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FIGURE 4. A–D. U. hirtella s.l., E–G. U. velascoensis, H. U. tridentata, I. U. tricolor, J. U. biceps, K. U. bicolor, L. U. chapadensis, M–N. U. pantaneira, O. U. trinervia. Images C. Rivadavia, D. Rohrbacher, E–G in Unveiling Utricularia amethystina's true colours: a taxonomic revision of one of the largest species complexes (U. sect. Foliosa, Lentibulariaceae)
FIGURE 4. A–D. U. hirtella s.l., E–G. U. velascoensis, H. U. tridentata, I. U. tricolor, J. U. biceps, K. U. bicolor, L. U. chapadensis, M–N. U. pantaneira, O. U. trinervia. Images C. Rivadavia, D. Rohrbacher, E–G. by Marcos Cardoso, J., K. Gonella.
FIGURE 20. A–G in Diagnose of the nominal subgenus of Edessa and description of the E. sexdens group (Heteroptera, Pentatomidae, Edessinae)
FIGURE 20. A–G. Edessa (E.) sexdens Fabricius, 1803: A–E, pygophore in dorsal, dorsolateral, ventral, posterior and posterolateral views, respectively; F, genital plates; G, metasternal process. Scale 1 mm.
FIGURE 14. A–G in Diagnose of the nominal subgenus of Edessa and description of the E. sexdens group (Heteroptera, Pentatomidae, Edessinae)
FIGURE 14. A–G. Edessa (E.) miniata Westwood, 1837: A–E, pygophore in dorsal, dorsolateral, ventral, posterior and posterolateral views, respectively; F, genital plates; G, metasternal process. Scale 1 mm.
FIGURE 3. Arrojadoa flava. A–E. Habit and environments. F. Flowers detail. G in Arrojadoa flava (Cactaceae, Cactoideae), a new yellow flowered species from the Brazilian flora
FIGURE 3. Arrojadoa flava. A–E. Habit and environments. F. Flowers detail. G. Flowers, immature and mature fruits. Photos by M.E.Engels from type population.
FIGURE 19. Rubus originalis. A. Primocane with leaves. B. Primocane. C. Primocane. D. Leaf abaxially. E. Floricane with inflorescences. F. Inflorescence. G. Pedicels. H in Rubi Capenses: a further contribution to the knowledge of the genus Rubus (Rosaceae) in South Africa
FIGURE 19. Rubus originalis. A. Primocane with leaves. B. Primocane. C. Primocane. D. Leaf abaxially. E. Floricane with inflorescences. F. Inflorescence. G. Pedicels. H. Flower. Photographs: A. van de Beek.
FIGURE 7. Rubus ecklonii. A. Holotype. B. Habit. C. Primocane with leaves. D. Primocane with leaves. E. Primocane. F. Leaf. G. Flowering branch. H. Leaf inflorescence. I. Inflorescence. J. Inflorescence. K. Inflorescence. L. Pedicels. M. Flowers. N in Rubi Capenses: a further contribution to the knowledge of the genus Rubus (Rosaceae) in South Africa
FIGURE 7. Rubus ecklonii. A. Holotype. B. Habit. C. Primocane with leaves. D. Primocane with leaves. E. Primocane. F. Leaf. G. Flowering branch. H. Leaf inflorescence. I. Inflorescence. J. Inflorescence. K. Inflorescence. L. Pedicels. M. Flowers. N. Fruits. Photographs: A. Helen Barnes (MEL); All others by A. van de Beek.
FIGURE 38. Orobanche grossheimii. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 38. Orobanche grossheimii. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M. Representative habitat (Samtskhe-Javakheti prov., Bakuriani distr., below Tskhratskaro pass). K–M. Host, Cephalaria gigantea. Photos by R. Piwowarczyk.
