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    Figures 5-10 in Heleniella helvetica sp. n., a cold stenothermic species inhabiting the upper Rhône catchment in central Switzerland [Diptera, Chironomidae, Orthocladiinae]

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    Figures 5-10. Male imago of Heleniella spp. Heleniella helvetica sp. n.: hypopygium, dorsal (5) and ventral (6); anal point in lateral view (7); anal point and gonocoxite in lateral view (8). H. extrema:anal point and inferior volsella, dorsal, after Albu (1972, Figure 2) (9); gonocoxite with sternapodeme, phallapodeme and right gonostylus, ventral, after Albu (1972, Figure 2) (10).Published as part of J. Moubayed-Breil & B. Lods-Crozet, 2016, Heleniella helvetica sp. n., a cold stenothermic species inhabiting the upper Rhône catchment in central Switzerland [Diptera, Chironomidae, Orthocladiinae], pp. 339-344 in Journal of Entomological and Acarological Research 48 (6026) on page 342, DOI: 10.4081/jear.2016.6026, http://zenodo.org/record/88618

    Heleniella helvetica J. Moubayed-Breil & B. Lods-Crozet 2016, sp. n.

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    Heleniella helvetica sp. n. Material examined: Holotype. Switzerland. Upper catchment of the Rhône River, springfed stream (tributary of the Mutt stream), crenal, altitude 2600 m, 1 male adult, leg. B. Lods-Crozet, 17.09.1997. Paratypes (all leg. B. L-C). Switzerland. Same locality as holotype and Mutt stream, 6 male adults, leg. B. Lods-Crozet, 19.09.1997. Holotype (on 1 slide) (GBIFCH 00190363) and 2 male paratypes (mounted on 2 slides)) (GBIFCH 0 0 190364 + GBIFCH00190365) are deposited in the collections of the ‘Musée cantonal de Zoologie, Palais de Rumine, 6 place de la Riponne, CH-1014 Lausanne, Switzerland. Remaining paratypes are deposited in the collection of the senior author’s. Type material was preserved in 75% alcohol, and later mount- ed in polyvinyl lactophenol. For each adult, the head, thorax and abdomen were cleared in 90% lactic acid before mounting on slides. Etymology: the new species is named heloetica after the name of ‘Swiss confederation’ given in Italian of the country of Switzerland, where the type material was collected. Diagnostic characters Adult male: Small sized species with a brownish general colouration. H. heloetica sp. n. closely resembles H. extrema. They are considered as sister species, which can be easily distinguished from all other members of the Heleniella genus in having an unusual twisted gonostylus, which is bearing a median prominence where is inserted the megaseta. However, the new species is separated from H. extrema and from the remaining Heleniella species by the following characters found in the male adult: - AR 0.50-0.51; thorax with 33-35 antepronotals, 40-45 dorsocentrals, 24-26 prealars, 16-17 episternals, 45-50 preepisternals and 42-44 scutellars; wing length 1.65-1.85; low value of the BR (PI, 1.83; PII, 1.50; PIII, 1.60); - virga very long (145-150 µm long), consisting of 2 long filaments; - tergite IX with semicircular margin, which is bearing 10-12 setae (5-6 on each side of the anal point); anal point conical, broad at base and paralle-sided medially; - inferior volsella long nose-like, projecting and bent downwards; - gonostylus unusually twisted and contorted, truncate proximally, broader and sub-rectangular distally with a truncate apex, magaseta placed medially on a cylindrical to cup-like projecting prominence, crista dorsalis absent. Male imago (n = 5; Figures 1-3, 5-8, 11-15) Small sized species. Total length 2.10-2.20 mm. Wing length 1.65- 1.85 mm. General colouration brown to dark brown with blackish head; antenna brown to dark brown; thorax brown to dark brown; mesonotal stripes distinct; legs light brown to brown, tarsomere of PI, PII and PIII darker than remaining tarsomeres; abdomen brown to dark brown, anal segment dark brown. Head (Figure 1). Eyes pubescent, inner eye margin bare; proximal part of eye enlarged, distal part narrowed downwards. Temporals consist of about 33-35 setae including 21-22 inner verticals and 10-11postorbitals; distal area of the eye bare. Palp 5-segmented; first palpomere weakly developed; length (µm) of palpomeres 20, 50, 75, 85, 115; sensilla clavata present on distal part of third segment. Antenna 13-segmented, 750-760 µm long; sensilla chaetica present on segments 2-3 and 13; antennal groove indistinct, beginning on segments 4-5 and reaching ultimate flagellomere; last flagellomere nearly clubbed apically, 250-260 µm long, remaining segments 500-510 µm long; AR 0.50-0.51. Thorax (Figures 2-3). All thoracic setae are decumbent except for the dorcentrals, which are arising from distinct pale