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At least 127 records · Page 7Linked to original sources

Effect of pulse repetition rate on the perception of thermal sensation with pulsed shortwave diathermy.

BACKGROUND AND PURPOSE: Pulsed shortwave diathermy (PSWD) is a form of therapy commonly used to enhance tissue repair and reduce pain. It is normally considered to be an athermal form of treatment; however, there is some evidence to suggest that thermal effects can arise with adequate dosage. The purpose of this study was to determine the pulse repetition rate (PRR) required to generate a 'possible' and 'definite' thermal sensation when PSWD was applied to the thigh. METHOD: Thirty healthy subjects were randomly assigned to placebo or treatment groups. The treatment group was exposed to PSWD at a constant setting of pulse duration (400 microseconds) and pulse power (190 W) while the PRR was increased from 26 Hz to 400 Hz in 10 increments. Each dose was applied for a period of two minutes. At the end of each application, subjects were asked if they felt a (1) 'possible' or (2) 'definite' thermal sensation. Skin temperature was measured immediately after each application. Placebo subjects were exposed to PSWD at its lowest settings throughout the experiment (pulse power = 5 W; pulse duration = 65 microseconds and PRR = 26 Hz). RESULTS: The results showed a significant correlation (p < 0.048) between PRR at 'definite' thermal sensation and skin temperature post-treatment and PRR at 'possible' thermal sensation (p < 0.001). Mean skin temperature increased significantly as PRR was increased, from 28.69 (+/- 0.75) degrees C pre-treatment to 31.14 (+/- 1.04) degrees C post-treatment, a mean difference of 2.34 degrees C. CONCLUSIONS: These results suggest that PSWD at adequate dosages can generate thermal effects, and that there is a relationship between these thermal effects and the PRR used. These results may have significant implications for the safe use of PSWD in the clinical arena.

Adult↗

Importance of calcium for the vulnerability to ventricular fibrillation detected by premature ventricular stimulation: single pulse versus sequential pulse methods.

Vulnerability to ventricular fibrillation (VF) is frequently evaluated by VF threshold, a variable which may not be free of confounding factors and which may not be sensitive to all factors contributing to vulnerability. Therefore, we tested whether VF threshold determination affects intracellular free Ca2+ ([Ca2+]i) and whether VF thresholds are sensitive to changes in [Ca2+]i. For this purpose, we analysed [Ca2+]i by surface fluorometry and indo-1 in intact perfused rat hearts undergoing VF threshold determination by a single pulse method and tested whether such thresholds are lowered by increased [Ca2+]i. Additionally, we sought to determine the importance of Ca2+ for the vulnerability to VF under nonischemic conditions. For this purpose, we measured VF thresholds by a new pulse number method which scanned the vulnerable period by an increasing number of sequential pulses at increasing prematurity but constant intensity. We found that VF threshold determination by a single pulse method led to a rise in systolic [Ca2+]i. However, this rise does not perturb VF threshold interpretation because such thresholds were insensitive to changes in [Ca2+]i. Nevertheless, [Ca2+]i is of importance for the vulnerability to VF under nonischemic conditions because the number of VF-free tolerated premature pulses was dependent on [Ca2+]i. This relationship may only be detectable if evaluated by sequential pulse methods. These findings suggest that the method of VF threshold determination may be crucial for the result of studies testing Ca2+ antagonists or situations of altered [Ca2+]i and could explain controversial results of VF threshold studies testing Ca2+ antagonists by varying methods.

Animals↗

Effect of local limb temperature on pulse oximetry and the plethysmographic pulse wave.

