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Table 2 in Predation and oviposition potential of Brazilian populations of the predatory mite Amblyseius tamatavensis (Acari: Phytoseiidae) on eggs of Bemisia tabaci (Insecta: Hemiptera)
<p><b>Table 2</b> Mean lengths (in micrometers ± standard error of the mean) of structures of populations of <i>Amblyseius tamatavensis</i> collected in different Brazilian municipalities (May 2015 to May 2016), and mean lengths given in the original description of the species (Blommers 1974).</p><table><tbody><tr><th>Parameter 1</th><th>Olho d’Água das Flores</th><th>Jataí</th><th>Nova- Crixás</th><th>Bom Repouso</th><th>Ituiutaba</th><th>Senador Amaral</th><th>Campinas</th><th>Cananéia</th><th>Mogi- Guaçu</th><th>Piracicaba (Areão)</th><th>Piracicaba (ESALQ)</th><th>Saltinho</th><th>Santa Maria da Serra</th><th>Lab.</th><th>Original descrip.</th></tr></tbody><tbody><tr><th>DSL</th><td>341±6 a</td><td>336±3 b</td><td>328±4 c</td><td>337±4 b</td><td>336±3 b</td><td>335 ± 7 b</td><td>333±3 b</td><td>338±5 b</td><td>337±5 b</td><td>333±2 c</td><td>336±4 b</td><td>324±6 c</td><td>325±2 c</td><td>342±5 a</td><td>340</td></tr><tr><th>DSW</th><td>231±4 a</td><td>226±4 b</td><td>223±3 bc</td><td>226±2 b</td><td>227±4 b</td><td>225±3 b</td><td>219±2 c</td><td>220±1 c</td><td>224±1 b</td><td>226±3 b</td><td>226±3 b</td><td>224±3 b</td><td>226 ± b</td><td>233±2 a</td><td>250</td></tr><tr><th><i>j1</i></th><td>32±0 a</td><td>31±0 a</td><td>32±0 a</td><td>32±0 a</td><td>32±0 a</td><td>32±1 a</td><td>30±3 a</td><td>31±1 a</td><td>33±0 a</td><td>32±1 a</td><td>31±2 a</td><td>31±1 a</td><td>31 ± 0 a</td><td>32±0 a</td><td>32</td></tr><tr><th><i>j3</i></th><td>51±1 b</td><td>54±2 a</td><td>50±4 b</td><td>52±3 b</td><td>54±1 a</td><td>55±2 a</td><td>52±1 b</td><td>51±5 b</td><td>55±2 a</td><td>52±1 b</td><td>55±1 a</td><td>52±1 b</td><td>51 ± 1 b</td><td>55±1 a</td><td>54</td></tr><tr><th><i>j4</i></th><td>5±0 a</td><td>5±0 a</td><td>5±0 a</td><td>5±0 a</td><td>5±0 a</td><td>6±0 a</td><td>5±0 a</td><td>5±1 a</td><td>5±0 a</td><td>5±0 a</td><td>5±0 a</td><td>5±0 a</td><td>5 ± 0 a</td><td>5±0 a</td><td>4</td></tr><tr><th><i>j5</i></th><td>4±0 a</td><td>3±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>3±0 a</td><td>3±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>3</td></tr><tr><th><i>J2</i></th><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>5±0 a</td><td>5±0 a</td><td>6±0 a</td><td>5±1 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6 ± 0 a</td><td>6±0 a</td><td>5</td></tr><tr><th><i>J5</i></th><td>8±0 a</td><td>7±1 a</td><td>7±1 a</td><td>7±0 a</td><td>7±1 a</td><td>7±0 a</td><td>7±1 a</td><td>8±0 a</td><td>7±1 a</td><td>8±0 a</td><td>7±1 a</td><td>7±0 a</td><td>7 ± 1 a</td><td>7±1 a</td><td>6</td></tr><tr><th><i>z2</i></th><td>6±0 a</td><td>6±1 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±1 a</td><td>6±0 a</td><td>6±0 a</td><td>7±0 a</td><td>7±0 a</td><td>6±1 a</td><td>7 ± 0 a</td><td>6±0 a</td><td>6</td></tr><tr><th><i>z4</i></th><td>7±0 a</td><td>7±0 a</td><td>6±0 a</td><td>7±0 a</td><td>6±1 