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The role of separation and eccentricity in encoding position.

We measured two- and three-line spatial interval and alignment thresholds for a wide range of separations and eccentricities. In order to avoid confounding the role of separation and eccentricity, the test lines were presented on iso-eccentric arcs, with radii between 0.625 and 10 deg. The iso-eccentric paradigm allows separation to be varied over a large range while holding eccentricity constant. Our main finding is that for all tasks, at all eccentricities, Weber's law fails at large separations. Our results are consistent with the hypothesis that distance judgements are limited by at least two factors: (1) when the separation of the iso-eccentric test lines is small with respect to the eccentricity position thresholds are proportional to the separation of the features, and show little dependence on eccentricity. This is Weber's law for position, and the threshold is approx. 0.03-0.05 times the stimulus separation; (2) when the separation of the iso-eccentric test lines is comparable in size to the eccentricity, position thresholds are proportional to the target eccentricity, and are essentially independent of separation. In this "eccentricity regime", position discrimination thresholds are = ECC * k where ECC is the stimulus eccentricity in degrees, and k is a fraction of the eccentricity (approximately 0.01-0.03). The observer uses whichever mechanism is more sensitive to the stimulus. Under the conditions of our experiments, the observers perform a Weber computation when the separation, S, between the pair of iso-eccentric test lines is less than about 0.5 * ECC, and apply a "cortical ruler" when S is greater than about 0.5 * ECC. If the angle subtended by the fixation point and the pair of iso-eccentric test lines is considered, then for both the two-line and the three-line tasks, when the angle is less than approx. 30 deg, thresholds are proportional to separation, and when it is between 30 and 180 deg, thresholds are proportional to eccentricity.

Discrimination, Psychological↗

Effects of pulse separation on detection thresholds for electrical stimulation of the human cochlea.

Effects of pulse separation on detection of electrical stimulation of the cochlea were studied in 12 profoundly deaf human subjects with Nucleus 22 cochlear implants. Biphasic symmetric pulses were used. Pulse separation is the time from offset of one biphasic pulse to the onset of the next biphasic pulse in the train. Effects of pulse separation were studied in the context of different covariables in four stages of the experiment. Effects of pulse separation seen in the different stages were similar, despite the different covariables. Both pulse separation and the total number of pulses per stimulus seem to be important variables affecting stimulus detection. For 0.5 ms/phase pulses, thresholds were lowest at the shortest pulse separations tested (0.2-1.1 ms) and increased as a function of pulse separation. For 2 ms/phase pulses, detection thresholds were lowest at pulse separations around 7.5 ms, in most cases, and higher at both longer and shorter pulse separations. These results suggest that interactions among adjacent pulses can either hinder or facilitate detection of the signal depending on the magnitudes of pulse separation and phase duration. Pulse separations at which thresholds measured for 2 ms/phase pulses were minimum were fairly consistent across subjects and did not correlate well with speech recognition scores. However, significant variation in this measure across species has been seen.

Adult↗

An insight into the mechanism of protein separation by colloidal gas aphrons (CGA) generated from ionic surfactants.

Colloidal gas aphrons (CGA), which are surfactant stabilised microbubbles, have been previously applied for the recovery of proteins from model mixtures and a few studies have demonstrated the potential of these dispersions for the selective recovery of proteins from complex mixtures. However there is a lack of understanding of the mechanism of separation and forces governing the selectivity of the separation. In this paper a mechanistic study is carried out to determine the main factors and forces influencing the selectivity of separation of whey proteins with CGA generated from ionic surfactants. Two different separation strategies were followed: (i) separation of lactoferrin and lactoperoxidase by anionic CGA generated from a solution of sodium bis-(2-ethyl hexyl) sulfosuccinate (AOT); (ii) separation of beta-lactoglobulin by cationic CGA generated from a solution of cetyltrimethylammonium bromide (CTAB). Separation results indicate that electrostatic interactions are the main forces determining the selectivity however these could not completely explain the selectivities obtained following both strategies. Protein-surfactant interactions were studied by measuring the zeta potential changes on individual proteins upon addition of surfactant and at varying pH. Interestingly strongest electrostatic interactions were measured at those pH and surfactant to protein mass ratios which were optimum for protein separation. Effect of surfactant on protein conformation was determined by measuring the change in fluorescence intensity upon addition of surfactant at varying pH. Differences in the fluorescence patterns were detected among proteins which were correlated to differences in their conformational features which could in turn explain their different separation behaviour. The effect of conformation on selectivity was further proven by experiments in which conformational changes were induced by pre-treatment of whey (heating) and by storage at 4 degrees C. Overall it can be concluded that separation of proteins by ionic CGA is driven mainly by electrostatic interactions however conformational features will finally determine the selectivity of the separation with competitive adsorption having also an effect.

