13 research outputs found

    Statutory civil remedies in trade mark litigation

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    Little attention is paid to the civil remedies available when infringement of a trade mark or the right to goodwill occurs. Yet, for the owners of ~uch rights, these remedies are of much greater importance than theoretical considerations regarding the nature of the rights or what constitutes their infringement. This thesis analyses the civil remedies for trade mark infringement granted by the South African Trade Marks Act 194 of 1993. In the South African context, any consideration of civil remedies is rendered problematic by the attempted graft of English remedies onto a legal system with a different common-law background. It is, therefore, essential first to trace the English origin and application of these remedies, and then to determine whether each remedy is acceptable in terms of the South African common law. This is necessary, as our courts have previously rejected or adapted English remedies which were unknown to our common law but which Parliament introduced in legislation. The remedies of interdict (or injunction) in final and interlocutory form, compensatory damages, reasonable royalties, and delivery up are analysed from a substantive law and a procedural perspective. The procedural innovation of an inquiry as to damages is also considered. In respect of each remedy, (1) the English roots and development of the remedy are traced; (2) differences of approach in two other Commonwealth jurisdictions, Australia and Canada, are highlighted; (3) the development of the South African equivalent is detailed; and (4) suggestions for the future implementation of the remedy in South Africa are made. In the penultimate chapter, our common law and legislation (including the Constitution of the Republic of South Africa 108 of 1996 ) are measured against the requirements of the Agreement on Trade-related Aspects of Intellectual Property Rights (TRIPS). Recommendations for the effective utilization of each remedy in South Africa are then made. They include suggestions for legislative amendment in respect of delivery up and an inquiry as to damages, and the introduction of statutory damages as an further civil remedy.Mercentile LawLL. D. (Laws

    Association of cannabis with glutamatergic levels in patients with early psychosis: Evidence for altered volume striatal glutamate relationships in patients with a history of cannabis use in early psychosis

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    The associative striatum, an established substrate in psychosis, receives widespread glutamatergic projections. We sought to see if glutamatergic indices are altered between early psychosis patients with and without a history of cannabis use and characterise the relationship to grey matter. 92 participants were scanned: Early Psychosis with a history of cannabis use (EPC\u2009=\u200929); Early Psychosis with minimal cannabis use (EPMC\u2009=\u200925); Controls with a history of cannabis use (HCC\u2009=\u200916) and Controls with minimal use (HCMC\u2009=\u200922). Whole brain T1 weighted MR images and localised proton MR spectra were acquired from head of caudate, anterior cingulate and hippocampus. We examined relationships in regions with known high cannabinoid 1 receptor (CB1R) expression (grey matter, cortex, hippocampus, amygdala) and low expression (white matter, ventricles, brainstem) to caudate Glutamine+Glutamate (Glx). Patients were well matched in symptoms, function and medication. There was no significant group difference in Glx in any region. In EPC grey matter volume explained 31.9% of the variance of caudate Glx (p\u2009=\u20090.003) and amygdala volume explained 36.9% (p\u2009=\u20090.001) of caudate Glx. There was no significant relationship in EPMC. The EPC vs EPMC interaction was significant (p\u2009=\u20090.042). There was no such relationship in control regions. These results are the first to demonstrate association of grey matter volume and striatal glutamate in the EPC group. This may suggest a history of cannabis use leads to a conformational change in distal CB1 rich grey matter regions to influence striatal glutamatergic levels or that such connectivity predisposes to heavy cannabis use

    Association of cannabis with glutamatergic levels in patients with early psychosis: Evidence for altered volume striatal glutamate relationships in patients with a history of cannabis use in early psychosis

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    he associative striatum, an established substrate in psychosis, receives widespread glutamatergic projections. We sought to see if glutamatergic indices are altered between early psychosis patients with and without a history of cannabis use and characterise the relationship to grey matter. 92 participants were scanned: Early Psychosis with a history of cannabis use (EPC = 29); Early Psychosis with minimal cannabis use (EPMC = 25); Controls with a history of cannabis use (HCC = 16) and Controls with minimal use (HCMC = 22). Whole brain T1 weighted MR images and localised proton MR spectra were acquired from head of caudate, anterior cingulate and hippocampus. We examined relationships in regions with known high cannabinoid 1 receptor (CB1R) expression (grey matter, cortex, hippocampus, amygdala) and low expression (white matter, ventricles, brainstem) to caudate Glutamine+Glutamate (Glx). Patients were well matched in symptoms, function and medication. There was no significant group difference in Glx in any region. In EPC grey matter volume explained 31.9% of the variance of caudate Glx (p = 0.003) and amygdala volume explained 36.9% (p = 0.001) of caudate Glx. There was no significant relationship in EPMC. The EPC vs EPMC interaction was significant (p = 0.042). There was no such relationship in control regions. These results are the first to demonstrate association of grey matter volume and striatal glutamate in the EPC group. This may suggest a history of cannabis use leads to a conformational change in distal CB1 rich grey matter regions to influence striatal glutamatergic levels or that such connectivity predisposes to heavy cannabis use

    Statutory civil remedies in trade mark litigation

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    Thesis (LLD) -- University of South Africa, 1997.Full text to be digitised and attached to bibliographic record

    Discretionary powers of the judge in South Africa.

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    RegsgeleerdheidPrivaatregPlease help us populate SUNScholar with the post print version of this article. It can be e-mailed to: [email protected]

    Association of cannabis with glutamatergic levels in patients with early psychosis: Evidence for altered volume striatal glutamate relationships in patients with a history of cannabis use in early psychosis

    No full text
    The associative striatum, an established substrate in psychosis, receives widespread glutamatergic projections. We sought to see if glutamatergic indices are altered between early psychosis patients with and without a history of cannabis use and characterise the relationship to grey matter. 92 participants were scanned: Early Psychosis with a history of cannabis use (EPC = 29); Early Psychosis with minimal cannabis use (EPMC = 25); Controls with a history of cannabis use (HCC = 16) and Controls with minimal use (HCMC = 22). Whole brain T1 weighted MR images and localised proton MR spectra were acquired from head of caudate, anterior cingulate and hippocampus. We examined relationships in regions with known high cannabinoid 1 receptor (CB1R) expression (grey matter, cortex, hippocampus, amygdala) and low expression (white matter, ventricles, brainstem) to caudate Glutamine+Glutamate (Glx). Patients were well matched in symptoms, function and medication. There was no significant group difference in Glx in any region. In EPC grey matter volume explained 31.9% of the variance of caudate Glx (p = 0.003) and amygdala volume explained 36.9% (p = 0.001) of caudate Glx. There was no significant relationship in EPMC. The EPC vs EPMC interaction was significant (p = 0.042). There was no such relationship in control regions. These results are the first to demonstrate association of grey matter volume and striatal glutamate in the EPC group. This may suggest a history of cannabis use leads to a conformational change in distal CB1 rich grey matter regions to influence striatal glutamatergic levels or that such connectivity predisposes to heavy cannabis use
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