Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Sipman, Harrie J. M.
1999.
Progress in Botany.
Vol. 60,
Issue. ,
p.
438.
Tibell, Leif
and
Wedin, Mats
2000.
Mycocaliciales, a new order for nonlichenized calicioid fungi.
Mycologia,
Vol. 92,
Issue. 3,
p.
577.
Johansson, Per
and
Gustafsson, Lena
2001.
Red-listed and indicator lichens in woodland key habitats and production forests in Sweden.
Canadian Journal of Forest Research,
Vol. 31,
Issue. 9,
p.
1617.
Insarov, G.
and
Schroeter, B.
2002.
Monitoring with Lichens — Monitoring Lichens.
p.
183.
Will-Wolf, S.
Esseen, P.-A.
and
Neitlich, P.
2002.
Monitoring with Lichens — Monitoring Lichens.
p.
203.
Hauck, Markus
2003.
Epiphytic Lichen Diversity and Forest Dieback: The Role of Chemical Site Factors*.
The Bryologist,
Vol. 106,
Issue. 2,
p.
257.
Lidén, Marlene
and
Hilmo, Olga
2005.
Population Characteristics of the Suboceanic Lichen Platismatia norvegica in Core and Fringe Habitats: Relations to Macroclimate, Substrate, and Proximity to Streams.
The Bryologist,
Vol. 108,
Issue. 4,
p.
506.
GAUSLAA, Yngvar
2014.
Rain, dew, and humid air as drivers of morphology, function and spatial distribution in epiphytic lichens.
The Lichenologist,
Vol. 46,
Issue. 1,
p.
1.
Leuschner, Christoph
and
Ellenberg, Heinz
2017.
Ecology of Central European Forests.
p.
729.
Smirnova, O. V.
Bobrovsky, M. V.
Khanina, L. G.
Zaugolnova, L. B.
Korotkov, V. N.
Aleynikov, A. A.
Evstigneev, O. I.
Smirnov, V. E.
Smirnov, N. S.
and
Zaprudina, M. V.
2017.
European Russian Forests.
Vol. 15,
Issue. ,
p.
59.
Rikkinen, Jouko
and
Schmidt, Alexander R.
2018.
Transformative Paleobotany.
p.
527.
Dymytrova, Lyudmyla
Brändli, Urs-Beat
Ginzler, Christian
and
Scheidegger, Christoph
2018.
Forest history and epiphytic lichens: Testing indicators for assessing forest autochthony in Switzerland.
Ecological Indicators,
Vol. 84,
Issue. ,
p.
847.
GOWARD, Trevor
and
ARSENAULT, André
2018.
Calicioid diversity in humid inland British Columbia may increase into the 5th century after stand initiation.
The Lichenologist,
Vol. 50,
Issue. 5,
p.
555.
Rikkinen, Jouko
Meinke, S. Kristin L.
Grabenhorst, Heinrich
Gröhn, Carsten
Kobbert, Max
Wunderlich, Jörg
and
Schmidt, Alexander R.
2018.
Calicioid lichens and fungi in amber – Tracing extant lineages back to the Paleogene.
Geobios,
Vol. 51,
Issue. 5,
p.
469.
Malíček, Jiří
Palice, Zdeněk
Vondrák, Jan
Kostovčík, Martin
Lenzová, Veronika
and
Hofmeister, Jeňýk
2019.
Lichens in old-growth and managed mountain spruce forests in the Czech Republic: assessment of biodiversity, functional traits and bioindicators.
Biodiversity and Conservation,
Vol. 28,
Issue. 13,
p.
3497.
Li, Yunshi
Wu, Xiukun
Wang, Wanfu
Wang, Minghao
Zhao, Changming
Chen, Tuo
Liu, Guangxiu
Zhang, Wei
Li, Shiweng
Zhou, Huaizhe
Wu, Minghui
Yang, Ruiqi
and
Zhang, Gaosen
2019.
Microbial taxonomical composition in spruce phyllosphere, but not community functional structure, varies by geographical location.
PeerJ,
Vol. 7,
Issue. ,
p.
e7376.
Ansaldo, Diego
Vergara, Pablo M.
Carvajal, Mario A.
Alaniz, Alberto J.
Fierro, Andrés
ReinaldoVargas-Castillo
Quiroz, Madelaine
Moreira-Arce, Darío
and
Pizarro, Jaime
2021.
Tree decay modulates the functional response of lichen communities in Patagonian temperate forests.
Science of The Total Environment,
Vol. 771,
Issue. ,
p.
145360.
Hämäläinen, Aino
Ranius, Thomas
and
Strengbom, Joachim
2021.
Increasing the amount of dead wood by creation of high stumps has limited value for lichen diversity.
Journal of Environmental Management,
Vol. 280,
Issue. ,
p.
111646.
GARCÍA, RENATO A.
and
PALACIO, ALEJANDRO DEL
2021.
Peripampasic Arc: a route of dispersion for lichens.
Anais da Academia Brasileira de Ciências,
Vol. 93,
Issue. 3,
Łubek, Anna
Kukwa, Martin
Jaroszewicz, Bogdan
and
Czortek, Patryk
2021.
Composition and Specialization of the Lichen Functional Traits in a Primeval Forest—Does Ecosystem Organization Level Matter?.
Forests,
Vol. 12,
Issue. 4,
p.
485.