We attempted to evaluate prospectively local thermoregulatory vasoconstriction and vasodilatation in 15 volunteers by means of pulse oximetry and plethysmography as measured by a finger tip-pulse oximeter. Recent studies [1] concluded that the plethysmo time interval (PTI) between the QRS complex on ECG and the upstroke of the plethysmographic wave of the pulse oximeter is useful in evaluating the peripheral circulatory status. Venous (both Vv cubitae) blood samples for determination of SvO2 were drawn, as well as pulse oximetry SpO2 oxygen saturation measurements and calculation of PTI were performed under conditions of normothermia, hypothermia and hyperthermia, before and after immersing the hands of the volunteers in a cold (15 degrees C) and warm (45 degrees C) waterbath. Two pulse oximeters simultaneously were used, one for each hand, in order to check to which extent SpO2, SvO2 and PTI might be influenced by gross limb temperature changes. Our results show that during local hyperthermia SpO2 significantly decreased and during local hypothermia SpO2 increased after immersing the one hand in a warm waterbath and the other hand in a cold waterbath at the same time. The peripheral SvO2 significantly increased in the warm hand and decreased in the cold hand. PTI remained unchanged after exposure to either a cold or a warm waterbath. The possibility of technical causes for the SpO2 changes were eliminated. Finger-tip pulse oximetry SpO2 readings change with limb temperature. The change in venous oxygen saturation can be explained by temperature dependent arteriovenous shunts in the periphery. The observed change in SpO2 probably reflects altered transmission of arterial pulsations to venous blood in the finger.

Adult↗

The effect of pulse repetition rate, pulse intensity, and bicuculline on the minimum threshold and latency of bat inferior collicular neurons.

This study examines the effect of pulse repetition rate (PRR), pulse intensity, and bicuculline on the minimum threshold (MT) and latency of inferior collicular neurons of the big brown bat, Eptesicus fuscus, under free-field stimulation conditions. It tests the hypothesis that changes in MT and latency of collicular neurons are co-dependent on PRR. The number of impulses in inferior collicular neurons (n = 245) increased either monotonically (25%) or non-monotonically (75%) with pulse intensity. Latencies either decreased to a plateau (72%), fluctuated unpredictably within 3 ms (21%) or changed very little (7%) with increasing pulse intensity. Latencies and MTs of most collicular neurons increased by 1.5-24 ms (mean +/- SD = 4.8 +/- 3.3 ms) and 4-75 dB (mean +/- SD = 22.1 +/- 16.2 dB) with increasing PRR. In most neurons (94%), the latency increase was completely (42%) or partially (52%) eliminated when pulse intensity was compensated for the MT increase with PRR. Complete elimination of latency was achieved by bicuculline application. In a few neurons (6%), the latency increase with PRR was not affected by compensated pulse intensity or bicuculline application.

Animals↗

Characteristics of shock waves induced by pulsed lasers and their effects on arterial tissue: comparison of excimer, pulse dye, and holmium YAG lasers.

Shock waves were investigated using an excimer laser at 308 nm with 18.9 mjoules/pulse, a pulsed dye laser at 480 nm with 100 mjoules/pulse, and a holmium YAG (yttrium-aluminum-garnet) laser at 2.1 microns with 420 mjoules/pulse. At a distance from the target tissue, excimer lasing resulted in no shock waves in saline, while the other lasers produced smaller shock waves than those recorded when the laser was in contact with tissue (0.22 versus 2.0 mm Hg with the pulsed dye laser, 0 versus 0.23 mm Hg with the excimer laser, and 0.44 versus 6.9 mm Hg with the holmium YAG laser; p less than 0.001, respectively). In blood, excimer laser irradiation at a distance from the tissue produced shock waves as great as those produced when the laser was in contact with the tissue (0.19 versus 0.24 mm Hg with the excimer laser, 1.8 versus 3.0 mm Hg with the pulsed dye laser, and 3.1 versus 5.9 mm Hg with the holmium YAG laser; p less than 0.001 with the pulsed dye and holmium YAG lasers, respectively). When lasing was done at 60 mjoules/mm2, the pulsed dye and excimer lasers produced similar shock waves when the lasers were in contact with tissue; however, the holmium YAG laser did not produce shock waves. Thus pulsed lasers can produce shock waves of different characteristics according to the laser source.

