorptiometry body weight was the best predictor of bone mineral content (r2 = 0.94), bone area (r2 = 0.95), lean body mass (r2 = 0.98), and fat mass (r2 = 0.84). Gender was an additional significant independent variable for fat mass and lean body mass. Body weight related curves of percentiles for bone mineral content, bone area, fat mass, and lean body mass, were constructed. In vivo dual-energy x-ray absorptiometry values of fat mass and calcium content estimated from bone mineral content were in accordance with previously reported whole-body carcass reference values in preterm and term neonates. CONCLUSION: Normative data of dual-energy x-ray absorptiometry body composition for healthy preterm and term infants are provided and can therefore be used in research and in clinical practice.

Absorptiometry, Photon↗

[New technique of nasal continuous positive pressure in neonatology].

BACKGROUND: Early treatment with nasal continuous positive airway pressure (CPAP) in newborns with respiratory distress syndrome is useful, by recruiting alveoli and restoring the functional residual capacity. POPULATION AND METHODS: Nasal CPAP was supplied by the Infant Flow Driver (Electro Medical Equipment). From 15 June 1994 to 15 December 1994, 42 neonates received nasal CPAP. Their mean birthweight and gestational age were 1511 +/- 411 g and 30.9 +/- 2.5 weeks, respectively. Fifteen infants had been ventilated for hyaline membrane disease and nasal CPAP was applied immediately after extubation. In the other 27 infants, nasal CPAP was given soon after birth (respiratory distress syndrome: 20 neonates; apneic spells: seven neonates). RESULTS: Three infants needed subsequent mechanical ventilation because of the severity of the disease (one had spontaneous pneumothorax); four infants received exogenous surfactant (Curosurf, one single dose) within a brief period of mechanical ventilation (30-45 min). There were no failure of extubation, and no intracranial lesions. Excess of pharyngeal secretion and abdominal distension were common. CONCLUSION: Early treatment with nasal CPAP reduces the need for mechanical ventilation. Furthermore, surfactant therapy required by a moderate to severe disease is possible with a rather short period of artificial ventilation.

Apnea↗