Special feature: radiological case of the month. Velopharyngeal insufficiency causing nasopharyngeal reflux in the neonate.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to P Shekhawat.
Explore the source record for details and available documents.
OBJECTIVE: With the newer techniques of culture analysis such as the BACTEC 9240 fluorometric detection system, detecting bacteremia in the neonate may be possible in a significantly shorter time. We hypothesized that neonatal bacteremia can be detected in less than 48 hours by this method. STUDY DESIGN: Our study included a retrospective review of 613 blood cultures obtained during the period August 1, 1995 to March 18, 1996 taken from 325 infants who had cultures drawn with a sepsis work-up and/or repeat cultures who had initial positive cultures in our Neonatal Intensive Care Unit. Results of blood cultures were studied in conjunction with the variables of body weight, gestational age, organism grown, complete blood count (CBC), and timing of positive cultures. Statistical analyses were performed using Fisher's and two-tailed Student's t tests. RESULTS: The results showed that of 325 infant blood cultures 49 (15%) were positive. Of these, 64% were coagulase-negative staphylococci, 14% viridans streptococci, 8% Escherichia coli, 4% Enterococcus sp., 4% Pseudomonas sp., 2% Enterobacter sp., 2% Klebsiella sp., and 2% Candida albicans. Of the positive blood cultures taken from infants not on antibiotics at the time of culture, 54% were detected positive at 18 hours, 71% at 24 hours, and 100% by 30 hours. Detection time by organism type was as follows: coagulase-negative staphylococci, 21.7 hours; viridans streptococci, 15.6 hours; E. coli, 7.5 hours; Enterococcus sp., 12 hours; Enterobacter sp., 5 hours; Klebsiella sp., 10 hours; and Pseudomonas sp., 12 hours. CONCLUSION: Our results indicate that the BACTEC 9240 fluorometric detection system helps in early identification of neonatal bacteremia (in 24 to 30 hours), with Gram-negative organisms being detected earlier than Gram-positive organisms (p < 0.05) and having significantly higher immature neutrophils in a CBC (I:T ratio of > or = 0.2 (p < 0.001). Early detection of neonatal bacteremia using this method will allow earlier diagnosis and appropriate treatment of the potentially bacteremic and bacteremic infant.
To examine causes of newborn hospital readmission and morbidity related to early nursery discharge, we reviewed the charts of 664 newborns readmitted from home under the age of 15 days, between 1993 and 1995. Early discharge (ED) was defined as nursery length of stay of < or = 2 days. Morbidity related to ED: onset of symptoms within 1 day of ED; and in diseases with insidious onset: serum bilirubin level > 20 mg/dL (340 mumol/L), or dehydration following poor breastfeeding since birth. Seventeen percent of all readmitted infants had ED-related morbidity; 9% had major morbidity. Onset of symptoms prior to the age of 3 days occurred in 43% of ductal-dependent cardiac lesions, intestinal obstruction, seizures, and major infections. Morbidity was less pronounced in infants who were followed up within 2 days following ED. Specific findings related to subsequent morbidity were identified in the perinatal history of infants who were readmitted with major infections and with hyperbilirubinemia. Our findings suggest that: (1) close to half of the cases with acute-onset major morbidity can be identified within 3 days of birth, and (2) attention to the perinatal history and timely follow-up will contribute to a reduction in both morbidity and complications.
Explore the source record for details and available documents.
Explore the source record for details and available documents.