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Comparison of the efficacy of conventional special blue light phototherapy and fiberoptic phototherapy in the management of neonatal hyperbilirubinaemia.

The efficacy and usefulness of two types of phototherapy differing in the source, wavelength and irradiance of the light, conventional phototherapy consisting of special blue light and fiberoptic phototherapy, were compared in a relatively larger series of term newborns with non-haemolytic and more significant hyperbilirubinaemia than those in previous studies. In total, 108 newborns were allocated sequentially to receive either conventional phototherapy consisting of five special blue lamps or fiberoptic phototherapy. The average spectral irradiance measured at the skin surface level of newborns during the study period was significantly greater in the conventional phototherapy group. The special blue lamp of the conventional phototherapy unit had an emission spectrum almost identical to the bilirubin absorption spectrum, whereas the tungsten-halogen lamp of the fiberoptic phototherapy had a broad emission through the blue and green wavelengths (mainly in the green spectrum). Phototherapy was more effective in the conventional phototherapy group; the duration of exposure to phototherapy (h) was significantly shorter, and the overall bilirubin decline rate (as micromol/l/h and %/h) was significantly greater in the conventional phototherapy group. According to the nursing personnel, fiberoptic phototherapy was more comfortable than the conventional phototherapy frame because of the easier accessibility and handling of the infants during phototherapy. They complained of giddiness, nausea, glare, temporary blurring of vision and difficulty in detecting the skin colour changes of newborns with the blue light of the conventional phototherapy unit. Conventional phototherapy consisting of special blue fluorescent lamps with approximately twofold higher irradiance and an emission spectrum almost identical to the bilirubin absorption spectrum is preferable to fiberoptic phototherapy in the standard treatment of term newborns with non-haemolytic hyperbilirubinaemia.

Color Therapy↗

Fiberoptic phototherapy versus conventional daylight phototherapy for hyperbilirubinemia of term newborns.

The efficacy and wavelengths of fiberoptic phototherapy and conventional daylight phototherapy were compared in a relatively larger series of term newborns with nonhemolytic and significant hyperbilirubinemia than reported in previous studies. One hundred and nine term newborns were randomly assigned to receive either fiberoptic phototherapy on a fiberoptic phototherapy pad or overhead conventional phototherapy consisting of five daylight fluorescent lamps. Although the average spectral irradiance measured during the study period was significantly greater in the fiberoptic phototherapy group (9.2+/-1.2 microW/cm2/nm vs 7.1+/-1.1 microW/cm2/mm, p < 0.05), conventional phototherapy was significantly more effective in decreasing bilirubin levels: the duration of exposure to phototherapy was significantly shorter (49.4+/-14.4 hours vs 61+/-13.1 hours, p < 0.05), and overall bilirubin decline rate as mg/dl/h and percent/h was significantly greater in the conventional phototherapy group (0.15+/-0.06 mg/dl/h vs 0.11+/-0.05 mg/dl/h, and 0.81+/-0.34 percent/h vs 0.60+/-0.28 percent/h, p < 0.05). There were four failures of phototherapy in the fiberoptic phototherapy group whereas no phototherapy failure was observed in the conventional phototherapy group (p < 0.05). The emission spectrum of the daylight fluorescent lamp revealed a broad emission between the violet and red spectra with tiny narrow peak emission bands in 405 nm, 436 nm, 546 nm and 577 nm, while a broad emission through the blue and green wavelengths (mainly in the green spectrum) without any peak emissions was detected in the tungsten-halogen lamp of the fiberoptic phototherapy system. Conventional phototherapy with daylight fluorescent lamps should be preferred to fiberoptic phototherapy administered with fiberoptic phototherapy and in the treatment of term newborns with nonhemolytic hyperbilirubinemia.

Bilirubin↗

Comparison of the effectiveness between the adapted-double phototherapy versus conventional-single phototherapy.