Colloids↗

Ion-exchange separation of nucleic acid constituents by high-performance liquid chromatography.

The high-performance liquid chromatographic separation of a large variety of nucleic acid constituents on a silica-based, weak-anion exchange column was accomplished. Using this technique it was possible to achieve some relatively difficult separations, such as the separation of 2'-, 3'-, and 5'-AMP, and the separation of a mixture of ribo- and deoxyribo-nucleosides and -nucleotides. A number of other separations are demonstrated by isocratic or gradient elution. These include the separation of a mixture of nucleoside monophosphates, the separation of a mixture of nucleoside mono-, di-, and triphosphates, the separation of a mixture of nucleosides and bases, and the separation of a mixture of nucleotide oligomers. These chromatographic separations were accomplished using relatively simple experimental procedures at ambient temperatures and involved relatively short analysis times. Excellent separations were obtained, in most cases, by adjustment of buffer concentration and pH, or by addition of an organic modifier. In some cases, it was necessary to use gradient elution to achieve optimum resolution.

Animals↗

Phase separation and gel formation in kinetically trapped gelatin/maltodextrin gels.

The kinetics of phase separation and gel formation of gelatin/maltodextrin mixtures have been studied using confocal laser scanning microscopy (CLSM), transmission electron microscopy (TEM), stereological image analysis and rheology. The quantified microstructural parameters were the volume-weighted mean volume and the interfacial area. The temperature of phase separation was defined as the temperature where the first signs of phase separation were observed in CLSM. The gelatin concentration varied between 4 (wt.) and 5% and the maltodextrin concentration varied between 2 and 6%. Maltodextrin was labelled covalently with RITC to improve the contrast between the gelatin phase and the maltodextrin phase. The solutions were cooled from 60 to 10 degrees C, and the cooling rates used were 0.4, 1 and 3 degrees C/min. All systems were found to be gelatin continuous under the experimental conditions used. The results showed that the temperature of phase separation (TPS) increased both with the gelatin concentration and the maltodextrin concentration, but particularly with the former. The size of the maltodextrin inclusions increased with TPS, and the interfacial area decreased with increasing TPS. The diameter of the maltodextrin inclusions varied between 1.6 and 8.5 microm at 1 degrees C/min. The size of the maltodextrin inclusions was found to increase with decreasing cooling rate and was largest at 0.4 degrees C/min. The TPS was compared with the gelation temperature (Tgel) at three different concentrations of gelatin and maltodextrin (4/3, 4/5, 5/5%). CLSM micrographs and TEM micrographs showed that these three concentrations of gelatin and maltodextrin had different microstructures. At a TPS above Tgel (5/5%), the phase separation proceeded faster than the gel formation and the microstructure had few, large maltodextrin inclusions and a clean continuous gelatin phase. At a TPS comparable with Tgel (4/5%), phase separation occurred during gel formation, which led to a varying microstructure and competition between the phase separation and the gel formation. At a TPS below Tgel (4/3%), gel formation proceeded faster than the phase separation and the microstructure had many, small inclusions and a diffuse microstructure, and the phase separation was incomplete. It was established that the microstructure was determined by the relative rates of the phase separation and the gel formation. Three different zones of phase separation could be distinguished based on comparisons of TPS and Tgel, and results from CLSM, TEM and image analysis.

Animals↗

Strand-separating activity of hepatitis C virus helicase in the absence of ATP.