spots. Acrostichals absent. Humeral pit as in Figure 2. Antepronotum densely covered with setae (33-35), antepronotal lobes in close contact; dorsocentral area densely covered with setae (about 55 setae in 1-3 rows), prealars 24-27 in 2-3 rows, episternals about 45-50, preepisternals about 40-45. Scutellum with 44 setae placed in 3-4 rows rows. Wing. Brachiolum with 2 setae. Distribution of setae on veins: R, 13-14; R 1 , 6-7; remaining veins bare. Squama bare. Legs. The low value of the BR ratio (1.50-1.83) apparently represents a consistent distinguishing character (PI, 1.83; PII, 1.50; PIII, 1.6). Tarsomere 5 of PI weakly shorter than tarsomere 4. Pulvilli apparently absent. Average length (µm) and proportions of legs: Abdomen. Hypopygium in dorsal, ventral and lateral view (Figures 5-8). Tergite IX broad and circular, anteromedian area bare, posterior area with 8-10 setae (4-5 placed on each side of the base of the anal point), posterior margin broadly expanded and bearing 10-12 setae (5- 6 on each side of the anal point). Anal point (Figures 5, 7, 8, 11) 23-25 µm long, maximum width 20-21 µm at base, minimum width 9-11 µm at apex, broad at base and narrowed distally, apex rounded in both dorsal (Figures 5, 11) and lateral view (Figures 7-8); presence of 3 setae on dorsal side and 6 on lateral side (3 on each side). Phallapodeme and sternapodeme as in Figure 6. Sternapodeme arc-like orally produced, lateral sternapodeme nearly vertical; phallapodeme 90-95 µm long, broadly linear basally and medially, hammer-like at base. Virga (Figures 5, 12) 145-150 µm long, consists of 2 fused long filaments elongated vertically. Gonocoxite 180-185 µm long, 45-50 µm wide, apex rounded to nearly truncate; basal margin sinuous, inferior volsella 7 5-80 µm long, maximum width 75 µm, minimum width 9 µm; long nose-like lobe shaped, rounded apically, bearing 5-7 setae dorsally and ventrally on distal part. Gonostylus (Figures 5, 8, 13-15) 75 µm long, maximum width 30 µm, unusually shaped, twisted and contorted; crista dorsalis absent. Megaseta 18 µm long, inserted medially on a cylindrical to cuplike prominence projecting on the anteromedian part of the gonostylus; the prominence is about 23 µm high and probably retractable. Larva: known but not described. Taxonomic remarks Male imaginal characters of H. heloetica sp. n. are nearly similar to those of H. extrema. These two species can be considered as sister species based on the following common characters: - both species are bearing an unusual gonostylus, which is twisted and characterized by the placement of the megaseta on its median part (Figures 5, 8 13-15 for H. heloetica sp.n.; Figures 10, 22 for H. extrema); - both species are confined to cold stenothermic high mountain streams (crystalline water for H. heloetica sp. n.; karstic water for H. extrema). The extrema -group is emended here as well as in Moubayed-Breil (unpublished data, 2016) according to the unusual shape of the gonostylus, which is contorted and bearing the megaseta medially. This group currently includes H. extrema, H. heloetica sp. n. and two additional new undescribed species known from glaciers located in C- Switzerland (H. sp. 1) and the Eastern Pyrenees, France (H. sp. A). However, H. heloetica sp. n. is easily distinguished from other members of the Heleniella genus and in particular from H. extrema by a combination of differentiating characters including: - AR 0.50-0.51; wing length 1.65-1.85; - distribution pattern of setae on tergite IX and anal point (Figures 5, 11), otherwise figured in H. extrema (Figure 9; Albu 1972, Figure 2); - anal point broadly rectangular at base and parallelsided medially (Figures 5, 11), while it is triangular and narrowed in H. extrema (Figure 9) and absent in H. sp. 1 (Figure 16); - phallapodeme broadly linear proximally and medially (Figure 16), thicker in H. extrema (Figure 10, 21) and sickle-like in H. sp. 1 (Figure 19); - virga composed of 2 fused long filaments (Figures 5, 12), differently shaped in H. sp. 1 (Figures 17-18); - inferior volsella long nose-like shaped and projecting downwards (Figures 5, 8, 15), broader and sub-rectangular in H. extrema (Figure 9); - gonostylus distinctly twisted (Figures 5, 8, 13-15) and bearing a cylindrical median prominence, differently figured in H. extrema (Figures 10, 22) and H. sp. 1 (Figure 20).Published as part of J. Moubayed-Breil & B. Lods-Crozet, 2016, Heleniella helvetica sp. n., a cold stenothermic species inhabiting the upper Rhône catchment in central Switzerland [Diptera, Chironomidae, Orthocladiinae], pp. 339-344 in Journal of Entomological and Acarological Research 48 (6026) on pages 340-341, DOI: 10.4081/jear.2016.6026, http://zenodo.org/record/88618

