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686 results for “Lima”
Actual and potential drug interactions of psychotropic drugs in patients of the covid-19 medicine service of the Hospital de Emergencia-Lima,2021
<p><strong>Background:</strong> Actual and potential drug-drug interactions of psychotropic drugs in patients of the COVID-19 Medicine Service of the Villa El Salvador Emergency Hospital during the months of February to July 2021.</p> <p><strong>Methods:</strong> The study is deductive, retroprospective, quantitative, applied, cross-sectional observational. The instrument used was a collection card for 86 pharmacotherapeutic follow-ups where psychotropic drugs for anxiety, depression and insomnia were registered.</p> <p><strong>Results:</strong> In the actual and potential drug interactions of psychotropic drugs, according to the degree of severity dimension, it was identified that the important indicator represented the highest frequency of 89% of the interactions; according to the type of interaction dimension, it was identified that the pharmacodynamic indicator presented a higher frequency with 53%; according to the clinical evidence dimension, it was identified that the fair indicator had a higher frequency with 73% interactions; in the manifestation dimension, it was identified that the potential indicator presented a higher frequency with 92.2% interactions. In its moment of appearance dimension, it was identified that the quick indicator had a higher prevalence with 5.5% of real interactions. In its causality algorithm dimension, the probable indicator was identified as having the highest frequency with 7.25% of actual interactions. With respect to sex, the male presented 49.9% of potential interactions and in the real interactions, the female sex presented a higher incidence with 4.3% interactions. The average age of the potential interactions was 48.83 years, and the average age of the real interactions was 45.67 years. Sertraline presented 53.2% of potential interactions and in relation to real drug interactions the one that presented the highest frequency was mirtazapine with 3.5% interactions.</p>
Figure 4 in New distribution record, host plant and notes on natural history of Tomoplagia rudolphi (Lutz & Lima, 1918) (Diptera: Tephritidae)
Figure 4. Scanning electron micrographs and photos of the larval of Tomoplagia rudolphi. (A) caudal segment; (B) posterior spiracle (tapered shape indicated by black arrow); (C) posterior spiracle, detail of the three respiratory openings; (D) anal opening; (E) pupa, frontal view; (F) pupa, posterior view; (G) cephalopharyngeal skeleton, lateral view; (H) anterior spiracle, lateral view; (I) posterior spiracle, dorsal view. Abbreviations: a spr = anterior spiracle; as = anterior sclerite; at = apical tooth; da = dorsal apodeme; db = dorsal bridge; dc = dorsal cornu; ds = dental sclerite; hb = hypopharyngeal bridge; hs = hypopharyngeal sclerite; md = mandible; prap th = preapical tooth; ps = pharyngeal sclerite; p spr = posterior spiracle; rm = rima; spr h = spiracular hairs; va = ventral apodeme; vc = ventral cornu.
Figure 3 in New distribution record, host plant and notes on natural history of Tomoplagia rudolphi (Lutz & Lima, 1918) (Diptera: Tephritidae)
Figure 3. Scanning electron micrographs of larvae of Tomoplagia rudolphi. (A) habitus, lateral; (B) mouthhooks (preoral teeth indicated by white arrow); (C) head, ventral view (oral ridges indicated by black arrow); (D) antenna and maxillary palpus; (E) anterior spiracle, lateral view; (F) anterior spiracle, dorsal view (slitlike opening indicated by yellow arrow); (G) rows of spinules on anterior margin of each segment; (H) detail of the conical spinules. Abbreviations: A1 = A7 = abdominal segments; ant = antenna; K1, K2 = knob sensilla; lab = labium; mxp = maxillary palpus; P1 = P5 = papila sensilla; prap th = preapical tooth of mouthhook; pror th = preoral teeth; spn = spinules; T1, T2, T3 = pro-, meso-, and metathorax.
