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Items: 1 to 50 of 73

1.

Avian UV vision enhances leaf surface contrasts in forest environments.

Tedore C, Nilsson DE.

Nat Commun. 2019 Jan 22;10(1):238. doi: 10.1038/s41467-018-08142-5.

2.

Orienting to polarized light at night - matching lunar skylight to performance in a nocturnal beetle.

Foster JJ, Kirwan JD, El Jundi B, Smolka J, Khaldy L, Baird E, Byrne MJ, Nilsson DE, Johnsen S, Dacke M.

J Exp Biol. 2019 Jan 28;222(Pt 2). pii: jeb188532. doi: 10.1242/jeb.188532.

PMID:
30530838
3.

Correction: Low-resolution vision in a velvet worm (Onychophora) (doi: 10.1242/jeb.175802).

Kirwan JD, Graf J, Smolka J, Mayer G, Henze MJ, Nilsson DE.

J Exp Biol. 2018 Jul 1;221(Pt 13). pii: jeb186551. doi: 10.1242/jeb.186551. No abstract available.

4.

Zebrafish Differentially Process Color across Visual Space to Match Natural Scenes.

Zimmermann MJY, Nevala NE, Yoshimatsu T, Osorio D, Nilsson DE, Berens P, Baden T.

Curr Biol. 2018 Jul 9;28(13):2018-2032.e5. doi: 10.1016/j.cub.2018.04.075. Epub 2018 Jun 21.

5.

The sea urchin Diadema africanum uses low resolution vision to find shelter and deter enemies.

Kirwan JD, Bok MJ, Smolka J, Foster JJ, Hernández JC, Nilsson DE.

J Exp Biol. 2018 Jul 16;221(Pt 14). pii: jeb176271. doi: 10.1242/jeb.176271.

6.

Low--resolution vision in a velvet worm (Onychophora).

Kirwan JD, Graf J, Smolka J, Mayer G, Henze MJ, Nilsson DE.

J Exp Biol. 2018 Jun 4;221(Pt 11). pii: jeb175802. doi: 10.1242/jeb.175802. Erratum in: J Exp Biol. 2018 Jul 1;221(Pt 13):.

7.

How animals follow the stars.

Foster JJ, Smolka J, Nilsson DE, Dacke M.

Proc Biol Sci. 2018 Jan 31;285(1871). pii: 20172322. doi: 10.1098/rspb.2017.2322. Review.

8.

Radiolar Eyes of Serpulid Worms (Annelida, Serpulidae): Structures, Function, and Phototransduction.

Bok MJ, Porter ML, Ten Hove HA, Smith R, Nilsson DE.

Biol Bull. 2017 Aug;233(1):39-57. doi: 10.1086/694735. Epub 2017 Oct 30.

PMID:
29182501
9.

Low-Resolution Vision-at the Hub of Eye Evolution.

Nilsson DE, Bok MJ.

Integr Comp Biol. 2017 Nov 1;57(5):1066-1070. doi: 10.1093/icb/icx120.

PMID:
28992101
10.

Evolution: An Irresistibly Clear View of Land.

Nilsson DE.

Curr Biol. 2017 Jul 24;27(14):R715-R717. doi: 10.1016/j.cub.2017.05.082.

11.

Phototransduction in fan worm radiolar eyes.

Bok MJ, Porter ML, Nilsson DE.

Curr Biol. 2017 Jul 24;27(14):R698-R699. doi: 10.1016/j.cub.2017.05.093.

12.

Stellar performance: mechanisms underlying Milky Way orientation in dung beetles.

Foster JJ, El Jundi B, Smolka J, Khaldy L, Nilsson DE, Byrne MJ, Dacke M.

Philos Trans R Soc Lond B Biol Sci. 2017 Apr 5;372(1717). pii: 20160079. doi: 10.1098/rstb.2016.0079.

13.

Fan worm eyes.

Bok MJ, Nilsson DE.

Curr Biol. 2016 Oct 24;26(20):R907-R908. doi: 10.1016/j.cub.2016.06.032.

14.

Here, There and Everywhere: The Radiolar Eyes of Fan Worms (Annelida, Sabellidae).

Bok MJ, Capa M, Nilsson DE.

Integr Comp Biol. 2016 Nov;56(5):784-795. Epub 2016 Jul 24. Review.

PMID:
27453305
15.

Photoreception in Phytoplankton.

Colley NJ, Nilsson DE.

Integr Comp Biol. 2016 Nov;56(5):764-775. Epub 2016 Jun 1.

16.

Comparative Vision: Can Bacteria Really See?

Nilsson DE, Colley NJ.

Curr Biol. 2016 May 9;26(9):R369-71. doi: 10.1016/j.cub.2016.03.025.