Analysis of Variance↗

Hemolysis of albunex-supplemented, 40% hematocrit human erythrocytes in vitro by 1-MHz pulsed ultrasound: acoustic pressure and pulse length dependence.

The tested hypothesis was that ultrasound-induced hemolysis in blood supplemented with a microbubble contrast agent varies with ultrasound intensity and pulse duration. Human erythrocytes in autologous plasma containing 3.6% v:v Albunex microspheres were exposed to 1.07-MHz ultrasound pulses of 5 to 1000 mus at SPTP intensities of 0 to 1100 W/cm2. The dependence of hemolysis on the mechanical index (MI) value of the exposures was also examined. Ultrasound-induced hemolysis: (1) was evident at all pulse/intensity combinations; (2) increased generally with increasing pulse duration at constant intensity; and (3) increased with increasing MI at constant pulse duration. For pulses of 10 to 30 mus, ultrasound-induced hemolysis remained low (< or = 2%) at MI values < approximately 2 and increased sharply with further increase in MI; for 5-mus pulses, this abrupt increase in hemolysis was associated with a larger MI (approximately 3).

Adult↗

Shortening of pulse-width for immediately succeeding trigger signals in the use of logic pulse shapers for nuclear experiments.

If a second succeeding pulse arrives immediately after a first preceding pulse in the output from a non-retrigerable monostable multivibrator, the width of the succeeding pulse is somewhat shortened. Using a time-to-amplitude converter followed by a multi channel analyzer, the pulse-width shortening of the succeeding pulse was measured as a function of the time interval between the two pulses. It was found that this effect was highly dependent on the resistance of an external RC time constant circuit. Similar measurements were also carried out for nuclear instrument modules involving the monostable multivibrator circuits.

Computer Simulation↗

Effects of pulse rate on thresholds and loudness of biphasic and alternating monophasic pulse trains in electrical hearing.

Detection thresholds and most comfortable loudnesses (MCLs) were determined as a function of pulse rate for standard biphasic pulse trains (BP) and for anodic and cathodic monophasic phases alternating at fixed intervals (ALT-m). Three different phase durations were examined. With a 100-micros phase duration, thresholds for the ALT-m stimulus were substantially (up to 12 dB) lower than for the BP stimuli at relatively low rates (200 pps), but were similar to the BP thresholds at high rates (1000 pps). Thresholds for BP pulse trains decreased monotonically with increasing rate, whereas the function for ALT-m waveforms was non-monotonic with a maximum between 400 and 1000 pps. These trends occurred for three different cochlear implant devices, different electrode configurations, and, generally, for different phase durations (10.8, 25, and 100 micros/phase). However, at the shorter phase durations, thresholds remained lower for the ALT-m stimulus, even at 5000 pps, the highest rate studied. Dynamic ranges of the BP pulse trains increased with increasing rate, irrespective of the phase duration under test, but for the ALT-m stimuli this was only true at the shorter phase durations tested. At a 100-mus phase duration, dynamic ranges for the ALT-m waveforms did not differ significantly as a function of rate. The results confirm previous reports that delaying charge recovery, in this case by switching from a BP to an ALT-m wave shape, can substantially reduce thresholds [Van Wieringen, A., Carlyon, R.P., Laneau, J., Wouters, J., 2005. Effects of waveform shape on human sensitivity to electrical stimulation of the inner ear. Hear. Res. 200, 73-86; Carlyon, R.P., van Wieringen, A., Deeks, J.M., Long, C.J., Lyzenga, J, Wouters, J., 2005. Effect of inter-phase gap on the sensitivity of cochlear implant users to electrical stimulation. Hear. Res. 205, 210-224]. However, at high pulse rates, this advantage only occurs at short phase durations. In addition, we show that the complex interaction between the effects of pulse shape, rate, and phase duration on thresholds can be captured by the simple linear model described by Carlyon et al.

Adult↗

Compensation for pulse imperfections in rotational-echo double-resonance NMR by composite pulses and EXORCYCLE.

