TY - JOUR A1 - Zeller, Daniel A1 - Dang, Su-Yin A1 - Weise, David A1 - Rieckmann, Peter A1 - Toyka, Klaus V. A1 - Classen, Joseph T1 - Excitability decreasing central motor plasticity is retained in multiple sclerosis patients N2 - Background: Compensation of brain injury in multiple sclerosis (MS) may in part work through mechanisms involving neuronal plasticity on local and interregional scales. Mechanisms limiting excessive neuronal activity may have special significance for retention and (re-)acquisition of lost motor skills in brain injury. However, previous neurophysiological studies of plasticity in MS have investigated only excitability enhancing plasticity and results from neuroimaging are ambiguous. Thus, the aim of this study was to probe long-term depression-like central motor plasticity utilizing continuous theta-burst stimulation (cTBS), a non-invasive brain stimulation protocol. Because cTBS also may trigger behavioral effects through local interference with neuronal circuits, this approach also permitted investigating the functional role of the primary motor cortex (M1) in force control in patients with MS. Methods: We used cTBS and force recordings to examine long-term depression-like central motor plasticity and behavioral consequences of a M1 lesion in 14 patients with stable mild-to-moderate MS (median EDSS 1.5, range 0 to 3.5) and 14 age-matched healthy controls. cTBS consisted of bursts (50 Hz) of three subthreshold biphasic magnetic stimuli repeated at 5 Hz for 40 s over the hand area of the left M1. Corticospinal excitability was probed via motor-evoked potentials (MEP) in the abductor pollicis brevis muscle over M1 before and after cTBS. Force production performance was assessed in an isometric right thumb abduction task by recording the number of hits into a predefined force window. Results: cTBS reduced MEP amplitudes in the contralateral abductor pollicis brevis muscle to a comparable extent in control subjects (69 ± 22% of baseline amplitude, p < 0.001) and in MS patients (69 ± 18%, p < 0.001). In contrast, postcTBS force production performance was only impaired in controls (2.2 ± 2.8, p = 0.011), but not in MS patients (2.0 ± 4.4, p = 0.108). The decline in force production performance following cTBS correlated with corticomuscular latencies (CML) in MS patients, but did not correlate with MEP amplitude reduction in patients or controls. Conclusions: Long-term depression-like plasticity remains largely intact in mild-to-moderate MS. Increasing brain injury may render the neuronal networks less responsive toward lesion-induction by cTBS. KW - Medizin KW - Multiple sclerosis KW - LTD KW - Motor plasticity KW - TMS KW - Motor cortex Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76333 ER - TY - JOUR A1 - Kunze, Ekkehard A1 - Pham, Mirko A1 - Raslan, Furat A1 - Stetter, Christian A1 - Lee, Jin-Yul A1 - Solymosi, Laszlo A1 - Ernestus, Ralf-Ingo A1 - Hamilton Vince, Giles A1 - Westermaier, Thomas T1 - Value of Perfusion CT, Transcranial Doppler Sonography and Neurological Examination to detect delayed Vasospasm after aneurysmal Subarachnoid Hemorrhage [Research Article] N2 - Background If detected in time, delayed cerebral vasospasm after aneurysmal subarachnoid hemorrhage (SAH) may be treated by balloon angioplasty or chemical vasospasmolysis in order to enhance cerebral blood flow (CBF) and protect the brain from ischemic damage. This study was conceived to compare the diagnostic accuracy of detailed neurological examination, Transcranial Doppler Sonography (TCD), and Perfusion-CT (PCT) to detect angiographic vasospasm. Methods The sensitivity, specificity, positive and negative predictive values of delayed ischemic neurological deterioration (DIND), pathological findings on PCT- maps, and accelerations of the mean flow velocity (MVF) were calculated. Results The accuracy of DIND to predict angiographic vasospasm was 0.88. An acceleration of MFV in TCD (>140 cm/s) had an accuracy of 0.64, positive PCT-findings of 0.69 with a higher sensitivity, and negative predictive value than TCD. Interpretation Neurological assessment at close intervals is the most