a</td><td>7±0 a</td><td>6±1 a</td><td>6±0 a</td><td>7±0 a</td><td>7±0 a</td><td>7±0 a</td><td>6±0 a</td><td>6 ± 0 a</td><td>7±0 a</td><td>6</td></tr><tr><th><i>z5</i></th><td>4±0 a</td><td>4±1 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>3±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4±0 a</td><td>4 ± 0 a</td><td>4±0 a</td><td>3</td></tr><tr><th><i>Z1</i></th><td>6±0 a</td><td>6±1 a</td><td>7±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±1 a</td><td>6±0 a</td><td>6±0 a</td><td>7±0 a</td><td>6±0 a</td><td>7±0 a</td><td>6 ± 0 a</td><td>7±0 a</td><td>5</td></tr><tr><th><i>Z4</i></th><td>105±2 a</td><td>107±3 a</td><td>105±2 a</td><td>105±2 a</td><td>105±2 a</td><td>107±3 a</td><td>104±1 a</td><td>106±2 a</td><td>105±3 a</td><td>105±3 a</td><td>104±2 a</td><td>104±2 a</td><td>106 ±1 a</td><td>106±1 a</td><td>115</td></tr><tr><th><i>Z5</i></th><td>229±2 a</td><td>226±5 a</td><td>225±2 a</td><td>227±2 a</td><td>228±3 a</td><td>227±4 a</td><td>225±3 a</td><td>228±4 a</td><td>228±3 a</td><td>228±1 a</td><td>228±2 a</td><td>229±2 a</td><td>227±1a</td><td>229±2 a</td><td>250</td></tr><tr><th><i>s4</i></th><td>86±3 a</td><td>88±2 a</td><td>87±3 a</td><td>87±3 a</td><td>88±2 a</td><td>89±2 a</td><td>86±2 a</td><td>86±2 a</td><td>89±3 a</td><td>88±2 a</td><td>88±3 a</td><td>86±2 a</td><td>88±1 a</td><td>87±3 a</td><td>88</td></tr><tr><th><i>S2</i></th><td>7 ±0 a</td><td>6±1 a</td><td>7±0 a</td><td>6±0 a</td><td>7±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>7±0 a</td><td>7±0 a</td><td>6 ± 0 a</td><td>6±0 a</td><td>5</td></tr><tr><th><i>S4</i></th><td>6 ±1 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>7±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6 ± 0 a</td><td>6±0 a</td><td>6</td></tr><tr><th><i>S5</i></th><td>6 ±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6±0 a</td><td>6 ± 0 a</td><td>6±0 a</td><td>6</td></tr><tr><th><i>r3</i></th><td>14±1 a</td><td>15±1 a</td><td>13±1 a</td><td>14±1 a</td><td>14±1 a</td><td>14±1 a</td><td>13±2 a</td><td>14±1 a</td><td>15±1 a</td><td>15±1 a</td><td>15±1 a</td><td>14±1 a</td><td>14 ± 0 a</td><td>15±1 a</td><td>15</td></tr><tr><th><i>R1</i></th><td>7±0 a</td><td>7±1 a</td><td>7±0 a</td><td>7±0 a</td><td>7±0 a</td><td>7±0 a</td><td>7±0 a</td><td>7±1 a</td><td>7±1 a</td><td>7±1 a</td><td>7±0 a</td><td>7±0 a</td><td>7 ± 0 a</td><td>7±1 a</td><td>5</td></tr><tr><th>VASL</th><td>117±2 a</td><td>110±4 b</td><td>110±5 b</td><td>114±1 ab</td><td>110±2 b</td><td>108±4 b</td><td>111±3 b</td><td>112±3 b</td><td>113±2 b</td><td>113±2 b</td><td>108±3 b</td><td>109±3 b</td><td>111 ± 1 b</td><td>119±3 a</td><td>120</td></tr><tr><th>VASWant</th><td>99±3 a</td><td>97±4 a</td><td>94±3 b</td><td>95±3 b</td><td>95±2 b</td><td>93±2 b</td><td>91±4 b</td><td>98±4 a</td><td>97±3 a</td><td>95±2 b</td><td>97±2 a</td><td>91±3 b</td><td>92 ± 1 b</td><td>100±4 a</td><td>100</td></tr><tr><th>VASWpost</th><td>62±3 a</td><td>60±2 a</td><td>64±3 a</td><td>63±2 a</td><td>62±2 a</td><td>63±2 a</td><td>62±1 a</td><td>63±2 a</td><td>64±3 a</td><td>63±2 a</td><td>64±2 a</td><td>62±3 a</td><td>62± 2 a</td><td>62±4 