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Sudden cardiac death (SCD) remains a daunting problem. It is a major public health issue for several reasons: from its prevalence (20% of total mortality in the industrialized world) to the devastating psycho-social impact on society and on the families of victims often still in their prime, and it represents a challenge for medicine, and especially for cardiology. This text summarizes the discussions and opinions of a group of investigators with a long-standing interest in this field. We addressed the occurrence of SCD in individuals apparently healthy, in patients with heart disease and mild or severe cardiac dysfunction, and in those with genetically based arrhythmic diseases. Recognizing the need for more accurate registries of the global and regional distribution of SCD in these different categories, we focused on the assessment of risk for SCD in these four groups, looking at the significance of alterations in cardiac function, of signs of electrical instability identified by ECG abnormalities or by autonomic tests, and of the progressive impact of genetic screening. Special attention was given to the identification of areas of research more or less likely to provide useful information, and thereby more or less suitable for the investment of time and of research funds.
Ursine bears are a mammalian subfamily that comprises six morphologically and ecologically distinct extant species. Previous phylogenetic analyses of concatenated nuclear genes could not resolve all relationships among bears, and appeared to conflict with the mitochondrial phylogeny. Evolutionary processes such as incomplete lineage sorting and introgression can cause gene tree discordance and complicate phylogenetic inferences, but are not accounted for in phylogenetic analyses of concatenated data. We generated a high-resolution data set of autosomal introns from several individuals per species and of Y-chromosomal markers. Incorporating intraspecific variability in coalescence-based phylogenetic and gene flow estimation approaches, we traced the genealogical history of individual alleles. Considerable heterogeneity among nuclear loci and discordance between nuclear and mitochondrial phylogenies were found. A species tree with divergence time estimates indicated that ursine bears diversified within less than 2 My. Consistent with a complex branching order within a clade of Asian bear species, we identified unidirectional gene flow from Asian black into sloth bears. Moreover, gene flow detected from brown into American black bears can explain the conflicting placement of the American black bear in mitochondrial and nuclear phylogenies. These results highlight that both incomplete lineage sorting and introgression are prominent evolutionary forces even on time scales up to several million years. Complex evolutionary patterns are not adequately captured by strictly bifurcating models, and can only be fully understood when analyzing multiple independently inherited loci in a coalescence framework. Phylogenetic incongruence among gene trees hence needs to be recognized as a biologically meaningful signal.
Pulsed Electron Paramagnetic Resonance (EPR) spectroscopy is the most powerful tool to investigate structural properties and dynamics of paramagnetic substances. Up to date the electron spin is almost exclusively manipulated by rectangular shaped microwave pulses generated with switches. These pulses are unselective which means they excite outside their nominal bandwidth which is in most cases shallow compared to the overall spectral width of the spin system. Shaped pulses which are widely applied in NMR promise higher bandwidth and selectivity. The use of amplitude and phase modulated pulses was not possible for EPR due to the three orders of magnitude faster timescale compared to NMR. In this work, for the first time, an AWG (arbitrary waveform generator) operating with a 1 ns time resolution and 14 bit amplitude resolution was implemented into a commercial Bruker pulsed EPR spectrometer.
First results were obtained with broadband excitation pulses derived by optimum control theory (OCT). The OCT-pulse used excites transverse magnetization with 98% efficiency over a more than four times larger bandwidth than common rectangular pulse generating the same 1 B field. The benefit of such a pulse was demonstrated for magnitude FT-EPR spectroscopy on organic radicals in liquid phase.
Due to Spectrometer deadtime an FID cannot be observed for most inhomogeneous spin systems. For that reason prefocused pulses have been evaluated for their applicability to EPR spectroscopy. OCT-derived prefocused pulses can be understood as a compact Hahn Echo sequence in one monolithic pulse. Here, two problems have been encountered. 1) The limited bandwidth of the active and passive microwave components in the excitation path as well as microwave resonator cause linear distortions of the pulse shape which results in inferior pulse performance. This could be circumvented by measuring the impulse response function of the whole spin excitation path and including this information in the pulse optimization procedure. 2) Anisotropic hyperfine interaction which was not taken into account during the pulse optimization also caused efficiency losses.