Figure 2 in New distribution record, host plant and notes on natural history of Tomoplagia rudolphi (Lutz & Lima, 1918) (Diptera: Tephritidae)
Figure 2. Biological aspects of Tomoplagia rudolphi. (A) gall; (B) larvae within of gall and damage; (C) indication in the mature galls of the future holes of fly exit; (D) pupae inside of the gall; (E) adult freshly-emerged; (F) old and dry galls with exit holes from adult insects; (G, H) larval feeding residues and old puparium.
Fig. 17 in Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning
Fig. 17. Anterior (A) and posterior (B) views of the Tribodus endocast with otic labyrinth removed,
Fig. 27 in Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning
Fig. 27. SEM of Tribodus limae cephalic spine, AMNH 13959. Scale bar is 1 mm.
Fig. 11 in Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning
Fig. 11. Ventral view of the Tribodus braincase, anterior at top (surface rendering). No scale.
Fig. 5 in Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning
Fig. 5. Tribodus limae, UERJ-PMB-114. A, dorsal; B, ventral views. Scale bar is 2 cm.
Fig. 4 in Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning
Fig. 4. Tribodus limae, UERJ-PMB-40. A, dorsal; B, ventral views. Scale bar is 2 cm.
The Impact of Digital Platforms on Micro and Small Enterprises (MYPES) in Lima, Peru
<p><strong>Background:</strong> Since the emergence of the internet, the world has become increasingly interconnected and digitized. Digital platforms have emerged as a transformative force that redefines the economy and commerce at large. MYPES in Peru face various challenges and new landscapes characterized by the growing influence of these platforms on their operations and growth opportunities. Therefore, this research aims to examine how digital platforms have provided MYPES with the opportunity to maintain a market presence and understand the challenges MYPES face when using such platforms.</p> <p><strong>Method:</strong> Descriptive study with a quantitative and non-experimental approach. The population consisted of a total of 39,630 companies from the Gamarra Commercial Emporium, and the sample comprised 385 MYPES engaged in clothing sales from the same study location. Infinite population assumptions were used for sample calculation. A survey was administered.</p> <p><strong>Results:</strong> Social media platforms such as Facebook, Instagram, Telegram, WhatsApp, and TikTok were the main platforms used by the studied MYPES (67.5%). 12.8% indicated having an online store, 18.9% had some form of webpage or web platform, and only 0.4% used mobile applications.</p> <p><strong>Conclusion:</strong> In conclusion, most of MYPES have adopted social media as their primary digital platform and recognize its significance in the growth and survival of their businesses.</p>
LIMA Protocol Towards Palatal Fistula and Maxillary Growth in Cleft Palate
ClinicalTrials.gov study NCT07137169. IPD Sharing: NO. Countries: 1. Publications: 9.
Mâncio Lima malaria cohort study 2018–2021: Prevalence surveys
Open the record for dataset details and reuse information.
FIGURES 1–4. Thraulodes sternimaculatus, nymph. 1 in Description of the nymph of Thraulodes sternimaculatus Lima, Mariano & Pinheiro, 2013 (Leptophlebiidae: Ephemeroptera) from Northeastern Region of Brazil
FIGURES 1–4. Thraulodes sternimaculatus, nymph. 1, dorsal view; 2, lateral view; 3, detail of abdominal sterna; 4, gill IV. (scale: Figs. 1–2 = 2 mm. Fig. 3 = 1 mm. Fig. 4 = 0.5mm).
