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67 results for “Aplysia”

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zenodo32/100

FIGURE 21 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 21. Mantle papilla and opaline gland of Aplysia inca. (A-C) Chorrillos (LaBSIM 15.06-0031): A, mantle papilla; B, opaline gland opening; C, opaline gland. (D-F) Huanchaco (LaBSIM 15.06-0034): D, mantle papilla; E, opaline gland opening; F, opaline gland. All structures indicated by an arrow

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 19 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 19. Ornamentation of the living animals of Aplysia inca. (A) Yellow dots in the anterior region of body between parapodia and rhinophores (white arrow) and in the posterior margin of parapodia (black arrow), LaBSIM 15.06-0026. (B) Yellow dots in the mantle surface (white arrow), LaBSIM 15.06-0028.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 18 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 18. Living animals of Aplysia inca. (A) Barranco, Lima (LaBSIM 15.06-0032). (B) Pucusana, Lima (LaBSIM 15.06- 0017). (C) Pucusana, Lima (LaBSIM 15.06-0029). (D) Huanchaco, La Libertad (LaBSIM 15.06-0034). (E) Chorrillos, Lima (LaBSIM 15.06-0028.5).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 16 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 16. Spiny warts of the penial sheath of Aplysia nigra. (A) Spiny warts of the penial sac. (B) Spiny warts of the penis.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 17 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 17. Nervous system of Aplysia nigra. (A) Dorsal view of the nervous system. (B) Ventral view of the same. (C) Bucal ganglia. (D) Pedal ganglia. (E) Cerebral ganglia. (F) Abdominal ganglia.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 15 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 15. Reproductive system of Aplysia nigra. (A) Retracted penis sheath. (B) Protracted penis sheath, Pucusana (LaBSIM 15.06-0030.4). (C) Penis sheath open, Pucusana (LaBSIM 15.06-0029.4). (D) penial sac. (E) Transverse section of penis. (F) Hermaphrodite reproductive system.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 13 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 13. Digestive system of Aplysia nigra. (A) Lateral view of the digestive system. (B) Digestive system open. (C) Intestine. (D) Oral cavity.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 12 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 12. Radula of Aplysia nigra. (A-B) Pucusana (LaBSIM 15.06-0029.5). (C) Pucusana (LaBSIM 15.06-0030.3). (D) Ancón (LabSIM 15.06-0023.2). (E) Chimbote (IMARPE). r, rachidian tooth; +1 to +30, lateral tooth.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 26 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 26. Jaws and dorsal folds of Aplysia inca. (A) Jaws. (B-C) Jaws elements, Ancón (LaBSIM 15.06-0027.1). (D) Jaws elements, Barranco (LaBSIM 15.06-0032.1). (E) Dorsal folds. (F) Surface of dorsal folds. (G) Palatal elements.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 10 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 10. Jaws and dorsal folds of Aplysia nigra. (A) Jaws. (B-C) Jaws elements, Ancón (LaBSIM 15.06-0027.4). (D) Jaws elements, Pucusana (LaBSIM 15.06-0029.5). (E) Dorsal folds. (F) Surface of dorsal folds. (G) Palatal elements.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 7 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 7. Ventral and dorsal view of the shell of Aplysia nigra. (A) Ancón (LaBSIM 15.06-0023.2). (B) Ancón (LaBSIM 15.06-0035). (C) Pucusana (LaBSIM 15.06-0029.4). (D) Pucusana (LaBSIM 15.06-0029.5). (E) Pucusana (LaBSIM 15.06-0030.3). (F) Chorrillos (LaBSIM 15.06-0033).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 3 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 3. Living animals of Aplysia nigra. (A-B) Pucusana, Lima (LaBSIM 15.06-0029.4-5). (C) Pucusana, Lima (LaBSIM 15.06-0030.4). (D) Ancón, Lima (LaBSIM 15.06-0035).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 5 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 5. Mantle foramen and Opaline gland of Aplysia nigra. (A-C) Ancón (LaBSIM 15.06-0027.4): A, mantle foramen; B, opaline gland opening; C, opaline gland. (D-F) Chimbote (IMARPE 04-001903): D, mantle foramen; E, opaline gland opening; F, opaline gland. All structures indicated by an arrow.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 1 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 1. Original illustrations of species of Aplysia described from Peru.(A) Aplysia lessonii (from Rang, 1828). (B) Aplysia inca (from d'Orbingy, 1837). (C) Aplysia nigra (from d'Orbingy, 1837). (D) Aplysia rangiana (from d'Orbingy, 1837). (E) Aplysia chierchiana (from Mazzarelli & Zuccardi, 1890).

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 4 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 4. External morphology of Aplysia nigra. (A) Dorsal view, with the parapodia set apart to show the mantle. (B) Lateral view. (C) Ventral view.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 11 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 11. Buccal mass and odontophore muscles of Aplysia nigra. (A) Dorsal view of the buccal mass. (B) Ventral view of the same. (C) Lateral view of the same. (D) Lateral view of the odontophore. (E) Posterior view of the same. (F) Ventral view of the same. (G) Frontal view of the same. (H) Odontophore open showing the odontophore cartilages.

opennotspecifiedDec 2022View details →
dryad32/100

Data from: Soft-surface grasping: radular opening in Aplysia californica

Open the record for dataset details and reuse information.

publicJul 2019View details →
dryad32/100

Organelle calcium-derived voltage oscillations in pacemaker neurons drive the motor program for food-seeking behavior in Aplysia

Open the record for dataset details and reuse information.

publicJul 2021View details →
dryad28/100

Data from: Ocean acidification affects acid-base physiology and behaviour in a model invertebrate, the California sea hare (Aplysia californica)

Behavioural impairment following exposure to ocean acidification-relevant CO2 levels has been noted in a broad array of taxa. The underlying cause of these disruptions is thought to stem from alterations of ion gradients (HCO3Cl) across neuronal cell membranes that occur as a consequence of maintaining pH homeostasis via the accumulation of HCO3Cl. While behavioural impacts are widely documented, few studies have measured acid-base parameters in species showing behavioural disruptions. In addition, current studies examining mechanisms lack resolution in targeting specific neural pathways corresponding to a given behaviour. With these considerations in mind, acid-base parameters and behaviour were measured in a model organism utilized for decades as a research model to study learning, the California sea hare (Aplysia californica). Aplysia exposed to CO2 elevated hemolymph HCO3Cl, achieving full and partial pH compensation at 1200 and 3000 μatm CO2, respectively. Increased CO2 did not affect self-righting behaviour. In contrast, both levels of elevated CO2 reduced the time of the tail-withdrawal reflex, suggesting a reduction in antipredator response. Overall, these results confirm that Aplysia are promising models to examine mechanisms underlying CO2-induced behavioural disruptions since they regulate HCO3-Cl- and have behaviours linked to neural networks amenable to electrophysiological testing.

opencc-zeroSep 2019View details →
zenodo28/100

FIGURE 22 in Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru

FIGURE 22. Anal siphon of Aplysia inca (LaBSIM 15.06-0038).

opennotspecifiedDec 2022View details →

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