sensitive and specific parameter for cerebral vasospasm. PCT has a higher accuracy, sensitivity and negative predictive value than TCD. If detailed neurological evaluation is possible, it should be the leading parameter in the management and treatment decisions. If patients are not amenable to detailed neurological examination, PCT at regular intervals is a helpful tool to diagnose secondary vasospasm after aneurysmal SAH. KW - Medizin Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76241 ER - TY - JOUR A1 - Raslan, Furat A1 - Albert-Weißenberger, Christiane A1 - Westermaier, Thomas A1 - Saker, Saker A1 - Kleinschmitz, Christoph A1 - Lee, Jin-Yul T1 - A modified double injection model of cisterna magna for the study of delayed cerebral vasospasm following subarachnoid hemorrhage in rats N2 - Delayed cerebral vasospasm following subarachnoid hemorrhage (SAH) is a serious medical complication, characterized by constriction of cerebral arteries leading to varying degrees of cerebral ischemia. Numerous clinical and experimental studies have been performed in the last decades; however, the pathophysiologic mechanism of cerebral vasospasm after SAH still remains unclear. Among a variety of experimental SAH models, the double hemorrhage rat model involving direct injection of autologous arterial blood into the cisterna magna has been used most frequently for the study of delayed cerebral vasospasm following SAH in last years. Despite the simplicity of the technique, the second blood injection into the cisterna magna may result in brainstem injury leading to high mortality. Therefore, a modified double hemorrhage model of cisterna magna has been developed in rat recently. We describe here step by step the surgical technique to induce double SAH and compare the degree of vasospasm with other cisterna magna rat models using histological assessment of the diameter and cross-sectional area of the basilar artery KW - Medizin KW - Cerebral vasospasm KW - Cisterna magna KW - Double hemorrhage model KW - Rat KW - Subarachnoid Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76038 ER - TY - JOUR A1 - Westermaier, Thomas A1 - Stetter, Christian A1 - Raslan, Furat A1 - Vinc, Giles Hamilton A1 - Ernestus, Ralf-Ingo T1 - Brain edema formation correlates with perfusion deficit during the first six hours after experimental subarachnoid hemorrhage in rats N2 - Background: Severe brain edema is observed in a number of patients suffering from subarachnoid hemorrhage (SAH). Little is known about its pathogenesis and time-course in the first hours after SAH. This study was performed to investigate the development of brain edema and its correlation with brain perfusion after experimental SAH. Methods: Male Sprague–Dawley rats, randomly assigned to one of six groups (n = 8), were subjected to SAH using the endovascular filament model or underwent a sham operation. Animals were sacrificed 15, 30, 60, 180 or 360 minutes after SAH. Intracranial pressure (ICP), mean arterial blood pressure (MABP), cerebral perfusion pressure (CPP) and bilateral local cerebral blood flow (LCBF) were continuously measured. Brain water content (BWC) was determined by the wet/dry-weight method. Results: After SAH, CPP and LCBF rapidly decreased. The decline of LCBF markedly exceeded the decline of CPP and persisted until the end of the observation period. BWC continuously increased. A significant correlation was observed between the BWC and the extent of the perfusion deficit in animals sacrificed after 180 and 360 minutes. Conclusions: The significant correlation with the perfusion deficit after SAH suggests that the development of brain edema is related to the extent of ischemia and acute vasoconstriction in the first hours after SAH. KW - Medizin KW - Subarachnoid hemorrhage KW - Cerebral blood flow KW - Brain ischemia KW - Brain edema KW - Animal models Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-75765 ER - TY - JOUR A1 - Kleinschnitz, Christph A1 - Meuth, Sven G. A1 - Magnus, Tim A1 - Korn, Thomas A1 - Linker, Ralf A. T1 - Report on the 3'rd scientific meeting of the "Verein zur Förderung des Wissenschaftlichen Nachwuchses