17.

Hunting in Bioluminescent Light: Vision in the Nocturnal Box Jellyfish Copula sivickisi.

Garm A, Bielecki J, Petie R, Nilsson DE.

Front Physiol. 2016 Mar 30;7:99. doi: 10.3389/fphys.2016.00099. eCollection 2016.

18.

The presence of lateral photophores correlates with increased speciation in deep-sea bioluminescent sharks.

Claes JM, Nilsson DE, Mallefet J, Straube N.

R Soc Open Sci. 2015 Jul 29;2(7):150219. doi: 10.1098/rsos.150219. eCollection 2015 Jul.

19.

Interpreting melanin-based coloration through deep time: a critical review.

Lindgren J, Moyer A, Schweitzer MH, Sjövall P, Uvdal P, Nilsson DE, Heimdal J, Engdahl A, Gren JA, Schultz BP, Kear BP.

Proc Biol Sci. 2015 Aug 22;282(1813):20150614. doi: 10.1098/rspb.2015.0614. Review.

20.

Iso-luminance counterillumination drove bioluminescent shark radiation.

Claes JM, Nilsson DE, Straube N, Collin SP, Mallefet J.

Sci Rep. 2014 Mar 10;4:4328. doi: 10.1038/srep04328.

21.

Visual navigation in starfish: first evidence for the use of vision and eyes in starfish.

Garm A, Nilsson DE.

Proc Biol Sci. 2014 Jan 8;281(1777):20133011. doi: 10.1098/rspb.2013.3011. Print 2014 Feb 22.

22.

Computational visual ecology in the pelagic realm.

Nilsson DE, Warrant E, Johnsen S.

Philos Trans R Soc Lond B Biol Sci. 2014 Jan 6;369(1636):20130038. doi: 10.1098/rstb.2013.0038. Print 2014.

23.

The giant eyes of giant squid are indeed unexpectedly large, but not if used for spotting sperm whales.

Nilsson DE, Warrant EJ, Johnsen S, Hanlon RT, Shashar N.

BMC Evol Biol. 2013 Sep 8;13:187. doi: 10.1186/1471-2148-13-187.

24.

Eye evolution and its functional basis.

Nilsson DE.

Vis Neurosci. 2013 Mar;30(1-2):5-20. doi: 10.1017/S0952523813000035.

25.

The W-shaped pupil in cuttlefish (Sepia officinalis): functions for improving horizontal vision.

Mäthger LM, Hanlon RT, Håkansson J, Nilsson DE.

Vision Res. 2013 May 3;83:19-24. doi: 10.1016/j.visres.2013.02.016. Epub 2013 Mar 5.

26.

A deepwater fish with 'lightsabers'--dorsal spine-associated luminescence in a counterilluminating lanternshark.

Claes JM, Dean MN, Nilsson DE, Hart NS, Mallefet J.

Sci Rep. 2013;3:1308. doi: 10.1038/srep01308.

27.

Velarium control and visual steering in box jellyfish.

Petie R, Garm A, Nilsson DE.

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2013 Apr;199(4):315-24. doi: 10.1007/s00359-013-0795-9. Epub 2013 Feb 16.

28.

Molecular preservation of the pigment melanin in fossil melanosomes.

Lindgren J, Uvdal P, Sjövall P, Nilsson DE, Engdahl A, Schultz BP, Thiel V.

Nat Commun. 2012 May 8;3:824. doi: 10.1038/ncomms1819.

PMID:
22569368
29.

Opposite patterns of diurnal activity in the box jellyfish Tripedalia cystophora and Copula sivickisi.

Garm A, Bielecki J, Petie R, Nilsson DE.

Biol Bull. 2012 Feb;222(1):35-45.

PMID:
22426630
30.

A unique advantage for giant eyes in giant squid.

Nilsson DE, Warrant EJ, Johnsen S, Hanlon R, Shashar N.

Curr Biol. 2012 Apr 24;22(8):683-8. doi: 10.1016/j.cub.2012.02.031. Epub 2012 Mar 15.

31.

Setting the pace: new insights into central pattern generator interactions in box jellyfish swimming.

Stöckl AL, Petie R, Nilsson DE.

PLoS One. 2011;6(11):e27201. doi: 10.1371/journal.pone.0027201. Epub 2011 Nov 2.

32.

Visual control of steering in the box jellyfish Tripedalia cystophora.

Petie R, Garm A, Nilsson DE.

J Exp Biol. 2011 Sep 1;214(Pt 17):2809-15. doi: 10.1242/jeb.057190.

33.

Box jellyfish use terrestrial visual cues for navigation.

Garm A, Oskarsson M, Nilsson DE.