We describe a simple method to compensate for pulse-angle errors in rotational-echo double resonance (REDOR) experiments for determining heteronuclear distances in solids. By using composite 180 degrees pulses on the unobserved dephasing spin and EXORCYCLE for the single pi pulse on the observed channel, the REDOR curve becomes much less sensitive to pulse-angle errors. Both improvements are demonstrated by experiments on the model compound, (15)N, (13)Calpha -labeled N-t-BOC-glycine, and are confirmed by numerical simulations. The advantage of EXORCYCLE is also shown analytically using the product operator formalism. The proposed simple schemes compensate for unavoidable pulse-angle errors that arise, for example, from radiofrequency field inhomogeneity. They also make REDOR experiments more accurate and robust for low-sensitivity samples where direct pulse-length calibration is difficult.

Journal Article↗

Augmented pulse-spray thrombolysis with tPA by early pulsed intrathrombic plasminogen enrichment.

PURPOSE: This study was designed to evaluate the efficacy of plasminogen enrichment of subacute thrombus in further accelerating pulse-spray pharmacomechanical thrombolysis (PSPMT) with urokinase (UK) or tissue plasminogen activator (tPA) in a rabbit model. MATERIALS AND METHODS: With use of a subacute rabbit inferior vena cava (IVC) thrombosis model, 78 rabbits were divided into eight groups according to the agents used for thrombolysis: (i) controls (IVC thrombosis, no lysis performed), (ii) pulse-spray thrombolysis with saline only, (iii) PSPMT with UK, (iv) PSPMT with UK, plus interim pulse-spray plasminogen enrichment after 14 minutes, (v) pulse-spray plasminogen enrichment, followed at 10 minutes by PSPMT with UK, (vi) PSPMT with tPA, (vii) PSPMT with tPA, plus interim plasminogen enrichment, and (viii) pulse-spray plasminogen enrichment, followed at 10 minutes by PSPMT with tPA. RESULTS: Intrathrombic pulsed injection of glu-plasminogen after 14 minutes of tPA PSPMT demonstrated significant augmentation of lysis (approximately 31% decrease in residual thrombus) compared with tPA alone (P = .006). Lysis was not augmented significantly when plasminogen was sprayed into thrombus before tPA, or before or after UK. CONCLUSION: Plasminogen enrichment of thrombus after onset of PSPMT with tPA significantly accelerated thrombolysis in a subacute in vivo rabbit model. A clinical trial of this method may be warranted.

Animals↗

Comparison of the 585 nm pulse dye laser and the short pulsed CO2 laser in the treatment of striae distensae in skin types IV and VI.

BACKGROUND: Striae distensae, or stretch marks, are a very common cosmetic problem. The successful management of stretch marks has long been a source of frustration and curiosity for both the clinician and the researcher. Recent studies suggest lasers may have a role in their management. As yet, no study has reported on the effects of either of these lasers in the treatment of stretch marks on persons with skin types 4 to 6. OBJECTIVE: To assess the efficacy of short pulsed CO2 laser and pulsed dye laser for the treatment of stretch marks in skin types 4, 5, and 6. METHODS: Four patients were initially enrolled in the study. All were female with abdominal stretch marks, present for a range of 8 to 19 years. The patients had skin types ranging from 4 to 6. The test area consisted of a stretch mark long enough to be divided into three contiguous 2 cm sections, labeled A, B, and C. Section A served as the short pulsed CO2 test site, section B served as a control, while section C served as the 585 nm pulsed dye site. Patients were seen for evaluation after 1 week, then every 4 weeks for a total of 20 weeks. Patients were evaluated subjectively by the investigators, and the patients' own self-evaluation was reported as well. RESULTS: Following the 585 nm pulse dye laser, at 20 week follow-up patients with type 4 skin showed no improvement, while type 6 skin showed hyperpigmentation. The short pulsed CO2 test site showed persistent erythema in type 4 skin and marked hyperpigmentation in type 6 skin. CONCLUSIONS: For patients with types 4, 5, and 6 skin, laser treatment of striae should be avoided or used with great caution.