BACKGROUND: Jaundice is very common in neonates during the first few days of life. Severe hyperbilirubinemia is potentially neurotoxic, resulting in bilirubin encephalopathy. Phototherapy has been used widespread and proven to be effective in lowering serum bilirubin. The efficacy of phototherapy depends on the type of light-source, the intensity of light and the area of skin exposed. Double phototherapy with a fiber-optic blanket has been reported to be more effective in reducing bilirubin than conventional phototherapy. However, a fiber-optic blanket or bili-bed is very expensive, thus the authors designed the adapted-double phototherapy by using ordinary fluorescent lamps that are much cheaper and more easily available. OBJECTIVE: To compare the efficacy and safety of adapted-double phototherapy (DP) using daylight fluorescent lamps to conventional phototherapy (CP) in healthy term infants with hyperbilirubinemia. DESIGN: Prospective randomized controlled trial study. METHOD: Term infants who met phototherapy criteria were randomized into two groups of phototherapy; the adapted DP placing daylight fluorescent lamps 38 cm above and 32 cm below the crib to produce 9-10 microw/cm2/nm (n = 24) versus CP of similar irradiance (n = 27). RESULT: There were no significant differences between the two groups with respect to birth weight, gestational age, hematocrit at enrollment and cause of hyperbilirubinemia. Infants in the DP group had higher bilirubin levels and were slightly older at the time of enrollment than those in the CP group. The bilirubin reduction rate after therapy was significantly greater in the DP compared to CP; 0.22 +/- 0.12 mg/dl/h vs 0.14 +/- 0.1 mg/dl/h on day 1 of therapy (p = 0.02) and 0.16 +/- 0.11 mg/ dl/h vs 0.1 +/- 0.05 mg/dl/h on day 2 (p = 0.06). Duration of phototherapy was shorter in DP; 34.9 +/- 12.6 h vs 43.7 +/- 17.5 h in CP group (p = 0.039). No differences in side effects were found between two groups. CONCLUSION: The adapted-DP using daylight fluorescent lamps in this study has proven to be safe and more effective in reducing bilirubin than CP. It could be an alternative model for intensified phototherapy as it produces a reasonable cost-effectiveness and is easy to apply.

Female↗

A clinical trial of fiberoptic phototherapy vs conventional phototherapy.

We conducted a randomized, controlled trial to compare fiberoptic phototherapy with conventional phototherapy in healthy jaundiced newborns with birth weights greater than 2500 g. Twelve patients received fiberoptic phototherapy and 14 patients received conventional phototherapy. There were no significant differences between the groups with respect to birth weight, gestational age, feeding method, presence of hemolytic disease, hematocrit, reticulocyte count, or initial serum bilirubin level. Measured irradiance at 425 to 475 nm for conventional phototherapy was greater than that of fiberoptic phototherapy (9.2 +/- 0.9 microW/cm2 per nanometer vs 8.2 +/- 1.2 microW/cm2 per nanometer). Both types of phototherapy lowered the level of serum bilirubin after 18 hours of therapy (fiberoptic group, from 231 +/- 29 to 210 +/- 24 mumol/L; conventional group, from 231 +/- 21 to 188 +/- 26 mumol/L), but the mean serum bilirubin level was lower after 18 hours of therapy in the conventional phototherapy group (188 +/- 26 vs 210 +/- 24 mumol/L). There were no side effects in either group of newborns. Both methods of phototherapy decreased the serum bilirubin level, but conventional phototherapy did so more effectively, probably because of its greater irradiance.

Female↗

A prospective randomized controlled study of phototherapy using blue and blue-green light-emitting devices, and conventional halogen-quartz phototherapy.

OBJECTIVE: To determine the efficacy of blue versus blue-green phototherapy using new light sources with narrow luminous spectra. The devices made of high-intensity gallium nitride light-emitting diodes (LEDs) were also compared to conventional halogen-quartz bulbs phototherapy. DESIGN: Prospective open randomized study. PARTICIPANTS: A total of 114 jaundiced, but otherwise healthy term infants who met the entry criteria for phototherapy set by the American Academy of Pediatrics' Practice Parameter. MAIN OUTCOME MEASURES: The duration of phototherapy and the rate of decrease in total serum bilirubin (TSB). RESULTS: The mean TSB concentrations at initiation and termination of treatment, as well as the duration of phototherapy and the rate of decrease in TSB, were not statistically different in newborns receiving blue LED, blue-green LED or conventional phototherapy. The average rate of decrease in TSB (slope), after adjustment by a linear regression analysis for confounding factors, was -3.61 micromol/hour (95% confidence limits -5.47, -1.75) in the 25 newborns receiving blue LED phototherapy compared with -2.57 micromol/hour (-4.32, -0.82) in the 22 newborns treated with blue-green LED phototherapy and -3.42 micromol/hour (-5.02, -1.81) in the 57 newborns who received conventional phototherapy. CONCLUSIONS: When using low light irradiance, there was no statistically significant difference in the effectiveness of phototherapy using blue-green LEDs, blue LEDs or conventional halogen-quartz bulbs.

Bilirubin↗

Double phototherapy with high irradiance compared with single phototherapy in neonates with hyperbilirubinemia.