HCV helicase [E(wt)] catalyzed strand separation of a short DNA duplex (F21:HF31) formed from a 5'-hexachlorofluorescein-tagged 31-mer (HF31) and a 3'-fluorescein-tagged 21-mer (F21) complementary to the 5'-end of HF31. Strand separation was monitored by the fluorescence increase associated with the formation of F21 from F21:HF31. In the presence of ATP, the strand-separating activity was catalytic. In the absence of ATP and with E(wt) concentrations greater than that of F21:HF31, a biphasic fluorescence increase was observed at 25 degrees C. The late phase of this reaction was assigned to the separation of F21 from F21:HF31. The ATP-independent strand-separating reaction occurred more rapidly in the absence of Mg(2+) than in its presence. This result correlated with a lower T(m) value of F21:HF31 in the absence of 3.5 mM Mg(2+) than in its presence (45 vs 63 degrees C). The stoichiometry for the strand-separating reaction in the absence of ATP was 8 mol of E(wt) per mole of F21:HF31 separated into single-stranded F21 and HF31. The dissociation constants of HCV helicase for F21, HF31, and F21:HF31 in the absence of Mg(2+) were 0.6 +/- 0.4, 6 +/- 1, and 7.3 +/- 0.9 nM, respectively. Histidinyl-tagged E(wt) [hE(wt)] and a mutant enzyme [hE(V432A)] were prepared. hE(wt) and E(wt) bound F21 and HF31 with similar affinities and had similar ATP-dependent helicase activities, whereas hE(V432A) bound F21 and HF31 with affinities similar to that of E(wt) but had greatly reduced ATP-dependent helicase activities. In contrast to E(wt) and hE(wt), hE(V432A) did not support the ATP-independent strand-separating reaction. Consequently, the ATP-independent strand-separating reaction was not only the result of the high affinity of the enzyme for single-stranded DNA. The enzyme preferentially used duplex DNA with a 3'-tail for the ATP-dependent helicase reaction. In contrast, the enzyme strand-separated blunt-ended, 5'-tailed, and 3'-tailed duplex DNA equally effectively in the ATP-independent strand-separating reaction.

Adenosine Triphosphate↗

The force-producing mechanism for centrosome separation during spindle formation in vertebrates is intrinsic to each aster.

A popular hypothesis for centrosome separation during spindle formation and anaphase is that pushing forces are generated between interacting microtubules (MTs) of opposite polarity, derived from opposing centrosomes. However, this mechanism is not consistent with the observation that centrosomes in vertebrate cells continue to separate during prometaphase when their MT arrays no longer overlap (i.e., during anaphase-like prometaphase). To evaluate whether centrosome separation during prophase/prometaphase, anaphase-like prometaphase and anaphase is mediated by a common mechanism we compared their behavior in vivo at a high spatial and temporal resolution. We found that the two centrosomes possess a considerable degree of independence throughout all stages of separation, i.e., the direction and migration rate of one centrosome does not impart a predictable behavior to the other, and both exhibit frequent and rapid (4-6 microns/min) displacements toward random points within the cell including the other centrosome. The kinetic behavior of individual centrosomes as they separate to form the spindle is the same whether or not their MT arrays overlap. The characteristics examined include, e.g., total displacement per minute, the vectorial rate of motion toward and away from the other centrosome, the frequency of toward and away motion as well as motion not contributing to separation, and the rate contributed by each centrosome to the separation process. By contrast, when compared with prometaphase, anaphase centrosomes separated at significantly faster rates even though the average vectorial rate of motion away from the other centrosome was the same as in prophase/prometaphase. The difference in separation rates arises because anaphase centrosomes spend less time moving toward one another than in prophase/prometaphase, and at a significantly slower rate. From our data we conclude that the force for centrosome separation during vertebrate spindle formation is not produced by MT-MT interactions between opposing asters, i.e., that the mechanism is intrinsic to each aster. Our results also strongly support the contention that forces generated independently by each aster also contribute substantially to centrosome separation during anaphase, but that the process is modified by interactions between opposing astral MTs in the interzone.

Anaphase↗

Complement metabolism during membrane plasma separation.

Because it has been found that some plasma separator membranes can activate complement in serum, this study focuses on the behavior of complement during actual membrane plasmapheresis. Complement metabolism in subjects undergoing membrane plasma separation with three different prototypic devices was studied. Complement activation was judged by crossed immunoelectrophoretic analysis of C3 in plasma. A cellulose acetate separator employed with heparin as the anticoagulant caused extensive C3 conversion (up to 50%) in separated plasma. A polysulfone separator used with citrate, and a polyvinylchloride derivative separator employed with heparin plus citrate, caused only small amounts of C3 conversion (0-10%) in separated plasma. C3 conversion in the cellulose acetate separator was reduced when citrate was included in the anticoagulant regimen, whereas C3 conversion in the polyvinylchloride derivative separator was increased when citrate was omitted. Activation of complement by the membrane material may occur during membrane plasma separation. Selection of membranes judged weakly activating by in vitro screening and the use of citrate anticoagulation would appear to minimize complement activation in membrane plasma separators.

Cellulose↗

Low viscous separation media for genomics and proteomics analysis on microchip electrophoresis system.

