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21 results for “Leucoptera”
Figure 4 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 4: Correlation between the number of predated larvae and the average monthly temperature between January 2015 and December 2019 (Chi = 62,855, p <0.01) (PL: predated mines; temp: average monthly temperature).
Figure 3 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 3: Correlation between the number of intact larvae and average monthly temperature between January 2015 and December 2019 (Chi = 73.19, p = 0.02701) (IL: intact mines; temp: average monthly temperature).
Figure 1 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 1: A: Variation in observed values of biological parameters (AL, number of attacked leaves; IL, number of intact larvae present on leaves; PL, number of predated larvae observed on leaves). B: Variation in observed values of abiotic parameters (mean monthly temperature; total monthly precipitation).
Figure 6 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 6: Pearson's correlation pyramid showing the degree and value of the correlations between the studied biological and environmental variables (AL, number of attacked leaves; IL, number of intact larvae present on leaves; PL, number of predated larvae observed on leaves; Temp, average monthly temperature; Prec, total monthly rainfall).
Figure 2 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 2: Correlation between the number of attacked leaves and average monthly temperature between January 2015 and December 2019 (F = 6.7135, p = 0.01208) (AL: attacked leaves; temp: average monthly temperature).
Figure 5 in Longterm study in Leucoptera coffeella population from southern Minas Gerais, Brazil
Figure 5: Correlation between the number of predated larvae and the number of attacled leaves between January 2015 and December 2019 (F = 57.68, p <0.01) (MP: predated mines; FM: mined leaves).
Figure 4 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 4 External morphological characteristics of coffee leaf minerLeucoptera coffeella larvae. (A) Dorsal view of the larva body of the first larval instar. Arrow indicates primary seta. (B) Chewing mouthpiece of the second larval instar. Arrow indicates spine. (C) Ventral view of the third larval instar. Arrows indicate prolegs without crochets. (D) Ventral view of the fourth larval instar.Arrows indicate prolegs with crochets. (E) Ventral view of crochets in the shape of uniordinal circle in a fourth instar larva.Arrow indicates crochet. (F) Cephalic capsule of the fourth larval instar. Arrow indicates ecdysial line.
Figure 6 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 6 Leucoptera coffeella last abdominal segments. (A) Male last abdominal segment in ventral view, with a white bipartite segment. (B) Female last abdominal segment in ventral view, with a white tubular shape.
Figure 2 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 2 Leucoptera coffeella life cycle phases. (A) Egg Stage. (B) Larval stage. (C) Pupa stage. (D) Adult.
Figure 7 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 7 Leucoptera coffeella, male genitalia. (A) Tergite 8, coremata, sternite 8 and ejaculatory bulb ventral view. (B) Valva ventral view. (C) Gnathos ventral view. (D) Aedeagus dorsal view. Arrow indicates apex of aedeagus. C = coremata, T8 = tergite 8, S8 = sternite 8, b.e. = bulbus ejaculatorius, v = valva, g = gnathos.
Figure 3 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 3 Immatures of Leucoptera coffeella. (A) First instar larva. (B) Cephalic capsule of the first larval instar. Arrow indicates chewing mouthpiece. (C) Larva of the second instar. Arrow indicates first body segment. (D) Cephalic capsule of the second larval instar. (E) Larva of the third instar. (F) Cephalic capsule of the third larval instar. (G) Larva of the fourth instar. (H) Cephalic capsule of the fourth larval instar.
Figs 7–13. Nanoclavelia leucoptera, male from Krasnoyarskii krai. 7 in Discovery of the genus Nanoclavelia Haupt in Priesner, 1955 (Hymenoptera, Pompilidae) from Russia
Figs 7–13. Nanoclavelia leucoptera, male from Krasnoyarskii krai. 7 – habitus, lateral
Figs 1–6. Nanoclavelia leucoptera, female from Krasnoyarskii krai. 1 in Discovery of the genus Nanoclavelia Haupt in Priesner, 1955 (Hymenoptera, Pompilidae) from Russia
Figs 1–6. Nanoclavelia leucoptera, female from Krasnoyarskii krai. 1 – antenna; 2 –
Figure 1 in First record of Peropteryx leucoptera (Chiroptera, Emballonuridae) for the Caatinga of Northeastern Brazil and additional records for the Amazon and Atlantic Rainforest
Figure 1: Distribution of P. leucoptera in South America. Red stars indicate new records reported for the Caatinga biome and the state of Bahia in Northeastern Brazil: (1) Parque Nacional de Furna Feia, Mossoró, state of Rio Grande do Norte; (2) Vila de Patamuté, Gruta de Patamuté, Curaçá, state of Bahia; (3) Río Branco, Fazenda Bela Vista, Ilhéus, state of Bahia; (4) UHE Jirau, Mutum-Paraná, Porto Velho, state of Rondônia. White circles represent specimens examined in this study, black dots represent literature and database records. For numbers of localities, see Supplementary Material S2.