The purpose of this study is to compare the effectiveness of double phototherapy versus single conventional phototherapy in decreasing serum bilirubin levels in jaundiced neonates. Forty-two preterm infants who were less than 37 weeks' gestational age and less than 2000 g birthweight with nonhemolytic jaundice were alternately assigned to double phototherapy (n = 19) (Biliblanket, Ohmeda with irradiance of 33 to 35 microW/cm2/nm in addition to single conventional phototherapy with combination of three or four special blue and white lamps with irradiance of 7 to 9 microW/cm2/nm) or to single conventional phototherapy (n = 23) based on elevated serum bilirubin levels in the first week of life. Phototherapy was initiated at specific bilirubin levels in three weight stratifications. The groups were similar in clinical characteristics at study entry. The decrease in serum bilirubin levels was very significant in the double phototherapy group at 8 hours after the therapy (-29 +/- 18.8 versus 8.5 +/- 27 mumol/L; P < 0.001), at 16 hours after the therapy (-49.6 +/- 15.4 versus 3.4 +/- 39 mumol/L; p < 0.001), and at 24 hours after therapy (-71.8 +/- 18.8 versus -3.4 +/- 32.5 mumol/L; p < 0.001) compared with the conventional phototherapy group. The time taken for bilirubin levels to fall below the threshold level was 55 +/- 41 hours in the single group and 14 +/- 6 hours in the double group (p < 0.001). Double phototherapy was well tolerated. The Biliblanket when used in conjunction with single conventional phototherapy resulted in a faster decrease of serum bilirubin.(ABSTRACT TRUNCATED AT 250 WORDS)

Bilirubin↗

[Double phototherapy with Wallaby optic fibers versus conventional phototherapy. Case reports].

The authors have valued the efficacy of the double phototherapy with fiberoptic Wallaby vs conventional phototherapy in 2 groups of term infants, without any complication at birth, utilized respectively as study group and control group. While conventional phototherapy produced a bilirubin reduction of 0.60 +/- 0.26% per hour (with a total reduction of 28.1 +/- 11.1%), the double phototherapy was statistically more effective (p < 0.05) then conventional phototherapy causing a bilirubin reduction of 0.73 +/- 0.28% (with a total reduction of 33.3 +/- 9.5%). At 24 hour after the interruption of the treatment 9 newborns of the study group (36%) and 7 of the control group (28%) presented a rebound effect (increase of the bilirubinemia more than 17 mumol/l), but without a statistical difference (p > 0.05). Our study shows that double phototherapy with Wallaby fiberoptic and conventional phototherapy represent a valid strategy in the treatment of the non haemolytic neonatal hyperbilirubinemia, because, compared to conventional phototherapy, double phototherapy is more effective and reduces the period of the treatment, showing a simple management of the jaundiced newborn.

Bilirubin↗

A randomized, controlled application of the Wallaby phototherapy system compared with standard phototherapy.

The feasibility and efficacy of a fiberoptic blanket (Wallaby Phototherapy System) for the treatment of physiologic jaundice was compared with conventional phototherapy. Forty-two full-term infants with nonhemolytic jaundice were included in the study. Infants in the study group were treated with the fiberoptic blanket and the infants in the control group were placed under a standard phototherapy unit. Both the fiberoptic blanket and the standard phototherapy unit delivered an average irradiance of 7.0 +/- 0.5 muw/cm2/nm. Incremental changes in serial plasma bilirubin levels compared with the initial bilirubin concentration did not differ between the study and control groups. For infants whose initial plasma bilirubin concentration exceeded 200 mumol/L, a statistically significant difference was found in both study and control groups between the average bilirubin level at initiation of phototherapy and the average bilirubin level at termination of treatment. We conclude that phototherapy delivered by the fiberoptic blanket is safe and has efficacy comparable to that of conventional phototherapy, providing a convenient alternative phototherapy application strategy that obviates the need for eye patches and facilitates maternal handling of the infant during therapy.

Bedding and Linens↗

A controlled trial of high-intensity double-surface phototherapy on a fluid bed versus conventional phototherapy in neonatal jaundice.

OBJECTIVE: To evaluate a simple, relatively inexpensive method using the fluid bed to provide high-intensity double-surface (HIDS) phototherapy and to confirm that the method described is more effective than conventional phototherapy (CPT) in the treatment of neonatal hyperbilirubinemia. DESIGN: Prospective controlled study. METHOD: HIDS phototherapy (26 to 30 microW/cm2 per nanometer) on the fluid bed (n = 22) versus conventional (7 to 10 microW/cm2 per nanometer) phototherapy (n = 28) was used to treat neonates weighing more than 1500 g with hyperbilirubinemia. RESULTS: After 24 hours of therapy, the bilirubin in the group receiving HIDS phototherapy was significantly lower. The mean rate of fall of bilirubin was 5.34 mumol/L per hour in the group receiving HIDS phototherapy versus 0.7 mumol/L per hour in the group receiving CPT. HIDS phototherapy on a fluid bed was well tolerated. CONCLUSION: HIDS phototherapy on the fluid bed is significantly more effective in reducing bilirubin than CPT. It can be easily and economically provided using equipment currently available in most neonatal units.