Microchip electrophoresis has widely grown during the past few years, and it has showed a significant result as a strong separation tool for genomic as well as proteomic researches. To enhance and expand the role of microchip electrophoresis, several studies have been proposed especially for the low viscous separation media, which is an important factor for the success of microchip with its narrow separation channels. In this paper we show an overview for the done researches in the field of low viscous media developed for the use in microchip electrophoresis. For genomic separation studies polyhydroxy additives have been used enhance the separation of DNA at low polymer concentration of HPMC (Hydroxypropylmethyl cellulose) which could keep the viscosity low. Mixtures of poly(ethylene oxide) as well as Hydroxyporpyl cellulose have been successfully introduced for chip separation. Furthermore high molecular mass polyacrylamides at low concentrations have been studied for DNA separation. A mixture of polymer nanoparticle with conventional polymers could show a better resolution for DNA at low concentration of the polymer. For the proteomic field isoelectric focusing on chip has been well overviewed since it is the most viscous separation media which is well used for the protein separation. The different types of isoelectric focusing such as the ampholyte-free type, the thermal type as well as the ampholyte-depended type have been introduced in this paper. Isoelectric focusing on chip with its combination with sodium dodecyl sulfate (SDS) page or free solution could give a better separation. Several application for this low viscous separation medias for either genomic or proteomic could clearly show the importance of this field.

Animals↗

Effects of twin separation in primary school.

We studied the short- and long-term effects of classroom separation in twins on behavior problems and academic performance. Short-term effects were studied at age 7 in twins separated at age 5 and long-term effects at age 12 in twins who had been separated or together most of the time at school. Behavior problems were rated by mothers (Child Behavior Checklist at ages 3, 7 and 12) and teachers (Teacher Report Form at ages 7 and 12). Academic achievement was measured at age 12 using a national academic achievement test (CITO). At age 7, twins from separated pairs had more internalizing and externalizing problems than nonseparated twins, as rated by both mothers and teachers. Only for the maternal ratings of internalizing problems, however, could these effects be attributed to the separation itself and not to preexisting problems (at age 3) between separated and nonseparated twins. Long-term effects of separation were significant for maternal and teacher ratings of internalizing and externalizing problems, but these effects could be explained by preexisting differences between separated and nonseparated groups. There were no differences in academic achievement between the separated and nonseparated group. These results suggest that the decision to separate twins when they go to school is based in part on the existing behavioral problems of the twins and that, in the long run, separation does not affect problem behavior or academic achievement. The findings were the same for monozygotic and dizygotic twins.

Child↗

Choroid plexus-ventricular wall separation in fetuses with normal-sized cerebral ventricles at sonography: postnatal outcome.

OBJECTIVE: The choroid plexus typically fills the atrium of the lateral ventricles of the brain in normal fetuses, but separates from the medial ventricular wall with increasing ventriculomegaly. Sonographic depiction of choroid plexus-ventricular wall separation has been associated with a high frequency of unfavorable outcomes in fetuses with mild ventricular dilatation. This separation, however, is also observed in a small subgroup of fetuses with normal ventricular measurements. The objective of this study was to ascertain the prognosis for fetuses when choroid plexus-ventricular wall separation and normal-sized lateral ventricles are seen on antenatal sonograms. MATERIALS AND METHODS: Postnatal follow-up was reviewed for 74 fetuses showing a 3 mm or greater separation between the choroid plexus and the medial ventricular wall and normal-sized (< or = 10 mm) ventricles on antenatal sonograms. Fetuses were divided into normal and abnormal outcome groups, and the data were analyzed to determine if the amount of separation, the ventricular atrial diameter, or the evolution of these findings on follow-up sonograms was predictive of outcome. RESULTS: Fifty-nine patients (80%) had normal outcomes (defined as no congenital anomalies and no significant subsequent medical history apart from usual infant and childhood illnesses) and 15 patients (20%) had abnormal outcomes. The severity of the abnormalities varied widely, ranging from relatively inconsequential, such as isolated polydactyly, to complex congenital malformation syndromes resulting in neonatal death. No consistent pattern of malformation was evident. Although we found a statistically significant difference in the degree of choroid plexus-ventricular wall separation when fetuses were separated into normal and abnormal outcome groups, the range of measurements obtained in these two populations overlapped considerably. Outcomes were normal in all 13 patients in whom the choroid plexus-ventricular wall separation had returned to normal by the time of the last antenatal sonogram. CONCLUSION: A separation of 3 mm or greater between the choroid plexus and the medial ventricular wall is an important finding that is associated with an increased risk of an abnormal outcome even in the subpopulation of fetuses with normal-sized ventricles. Although the outcome will be normal in the majority (80%) of such fetuses, identification of choroid plexus-ventricular wall separation mandates a meticulous examination of fetal anatomy.