Carbon Dioxide↗

Comparison of the 595 nm long-pulse (1.5 msec) and ultralong-pulse (4 msec) lasers in the treatment of leg veins.

BACKGROUND: Although several lasers and light sources are now available for vascular lesions, treatment of leg veins has not been very satisfactory. Lengthening the pulse width should theoretically result in improved response rates. OBJECTIVE: This study compared the efficacy and safety of 595 nm pulsed lasers at 1.5 msec and 4 msec in treating leg veins. METHODS: For group A, 27 healthy adult volunteers with leg veins measuring less than 1 mm in diameter were treated with a 2 mm x 7 mm elliptical handpiece. Each patient had three areas treated. The first two areas were treated with the 4 msec pulsed dye laser with fluences of 16 and 20 J/cm2, while the last area was treated with a 1.5 msec pulsed dye laser at fluences ranging from 14 to 16 J/cm2. For group B, 13 subjects were treated. Areas 1 and 2 were treated with the 4 msec pulsed dye laser using a 3 mm x 5 mm and 5 mm handpiece, respectively, while the third site was treated with a 1.5 msec laser using a 3 mm x 5 mm handpiece. Fluences ranging from 14 to 16 J/cm2 were used. Clinical evaluations were performed and photographs taken at 4-8 week intervals. RESULTS: Neither laser regularly induced satisfactory diminution or disappearance of these vessels after one treatment. In group A, more than 50% of patients had little to no improvement, while in group B little to no improvement was observed in 33% of patients following a single treatment. Although there was no significant difference in outcomes between the test sites, the 4 msec PDL with a 3 mm x 5 mm spot size appeared to be most effective. Transient hyperpigmentation was common following either treatment, while hypopigmentation was seen in group B subjects. No scarring was noted. CONCLUSION: Both the 4 and 1.5 msec flashlamp-pumped pulsed dye lasers were ineffective in treating leg telangiectasia following a single treatment.

Adult↗

Treatment of pigmented hypertrophic scars with the 585 nm pulsed dye laser and the 532 nm frequency-doubled Nd:YAG laser in the Q-switched and variable pulse modes: a comparative study.

BACKGROUND: Pigmented hypertrophic scars are a difficult condition to treat. They may result from traumatic injuries or from surgical and cosmetic procedures. The 585 nm flashlamp-pumped pulsed dye laser (FLPDL) has been used to treat this condition, with significant improvement of varying degrees. It remains to be determined whether other laser modalities may have a similar or even greater success in the treatment of pigmented hypertrophic scars. OBJECTIVE: To determine the efficacy of the 532 nm frequency-doubled Nd:YAG laser in the treatment of pigmented hypertrophic scars as compared to the 585 nm FLPDL. METHODS: Six patients with pigmented hypertrophic scars and skin phototypes II-IV were chosen. A scar was selected for treatment in each patient and divided into four equal 2 cm segments. Three segments were each treated with a different laser modality and one was left untreated to serve as the control. A 585 nm FLPDL was used with an energy of 3.5 J, a pulse duration of 450 microsec, and a 10 mm spot size. A 532 nm Q-switched frequency-doubled Nd:YAG laser was set to an energy of 2.8 J, a 10-nsec pulse, and a 3 mm spot size. The same 532 nm laser was set to the variable pulse mode to treat a 2 cm scar segment, with an energy of 9.5 J, a 10-msec pulse, and a 4 mm spot size. An average of 3.3 treatments were performed on each scar segment, at intervals of 4-6 weeks and long-term follow-up at 22 weeks. Treatment outcome was graded by a blind observer using the Vancouver General Hospital (VGH) Burn Scar Assessment Scale. A SigmaStat t-test was used to determine the statistical significance of the values obtained. RESULTS: Treatment of pigmented hypertrophic scars with the 532 nm Q-switched Nd:YAG laser led to a significant improvement of 38% in the VGH scores when compared to baseline (P =.005). The 585 nm FLPDL also had a favorable effect on the scars, with an average improvement of 36.1% in the VGH scores. There was no significant difference noted between the outcome of treatment with either of these two lasers. Treatment with the 532 nm variable pulse Nd:YAG laser led to a 19% improvement in the VGH scores of scars, which did not differ significantly from the 16.1% improvement observed in control scars on the last follow-up visit. No side effects or complications from treatment were noted or reported during the course of the study. At the conclusion of the study, five of six patients chose the segment treated with the 532 nm Q-switched Nd:YAG laser as the best segment overall. CONCLUSION: The 532 nm Q-switched Nd:YAG laser and the 585 nm FLPDL offer comparable favorable results in the treatment of pigmented hypertrophic scars. The 532 nm Q-switched Nd:YAG laser may be preferred by patients particularly distressed by the dark color of their scars.