FIGURE 34. Orobanche alba. A–D. General habit. E–G. Flower, side view. H–I. Flower, front view. J–L in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 34. Orobanche alba. A–D. General habit. E–G. Flower, side view. H–I. Flower, front view. J–L. Representative hosts (J. Origanum vulgare. K. Thymus collinus. L. Salvia verticillata).
FIGURE 30. Orobanche caryophyllacea. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 30. Orobanche caryophyllacea. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K. Representative habitat (Tbilisi prov., Tbilisi, slopes near the Chronicle of Georgia). L. Representative host, Galium verum. Photos by R. Piwowarczyk.
F I G U R E 2 in The nutritional importance of invertebrates to female Cebus capucinus imitator in a highly seasonal tropical dry forest
F I G U R E 2 The seasonality of energy intake by capuchins from the four most important invertebrate orders: (a) Lepidoptera, (b) Orthoptera, (c) Hemiptera, and (d) Hymenoptera. Axes represent the number of focal follows for that month (from 120 randomly selected focal follows) during which consumption of that order was observed. The arrow represents the mean vector of the analysis, which is the midpoint of the seasonal effect. Consumption of invertebrates in all four orders was significantly seasonal (p <.001). Although data are presented to reflect a calendar year, data were collected in three separate periods between 2009 and 2011
FIGURE6. Telsimia pygmaea Poorani, sp. n.: a. head; b. antenna; c. maxilla; d. labium; e. abdomen, male; f. terminal ventrite, female; g–i. male genitalia: g. tegmen, inner view; h. penis, lateral view; i. penis, dorsal view; j. coxites in --A--brief--review--of--the--tribe--Telsimiini--(Coleoptera:--Coccinellidae)--of--the--Indian-subcontinent,--including--three--new--species--of--Telsimia Casey--from--South--India
FIGURE6. Telsimia pygmaea Poorani, sp. n.: a. head; b. antenna; c. maxilla; d. labium; e. abdomen, male; f. terminal ventrite, female; g–i. male genitalia: g. tegmen, inner view; h. penis, lateral view; i. penis, dorsal view; j. coxites
FIGURE1. Telsimia spp.: a, b. live adult; c. dorsal view; d. lateral view; e. frontal view; f. abdomen, female; g. coxites in --A--brief--review--of--the--tribe--Telsimiini--(Coleoptera:--Coccinellidae)--of--the--Indian-subcontinent,--including--three--new--species--of--Telsimia Casey--from--South--India
FIGURE1. Telsimia spp.: a, b. live adult; c. dorsal view; d. lateral view; e. frontal view; f. abdomen, female; g. coxites
FIGURE4. Telsimia flavomaculata Poorani: a. dorsal view; b. lateral view; c. frontal view; d. antenna; e. prosternal process; f. abdomen, male; g–i. male genitalia: g. tegmen, lateral view; h. tegmen, inner view; i. penis, inner view in --A--brief--review--of--the--tribe--Telsimiini--(Coleoptera:--Coccinellidae)--of--the--Indian-subcontinent,--including--three--new--species--of--Telsimia Casey--from--South--India
FIGURE4. Telsimia flavomaculata Poorani: a. dorsal view; b. lateral view; c. frontal view; d. antenna; e. prosternal process; f. abdomen, male; g–i. male genitalia: g. tegmen, lateral view; h. tegmen, inner view; i. penis, inner view
RNase G complementation of rne null mutation identifies functional interrelationships with RNase E
GEO Series GSE3123. Escherichia coli. 10 samples. Type: Expression profiling by array.
Data set from the article Massaccesi L, Galliera E, Galimberti D, Fenoglio C, Arcaro M, Goi G, Barassi A, Corsi Romanelli MM. Lag-time in Alzheimer's disease patients: a potential plasmatic oxidative stress marker associated with ApoE4 isoform. Immun Ageing. 2019 Apr 1;16:7. doi: 10.1186/s12979-019-0147-x. PMID: 30984280; PMCID: PMC6444862.