a</td><td>-</td></tr><tr><th><i>St1-St2</i></th><td>32±0 a</td><td>32±0 a</td><td>32±1 a</td><td>33±1 a</td><td>33±0 a</td><td>32±0 a</td><td>32±1 a</td><td>32±0 a</td><td>34±0 a</td><td>32±1 a</td><td>32±1 a</td><td>32±1 a</td><td>33 ± 0 a</td><td>33±0 a</td><td>-</td></tr><tr><th><i>St2-St2</i></th><td>68±2 a</td><td>69±0 a</td><td>68±2 a</td><td>68±1 a</td><td>68±0 a</td><td>68±1 a</td><td>67±1 a</td><td>69±1 a</td><td>69±1 a</td><td>67±1 a</td><td>68±0 a</td><td>68±0 a</td><td>68 ± 1 a</td><td>70±0 a</td><td>-</td></tr><tr><th><i>St3-St3</i></th><td>76±2 a</td><td>77±2 a</td><td>76±2 a</td><td>78±3 a</td><td>76±2 a</td><td>78±1 a</td><td>75±1 a</td><td>77±2 a</td><td>77±2 a</td><td>76±2 a</td><td>76±2 a</td><td>76±1 a</td><td>77 ± 1 a</td><td>78±2 a</td><td>-</td></tr><tr><th><i>St1-St3</i></th><td>59±1 a</td><td>60±2 a</td><td>61±1 a</td><td>60±1 a</td><td>60±1 a</td><td>60±1 a</td><td>59±1 a</td><td>60±1 a</td><td>61±1 a</td><td>60±1 a</td><td>59±1 a</td><td>59±1 a</td><td>61 ± 0 a</td><td>62±1 a</td><td>-</td></tr><tr><th><i>St2-St3</i></th><td>27±1 a</td><td>27±1 a</td><td>28±1 a</td><td>27±1 a</td><td>28±1 a</td><td>28±0 a</td><td>27±1 a</td><td>28±1 a</td><td>28±1 a</td><td>28±1 a</td><td>28±1 a</td><td>27±0 a</td><td>28 ± 0 a</td><td>29±1 a</td><td>-</td></tr><tr><th><i>St4-St4</i></th><td>94±3 a</td><td>86±2 b</td><td>81±3 c</td><td>86±2 b</td><td>84±1 b</td><td>88±8 ab</td><td>81±3 c</td><td>84±2 b</td><td>84±3 b</td><td>86±3 b</td><td>86±2 b</td><td>81±3 c</td><td>85 ± 1 b</td><td>92±3 a</td><td>-</td></tr><tr><th><i>St5-St5</i></th><td>74±2 a</td><td>74±1 a</td><td>74±2 a</td><td>75±1 a</td><td>74±2 a</td><td>74±2 a</td><td>73±1 a</td><td>75±1 a</td><td>76±2 a</td><td>76±2 a</td><td>74±1 a</td><td>74±2 a</td><td>75 ± 2 a</td><td>76±2 a</td><td>-</td></tr><tr><th><i>Jv1</i></th><td>15±1 a</td><td>16±0 a</td><td>16±1 a</td><td>17±1 a</td><td>16±1 a</td><td>17±1 a</td><td>16±1 a</td><td>15±1 a</td><td>17±1 a</td><td>16±1 a</td><td>17±0 a</td><td>16±1 a</td><td>17 ± 0 a</td><td>17±1 a</td><td>-</td></tr><tr><th><i>Jv2</i></th><td>15±1 a</td><td>16±1 a</td><td>15±1 a</td><td>15±1 a</td><td>15±0 a</td><td>15±1 a</td><td>16±0 a</td><td>15±1 a</td><td>15±2 a</td><td>15±1 a</td><td>15±0 a</td><td>15±0 a</td><td>15 ± 0 a</td><td>16±1 a</td><td>-</td></tr><tr><th><i>Jv4</i></th><td>8±0 a</td><td>7±0 a</td><td>7±1 a</td><td>8±0 a</td><td>8±0 a</td><td>8±0 a</td><td>8±0 a</td><td>8±1 a</td><td>8±1 a</td><td>8±0 a</td><td>8±0 a</td><td>8±0 a</td><td>8 ± 0 a</td><td>7±0 a</td><td>-</td></tr><tr><th><i>Jv5</i></th><td>78±3</td><td>73±2</td><td>77±4</td><td>78±3</td><td>79±3</td><td>81±4</td><td>74±1</td><td>80±3</td><td>83±4</td><td>81±3</td><td>82±2</td><td>80±3</td><td>81 ± 2 a</td><td>82±3</td><td>84</td></tr><tr><th><i>Zv1</i></th><td>14±1 a</td><td>16±0 a</td><td>14±1 a</td><td>14±1 a</td><td>15±0 a</td><td>15±0 a</td><td>14±1 a</td><td>14±1 a</td><td>14±1 a</td><td>14±1 a</td><td>15±0 a</td><td>15±1 a</td><td>15 ± 0 a</td><td>14±0 a</td><td>-</td></tr><tr><th><i>Zv2</i></th><td>12±1 a</td><td>12±0 a</td><td>12±1 a</td><td>12±1 a</td><td>12±1 