Abnormalities, Multiple↗

Gravity separation of raw bovine milk: fat globule size distribution and fat content of milk fractions.

This project determined effects of time and temperature on changes of fat globule size distribution and fat content in milk fractions during gravity separation. Fresh raw bovine milk was gravity separated at 4 or 15 degrees C. After 2, 6, 12, and 48 h, seven fractions, from bottom fraction (F1) to top fraction (F7), were successively drained from a separation column. Higher temperature resulted in a faster rate of fat separation. Within 2 h, large fat globules had already moved to the top, and the volume mean diameter of F7 increased from 3.13 microm (without separation) to 3.48 and 3.64 microm, respectively, at 4 and 15 degrees C. In F7, there was little change in globule size distribution after 2 h, but fat content continued to increase with separation time. The fat content of F7 reached 26.6% after 48 h at 4 degrees C, achieving a 58.8% creaming capacity. For F1 to F6, longer separation time resulted in smaller fat globule sizes and lower fat contents, especially for F1. After 48 h at 4 degrees C, the volume mean diameter of F1 decreased from 3.23 microm (without separation) to 1.16 microm, and fat content decreased from 3.75% (without separation) to 0.20%. Gravity separation may have unique applications in the dairy industry today. Its simplicity makes it an effective procedure for small-scale dairy product manufacturers to produce milks with a range of fat contents without using a centrifugal cream separator.

Animals↗

An on-chip magnetic bead separator using spiral electromagnets with semi-encapsulated permalloy.

A new planar bio-magnetic bead separator on a glass chip has been designed, fabricated and tested. The separator is composed of micromachined semi-encapsulated spiral electromagnets and fluid channels, which have been separately fabricated and then bonded. The device was tested with super-paramagnetic beads of mean diameter 1 microm which were suspended in a buffered solution. When a DC current of 300 mA was applied to the inductor, the bio-magnetic beads were successfully separated on the electromagnets, showing a functional capability as a magnetic bead separator. To evaluate separation rate and capability, the inductance measurement method has been introduced and the inductance variation according to the separation rate has been characterized. Using this separator, cells or cell fragments and magnetic beads bonded with protein or enzyme suspended in bio-buffer solutions can be successfully separated from their suspensions, envisaging a filterless bio-separator.

Biological Factors↗

Effects of separation and novelty on distress vocalizations and cortisol in the common marmoset (Callithrix jacchus).

In socially-bonding species, separation from familiar attachment figures is widely known to stimulate a physiological and behavioral stress response. This study investigated the hormonal and vocal responses of adult common marmosets to separation from familiar group members and to 24 hr of cohabitation with an unfamiliar opposite-sex conspecific. All subjects were removed from their home cages and placed into a novel environment for 20 min. In one group, marmosets were exposed to an unfamiliar, opposite-sex partner in the novel environment and remained paired with this partner for the 24 hr test period. In three other groups, marmosets experienced the novel environment alone and subsequently were returned to their original social- or single-housing condition, or kept separate from their social groups for a 24 h period. Blood samples were collected the day before, and at 30 min, 90 min, and at 24 h after separation. Cortisol responses were differentially affected by the length of separation and the presence of unfamiliar conspecifics. Brief separation followed by the return to the social group had minimal effect on plasma cortisol levels. All marmosets produced high levels of separation calls in the novel environment, but there was no apparent relationship between calling and cortisol levels. The lack of a temporal relationship between the production of distress vocalizations and serum cortisol has previously been noted in squirrel monkey and rhesus monkey infant separation studies; the behavioral and physiological responses to separation appear to be similarly dissociated in the marmoset. Further, the characteristics of a separation environment can differentially affect the hormonal response by adult marmosets without differentially affecting their behavioral response.

Animals↗

Pituitary-adrenal response to separation in mother and infant squirrel monkeys.

Pituitary-adrenal response in mother and infant squirrel monkeys following brief separation was assessed. Each mother and infant pair was tested under each of 3 conditions: (1) Basal; (2) Separation-Reunion; and (3) Separation. Samples were obtained from mothers and infants in the Separation and Separation-Reunion conditions 30 min following the initial disturbance. A similar paradigm was used to assess the effects of separation in surrogate-reared animals. The results indicate that mothers, infants, and surrogate-reared infants respond to 30-min separation with a substantial increase in plasma cortisol. The values obtained in the Separation-Reunion condition did not differ significantly from Basal values in any of the 3 groups, suggesting that the effect of separation on the pituitary-adrenal system is not due to the disturbance involved in the separation procedure. The response of surrogate-reared infants suggests that these infants develop similar attachments to the surrogate as normal infants to their own mothers.

