137,201 research outputs found
Sebastes ensifer Chen 1971
Sebastes ensifer Chen, 1971. Swordspine Rockfish. To 30.5 cm (12 in) TL (Miller and Lea 1972). Oregon (43°56’N) (NWFSC-FRAM) to Banco Ranger (28°25’N, 115°32’W), central Baja California (Chen 1971). Benthic; depth: 50–433 m (164–1,420 ft) (min.: M.L., unpubl. data; max.: Miller and Lea 1972).Published as part of Love, Milton S., Bizzarro, Joseph J., Cornthwaite, Maria, Frable, Benjamin W. & Maslenikov, Katherine P., 2021, Checklist of marine and estuarine fishes from the Alaska-Yukon Border, Beaufort Sea, to Cabo San Lucas, Mexico, pp. 1-285 in Zootaxa 5053 (1) on page 108, DOI: 10.11646/zootaxa.5053.1.1, http://zenodo.org/record/557800
Anisops rhomboides Nieser & Chen 1999
<i>Anisops rhomboides</i> Nieser & Chen, 1999 <p> <i>Anisops tahitiensis</i> (nec <i>A</i>. <i>tahitiensis</i> Lundblad, 1933, misidentifications): LANSBURY (1967: 97); NIESER & ZETTEL (1999: 123).</p> <p> <i>Anisops rhomboides</i> Nieser & Chen, 1999: 111; ZETTEL (2003: 126); CHEN et al. (2005: 422).</p> <p> <b>Material examined. BRUNEI: BELAIT DISTRICT:</b> Peat-swampy area draining to Sungai Ingei, 6.vi.2010, leg. D. J. W. Lane (15), 1 J (UBDB). <b>PHILIPPINES: LEYTE:</b> Leyte Province, Mahaplag, Hilusig River, 6.iii.2001, leg. F. E. Bendanillo, 1 J (USCP).</p> <p> <b>Distribution.</b> <i>Anisops rhomboides</i> is a West Malesian species so far recorded from Borneo, Sulawesi, and the Philippines (NIESER & CHEN 1999, CHEN et al. 2005). This species is the only notonectid species previously recorded from Brunei (from km 29.5 on Labi road [in Belait District], NIESER & CHEN 1999). Philippine records are only from the south: Mindanao (South Cotabato) (NIESER & CHEN 1999), Tawi Tawi (LANSBURY 1967, as <i>A</i>. <i>tahitiensis</i>), and Palawan (ZETTEL 2003). This first record from Leyte (Leyte Province) represents the species’ northernmost occurrence.</p>Published as part of <i>Zettel, Herbert, Lane, David J. W., Pangantihon, Clister V., Freitag, Hendrik & Be, Jalan Tungku Link, 2012, Notes on Notonectidae (Hemiptera: Heteroptera) from southeastern Asia, mostly from Brunei and the Philippines, pp. 29-48 in Acta Entomologica Musei Nationalis Pragae 52 (1)</i> on page 35, DOI: <a href="http://zenodo.org/record/5330381">10.5281/zenodo.5330381</a>
Early post-stress LV dyssynchrony: A new marker for significant CAD
[No abstract available]Aggarwal H, 2014, J NUCL CARDIOL, V21, P739, DOI 10.1007-s12350-014-9886-4; AlJaroudi W, 2012, J NUCL CARDIOL, V19, P958, DOI 10.1007-s12350-012-9592-z; AlJaroudi W, 2012, J NUCL CARDIOL, V19, P63, DOI 10.1007-s12350-011-9463-z; AlJaroudi W, 2011, J NUCL CARDIOL, V18, P36, DOI 10.1007-s12350-010-9296-1; AlJaroudi W, 2010, J NUCL CARDIOL, V17, P1058, DOI 10.1007-s12350-010-9271-x; AlJaroudi W, 2012, EUR J NUCL MED MOL I, V39, P665, DOI 10.1007-s00259-011-2025-4; AlJaroudi W, 2012, EUR J NUCL MED MOL I, V39, P1581, DOI 10.1007-s00259-012-2171-3; AlJaroudi WA, 2010, J NUCL CARDIOL, V17, P398, DOI 10.1007-s12350-009-9169-7; Berman DS, 2007, J NUCL CARDIOL, V14, P521, DOI 10.1016-j.nuclcard.2007.05.008; Chen CC, 2012, EUR J NUCL MED MOL I, V39, P1904, DOI 10.1007-s00259-012-2208-7; Chen J, 2005, J NUCL CARDIOL, V12, P687, DOI 10.1016-j.nuclcard.2005.06.088; Daou D, 2004, J NUCL CARDIOL, V11, P53, DOI 10.1016-j.nuclcard.2003.09.011; Emmett L, 2012, J NUCL CARDIOL, V19, P735, DOI 10.1007-s12350-012-9571-4; Goldberg AS, 2014, J NUCL CARDIOL, V21, P57, DOI 10.1007-s12350-013-9787-y; Henneman MM, 2007, J NUCL MED, V48, P1104, DOI 10.2967-jnumed.107.039925; Henneman MM, 2007, J AM COLL CARDIOL, V49, P1708, DOI 10.1016-j.jacc.2007.01.063; Huang W, 2014, J NUCL CARDIOL; Igarashi Y, 2013, CIRC J, V78, P141; Johnson LL, 1997, J AM COLL CARDIOL, V30, P1641, DOI 10.1016-S0735-1097(97)00388-4; Kakouros N, 2013, EUR RADIOL, V23, P958, DOI 10.1007-s00330-012-2670-4; Lin XH, 2010, J NUCL CARDIOL, V17, P811, DOI 10.1007-s12350-010-9238-y; Marsan NA, 2008, J AM SOC ECHOCARDIOG, V21, P801, DOI 10.1016-j.echo.2007.12.006; Naya M, 2014, J NUCL MED, V55, P248, DOI 10.2967-jnumed.113.121442; Salimian S, 2014, J NUCL CARDIOL, V21, P375, DOI 10.1007-s12350-013-9847-3; Trimble MA, 2008, NUCL MED COMMUN, V29, P374, DOI 10.1097-MNM.0b013e3282f81380; Van Tosh A, 2013, J NUCL CARDIOL, V20, P1060, DOI 10.1007-s12350-013-9784-1; Zhou Yanli, 2013, World J Nucl Med, V12, P3, DOI 10.4103-1450-1147.113931; Zhou YL, 2013, NUCL MED COMMUN, V34, P124, DOI 10.1097-MNM.0b013e32835c08c1; Zoghbi GJ, 2008, NUCL CARDIAC IMAGING0
