a. L1 larvae with distinctive junction of rhabditoid esophagus in the anterior section, posterior section intestinal cells dense with reflective granules (10μm). b. L3 larvae with knob-like tips (KT) and rod-like structure (RT) in head, clear division of rhabiditoid esophagus (RB), excretory pore (EP), and anus (A). Larvae were 28–35 μm in width to 450–490 μm in length. c. Tissue squash from P. martensi showing C-shaped L2 larvae with dark interiors. Larvae were 29–32 μm in width to 420–470 μm in length. d. Histology section of P. martensi showing coiled larvae very close to edge of the body wall.</p
14 pages, 8 figures, supporting information https://doi.org/10.1002/jmor.20805The esophagus of the e...
<p>(A–C) Live images of wild type (WT) and <i>mlt</i> larvae. In WT (A) the posterior intestine form...
Fig. 66. Examples of morphological transformations between instars in the maxilla of the Acidocerini...
<p>(a) Early third-stage larva. (b) Middle third-stage larva, showing evacuation of gut (arrow). (c)...
<p>General view of third-stage larvae with one sheath (<i>S</i>). A characteristic “T”-shaped struct...
(A) Underside of a G. mellonella larva. The foregut, the midgut, and the hindgut are indicated by ar...
<p><i>Spania</i> sp. (a-h): (a) anterior body part, dorsal view (100 μm); (b) head, ventral view; (c...
The morphology of the midgut epithelium cells of Anticarsia gemmatalis (Hübner) larvae is described ...
Arrenurus stecki Koenike, 1894 (Fig. 38) Material examined: 10 larvae deriving from 10 females. ...
<p>A–C, anterior esophagus; D–F, posterioresophageal gland. A and D show the whole region in optical...
An infection with Angiostrongylus cantonensis, the main causative agent for human eosinophilic encep...
The morphology of the midgut epithelium cells of Anticarsia gemmatalis (Hübner) larvae is described ...
<p>(A) Hatchling of <i>P. triangulicostalis</i> (Sn62-11) and (B) young <i>P. emeiensis</i> with two...
<p>(A) To-scale confocal images of <i>S. japonicum</i> adult male (left) and female (right) stained ...
<p>(A) Larva lateral view with the intestine delineated (dotted red line). Sagittal (B) and transver...
14 pages, 8 figures, supporting information https://doi.org/10.1002/jmor.20805The esophagus of the e...
<p>(A–C) Live images of wild type (WT) and <i>mlt</i> larvae. In WT (A) the posterior intestine form...
Fig. 66. Examples of morphological transformations between instars in the maxilla of the Acidocerini...
<p>(a) Early third-stage larva. (b) Middle third-stage larva, showing evacuation of gut (arrow). (c)...
<p>General view of third-stage larvae with one sheath (<i>S</i>). A characteristic “T”-shaped struct...
(A) Underside of a G. mellonella larva. The foregut, the midgut, and the hindgut are indicated by ar...
<p><i>Spania</i> sp. (a-h): (a) anterior body part, dorsal view (100 μm); (b) head, ventral view; (c...
The morphology of the midgut epithelium cells of Anticarsia gemmatalis (Hübner) larvae is described ...
Arrenurus stecki Koenike, 1894 (Fig. 38) Material examined: 10 larvae deriving from 10 females. ...
<p>A–C, anterior esophagus; D–F, posterioresophageal gland. A and D show the whole region in optical...
An infection with Angiostrongylus cantonensis, the main causative agent for human eosinophilic encep...
The morphology of the midgut epithelium cells of Anticarsia gemmatalis (Hübner) larvae is described ...
<p>(A) Hatchling of <i>P. triangulicostalis</i> (Sn62-11) and (B) young <i>P. emeiensis</i> with two...
<p>(A) To-scale confocal images of <i>S. japonicum</i> adult male (left) and female (right) stained ...
<p>(A) Larva lateral view with the intestine delineated (dotted red line). Sagittal (B) and transver...
14 pages, 8 figures, supporting information https://doi.org/10.1002/jmor.20805The esophagus of the e...
<p>(A–C) Live images of wild type (WT) and <i>mlt</i> larvae. In WT (A) the posterior intestine form...
Fig. 66. Examples of morphological transformations between instars in the maxilla of the Acidocerini...