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106 results for “Amblyseius”
Figure 1 in Functional response of the predatory mite Amblyseius swirskii (Acari: Phytoseiidae) to Eotetranychus frosti (Tetranychidae) and Cenopalpus irani (Tenuipalpidae)
Figure 1 Functional response curves of adult female Amblyseius swirskii to different stages of Eotetranychus frosti and Cenopalpus irani. Dots represent the observed numbers of prey consumed at each initial prey density, and lines were predicted by the random predator equation (Rogers, 1972).
Figure 1 in Predation and oviposition potential of Brazilian populations of the predatory mite Amblyseius tamatavensis (Acari: Phytoseiidae) on eggs of Bemisia tabaci (Insecta: Hemiptera)
Figure 1 Locations of the collection sites of the populations of Amblyseius tamatavensisin Brazil (May 2015 to May 2016).
Figure 3 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 3. Age-stage specific reproductive value (vxj) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 2 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 2. Age-specific survival rate (lx), age-stage specific fecundity of female (fxj) and age-specific fecundity rate (mx) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 1 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 1. Age-stage specific survival rate (sxj) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 1 in How Spiromesifen affects some biological parameters and switching behavior of predatory mite Amblyseius swirskii (Acari: Phytoseiidae) when feeding on different ratios of mixed preys
Figure 1. Linear relation between initial number of Bemisia tabaci (left)/ Tetranychus urticae (right) treated with recommended concentration of Spiromesifen and number of preys eaten by predatory mite Amblyseius swirskii.
Figure 2 in How Spiromesifen affects some biological parameters and switching behavior of predatory mite Amblyseius swirskii (Acari: Phytoseiidae) when feeding on different ratios of mixed preys
Figure 2. Fitted regression equation between the proportion of consumed mite to total preys and preference index (β) of Amblyseius swirskii.
Figure 5 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 5. Survival of ten IG predator larvae of either A. swirskii (above) or N. barkeri (below) in choice experiments with naïve or experienced IG prey females of N. barkeri and A. swirskii, respectively.
Figure 4 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 4. Total oviposition and proportion of eggs laid by experienced or naïve IG prey females N. barkeri (a, b) and A. swirskii (c, d) in risky (black bars) and safe (white bars) patches.
Figure 3 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 3. Effect of experience on patch choice behavior of N. barkeri and A. swirskii IG prey females within choice experiments. Shown are mean fractions (± SE) for residence frequency of either experienced or naïve females in risky patches with IG predator cues and juveniles (black bars) or in safe patches with only spider mites (white bars).
Figure 2 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 2. Comparative survival to adulthood of 20 IG prey eggs of either N. barkeri (black bar, n = 25) or A. swirskii (grey bar, n = 25) on arenas with 5 IG predator females of A. swirskii or N. barkeri, respectively.
Figure 1 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 1. Survival to adulthood (mean number ± SE) of 20 IG prey eggs of either N. barkeri (a) or A. swirskii (b) on arenas with only spider mites (control arenas, white bars) or with spider mites and 5 IG predator females (risky arenas, black and grey bars).
Figure 1 in Functional response and predation rate of Amblyseius swirskii (Acari: Phytoseiidae) at three constant temperatures
Figure 1. Functional response of Amblyseius swirskii to eggs of Tetranychus urticae at 25 (A), 30 (B) and 35°C (C).
Figure 6 in Reciprocal intraguild predation between Neoseiulus barkeri and Amblyseius swirskii (Mesostigmata: Phytoseiidae): Does experience affect anti-intraguild predation behaviors?
Figure 6. Comparative survivorship of ten IG predator larvae of either A. swirskii or N. barkeri in choice experiments with experienced or naïve IG prey females of N. barkeri or A. swirskii, respectively.
Figs. 1-5 in A new species of Amblyseius (Acari: Phytoseiidae) in the state of Bahia, Brazil
Figs. 1-5. Female of Amblyseius constrictus sp. nov. 1. Dorsal surface of idiosoma; 2. ventral surface of idiosoma; 3. chelicera; 4. variations of calyx of spermatheca; 5. genu, tibia, and basitarsus of leg IV.
Figure 1 in The effects of two essential oils on thefunctional response of Amblyseius swirskii (Acari: Phytoseiidae) fed on Frankliniella occidentalis (Thysanoptera: Thripidae)
Figure 1. The functional response curves and feeding percentages of Amblyseius swirskii on the first instar Frankliniella occidentalis after exposure to Mentha piperita (a1, b1), and Laurus nobilis (a2, b2) essential oils.
Figures 1–5 in First record of Amblyseius bryophilus Karg (Acari: Phytoseiidae) for the Turkish fauna
Figures 1–5. Amblyseius bryophilus Karg (♀). Dorsal shield, 2. Ventral surface 3. Chelicera 4. Spermathecae, 5. Leg IV.
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>
Figure 3 in Seasonal abundance of Tetranychus urticae and Amblyseius swirskii (Acari: Tetranychidae and Phytoseiidae) on four strawberry cultivars
Figure 3. Overall mean numbers of Tetranychus urticae and Amblyseius swirskii on four strawberry cultivars during (a) 2017/2018 and (b) 2018/2019 seasons.
Figure 1 in Seasonal abundance of Tetranychus urticae and Amblyseius swirskii (Acari: Tetranychidae and Phytoseiidae) on four strawberry cultivars
Figure 1. Mean numbers of Tetranychus urticae and Amblyseius swirskii populations on four strawberry cultivars during 2017/2018 season.
ScienceDex guides
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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.