Sebastes notius Chen 1971
Sebastes notius Chen, 1971. Guadalupe Rockfish or Southern Rockfish. To 21.9 cm (8.6 in) SL (Chen 1971). This species has been collected at two sites: Isla Guadalupe (Chen 1971), central Baja California and in the vicinity of Banco del Tio Sam (Uncle Sam Bank) (25°35’N), southern Baja California (Rocha-Olivares 1998). Benthic; depth: 165–250 m (541–820 ft) (Chen 1971).Published as part of Love, Milton S., Bizzarro, Joseph J., Cornthwaite, Maria, Frable, Benjamin W. & Maslenikov, Katherine P., 2021, Checklist of marine and estuarine fishes from the Alaska-Yukon Border, Beaufort Sea, to Cabo San Lucas, Mexico, pp. 1-285 in Zootaxa 5053 (1) on page 110, DOI: 10.11646/zootaxa.5053.1.1, http://zenodo.org/record/557800
Inhibition of IFN--mediated inducible nitric oxide synthase induction by the peroxisome proliferator-activated receptor agonist 15dPGJ2 involves inhibition of the upstream Janus kinase/STAT1 signaling pathway.
Sebastes simulator Chen 1971
Sebastes simulator Chen, 1971. Pinkrose Rockfish. Largest documented individual 34.5 cm (13.6 in) TL (Personal communication: Scripps Institution of Oceanography Fish Collection, La Jolla, California); one undocumented record at 42.1 cm (16.4 in) TL (León-Castro et al. 1993). Mattole Canyon State Marine Reserve, northern California (Lauermann et al. 2017) to Punta Colnett (30°53’N, 116°30’W), northern Baja California (M.L., unpubl. data) and Isla Guadalupe, central Baja California (León-Castro et al. 1993). Benthic; depth: 99–450 m (325–1,476 ft) (min.: Eschmeyer and Herald 1983; max.: Chen 1971).Published as part of Love, Milton S., Bizzarro, Joseph J., Cornthwaite, Maria, Frable, Benjamin W. & Maslenikov, Katherine P., 2021, Checklist of marine and estuarine fishes from the Alaska-Yukon Border, Beaufort Sea, to Cabo San Lucas, Mexico, pp. 1-285 in Zootaxa 5053 (1) on page 112, DOI: 10.11646/zootaxa.5053.1.1, http://zenodo.org/record/557800
Amiota (Amiota) magniflava Chen and Toda, 2001: 1547
Amiota (Amiota) magniflava Chen and Toda Amiota (Amiota) magniflava Chen and Toda, 2001: 1547. Specimen examined. Yunnan: 1 ", Mt Ailo, 22 June 2001, H. Watabe leg.; 3 ", Mt Wuliang, 2 July 2001, J.-J. Gao and L.-P. He leg. Distribution. China (Hubei, Yunnan). 8. Ungrouped species Amiota (Amiota) acuta Okada Amiota (Amiota) acuta Okada, 1968: 306; Chen and Toda, 2001: 1549. Specimen examined. Yunnan: 1 ", Mt Jizu, 19 August 2000, H.-W. Chen leg.; 14 " ?, Bamboo Temple, 15 July 2002, J.-J. Gao leg. Distribution. China (Yunnan), Japan (Honshu).Published as part of Chen, Hong-Wei, Watabe, Hide-Aki, Gao, Jian-Jun, Takamori, Hisaki, Zhang, Ya-Ping & Aotsuka, Tadashi, 2005, Species diversity of the subgenus Amiota (s. str.) Loew, 1862 (Diptera, Drosophilidae) in southern China, pp. 265-310 in Journal of Natural History 39 (3) on page 300, DOI: 10.1080/00222930310001657883, http://zenodo.org/record/465789
Constraints on the phase plane of the dark energy equation of state
AbstractClassification of dark energy models in the plane of w and w′, where w is the dark energy equation of state and w′ its time-derivative in units of the Hubble time, has been studied in the literature. We take the current SN Ia, CMB and BAO data, invoke a widely used parametrization of the dark energy equation of state, and obtain the constraints on the w–w′ plane. We find that several dark energy models including the cosmological constant, phantom, non-phantom barotropic fluids, and monotonic up-rolling quintessence are ruled out at the 68.3% confidence level based on the current observational data. On the other hand, down-rolling quintessence, including the thawing and the freezing models, is consistent with the current observations. All the above-mentioned models are still consistent with the data at the 95.4% confidence level
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