Adolescent↗

Molecular isomerization induced by ultrashort infrared pulses. II. Pump-dump isomerization using pairs of time-delayed half-cycle pulses.

We investigate population transfer across the barrier in a double-well potential, induced by a pair of time-delayed single-lobe half-cycle pulses. We apply this setup both to a one-dimensional (1D) quartic model potential and to a three-dimensional potential representing HCN-->HNC isomerization. Overall the results for the two systems are similar, although in the 3D system some additional features appear not seen in the 1D case. The generic mechanism of population transfer is the preparation by the pump pulse of a wave packet involving delocalized states above the barrier, followed by the essentially 1D motion of the delocalized part of wave packet across the barrier, and the eventual de-excitation by the dump pulse to localized states in the other well. The correct timing is given by the well-to-well passage time of the wave packet and its recurrence properties, and by the signs of the field lobes which determine the direction and acceleration or deceleration of the wave packet motion. In the 3D system an additional pump-pump-dump mechanism linked to wave packet motion in the reagent well can mediate isomerization. Since the transfer time and the pulse durations are of the same order of magnitude, there is also a marked dependence of the dynamics and the transfer yield on the pulse duration. Our analysis also sheds light on the pronounced carrier envelope phase dependence previously observed for isomerization and molecular dissociation with one-cycle and sub-one-cycle pulses.

Journal Article↗

Pulse wave analysis and pulse wave velocity: a critical review of their strengths and weaknesses.

The study of the pulse using the technique of applanation tonometry is undergoing a resurgence with the development of new computerized equipment. We aim here to present a critical review of the uses, potential uses, strengths and weaknesses of the technique of applanation tonometry for the assessment of augmentation index and pulse wave velocity. We will review the technique of applanation tonometry, the physiological factors affecting pulse wave velocity and pulse wave analysis, the changes in pulse wave velocity and pulse wave analysis with pharmacological interventions, and the use of the technique of applanation tonometry as a prognostic tool. We conclude that, although the technique of applanation tonometry initially seems promising, several pertinent issues need to be addressed before it can be used reliably as a clinical or research tool. Importantly, use of the technique of applanation tonometry to derive the central waveform from non-invasively acquired peripheral data needs to be validated prospectively.

Aging↗

Effects of pulse amplitude, pulse frequency, and stimulus duration on seizure threshold: a laboratory investigation.