in der Neurologie" (NEUROWIND e.V.) held in Motzen, Germany, Nov. 4'th - Nov. 6'th, 2011 N2 - From November 4th- 6th 2011, the 3rd NEUROWIND e.V. meeting was held in Motzen, Brandenburg, Germany. Like in the previous years, the meeting provided an excellent platform for scientific exchange and the presentation of innovative projects for young colleagues in the fields of neurovascular research, neuroinflammation and neurodegeneration. As kick-off to the scientific sessions, Reinhard Hohlfeld, Head of the Institute for Clinical Neuroimmunology in Munich, gave an illustrious overview on the many fascinations of neuroimmunologic research. A particular highlight on the second day of the meeting was the award of the 1’st NEUROWIND e.V. prize for young academics in the field of experimental neurology. This award is posted for young colleagues under the age of 35 with a significant achievement in the field of neurovascular research, neuroinflammation or neurodegeneration and comprises an amount of 20.000 Euro, founded by Merck Serono GmbH, Darmstadt. Germany. The first prize was awarded to Ivana Nikic from Martin Kerschensteiner’s group in Munich for her brilliant work on a reversible form of axon damage in experimental autoimmune encephalomyelitis and multiple sclerosis, published in Nature Medicine in 2011. This first prize award ceremony was a great incentive for the next call for proposals now upcoming in 2012. KW - Medizin Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-75388 ER - TY - JOUR A1 - Albert-Weißenberger, Christiane A1 - Várrallyay, Csanád A1 - Raslan, Furat A1 - Kleinschnitz, Christoph A1 - Sirén, Anna-Leena T1 - An experimental protocol for mimicking pathomechanisms of traumatic brain injury in mice N2 - Traumatic brain injury (TBI) is a result of an outside force causing immediate mechanical disruption of brain tissue and delayed pathogenic events. In order to examine injury processes associated with TBI, a number of rodent models to induce brain trauma have been described. However, none of these models covers the entire spectrum of events that might occur in TBI. Here we provide a thorough methodological description of a straightforward closed head weight drop mouse model to assess brain injuries close to the clinical conditions of human TBI. KW - Medizin KW - closed head injury KW - traumatic brain injury KW - neurobehavioural deficits KW - astrocyte KW - microglia KW - neurons Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-75368 ER - TY - JOUR A1 - Geis, Christian A1 - Weishaupt, Andreas A1 - Grünewald, Benedikt A1 - Wultsch, Thomas A1 - Reif, Andreas A1 - Gerlach, Manfred A1 - Dirkx, Ron A1 - Solimena, Michele A1 - Perani, Daniela A1 - Heckmann, Manfred A1 - Toyka, Klaus V. A1 - Folli, Franco A1 - Sommer, Claudia T1 - Human Stiff-Person Syndrome IgG Induces Anxious Behavior in Rats N2 - Background: Anxiety is a heterogeneous behavioral domain playing a role in a variety of neuropsychiatric diseases. While anxiety is the cardinal symptom in disorders such as panic disorder, co-morbid anxious behavior can occur in a variety of diseases. Stiff person syndrome (SPS) is a CNS disorder characterized by increased muscle tone and prominent agoraphobia and anxiety. Most patients have high-titer antibodies against glutamate decarboxylase (GAD) 65. The pathogenic role of these autoantibodies is unclear. Methodology/Principal Findings: We re-investigated a 53 year old woman with SPS and profound anxiety for GABA-A receptor binding in the amygdala with (11)C-flumazenil PET scan and studied the potential pathogenic role of purified IgG from her plasma filtrates containing high-titer antibodies against GAD 65. We passively transferred the IgG fraction intrathecally into rats and analyzed the effects using behavioral and in vivo electrophysiological methods. In cell culture, we measured the effect of patient IgG on GABA release from hippocampal neurons. Repetitive intrathecal application of purified patient IgG in rats resulted in an anxious phenotype resembling the core symptoms of the patient. Patient IgG selectively bound to rat amygdala, hippocampus, and frontal cortical