    Heleniella Gowin 1943

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    Key to male adults of known Heleniella species from Europe The following key on the male adults of known Heleniella species from Europe (H. extrema, H. dorieri, H. ornaticollis, H. serratosioi) is reproduced with more additional morphological details provided based on other new described species from continental France, Corsica and Lebanon (Moubayed-Breil, unpublished data, 2016). 1. Gonostylus of usual Heleniella type, linear, triangular or broadened distally; apex projecting, nearly right angle-like or rounded; megaseta inserted apically........................................................................................... - Gonostylus unusually shaped, not of Heleniella type, distinctly twisted and contorted (Figures 5, 8, 10, 13-15, 22 -23), bearing a distinct or indistinct cylindrical median prominence; megaseta inserted medially.........4 2. Inferior volsella triangular, narrowed apically and projecting downwards (Brundin, 1956, Fig. 107; Albu, 1966, Fig. 6; Reiss, 1968, Fig. 14; Ringe, 1976, Fig. 4; Langton & Pinder, 2007, Fig. 161A)........................3 - Inferior volsella rectangular, rounded apically and not projecting downwards; gonostylus linear with slender apex and not projecting; virga consists of 2 fused filaments extended vertically (Ringe, 1976, Fig. 1)................................................................ H. serratosioi Ringe, 1976 3. Gonostylus triangular, weakly projecting apically with a right angle to rounded apex; virga consists of 3 separated long filaments (Moubayed-Breil, unpublished data, 2016)................................................................................................................. H. ornaticollis (Edwards, 1929) - Gonostylus not triangular, distinctly broadened distally, not projecting apically and ending with a rounded apex; virga unknown............................................................................................... H. dorieri Serra-Tosio, 1966 4. Inferior volsella triangular and weakly projecting (Figure 9); anal point triangular, narrowed distally with a nearly pointed apex (Figure 9); phallapodeme rounded and turned over at base (Figures 10, 21); virga unknown...................................................................... H. extrema Albu, 1972 - Inferior volsella nose-like shaped, strongly projecting and distinctly bent downwards (Figures 5, 8, 15); anal point not triangular, broad at base, slightly narrowed distally with rounded apex (Figures 5, 7-8, 11); phallapodeme hammer-like at base (Figure 6); virga 150 µm long, consists of 2 fused long filaments (Figures 5, 12)........... H. heloetica sp. n. Ecology and geographical distribution Larvae of all members of the Heleniella genus are exclusively rheophilic and commonly encountered in lotic habitats delimited by the crenal and rhithral of cold streams. Male adults of H. heloetica sp. n. were collected in small groundwater resurgences and a springfed stream located in the upper basin of the Rhône River, Mutt stream catchment (central Switzerland, altitude 1800-2600 m). Localities where material was collected consist of moderate to weakly shaded pristine stenothermic stretches with cold mountain helocrenes and streams, including small waterfalls and riffles on rocky or sandy to gravely substrata. Bryocolous, hygropetric and madicolous habitats including waterfalls probably represent the most common and favoured aquatic areas for larval populations. Abiotic and biotic factors recorded along the crenal and rhithral waters are provided in Lods-Crozet (2012) as: - crystalline water characterized by a low value of the water conductivity (18-60 µS/cm); - cold stenothermic water temperature (4-10°C); - weakly shaded lotic habitats (waterfalls and riffles). The discovery of H. heloetica sp. n. in such preserved lotic habitats highlights the position of the headwaters in the upper Rhône catchment as a remarkable microrefugia, which is considered as an extremely important hotspot of diversity. The new species is typically rheophilic and representative of helocrenes and cold stenothermic streams. It belongs to the crenobiontic and crenophilous community of species as documented by Lindegaard (1995). All members of the extrema -group including H. extrema, H. heloetica sp. n. and two additional new undescribed species (H. sp. 1, Switzerland; H. sp. A, France) are apparently confined to cold and stenothermic helocrenes and rhithral located in the vicinity of glaciers such those of the Mutt stream (crystalline water, C-Switzerland), Retezat Massif (karstic water, Carpathian Mountains, Rumania) and Carlit Massif (crystalline water, E-Pyrenees, France). The new described species is rare and sparsely distributed in the helocrenes and rhithral of some cold streams delimited by the upper Rhône catchment. In addition, the geographical distribution of H. heloetica sp. n. is apparently restricted to this area and therefore can be expected to occur in other similar geographic areas of the alpine mountains of Italy, Austria and France. This indicates and highlights the importance of pristine headwaters in the Alps (cold enclaves) in the preservation and persistence of autochthonous cold crenal relic species, which can be considered, in one hand as a relevant biogeographic representative and in another hand, as an eventual biological indicators of the global warming and climate change. Chironomid species encountered in the same streams, and listed by Lods-Crozet (2012) include: Krenopelopia binotata (Wiedemann, 1817); Boreoheptagyia alpicola Serra-Tosio, 1989; Diamesa aberrata Lundbeck, 1898; D. bohemani Goetghebuer, 1932; D. cinerella Meigen, 1835; D. goetghebueri Pagast, 1947, D. noaeickiana Kownacki & Kownacka, 1975, D. oaillanti Serra-Tosio, 1972; Pseudodiamesa branickii (Nowicki 1873), Syndiamesa edaeardsi Pagast, 1947, Bryophaenocladius femineus (Edwards, 1929); B. suboernalis (Edwards 1929), Chaetocladius laminatus Brundin, 1947; C. suecicus (Kieffer 1916), C. cf. longioirgatus Stur & Spies, 2011; Cricotopus lygropis Edwards, 1929; Eukiefferiella fittkaui Lehmann, 1972; H. ornaticollis (Edwards, 1929); H. serratosioi Ringe, 1976; Krenosmittia boreoalpina (Goetghebuer, 1944); K. camptophleps (Edwards, 1929); Parametriocnemus boreoalpinus Gowin & Thienemann 1942; Stilocladius montanus Rossaro, 1979; Thienemannia gracilis Kieffer 1909; Thienemanniella caspersi Saether, 2003; Tokunagaia rectangularis (Goetghebuer, 1940); etc.Published as part of J. Moubayed-Breil & B. Lods-Crozet, 2016, Heleniella helvetica sp. n., a cold stenothermic species inhabiting the upper Rhône catchment in central Switzerland [Diptera, Chironomidae, Orthocladiinae], pp. 339-344 in Journal of Entomological and Acarological Research 48 (6026) on pages 342-344, DOI: 10.4081/jear.2016.6026, http://zenodo.org/record/88618

