Fig. 21. Fissurisepta kilimanjaro Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376583), GeoB 26132-1, H = 2.6 mm, L = 4.5 mm, W = 3.5 mm. A. Side view. B. Apertural view. C. Apic…
Fig. 21. Fissurisepta kilimanjaro Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376583), GeoB 26132-1, H = 2.6 mm, L = 4.5 mm, W = 3.5 mm. A. Side view. B. Apertural view. C. Apical view. D–H. Paratype (SMF 376620), same location, H = 2.2 mm, L = 3.3 mm, W = 2.6 mm. D. Side view. E. Side view (SEM). F. Apical view. G. Adapical sculpture. H. Abapical sculpture near margin.
Fig. 20. Puncturella alternata Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376580), GeoB26132-1, H = 6.5 mm, L = 12.0 mm, W = 7.7 mm. A. Side view. B. Apical view. C. Apertural …
Fig. 20. Puncturella alternata Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376580), GeoB26132-1, H = 6.5 mm, L = 12.0 mm, W = 7.7 mm. A. Side view. B. Apical view. C. Apertural view. D–F. Paratype (SMF 376581), same location as for the holotype, H = 5.2 mm, L = 10.2 mm, W = 7.1 mm. D. Side view. E. Apical view. F. Apertural view. G–I. Paratype (SMF 376582), GeoB26137-1, H = 5.7 mm, L = 11.0 mm, W = 6.7 mm. G. Side view. H. Apical view. I. Apertural view. J–M. Paratype (SMF 376621) with large scar, GeoB26132-1, H = 4.5 mm, L = 7.8 mm, W = 5.3 mm (SEM). J. Side view. K. Apical view. L. Sculpture near margin. M. Protoconch apical view. Diameter 280 µm.
Fig. 19. Puncturella mrembo Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376577), GeoB26132-1, H = 6.0 mm, L = 10.3 mm, W = 7.2 mm. A. Side view. B. Apical view. C. Apertural vie…
Fig. 19. Puncturella mrembo Hoffman sp. nov., Tanzania, Mtwara Mud Volcano. A–C. Holotype (SMF 376577), GeoB26132-1, H = 6.0 mm, L = 10.3 mm, W = 7.2 mm. A. Side view. B. Apical view. C. Apertural view. D–K. Paratypes (SMF 376578), GeoB26137-1. D–F. Paratype, H = 3.5 mm, L = 6.0 mm, W = 4.1 mm. D. Side view. E. Apical view. F. Apertural view. G–H. Paratype, H = 2.1 mm, L = 4.5 mm, W = 3.0 mm. G. Side view. H. Apical view. I–K. Paratype, H = 2.0 mm, L = 4.0 mm, W = 2.6 mm. I. Side view. J. Apical view. K. Apertural view. L–N. Paratype (SMF 376622), GeoB26132-1, H = 2.6 mm, L = 5.0 mm, W = 3.3 mm. L. Side view. M. Apical view. N. Protoconch, apical view, W = 200 µm.
Fig. 18. Paralepetopsis sahani Hoffman sp. nov., Tanzania, Mtwara Mud Volcano, SO306 / GeoB26137-1. A–F. Paratype (SMF 376619), H = 3 mm, L = 7 mm, W = 5 mm. A. Side view. B. Apertural view. C. Apical…
Fig. 18. Paralepetopsis sahani Hoffman sp. nov., Tanzania, Mtwara Mud Volcano, SO306 / GeoB26137-1. A–F. Paratype (SMF 376619), H = 3 mm, L = 7 mm, W = 5 mm. A. Side view. B. Apertural view. C. Apical view. D. Apical view (SEM), sculpture near margin. E. Side view (SEM). F. Sculpture near margin (SEM). G–H. Holotype (SMF 376575), H = 5 mm, L = 16 mm, W = 13 mm. G. Side view. H. Apical view. I–K. Paratype (SMF 376576), H = 3 mm, L = 8 mm, W = 6 mm. I. Side view. J. Apical view. K. Apertural view.
Fig. 17. Heatmap of inter- and intraspecific genetic distance percentages of Bathyacmaea Okutani, Tsuchida & Fujikura, 1992 in COI (K2P: lower; p-distance: upper).