areas. In cultured rat hippocampal neurons, patient IgG inhibited GABA release. In line with these experimental results, the GABA-A receptor binding potential was reduced in the patient’s amygdala/hippocampus complex. No motor abnormalities were found in recipient rats. Conclusion/Significance: The observations in rats after passive transfer lead us to propose that anxiety-like behavior can be induced in rats by passive transfer of IgG from a SPS patient positive for anti-GAD 65 antibodies. Anxiety, in this case, thus may be an antibody-mediated phenomenon with consecutive disturbance of GABAergic signaling in the amygdala region. KW - Medizin Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-74757 ER - TY - JOUR A1 - Chen, Y. A1 - Palm, F. A1 - Lesch, K. P. A1 - Gerlach, M. A1 - Moessner, R. A1 - Sommer, C. T1 - 5-hydroxyindolacetic acid (5-HIAA), a main metabolite of serotonin, is responsible for complete Freund's adjuvant-induced thermal hyperalgesia in mice N2 - Background: The role of serotonin (5-hydroxytrptamine, 5-HT) in the modulation of pain has been widely studied. Previous work led to the hypothesis that 5-hydroxyindolacetic acid (5-HIAA), a main metabolite of serotonin, might by itself influence pain thresholds. Results: In the present study, we investigated the role of 5-HIAA in inflammatory pain induced by intraplantar injection of complete Freund’s adjuvant (CFA) into the hind paw of mice. Wild-type mice were compared to mice deficient of the 5-HT transporter (5-HTT-/- mice) using behavioral tests for hyperalgesia and high-performance liquid chromatography (HPLC) to determine tissue levels of 5-HIAA. Wild-type mice reproducibly developed thermal hyperalgesia and paw edema for 5 days after CFA injection. 5-HTT-/- mice treated with CFA had reduced thermal hyperalgesia on day 1 after CFA injection and normal responses to heat hereafter. The 5-HIAA levels in spinal cord and sciatic nerve as measured with HPLC were lower in 5-HTT-/- mice than in wild-type mice after CFA injection. Pretreatment of wild-type mice with intraperitoneal injection of para-chlorophenylalanine (p-CPA), a serotonin synthesis inhibitor, resulted in depletion of the 5-HIAA content in spinal cord and sciatic nerve and decrease in thermal hyperalgesia in CFA injected mice. The application of exogenous 5-HIAA resulted in potentiation of thermal hyperalgesia induced by CFA in 5-HTT-/- mice and in wild-type mice pretreated with p- CPA, but not in wild-type mice without p-CPA pretreatment. Further, methysergide, a broad-spectrum serotonin receptor antagonist, had no effect on 5-HIAA-induced potentiation of thermal hyperalgesia in CFA-treated wildtype mice. Conclusion: Taken together, the present results suggest that 5-HIAA plays an important role in modulating peripheral thermal hyperalgesia in CFA induced inflammation, probably via a non-serotonin receptor mechanism. KW - Medizin Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68858 ER - TY - THES A1 - Dang, Su-Yin Judith T1 - Funktionelle Bedeutung der Neuroplastizität bei Multipler Sklerose T1 - The functional relevance of neuronal plasticity in multiple sclerosis N2 - Die Multiple Sklerose ist eine chronische neurologische Erkrankung, welche in der industrialisierten Welt einen der häufigsten Gründe für eine bleibende Behinderung bei jungen Erwachsenen darstellt. Obwohl die ZNS-Schädigung, charakterisiert durch Demyelinisierung und axonale Schädigung im Rahmen entzündlicher Vorgänge, durch verschiedene Reparaturmechanismen reduziert wird, akkumuliert die Läsionslast im zentralen Nervensystem mit der Zeit. T2-gewichtete MRT-Studien zeigen, dass die dargestellten Pathologien nur mäßig mit den motorischen Defiziten korrelieren. Diese Diskrepanz wird unter anderem auf Vorgänge der Neuroplastizität zurückgeführt, als deren Basismechanismen Langzeitpotenzierung (LTP) und -depression (LTD) gelten. In verschiedenen fMRT-Studien haben sich Hinweise ergeben, dass diese adaptiven Veränderungen zur Reorganisation kortikaler Repräsentationmuster führen können, so dass bei MS-Patienten eine ausgedehntere Aktivierung ipsilateraler sensomotorischer Areale bei