a</td><td>12±1 a</td><td>11±1 a</td><td>12±1 a</td><td>12±0 a</td><td>12±0 a</td><td>13±0 a</td><td>12±1 a</td><td>12 ± 0 a</td><td>13±1 a</td><td>-</td></tr><tr><th><i>Zv3</i></th><td>9±0 a</td><td>9±1 a</td><td>9±0 a</td><td>9±0 a</td><td>9±0 a</td><td>9±0 a</td><td>9±0 a</td><td>9±1 a</td><td>9±1 a</td><td>9±0 a</td><td>10±1 a</td><td>9±0 a</td><td>9 ± 0 a</td><td>10±0 a</td><td>-</td></tr><tr><th><i>SgeIV</i></th><td>98±2 a</td><td>97±3 a</td><td>97±3 a</td><td>98±3 a</td><td>97±2 a</td><td>99±2 a</td><td>98±2 a</td><td>100±2 a</td><td>100±4 a</td><td>100±1 a</td><td>98±2 a</td><td>98±3 a</td><td>99 ± 2 a</td><td>100±3 a</td><td>120</td></tr><tr><th><i>StiIV</i></th><td>66±4 a</td><td>65±3 a</td><td>66±2 a</td><td>66±3 a</td><td>67±4 a</td><td>64±2 a</td><td>65±1 a</td><td>66±4 a</td><td>65±4 a</td><td>64±3 a</td><td>66±3 a</td><td>64±3 a</td><td>65 ± 2 a</td><td>64±4 a</td><td>75</td></tr><tr><th><i>StIV</i></th><td>61±4 a</td><td>63±2 a</td><td>62±3 a</td><td>63±1 a</td><td>64±2 a</td><td>63±2 a</td><td>62±3 a</td><td>62±2 a</td><td>64±1 a</td><td>64±3 a</td><td>64±2 a</td><td>62±2 a</td><td>63 ± 0 a</td><td>65±2 a</td><td>73</td></tr><tr><th>Calyx</th><td>20±1 a</td><td>19±1 a</td><td>19±1 a</td><td>20±1 a</td><td>19±1 a</td><td>18±2 a</td><td>19±1 a</td><td>20±1 a</td><td>19±1 a</td><td>19±1 a</td><td>19±0 a</td><td>20±1 a</td><td>19±1 a</td><td>21±1 a</td><td>16</td></tr></tbody></table><p><sup>1</sup> DSL: dorsal shield length along the midline; DSW: dorsal shield width at the widest level of the podonotal region; VASL: length of the ventrianal shield along the midline; VSWant and VSWpost: anterior (at level of <i>ZV2</i>) and posterior (at level of anal opening) width of the ‘ventrianal shield; <i>SgeIV, StiIV</i> and <i>StIV</i>: lengths of macrosetae of genu, tibia and tarsus of leg IV; calyx: length of calyx of spermatheca. In a same line, means followed by the same letters are not statistically different (Tukey´s test; <i>P</i>> 0.05); (-) Not given.</p>
Linked collectors and determiners for: Predatory midges of the tribes Palpomyiini and Sphaeromiini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species.
Natural history specimen data linked to collectors and determiners held within, "Predatory midges of the tribes Palpomyiini and Sphaeromiini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/3a1f57d6-6cad-4bb9-8fdd-6b2b471bce0c">https://bionomia.net/dataset/3a1f57d6-6cad-4bb9-8fdd-6b2b471bce0c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/3a1f57d6-6cad-4bb9-8fdd-6b2b471bce0c">https://gbif.org/dataset/3a1f57d6-6cad-4bb9-8fdd-6b2b471bce0c</a>. Formatted as a Frictionless Data package.
Figures 9–17 in Geographical distribution and phenotypic variation of Anovia punica Gordon (Coleoptera: Coccinellidae: Noviini), a predatory ladybeetle of fluted scales (Hemiptera: Coccoidea: Monophlebidae)
Figures 9–17. Male genitalia of Anovia punica. Peru: 9–11) San Martin State. Colombia: 12–14) San Andres Island. 15–17) Magdalena State. 9), 12), 15) Tegmen in ventral view. 10), 13), 16) Tegmen in lateral view. 11), 14), 17) Sipho.