Beds↗

Effects of phototherapy on cerebral haemodynamics in preterm infants: is fibre-optic different from conventional phototherapy?

We hypothesized that conventional phototherapy (CPT) and fibre-optic phototherapy (FPT) could exert different effects on cerebral blood perfusion. Our aim was to assess this hypothesis in a prospective study of the cerebral haemodynamics in preterm infants. Twenty-three infants (gestational age <34 weeks) were randomized for CPT (n=12) and for FPT (n=11). Cerebral Doppler ultrasounds were performed on all infants immediately before phototherapy (time 0), 6-12 hours (time 1) and 24-36 hours (time 2) after the start of phototherapy, and 6-12 hours after discontinuing phototherapy (time 3). CPT and FPT were associated with a significant increase of peak-systolic blood flow velocity and mean blood flow velocity at time 1 and 2, which disappeared at time 3, whereas end-diastolic blood flow velocity and resistance index were unchanged. No difference was shown between the groups. CPT and FPT were found to exert similar effects on cerebral haemodynamics. Both were associated with an increase of cerebral blood flow velocity which ended when phototherapy was stopped.

Brain↗

BiliBlanket phototherapy system versus conventional phototherapy: a randomized controlled trial in preterm infants.

OBJECTIVE: This study compares the use of standard overhead fluorescent phototherapy units with the BiliBlanket a woven fibreoptic pad which delivers high intensity light with no ultraviolet or infrared irradiation in the treatment of jaundice in preterm infants. METHODOLOGY: We chose to study infants between 800 and 2500 g, with strict criteria for commencing and ceasing phototherapy. Serum bilirubin levels were followed at 12-24 h intervals until 24 h after cessation of phototherapy. Infants were allocated at random to receive either conventional phototherapy or the BiliBlanket. RESULTS: There were 24 infants in the conventional group and 20 in the BiliBlanket group. Mean duration of phototherapy was compared and was 44 h for the conventional group versus 42 h for the BiliBlanket group. CONCLUSIONS: We have shown that the BiliBlanket is as effective as conventional phototherapy and was well accepted by nursing staff and parents.

Bilirubin↗

In vitro and in vivo efficacy of new blue light emitting diode phototherapy compared to conventional halogen quartz phototherapy for neonatal jaundice.

High intensity light emitting diodes (LEDs) are being studied as possible light sources for the phototherapy of neonatal jaundice, as they can emit high intensity light of narrow wavelength band in the blue region of the visible light spectrum corresponding to the spectrum of maximal bilirubin absorption. We developed a prototype blue gallium nitride LED phototherapy unit with high intensity, and compared its efficacy to commercially used halogen quartz phototherapy device by measuring both in vitro and in vivo bilirubin photodegradation. The prototype device with two focused arrays, each with 500 blue LEDs, generated greater irradiance than the conventional device tested. The LED device showed a significantly higher efficacy of bilirubin photodegradation than the conventional phototherapy in both in vitro experiment using microhematocrit tubes (44+/-7% vs. 35+/-2%) and in vivo experiment using Gunn rats (30+/-9% vs. 16+/-8%). We conclude that high intensity blue LED device was much more effective than conventional phototherapy of both in vitro and in vivo bilirubin photodegradation. Further studies will be necessary to prove its clinical efficacy.

Animals↗

Comparison of conventional phototherapy and fiberoptic phototherapy in the very-low-body-weight infants.

Phototherapy is effectively employed for the treatment of neonatal hyperbilirubinemia, but it may influence the physiological hemodynamics of the infants, such as skin blood flow, insensible water loss and the redistribution of cardiac output. This is a retrospective chart review study involved totally 42 very low birth weight prematures(birth body weight less than 1500 gm, VLBW) who received conventional or fiberoptic phototherapy. Infants with congenital malformation, severe cardiorespiratory instability and the requirement of diuretics, inotropics or blood transfusion were excluded. The body weight loss, daily intake/output and bilirubin level during the initial four days of phototherapy were analyzed. The results showed the efficacy of both methods was the same, while the fiberoptic therapy group had significantly more urine output(p < 0.05), the body weight loss was not statistically significant. It is possible that the fiberoptic therapy group had less insensible water loss and less attenuation of the decrease of renal blood flow, this resulted in more urine output.

Chi-Square Distribution↗