    Figure 50 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract

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    Figure 50. Riffles and waterfalls (altitude 1700-1800 m) delimited by the upper basin of the River Po at 'Pian del Re', Alpi Marittime, north-western Italy. Photo J. Moubayed-Breil, 09.07.2017.Published as part of Moubayed-Breil, Joel & Ashe, Patrick, 2018, CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract, pp. 4-15 in CHIRONOMUS Journal of Chironomidae Research 31 on page 13, DOI: 10.5324/cjcr.v0i31.2498, http://zenodo.org/record/799522

    Going Beyond Counting First Authors in Author Co-citation Analysis

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    The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed

    Variations on the Author

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    “Variations on the Author” discusses two of Eduardo Coutinho’s recent films (Um Dia na Vida, from 2010, and Últimas Conversas, posthumously released in 2015) and their contribution to the general question of documentary authorship. The director’s filmography is characterized by a consistent yet self-effacing form of authorial self-inscription: Coutinho often features as an interviewer that rather than express opinions propels discourses; an interviewer that is good at listening. This mode of self-inscription characterizes him as an author who is not expressive but who is nonetheless markedly present on the screen. In Um Dia na Vida, however, Coutinho is completely absent form the image, while Últimas Conversas, on the contrary, includes a confessional prologue that moves the director from the margins to the center of his films. This article examines the ways in which these works stand out in the filmography of a director who offers new insights into the notion of cinematic authorship

    Appropriate Similarity Measures for Author Cocitation Analysis

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    We provide a number of new insights into the methodological discussion about author cocitation analysis. We first argue that the use of the Pearson correlation for measuring the similarity between authors’ cocitation profiles is not very satisfactory. We then discuss what kind of similarity measures may be used as an alternative to the Pearson correlation. We consider three similarity measures in particular. One is the well-known cosine. The other two similarity measures have not been used before in the bibliometric literature. Finally, we show by means of an example that our findings have a high practical relevance.information science;Pearson correlation;cosine;similarity measure;author cocitation analysis

    Dispelling the Myths Behind First-author Citation Counts

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    We conducted a full-scale evaluative citation analysis study of scholars in the XML research field to explore just how different from each other author rankings resulting from different citation counting methods actually are, and to demonstrate the capability of emerging data and tools on the Web in supporting more realistic citation counting methods. Our results contest some common arguments for the continued use of first-author citation counts in the evaluation of scholars, such as high correlations between author rankings by first-author citation counts and other citation counting methods, and high costs of using more realistic citation counting methods that are not well-supported by the ISI databases. It is argued that increasingly available digital full text research papers make it possible for citation analysis studies to go beyond what the ISI databases have directly supported and to employ more sophisticated methods

    Author Index

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