Fig. 16. Maximum-likelihood phylogenetic tree of Bathyacmaea Okutani, Tsuchida & Fujikura, 1992 based on COI sequences of selected species of Pectinodontidae Pilsbry, 1891 and with Paralepetopsis …
Fig. 16. Maximum-likelihood phylogenetic tree of Bathyacmaea Okutani, Tsuchida & Fujikura, 1992 based on COI sequences of selected species of Pectinodontidae Pilsbry, 1891 and with Paralepetopsis McLean, 1990 as outgroup. The GenBank accession numbers are added following species names. Bathyacmaea nipponica Okutani, Tsuchida & Fujikura, 1992 clade highlighted in dark yellow. Numbers at branches indicate ultrafast bootstrap support. The scale bar shows substitutions per site. Coloured circles indicate the locality: EP = East Pacific; SWI = Southwest Indian Ocean; WP = West Pacific. Habitat vents are represented by triangle, seeps by squares, both vent and seeps by triangle inside a square.
Fig. 15. Bathyacmaea nipponica Okutani, Tsuchida & Fujikura, 1992, shell dimensions of live-collected specimens and empty shells, SO306 / GeoB26152-1, off Tanzania. Shell length versus width indic…
Fig. 15. Bathyacmaea nipponica Okutani, Tsuchida & Fujikura, 1992, shell dimensions of live-collected specimens and empty shells, SO306 / GeoB26152-1, off Tanzania. Shell length versus width indicated with red line and symbols; length versus height in green. Note that specimens with length less than 10 mm are poorly sampled. Number of individuals: 147 (120 live-collected specimens and 27 empty shells).
Fig. 14. Bathyacmaea nipponica Okutani, Tsuchida & Fujikura, 1992 on Gigantidas tanzaniensis Hoffman, Westbeek & Kihara sp. nov., Tanzania, Mtwara Mud Volcano, SO306. A–D. GeoB26152-1 (SMF 376573). A–B. L = 5.0 mm, W = 3.4 mm, H = 1.8 mm. A. Apical view. B. Side view. C–D. Same locality, L= 4.5 mm, W = 3.0 mm. C. Apical view. D. Apertural view with animal inside. E. ROV image, GeoB26136-1 ROV, 885 m depth, live Bathyacmaea nipponica (red arrows) and Provanna castanea Hoffman & Kihara sp. nov. (green arrow) on Gigantidas tanzaniensis.
The first 1,000 days constitute a sensitive window for neurodevelopment, bonding, growth, nutrition, sleep regulation, and lifelong health. This study proposes MAMOR as a neuroethical informational ma…
The first 1,000 days constitute a sensitive window for neurodevelopment, bonding, growth, nutrition, sleep regulation, and lifelong health. This study proposes MAMOR as a neuroethical informational matrix designed to organize maternal, fetal, neonatal, infant, family, and territorial data through a longitudinal, non-diagnostic, and human-centered approach. Grounded in Information Science, neurodevelopment, responsive care, neuroethics, user experience, and public policy, MAMOR aims to transform fragmented signals into contextualized, traceable, and ethically governed information. Its purpose is not to automate diagnosis, but to support developmental surveillance, family guidance, continuity of care, and responsible human decision-making.Conference abstract published in the proceedings of TOI2026 — XII Congresso Internacional em Tecnologia e Organização da Informação. ISSN 2965-4130.Original publication in Doity
First 1,000 daysNeurodevelopmentInformation ScienceNeuroethicsResponsive care
There is an increasing interest in upgrading the EModel, a parametric tool for speech quality estimation, to the wideband and super-wideband contexts. The
Contemporary models of Unmanned Aerial Vehicles (UAVs) are largely developed using simulators. In a typical scheme, a flight simulator is dovetailed with a
Undertaking engineering research can be compounding for beginning graduate students and thwarting even for seasoned researchers. With a wealth of academic
To provide the best experiences, we use technologies like cookies to store and/or access device information. Consenting to these technologies will allow us to process data such as browsing behavior or unique IDs on this site. Not consenting or withdrawing consent, may adversely affect certain features and functions.
Functional
Always active
The technical storage or access is strictly necessary for the legitimate purpose of enabling the use of a specific service explicitly requested by the subscriber or user, or for the sole purpose of carrying out the transmission of a communication over an electronic communications network.
Preferences
The technical storage or access is necessary for the legitimate purpose of storing preferences that are not requested by the subscriber or user.
Statistics
The technical storage or access that is used exclusively for statistical purposes.The technical storage or access that is used exclusively for anonymous statistical purposes. Without a subpoena, voluntary compliance on the part of your Internet Service Provider, or additional records from a third party, information stored or retrieved for this purpose alone cannot usually be used to identify you.
Marketing
The technical storage or access is required to create user profiles to send advertising, or to track the user on a website or across several websites for similar marketing purposes.