<p>Data set from the article: Massaccesi L, Galliera E, Galimberti D, Fenoglio C, Arcaro M, Goi G, Barassi A, Corsi Romanelli MM. Lag-time in Alzheimer's disease patients: a potential plasmatic oxidative stress marker associated with ApoE4 isoform. Immun Ageing. 2019 Apr 1;16:7. doi: 10.1186/s12979-019-0147-x. PMID: 30984280; PMCID: PMC6444862.</p> <p>This is the astract:</p> <p>In the brain, Oxidative Stress (OS) contribute to structural and functional changes associated with vascular aging, such as endothelial dysfunction, extracellular matrix degradation, resulting in age-related reduced vasodilatation in response to agonists. For this reason, OS is considered a key factor in Alzheimer's Disease (AD) development and recent evidence correlated oxidative stress with vascular lesion in the pathogenesis of AD, but the mechanism still need to be fully clarified. The etiology of AD is still not completely understood and is influenced by several factors including Apolipoprotein E (ApoE) genotype. In particular, the Apo ε4 isoform is considered a risk factor for AD development. This study was aimed to evaluate the possible relationship between three plasmatic OS marker and Apo ε4 carrier status. Plasmatic soluble receptor for advanced glycation end products (sRAGE) levels, plasma antioxidant total defenses (by lag-time method) and plasmatic Reactive Oxygen species (ROS) levels were evaluated in 25 AD patients and in 30 matched controls. ROS were significantly higher while plasma antioxidant total defenses and sRAGE levels were significantly lower in AD patients compared to controls. In AD patients lag-time values show a significant positive linear correlation with sRAGE levels and a (even not significant) negative correlation with ROS levels. Lag-time is significantly lower in ε4 carrier (<em>N</em> = 13) than in ε4 non-carrier (<em>N</em> = 12). Our result confirms the substantial OS in AD. Lag-time levels showed a significant positive correlation with sRAGE levels and a significant association with ε4 carrier status suggesting that plasmatic lag-time evaluation can be considered as a potential useful OS risk marker in AD.</p> <p> </p>
Data set from the article Malavazos AE, Capitanio G, Chessa M, Matelloni IA, Milani V, Stella E, Al Kassem LF, Sironi F, Boveri S, Giamberti A, Masocco M, Ranucci M, Menicanti L, Morricone L. Body mass index stratification in hospitalized Italian adults with congenital heart disease in relation to complexity, diagnosis, sex and age. Nutr Metab Cardiovasc Dis. 2019 Apr;29(4):367-377. doi: 10.1016/j.numecd.2019.01.009. Epub 2019 Jan 29. PMID: 30795994.
<p>The data set refers on the article Malavazos AE, Capitanio G, Chessa M, Matelloni IA, Milani V, Stella E, Al Kassem LF, Sironi F, Boveri S, Giamberti A, Masocco M, Ranucci M, Menicanti L, Morricone L. Body mass index stratification in hospitalized Italian adults with congenital heart disease in relation to complexity, diagnosis, sex and age. Nutr Metab Cardiovasc Dis. 2019 Apr;29(4):367-377. doi: 10.1016/j.numecd.2019.01.009. Epub 2019 Jan 29. PMID: 30795994.</p> <p>This is the abstract:</p> <p><strong>Background and aims: </strong>Adults with congenital heart disease (ACHD) are at risk of overweight and obesity, two major health problems, though underweight can be a negative prognostic factor too. Awareness of the body mass index (BMI) in ACHD is very limited. The present study describes the use and prevalence of BMI in Italian symptomatic hospitalized ACHD patients in relation to complexity by Bethesda system classification, diagnosis, sex and age.