motorischen Aufgaben zu beobachten ist. Die transkranielle Magnetstimulation (TMS) bietet die Möglichkeit, mittels virtueller Läsionstechniken eine direkte Aussage über die kausale Beziehung zwischen Struktur und Funktion zu liefern. Die funktionelle Rolle ipsilateraler Motorareale wurde an 26 MS-Patienten, in Relation zu ihrer motorischen Beeinträchtigung und ZNS-Schädigung, und an nach Alter, Geschlecht und Händigkeit zugeordneten Kontrollprobanden, untersucht. Die motorische Leistungsfähigkeit wurde durch verschiedene Tests zur Handfunktion erhoben. Die ZNS-Schädigung wurde mittels MR-Spektroskopie als NAA/Cr Quotient sowie durch die CML erhoben. Die Aufgabe zur einfachen Reaktionszeit (SRT) bestand aus einer isometrischen Abduktionsbewegung des rechten Daumens gegen einen Kraftaufnehmer auf ein akustisches Go-Signal. Mit TMS-Einzelreizen wurde mit Hilfe einer Neuronavigation eine reversible virtuelle Läsion über bestimmten Gehirnarealen, kontralateraler M1, ipsilateraler M1 und ipsilateraler PMd, erzeugt. Es wurde eine Kontrollstimulation über MO durchgeführt. Die TMS-Einzelreize wurden 100ms nach dem Go-Signal appliziert. Als SRT wurde der Zeitraum zwischen dem Go-Signal und EMG-Beginn im APB definiert. Die signifikanten SRT-Verlängerungen bei TMS über dem ipsilateralen M1 und dem ipsilateralen PMd zeigen, dass diese Regionen eine Rolle bei der motorischen Funktion bei MS spielen. Die fehlenden Korrelationen zwischen motorischen Funktionstest und NAA/Cr-Verhältnis sowie die inverse Korrelation zur kortikomuskulären Latenz sind durch strukturell von der krankheitsbedingten Pathologie betroffenen kompensierenden Gehirnregionen erklärbar. Bei dem Theta Burst Experiments (TBS) wurde ein virtueller Läsionseffekt durch eine repetitive TMS-Intervention über dem ipsilateralen M1 induziert. Die Ergebnisse zeigen ähnliche Veränderungen der Exzitabilität bei MS-Patienten und gesunden Kontrollprobanden, was schließen lässt, dass die LTD bei mild bis moderat betroffenen MS-Patienten weitestgehend unbeeinträchtigt ist. MS-Patienten zeigen im Vergleich zu den Kontrollen eine ähnliche Minderung der Verhaltensleistung, Trefferquote in ein Kraftfenster, der MS-Patienten im Kontrollvergleich. Die Ergebnisse zeigen, dass ipsilaterale motorische Areale in der Lage sind den primär motorischen Kortex soweit zu kompensieren, jedoch die Fähigkeit zur Kompensation in fortgeschrittenen Krankheitsstadien eingeschränkt ist. Abschließend kann man zusammenfassen, dass die funktionelle Rekrutierung von ipsilateralen Motorarealen eine adaptive Antwort auf chronische Gehirnschädigung bei MS-Patienten sein kann, allerdings mit Einschränkung der Kapazität in fortgeschrittenen Krankheitsstadien. Nachdem die synaptische Plastizität weitestgehend intakt scheint, sollte man besonders Mechanismen der späten Phase der Plastizität fördern, welche auf eine langfristige kortikale Plastizität abzielen. Weitere Studien in diesem Forschungszweig könnten einen Beitrag zur Entwicklung therapeutischer Konzepte der Neurorehabilitation bei Multipler Sklerose leisten. N2 - Multiple Sclerosis is a chronic neurological disease, which is one of the common reasons in the industrial world causing a lasting disablement at young adults. Despite of reduction by several mechanisms the cns injury characterized by demyelinizing and axonal injury in order of inflammatory processes the lesion load of the cns accumulates over the years. T2-weighted MRI studies only show moderate correlations between the represented pathologies and the motoric deficits. This discrepancy is attributed i.a. to procedures of neuroplasticity whose basic mechanisms are considered as Long-term potentiation (LTP) and -depression (LTD). Several fMRI studies suggest a reogranization of cortical representative pattern due to these adaptive changes. Therefore an extended activation of ipilaterale sensomotoric areas is observed in MS patients performing motoric tasks. Transcranial Magnetic Stimulation (TMS) provides via lesional techniques the possibility of a direct conclusion causal link to structure and function. The functional role of ipsilateral motor areas has been examined