Figures 1–8 in Geographical distribution and phenotypic variation of Anovia punica Gordon (Coleoptera: Coccinellidae: Noviini), a predatory ladybeetle of fluted scales (Hemiptera: Coccoidea: Monophlebidae)
Figures 1–8. Morphological variation of Anovia punica. Peru. 1–2) San Martín State. Colombia: 3) San Andres Island. 4) Magdalena State. 5) Valle del Cauca State. 6–7) Antioquia State. 8) Atlantico State.
Figure 1 in A new predatory flatworm (Platyhelminthes, Polycladida) from Botany Bay, New South Wales, Australia
Figure 1. Imogine lateotentare sp. nov., preserved. (A) Diagram of the dorsal surface; (B) morphology of the ventral surface; (C) arrangement of the dorsal eyes; (D) diagrammatic reconstruction of the reproductive system. c, cerebral eyes; ce, cement glands; f, frontal eyes; fa, female antrum; go, gonopores; m, mouth; ma, male antrum; n, nuchal tentacle; p, penis papillae; ph, pharynx; pr, prostatic vesicle; s, seminal vesicle; va, vasa deferentia. Scale bars: 1.5 mm (A, B); 0.9 mm (C); 0.6 mm (D).
Figure 2 in A new predatory flatworm (Platyhelminthes, Polycladida) from Botany Bay, New South Wales, Australia
Figure 2. Living Imogine lateotentare sp. nov. from Kurnell Pier, Botany Bay, New South Wales, Australia. (A) Colour pattern on dorsal surface; (B) ventral view showing pharynx, gonopores and vas deferens. Scale bar: 1.4 mm (A).
Figure 3 in Suitability of different pollen grains and Tetranychus urticae as food for the predatory mite, Amblyseius swirskii (Acari: Phytoseiidae)
Figure 3. Pollen shape of eight different plant pollens prepared using a Scanning Electron Microscopy (SEM).
Figure 2 in Suitability of different pollen grains and Tetranychus urticae as food for the predatory mite, Amblyseius swirskii (Acari: Phytoseiidae)
Figure 2. Age-specific survivorship (lx), and age-stage-specific fecundity (fxj) of Ambluseius swirskii fed on Tetranychus urticae and seven different plant pollen grains.
Figure 2 in Application of demographic analysis for assessing effects of pesticides on the predatory mite, Phytoseiulus persimilis (Acari: Phytoseiidae)
Figure 2. Age specific survival rate (lx), fecundity (mx), maternity (lxmx) and age-stage specific fecundity (fxj) of offspring from Phytoseiulus persimilis females treated with LC25 of three pesticides compared with untreated females.
Figure 1 in Application of demographic analysis for assessing effects of pesticides on the predatory mite, Phytoseiulus persimilis (Acari: Phytoseiidae)
Figure 1. Age-stage specific survival rate (sxj) of offspring from Phytoseiulus persimilis females treated with LC25 of three pesticides compared with untreated females.
Figure 12 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 12 Seasonal abundance of predatory mites observed during 2010 (months are indicated in x-axis) on different treatments in Farm B.
Figure 11 Seasonal abundance ofEotetranychus. carpiniobserved during 2010 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 11 Seasonal abundance ofEotetranychus. carpiniobserved during 2010 (months are indicated in x-axis) on different treatments in Farm B.
Figure 7 Seasonal abundance ofKampimodromus aberransobserved during 2010 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 7 Seasonal abundance ofKampimodromus aberransobserved during 2010 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 2 Seasonal abundance ofEotetranychus carpiniobserved during 2009 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 2 Seasonal abundance ofEotetranychus carpiniobserved during 2009 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 8 Seasonal abundance ofTyphlodromus pyriobserved during 2009 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 8 Seasonal abundance ofTyphlodromus pyriobserved during 2009 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 9 Seasonal abundance ofTyphlodromus pyriobserved during 2010 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 9 Seasonal abundance ofTyphlodromus pyriobserved during 2010 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 4 Seasonal abundance ofAmblyseius andersoniobserved during 2009 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 4 Seasonal abundance ofAmblyseius andersoniobserved during 2009 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 10 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 10 Canopy's feature parameters observed in different vineyards of Farm A. Different letters indicate significant differences at Tukey test (α = 0.05).
Figure 3 Seasonal abundance ofEotetranychus carpiniobserved during 2010 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 3 Seasonal abundance ofEotetranychus carpiniobserved during 2010 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
Figure 6 Seasonal abundance ofKampimodromus aberransobserved during 2009 in Biological control of spider mites in North-Italian vineyards using pesticide resistant predatory mites
Figure 6 Seasonal abundance ofKampimodromus aberransobserved during 2009 (months are indicated in x-axis) on different treatments in vineyards of Farm A.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.