BACKGROUND: Stimulus intensity during electroconvulsive therapy (ECT) is reckoned in units of charge (mC). The values of pulse amplitude, pulse width, pulse frequency, and stimulus duration can be varied to yield different composite stimuli, all of which have the same charge. There is little information on the extent to which variations in these stimulus parameters influence the seizure threshold at constant charge in the context of ECT. METHODS: We administered once daily electroconvulsive shocks (ECS) to two groups of rats, starting with a stimulus intensity of 1 mC and increasing in 1 mC steps until the thresholds of each of three different types of seizure were identified. In one group (n = 10), the charge was raised first by increasing pulse amplitude and later by increasing pulse frequency. In the other group (n = 10), the charge was raised by increasing the stimulus duration only. RESULTS: The mean seizure threshold ranged from 8.4 to 11.4 mC, depending on the type of seizure described, in the group in which pulse amplitude and frequency were manipulated; this range was 2.5 to 5.5 mC in the group in which the stimulus duration was manipulated (p < 0.001 for each of three types of seizures). Rats (n = 7) that did not convulse with an 8-mC stimulus in the amplitude and frequency group all convulsed with a 5-mC stimulus from the stimulus duration schedule. The first manifestation of seizure activity was significantly less likely to be generalized with amplitude and frequency titration than with stimulus duration titration (20% vs. 90%, respectively). The mean motor seizure durations (at different thresholds) were comparable with the two methods of stimulus titration. CONCLUSIONS: Seizure thresholds are lower when stimulus duration is the parameter that is increased during dose titration. The many clinical implications of this finding require study.

Animals↗

Treatment of vascular skin lesions with the variable-pulse 595 nm pulsed dye laser.

BACKGROUND: In the dermatology field, variable-pulse 595 nm pulsed dye lasers (PDLs) are now being widely used to treat vascular skin lesions. However, there is little information available on variable-pulse 595 nm PDL treatment of dark-skinned patients. OBJECTIVE: The objective of this study was to evaluate the outcome of variable-pulse 595 nm PDL treatment on Korean patients. METHOD: Two hundred thirty-nine patients (Fitzpatrick skin phototypes III to V) with vascular skin lesions, such as nevus flammeus, telangiectasia, or hemangioma, were included in this study. All patients were treated with a variable-pulse 595 nm PDL, and the outcomes were assessed by comparing preoperative and postoperative photographs. RESULTS: The average number of treatments per patient was 4.29, and 51.9% of patients showed a good (51-75% clearance) to excellent (76-100% clearance) response. For nevus flammeus, 48.0% of the patients achieved good to excellent results. The gender and age of the patients did not influence the clinical response; however, lesions of the head and neck were found to respond more favorably to treatment. For telangiectasia, 78.0% of patients showed good to excellent results, and, again, the gender and age of the patients did not alter the treatment outcome. For hemangioma, the male to female ratio of patients was 1.0:3.1 and 54.1% of the patients achieved a good to excellent response. Superficial hemangioma showed a better clinical response than deep hemangioma, and the lesions of younger patients responded more favorably than those of older patients. CONCLUSION: The variable-pulse 595 nm PDL was found to be effective for treating several vascular skin lesions in dark-skinned patients. However, there were differences in treatment outcome owing to disease, age, and the location of the lesions.

Adolescent↗

A controlled trial of pulse cyclophosphamide versus pulse methylprednisolone in severe lupus nephritis.

We carried out a prospective randomized trial comparing pulse cyclophosphamide and pulse methylprednisolone in 29 patients with severe lupus nephritis in activity. Patients were assigned to one of two regimens: monthly pulse cyclophosphamide (0.5-1.0 g/m2 body surface area) for 4 months, followed by bimonthly doses for 4 months and quarterly doses for 6 months (14 patients) or pulse methylprednisolone (10-20 mg/kg weight) initially for 3 consecutive days and thereafter in the same intervals as the alternative regimen (15 patients). The mean follow-up was 15 months. Two patients in the cyclophosphamide group and three in the methylprednisolone group died. Renal failure (doubling of serum creatinine) developed in four patients in the cyclophosphamide group compared with five patients in the methylprednisolone group. Cumulative probability of not doubling serum creatinine was similar for cyclophosphamide and methylprednisolone groups (0.66 vs 0.69, respectively, P > 0.20, after 18 months). Cumulative probability of survival without renal failure was also not significantly different (0.61 and 0.63, respectively, P > 0.20, after 18 months). These results suggest that pulse cyclophosphamide is as effective as pulse methylprednisolone in preserving renal function in patients with severe lupus nephritis.

Adult↗