Animals↗

Separation of large DNA molecules with high voltage pulsed field gel electrophoresis.

We have developed two high voltage (3 kV and 10 kV) high speed pulsed field gel electrophoresis systems for the separation of DNA as large as 460 kbp. These systems enable us to combine the rapid speed of high voltages and the separation power of pulsed field electrophoresis to achieve high resolution and short run durations. We found that large DNA fragments can be separated at voltage gradients much higher than commonly used. Yeast chromosomes as large as 460 kbp can be separated in 4 h at 20 V/cm and 1-50 kbp DNA can be rapidly separated in 30 min at 55 V/cm. This is 25 times faster in mobility for the separation of relatively small DNA fragments (< 50 kbp). We have also found an inverse relationship between the voltage applied and the size separation limit at that particular voltage gradient (55 V/cm limits the separation to 50 kbp while 20 V/cm can separate up to 460 kbp). Depending on the size range, DNA can be separated 8- to 25-fold faster and with better resolution than existing electrophoretic systems.

Adenoviruses, Human↗

Reproductive performance of postpartum beef cows after short-term calf separation and dietary energy and protein supplementation.

Beef cows (n = 294) calving between November and April in six states were used to evaluate the effects of postpartum diet and calf separation on body weight, body condition score (BCS), reproductive performance, and weaning weight of calves. In each state, half of the 48 cows that calved during 60 d were group fed an additional 4.5 kg of a 20% crude protein supplement daily for 28 d starting an average of 30 d post partum (flush). Calves were separated from half of the flush and half of the nonflush cows for 48 h at 14 and 28 d after the beginning of flush. Progesterone was quantified in plasma samples obtained weekly during a 56-d breeding period to assess ovarian luteal activity. The breeding period started at the first calf separation. BCS ranged from 3.3 to 5.6 among states (on a scale of 1 to 9) at the start of the flush but was similar for treatments within a state. There was a state x flush (P < 0.008) effect on body weight at the end of the flush period. Weaning weights were influenced by state x separation x flush (P < 0.06) and were greatest for flush nonseparated calves in five of six states. There were state x flush (P < 0.08) and separation (P < 0.04) effects on ovarian luteal activity at the start of the breeding period. Flush and separation tended to increase ovarian luteal activity. During the breeding period, ovarian luteal activity was influenced only by state but there was a state x separation x flush effect (P < 0.001) on the number of weeks post partum to onset of ovarian luteal activity. Conception rate and days postpartum to conception were not influenced by either separation or flush but were affected by state (P < 0.001). These data indicate that flushing may increase weaning weights of calves and calf separation may hasten the onset of postpartum ovarian luteal activity, but conception rate and days postpartum to conception for cows in thin to moderate body condition were not influenced by the calf separation or flushing treatments.

Journal Article↗

Twice daily long maternal separations in Wistar rats decreases anxiety-like behaviour in females but does not affect males.

Prolonged daily separations of rat pups from their mother have been reported to increase anxiety-like behaviour in adult offspring. However, there are an increasing number of studies not showing this. It has been proposed that the effect of long maternal separation (LMS) is partly due to the disruption of maternal care caused by the separations. The aim of the present study was to investigate whether increasing the number of daily separations would produce more robust effects in the adult offspring on anxiety-like behaviour in the defensive withdrawal test, and on spontaneous motor activity. Since previous studies of LMS have revealed sex differences in behaviour, we included both males and females. In our separation paradigm we subjected rat pups to either two daily 3h maternal separations during the first 2 weeks postpartum (LMS), two daily 15 min maternal separations (brief maternal separations, BMS) during the same time period to control for the effects of handling, or to normal husbandry conditions. As adults we found no effects of this LMS paradigm in male rats, although BMS males showed a tendency toward decreased anxiety-like behaviour. In contrast, LMS females showed a decrease in anxiety-like behaviour. We also found significant sex differences that were most prominent in the LMS group, indicating that females are more sensitive to our maternal separation paradigm. The present study suggests that increasing the number of maternal separations does not increase anxiety-like behaviour in neither male nor female Wistar rats.

Animals↗