Curr Biol. 2011 May 10;21(9):798-803. doi: 10.1016/j.cub.2011.03.054. Epub 2011 Apr 28.

34.

Visual pigment in the lens eyes of the box jellyfish Chiropsella bronzie.

O'Connor M, Garm A, Marshall JN, Hart NS, Ekström P, Skogh C, Nilsson DE.

Proc Biol Sci. 2010 Jun 22;277(1689):1843-8. doi: 10.1098/rspb.2009.2248. Epub 2010 Feb 10.

35.

Temporal properties of the lens eyes of the box jellyfish Tripedalia cystophora.

O'Connor M, Nilsson DE, Garm A.

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2010 Mar;196(3):213-20. doi: 10.1007/s00359-010-0506-8. Epub 2010 Feb 4.

36.

Predoctoral implant education: the Creighton experience at 20 years.

Wilcox CW, Sheets JL, Nilsson DE.

J Prosthodont. 2010 Feb;19(2):144-9. doi: 10.1111/j.1532-849X.2009.00548.x. Epub 2009 Dec 21.

PMID:
20040033
37.

The evolution of eyes and visually guided behaviour.

Nilsson DE.

Philos Trans R Soc Lond B Biol Sci. 2009 Oct 12;364(1531):2833-47. doi: 10.1098/rstb.2009.0083. Review.

38.

Structure and optics of the eyes of the box jellyfish Chiropsella bronzie.

O'Connor M, Garm A, Nilsson DE.

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2009 Jun;195(6):557-69. doi: 10.1007/s00359-009-0431-x. Epub 2009 Apr 5.

PMID:
19347342
39.

Eye evolution: the blurry beginning.

Nilsson DE, Arendt D.

Curr Biol. 2008 Dec 9;18(23):R1096-8. doi: 10.1016/j.cub.2008.10.025.

40.

Immunohistochemical evidence for multiple photosystems in box jellyfish.

Ekström P, Garm A, Pålsson J, Vihtelic TS, Nilsson DE.

Cell Tissue Res. 2008 Jul;333(1):115-24. doi: 10.1007/s00441-008-0614-8. Epub 2008 May 27.

PMID:
18504619
41.

Unique structure and optics of the lesser eyes of the box jellyfish Tripedalia cystophora.

Garm A, Andersson F, Nilsson DE.

Vision Res. 2008 Mar;48(8):1061-73. doi: 10.1016/j.visres.2008.01.019. Epub 2008 Mar 4.

42.

Vision in the nocturnal wandering spider Leucorchestris arenicola (Araneae: Sparassidae).

Nørgaard T, Nilsson DE, Henschel JR, Garm A, Wehner R.

J Exp Biol. 2008 Mar;211(Pt 5):816-23. doi: 10.1242/jeb.010546.

43.

A functional analysis of compound eye evolution.

Nilsson DE, Kelber A.

Arthropod Struct Dev. 2007 Dec;36(4):373-85. Epub 2007 Aug 10.

PMID:
18089116
44.

Visually guided obstacle avoidance in the box jellyfish Tripedalia cystophora and Chiropsella bronzie.

Garm A, O'Connor M, Parkefelt L, Nilsson DE.

J Exp Biol. 2007 Oct;210(Pt 20):3616-23.

45.

A stranger in his own home.

Schwab IR, Nilsson DE.

Br J Ophthalmol. 2007 Jun;91(6):709. No abstract available.

46.

The lens eyes of the box jellyfish Tripedalia cystophora and Chiropsalmus sp. are slow and color-blind.

Garm A, Coates MM, Gad R, Seymour J, Nilsson DE.

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 May;193(5):547-57. Epub 2007 Feb 16.

PMID:
17541674
47.

The ring nerve of the box jellyfish Tripedalia cystophora.

Garm A, Poussart Y, Parkefelt L, Ekström P, Nilsson DE.

Cell Tissue Res. 2007 Jul;329(1):147-57. Epub 2007 Mar 6.

PMID:
17340150
48.

Low-vision device.

Schwab IR, Nilsson DE.

Br J Ophthalmol. 2007 Jan;91(1):7. No abstract available.

49.

The spectral sensitivity of the lens eyes of a box jellyfish, Tripedalia cystophora (Conant).

Coates MM, Garm A, Theobald JC, Thompson SH, Nilsson DE.

J Exp Biol. 2006 Oct;209(Pt 19):3758-65.

50.

Bilaterally symmetrical rhopalial nervous system of the box jellyfish Tripedalia cystophora.

Skogh C, Garm A, Nilsson DE, Ekström P.

J Morphol. 2006 Dec;267(12):1391-405.

PMID:
16874799

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