</p> <p><strong>Methods and results: </strong>We classified 1388 ACHD patients, aged 18-69 years, on the basis of their BMI, and compared them to the Italian reference population. In our total ACHD population we found a significantly higher prevalence of underweight compared to the Italian reference population (6.34% vs 3.20%). ACHD women were more underweight than men. Underweight decreased with age. Overweight was significantly less frequent in the total ACHD population (26.73% compared to 31.70%) in the Italian reference population. Men were more likely to be overweight than women. In statistical terms obesity was similar in the Italian reference population (10.50%) and our ACHD population (9.58%). Both overweight and obesity increased with age. Results were comparable using a diagnostic anatomical-functional classification and the Bethesda system classification.</p> <p><strong>Conclusions: </strong>In our cohort of ACHD the prevalence of underweight was double that of the Italian reference population. The prevalence of overweight was lower, while obesity was similar. Since BMI does not account for differences in body fat distribution, a future aim will be to quantify the visceral component of the adipose tissue in ACHD patients and examine their body composition in order to reflect their risk of acquired cardiovascular disease better, and either to maintain or achieve an adequate visceral component.</p>
Data set from the article Vianello E, Marrocco-Trischitta Massimiliano M, Dozio E, Bandera F, Tacchini L, Canciani E, Dellavia C, Schmitz G, Lorenzo M, Corsi Romanelli Massimiliano M. Correlational study on altered epicardial adipose tissue as a stratification risk factor for valve disease progression through IL-13 signaling. J Mol Cell Cardiol. 2019 Jul;132:210-218. doi: 10.1016/j.yjmcc.2019.05.012. Epub 2019 May 15. Erratum in: J Mol Cell Cardiol. 2019 Aug;133:112. PMID: 31102584.
<p>Data set from the article Vianello E, Marrocco-Trischitta Massimiliano M, Dozio E, Bandera F, Tacchini L, Canciani E, Dellavia C, Schmitz G, Lorenzo M, Corsi Romanelli Massimiliano M. Correlational study on altered epicardial adipose tissue as a stratification risk factor for valve disease progression through IL-13 signaling. J Mol Cell Cardiol. 2019 Jul;132:210-218. doi: 10.1016/j.yjmcc.2019.05.012. Epub 2019 May 15. Erratum in: J Mol Cell Cardiol. 2019 Aug;133:112. PMID: 31102584.</p> <p>This is the abstract:</p> <p><strong>Aims: </strong>Genetic and environmental factors all interact in the risk of progression of valvular dysfunctions. Previous studies reported a relation between valve diseases and epicardial adipose tissue (EAT) thickness. The aim of this study was to verify the possible relationship between the molecular pattern of EAT related to IL-13 fibrogenic cytokine expression and valve dysfunction.</p> <p><strong>Methods and results: </strong>A valvular heart disease (VHD) population was stratified according to their median EAT thickness (7 mm). The molecular expression of IL-13 in EAT is directly related to the molecular expression of genes associated with extracellular matrix (ECM) turnover, macrophage infiltration and promotion of the formation of ectopic calcific nodules involved in aorta coarctation and calcification.</p> <p><strong>Conclusion: </strong>IL-13 gene expression in altered EAT is directly related to the expression of genes involved in ECM turnover and the formation of ectopic calcific nodules, suggesting measurements of EAT as a stratification risk factor for valve instability in the VHD patients.</p> <p> </p>
Data set from the article Prinzivalli M, Sammarco G, Rampoldi B, Costa E, Corsi Romanelli MM. Comparison between specific and nonspecific assay in the evaluation of the anticoagulant effect of the Direct Oral Anticoagulants: Our experience in a cardiovascular hospital. Eur J Intern Med. 2019;60:e20‐e22. doi:10.1016/j.ejim.2018.10.005
<p>Data set from the article Prinzivalli M, Sammarco G, Rampoldi B, Costa E, Corsi Romanelli MM. Comparison between specific and nonspecific assay in the evaluation of the anticoagulant effect of the Direct Oral Anticoagulants: Our experience in a cardiovascular hospital. <em>Eur J Intern Med</em>. 2019;60:e20‐e22. doi:10.1016/j.ejim.2018.10.005</p>