Data from: Patient characteristics associated with tuberculosis treatment default: a cohort study in a high-incidence area of Lima, Peru
Background: Although tuberculosis (TB) is usually curable with antibiotics, poor adherence to medication can lead to increased transmission, drug resistance, and death. Prior research has shown several factors to be associated with poor adherence, but this problem remains a substantial barrier to global TB control. We studied patients in a high-incidence district of Lima, Peru to identify factors associated with premature termination of treatment (treatment default). Methods: We conducted a prospective cohort study of adult smear-positive TB patients enrolled between January 2010 and December 2011 with no history of TB disease. Descriptive statistics and multivariable logistic regression analyses were performed to determine risk factors associated with treatment default. Results: Of the 1233 patients studied, 127 (10%) defaulted from treatment. Patients who defaulted were more likely to have used illegal drugs (OR = 4.78, 95% CI: 3.05-7.49), have multidrug-resistant TB (OR = 3.04, 95% CI: 1.58-5.85), not have been tested for HIV (OR = 2.30, 95% CI: 1.50-3.54), drink alcohol at least weekly (OR = 2.22, 95% CI: 1.40-3.52), be underweight (OR = 2.08, 95% CI: 1.21-3.56), or not have completed secondary education (OR = 1.55, 95% CI: 1.03-2.33). Conclusions: Our study identified several factors associated with defaulting from treatment, suggesting a complex set of causes that might lead to default. Addressing these factors individually would be difficult, but they might help to identify certain high-risk patients for supplemental intervention prior to treatment interruption. Treatment adherence remains a barrier to successful TB care and reducing the frequency of default is important for both the patients' health and the health of the community.
FIGURES 19–20 in Synonymizing Microtomus sticheli Costa Lima, 1935 under M. tibialis Stichel, 1926 and redescription of the species (Heteroptera: Reduviidae)
FIGURES 19–20. Scanning electron micrographs of Microtomus tibialis male abdominal segments. 19. Ventral patch of setae (X 35). 20. Detail of setae insertion (X 200).
FIGURES 1–10. Apiomerus bosqi, 1, general aspect. 2, head. 3 in Redescription of Apiomerus bosqi Costa Lima, Campos Seabra & Hathaway 1952 (Heteroptera: Reduviidae: Harpactorinae: Apiomerini), and new distributional records for this genus in temperate South America
FIGURES 1–10. Apiomerus bosqi, 1, general aspect. 2, head. 3, male genitalia (general view). 4, pygophore (posterior view). 5, parameres. 6, phallus. 7, female genitalia (general). 8, gonocoxite VIII and gonapophysis. 9, gonocoxite IX. 10, Tergites IX + X.
FIGURES 12–15 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 12–15. Aedeagus of Plaumanniola sanctaecatharinae Costa Lima (12–13) and Plaumanniola regina sp. n. (14–15) in ventral (12, 14) and lateral (13, 15) views.
FIGURES 4–5 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 4–5. Heads of paratype males in dorsal view. Plaumanniola sanctaecatharinae Costa Lima (4) and Plaumanniola regina sp. n. (5).
FIGURES 1–3 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 1–3. Plaumanniola sanctaecatharinae Costa Lima, dorsal habitus of paratype male (1) and its original set of labels (2); Plaumanniola regina sp. n., dorsal habitus of paratype male (3).
FIGURES 8–11 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 8–11. Male paratype of Plaumanniola regina sp. n. Head in ventral view (8); prothorax in ventral view (9); pterothorax and abdomen in ventral view (10); and general view of venter (11). Abbreviations: aest2, mesanepisternum; aest3, metanepisternum; ai, asetose impression; ar, anterior ridge; bst, basistipes; cd, cardo; el, elytron; epm3, metepimeron; fo, foramen occipitale; gal, galea; gen, gena; gp, gular plate; hr, hypostomal ridge; hy, hypomeron; hyr, hypomeral ridge; lac, lacinia; lhph, lateral lobe of hypopharynx; lp, labial palp; mcp, mesocoxal projection; md, mandible; mn, mentum; mscc, mesocoxal cavity; mscs, mesocoxal socket; msff, mesofurcal fovea; mst, mesostipes; msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; mxp, maxillary palp; nr, neck region; nss, pronotosternal suture; pcc, procoxal cavity; pcs, procoxal socket; ppf, palpifer; pre, prepectus; pst, prosternum; ptp, posterior tentorial pit; smn, submentum; st3-8, abdominal sternites; tg, tibial groove; v3, metaventrite.
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