in 26 MS patients in relation to their motor impairment and cns injury. Healthy controls were matched for age, sex and handedness. The motor performance was assessed by a test battery of hand function. The cns injury was evaluated using magnetic resonance spectroscopy (NAA/Cr Quotient) and TMS (CML). The Simple Reaction Time task (SRT) consisted of a brisk isometric abduction of the right thumb against a force transducer as a respond to an auditorily Go-Signal. With the help of a neuronavigational device a reversible virtual lesion, delivered by TMS single pulses, were applied to specific brain areas, contralateral M1, ipsilateral M1 and ipsilateral PMD. A control stimulation were assessed to MO??. TMS Single pulses were applied 100ms after Go-Signal. SRT were defined as the time between Go-Signal and EMG onset. Significant extention of SRT after TMS to ipsilateral M1 and ipsilateral PMd evidence the role of these regions in motoric function in MS. The missing correlation between motor performance and NAA/Cr Quotient as well as the inverse correlation to CML are explainable by compensation brain regions which are themselves structurally affected by disease pathologies. In the Thetaburs experiments (TBS) a virtual lesion was induced by a repetitive TMS intervention to ipsilateral M1. The results show a similar change of excitability in MS patients and healthy controls which concludes that LTD is not compromised in mild to moderate affected MS patients. MS patients presented in comparison to controlls a similiar discrease of behavioral performance, hit rate in a force range. The results evidence that ipsilateral motor areas have the ability to compensate the primary motor cortex. But the ability for compensation is limited in advanced stages of illness. The concluding summary is that functional recruitment of ipsilateral motor areas are adaptive response to chronic brain injury in MS patients but with limited capacity in advanced stages of illness. As the synaptic plasticity seem intact to the greatest possible extent mechanism of the late stadium of plasticity should be supported which aim at long term cortical plasticity. Further studies in this branch of research could contribute the development of therapeutic concepts of neurorehabilitation in MS. KW - Neuronale Plastizität KW - Multiple Sklerose KW - Transkranielle Magnetstimulation KW - neuronal plasticity KW - multiple sclerosis KW - transcranial magnetic stimulation Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-73817 ER - TY - JOUR A1 - Ueceyler, Nurcan A1 - Biko, Lydia A1 - Sommer, Claudia T1 - MDL-28170 Has No Analgesic Effect on CCI Induced Neuropathic Pain in Mice N2 - The calpain inhibitor MDL-28710 blocks the early local pro-inflammatory cytokine gene expression in mice after chronic constriction nerve injury (CCI). Onehundred- thirteen wild type mice of C57Bl/6J background received CCI of the right sciatic nerve. Mechanical paw withdrawal thresholds and thermal withdrawal latencies were investigated at baseline and at 1, 3, and 7 days after CCI. Three application regimens were used for MDL-28170: a) single injection 40 min before CCI; b) serial injections of MDL- 28170 40 min before and up to day three after CCI; c) sustained application via intraperitoneal osmotic pumps. The control animals received the vehicle DMSO/PEG 400. The tolerable dose of MDL-28170 for mice was 30 mg/kg body weight, higher doses were lethal within the first hours after application. Mechanical withdrawal thresholds and thermal withdrawal latencies were reduced after CCI and did not normalize after single or serial injections, nor with application of MDL-28170 via osmotic pumps. Although the calpain inhibitor MDL-28170 inhibits the early local cytokine upregulation in the sciatic nerve after CCI, pain behavior is not altered. This finding implies that local cytokine upregulation after nerve injury alone is only one factor in the induction and maintenance of neuropathic pain. KW - Medizin KW - calpain KW - neuropathic pain KW - MDL-28170 KW - chronic constriction nerve injury (CCI) Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68359 ER -