Cancer-specific Survival of Uveal Melanoma Patients by Diagnosis Era (A, C, D, E) and Tumor Stage (B, F,G,H)
<p>Cancer-specific Survival of Uveal Melanoma Patients by Diagnosis Era (A, C, D, E) and Tumor Stage (B, F,G,H)</p>
Data set from the article Lévesque V, Laplante L, Shohoudi A, Apers S, Kovacs AH, Luyckx K, Thomet C, Budts W, Enomoto J, Sluman MA, Lu CW, Jackson JL, Cook SC, Chidambarathanu S, Alday L, Eriksen K, Dellborg M, Berghammer M, Johansson B, Mackie AS, Menahem S, Caruana M, Veldtman G, Soufi A, Fernandes SM, White K, Callus E, Kutty S, Brouillette J, Casteigt B, Moons P, Khairy P; APPROACH-IS Consortium and the International Society for Adult Congenital Heart Disease (ISACHD). Implantable cardioverter-defibrillators and patient-reported outcomes in adults with congenital heart disease: An international study. Heart Rhythm. 2020 May;17(5 Pt A):768-776. doi: 10.1016/j.hrthm.2019.11.026. Epub 2019 Nov 30. PMID: 31790832.
<p>Data set from the article Lévesque V, Laplante L, Shohoudi A, Apers S, Kovacs AH, Luyckx K, Thomet C, Budts W, Enomoto J, Sluman MA, Lu CW, Jackson JL, Cook SC, Chidambarathanu S, Alday L, Eriksen K, Dellborg M, Berghammer M, Johansson B, Mackie AS, Menahem S, Caruana M, Veldtman G, Soufi A, Fernandes SM, White K, Callus E, Kutty S, Brouillette J, Casteigt B, Moons P, Khairy P; APPROACH-IS Consortium and the International Society for Adult Congenital Heart Disease (ISACHD). Implantable cardioverter-defibrillators and patient-reported outcomes in adults with congenital heart disease: An international study. Heart Rhythm. 2020 May;17(5 Pt A):768-776. doi: 10.1016/j.hrthm.2019.11.026. Epub 2019 Nov 30. PMID: 31790832.</p> <p> </p> <p>This is the abstract:</p> <p><strong>Background: </strong>Implantable cardioverter-defibrillators (ICDs) are increasingly being used to prevent sudden death in the growing population of adults with congenital heart disease (CHD). However, little is known about their impact on patient-reported outcomes (PROs).</p> <p><strong>Objective: </strong>The purpose of this study was to assess and compare PROs in adults with CHD with and without ICDs.</p> <p><strong>Methods: </strong>A propensity-based matching weight analysis was conducted to evaluate PROs in an international cross-sectional study of adults with CHD from 15 countries across 5 continents.</p> <p><strong>Results: </strong>A total of 3188 patients were included: 107 with ICDs and 3081 weight-matched controls without ICDs. ICD recipients were an average age of 40.1 ± 12.4 years, and >95% had moderate or complex CHD. Defibrillators were implanted for primary and secondary prevention in 38.3% and 61.7%, respectively. Perceived health status, psychological distress, sense of coherence, and health behaviors did not differ significantly among patients with and without ICDs. However, ICD recipients had a more threatening view of their illness (relative % difference 8.56; P = .011). Those with secondary compared to primary prevention indications had a significantly lower quality-of-life score (Linear Analogue Scale 72.0 ± 23.1 vs 79.2 ± 13.0; P = .047). Marked geographic variations were observed. Overall sense of well-being, assessed by a summary score that combines various PROs, was significantly lower in ICD recipients (vs controls) from Switzerland, Argentina, Taiwan, and the United States.</p> <p><strong>Conclusion: </strong>In an international cohort of adults with CHD, ICDs were associated with a more threatening illness perception, with a lower quality of life in those with secondary compared to primary prevention indications. However, marked geographic variability in PROs was observed.</p> <p> </p>
ScienceDex guides
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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.