Figure 2 in First record of Peropteryx leucoptera (Chiroptera, Emballonuridae) for the Caatinga of Northeastern Brazil and additional records for the Amazon and Atlantic Rainforest
Figure 2: Specimens of P. leucoptera representing the first records of the species for the Caatinga biome and Bahia state (Brazil). CMARF 320 skull in dorsal view (A), ventral view (B) and lateral view (C), mandible in lateral view (D), UFMG 4716 skin in dorsal (E) and ventral view (F).
Figure 9 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 9 Leucoptera coffeella, female genitalia. (A) Ovipositor ventral view. Arrow indicates ovipositor lobe. (B) Sclerite ventral view. Arrow indicates the sclerite's concave end. (C) Corpus bursae ventral view. Arrow indicates spines.
Figure 5 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 5 Leucoptera coffeella, adult male. (A) Male ventral view. White-colored body scales. (B) Male dorsal view. Apex of the wings with black dots surrounded by yellow scales, with a "V" shape facing the posterior region of the body.
Figure 8 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 8 Leucoptera coffeella, adult female. (A) Female ventral view.(B) Female dorsal view. Arrow indicates the apex of the abdomen with a "C" shape facing the anterior region of the body.
Figure 1 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 1 States of Brazil with the incidence of Leucoptera coffeella (red dots). Rondônia (RO), Mato Grosso (MT), Pará (PA), Goiás (GO), Distrito Federal (DF), Bahia (BA), Minas Gerais (MG), Espírito Santo (ES), São Paulo (SP), Rio de Janeiro (RJ), Paraná (PR), Santa Catarina (SC).
On following pages: 40. Lesser Ghost Bat (Diclidurus scutatus); 41. Isabelline Ghost Bat (Diclidurus isabella); 42. Lesser Dog-like Bat (Peropteryx macrotis); 43. Greater Dog-like Bat (Peropteryx kappleri); 44. Trinidad Dog-like Bat (Peropteryx trinitatis); 45. White-winged Dog-like Bat (Peropteryx leucoptera); 46. Pale-winged Dog-like Bat (Peropteryx pallidoptera); 47. Thomas's Shaggy Bat (Centronycteris centrali); 48. Common Shaggy Bat (Centronycteris maximiliani); 49. Proboscis Bat (Rhynchonycteris naso); 50. Greater Sac-winged Bat (Saccopteryx bilineata}; 51. Lesser Sac-winged Bat (Saccopteryx leptura); 52. rosted Sac-winged Bat (Saccopteryx canescens); 53. Antioquian Sac-winged Bat (Saccopteryx antioquensis); 54. Amazonian Sac-winged Bat (Saccopteryx gymnura). in Emballonuridae
On following pages: 40. Lesser Ghost Bat (Diclidurus scutatus); 41. Isabelline Ghost Bat (Diclidurus isabella); 42. Lesser Dog-like Bat (Peropteryx macrotis); 43. Greater Dog-like Bat (Peropteryx kappleri); 44. Trinidad Dog-like Bat (Peropteryx trinitatis); 45. White-winged Dog-like Bat (Peropteryx leucoptera); 46. Pale-winged Dog-like Bat (Peropteryx pallidoptera); 47. Thomas's Shaggy Bat (Centronycteris centrali); 48. Common Shaggy Bat (Centronycteris maximiliani); 49. Proboscis Bat (Rhynchonycteris naso); 50. Greater Sac-winged Bat (Saccopteryx bilineata}; 51. Lesser Sac-winged Bat (Saccopteryx leptura); 52. rosted Sac-winged Bat (Saccopteryx canescens); 53. Antioquian Sac-winged Bat (Saccopteryx antioquensis); 54. Amazonian Sac-winged Bat (Saccopteryx gymnura).
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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