PELDOR spectroscopy is a valuable tool to measure distance distributions between two or more paramagnetic centers in the range from 2-8 nm. It is demonstrated that the S/N ratio of PELDOR experiments can be substantially increased by substituting the rectangular shaped pump pulse by an adiabatic inversion pulse. The damping of the dipolar oscillations introduced by the prolonged pump pulse towards shorter distances could be circumvented by introducing a second time reversed pump pulse.
By substituting the refocused echo of the well-known 4-pulse PELDOR with a CPMG sequence the dipolar evolution time and thus the validity of PELDOR experiments would be increased. To achieve the maximum dipolar evolution time in a CPMG PELDOR for each refocusing pulse one pump pulse has to be applied. This could only be achieved with the new adiabatic inversion pulses since multiple inversions with efficiency close to one are not possible with rectangular pulses. Even with adiabatic pump pulses a reduced efficiency was observed due to hardware limitations thus limiting the sequence to three refocusing pulses. An iterative method was developed to remove the residual dipolar signals attributed to the reduced inversion efficiency.
The new 7-pulse CPMG PELDOR sequence enabled measuring reliable distance distributions between the protomers of the trimeric betaine transporter BetP. With these it could be shown that the asymmetries found for the 2 and 3-dimensional crystal structures are even larger in frozen detergent.
Kempfidris : a new genus of myrmicine ants from the Neotropical region (Hymenoptera: Formicidae)
(2014)
The new genus Kempfidris gen. nov. is described based on the workers of a single species, K. inusualis comb. nov., from Brazil, Ecuador, and Venezuela. Kempfidris inusualis comb. nov. was originally described by Fernández (2007) and provisionally placed in Monomorium awaiting a better understanding of the internal relationships in Myrmicinae. Kempfidris gen. nov. has a series of distinctive morphological characters including the mandibular configuration, vestibulate propodeal spiracle, propodeal carinae, and cylindrical micro-pegs on the posteromedian portion of abdominal tergum VI and anteromedian portion of abdominal tergum VII. This last trait appears to be autapomorphic for the genus.
Solaenodolichopus Verhoeff, 1924 is redefined to include S. pruvoti (Brolemann, 1931), S. rubriventris Verhoeff, 1928, S. sulcatus (Verhoeff, 1928), S. teres (Verhoeff, 1924), S. vittatus (Verhoeff, 1924) and S. walesius Verhoeff, 1928, each of which is redescribed. Lectotypes are designated for S. sulcatus, S. teres, S. vittatus and S. walesius. Parwalesoma Verhoeff, 1937 is synonymised with Solaenodolichopus and S. vittatus dorsalis (Verhoeff, 1924) with S. vittatus vittatus (Verhoeff, 1924).
Tapinesthis inermis Simon, 1882, the only species in the genus, is widely distributed in western Europe. This redescription provides the first information on the ultrastructure of the species using SEM. The morphology of the spinnerets, tarsal claws and tarsal organs, and the internal structure of the female genitalia and the male palp are described and illustrated in detail. The combination of these structures is very similar to those encountered in some dysderoid spiders and supports the basal placement of Tapinesthis among Oonopinae. The phylogenetic relationships of the species are discussed. The only female among the three syntypes is designated as the lectotype.
This paper summarizes current knowledge about Central African pholcids. Central Africa is here defined as the area between 10°N and 7°S and between 6°E and 18°E, including mainly the Lower Guinean subregion of the Guineo-Congolian center of endemism. This includes all of Gabon, Equatorial Guinea, São Tomé and Príncipe, most of Cameroon and Congo Republic, and parts of the neighboring countries. An annotated list of the 14 genera and 79 species recorded from this area is given, together with distribution maps and an identification key to genera. Seven species are newly described: Anansus kamwai sp. nov., Leptopholcus gabonicus sp. nov., Ninetis faro sp. nov., Pholcus punu sp. nov., P. rawiriae sp. nov., Spermophora abibae sp. nov., and S. awalai sp. nov. Additional new records are given for 16 previously described species, including 17 new country records. Distribution and diversity patterns are compared with data on West and East Africa. While West Africa contains a similar set of genera it is significantly less diverse than Central Africa. East Africa is taxonomically more distinct. It has similar levels of diversity as Central Africa, but appears to be less undersampled.