Skip to content
Descubridor Institucional UMAR
Inicio
Búsqueda avanzada
Explorar
Inicio
Búsqueda avanzada
Explorar
Login
Language
English
Deutsch
Español
Français
Italiano
All Fields
Title
Author
Subject
Call Number
ISBN/ISSN
Tag
Find
Advanced
(Table S2) Reference pollen dataset of 798 modern surface spectra
(Table S2) Reference pollen dataset of 798 modern surface spectra
Fuente:
PANGAEA
Saved in:
Bibliographic Details
Main Authors:
Tarasov, Pavel E
,
Nakagawa, Takeshi
,
Demske, Dieter
,
Österle, Hermann
,
Igarashi, Yaeko
,
Kitagawa, Junko
,
Mokhova, Lyudmila M
,
Bazarova, Valentina B
,
Okuda, Masaaki
,
Gotanda, Katsuya
,
Miyoshi, Norio
,
Fujiki, Toshiyuki
,
Takemura, Keiji
,
Yonenobu, Hitoshi
,
Fleck, Andreas
Format:
Dataset Open Access
Language:
en
Published:
PANGAEA
2011
Subjects:
Abies; Acer; Aesculus; Alnus; AMUR1; AMUR10; AMUR11; AMUR12; AMUR13; AMUR14; AMUR15; AMUR16; AMUR17; AMUR18; AMUR19; AMUR2; AMUR20; AMUR21; AMUR22; AMUR23; AMUR24; AMUR25; AMUR26; AMUR27; AMUR28; AMUR29; AMUR3; AMUR31; AMUR32; AMUR33; AMUR34; AMUR35; AMUR36; AMUR37; AMUR38; AMUR39; AMUR4; AMUR40; AMUR43; AMUR44; AMUR45; AMUR46; AMUR47; AMUR48; AMUR49; AMUR5; AMUR50; AMUR51; AMUR52; AMUR53; AMUR54; AMUR55; AMUR56; AMUR57; AMUR6; AMUR7; AMUR8; AMUR9; Betula; Camellia; Carpinus; Castanopsis; China; Corylus; Counting, palynology; Cryptomeria; DEPTH, sediment/rock; Elevation of event; Ericaceae; Event label; Fagus; Fraxinus; Hand corer; HCOR; HOKK_02; HOKK_05; HOKK_07; HOKK_08; HOKK_10; HOKK_11; HOKK_14; Ilex; Japan; Jss-001; Jss-002; Jss-003; Jss-004; Jss-005; Jss-006; Jss-007; Jss-008; Jss-009; Jss-010; Jss-011; Jss-012; Jss-013; Jss-014; Jss-015; Jss-016; Jss-017; Jss-018; Jss-019; Jss-020; Jss-021; Jss-022; Jss-023; Jss-024; Jss-025; Jss-026; Jss-027; Jss-028; Jss-029; Jss-030; Jss-031; Jss-032; Jss-033; Jss-034; Jss-035; Jss-036; Jss-037; Jss-038; Jss-039; Jss-040; Jss-041; Jss-042; Jss-043; Jss-044; Jss-045; Jss-046; Jss-047; Jss-048; Jss-049; Jss-050; Jss-051; Jss-052; Jss-053; Jss-054; Jss-055; Jss-056; Jss-057; Jss-058; Jss-059; Jss-060; Jss-061; Jss-062; Jss-063; Jss-064; Jss-065; Jss-066; Jss-067; Jss-068; Jss-069; Jss-070; Jss-071; Jss-072; Jss-073; Jss-074; Jss-075; Jss-076; Jss-077; Jss-078; Jss-079; Jss-080; Jss-081; Jss-082; Jss-083; Jss-084; Jss-085; Jss-086; Jss-087; Jss-088; Jss-089; Jss-090; Jss-091; Jss-092; Jss-093; Jss-094; Jss-095; Jss-096; Jss-097; Jss-098; Jss-099; Jss-100; Jss-101; Jss-102; Jss-103; Jss-104; Jss-105; Jss-106; Jss-107; Jss-108; Jss-109; Jss-110; Jss-111; Jss-112; Jss-113; Jss-114; Jss-115; Jss-116; Jss-117; Jss-118; Jss-119; Jss-120; Jss-121; Jss-122; Jss-123; Jss-124; Jss-125; Jss-126; Jss-127; Jss-128; Jss-129; Jss-130; Jss-131; Jss-132; Jss-133; Jss-134; Jss-135; Jss-136; Jss-137; Jss-138; Jss-139; Jss-140; Jss-141; Jss-142; Jss-143; Jss-144; Jss-145; Jss-146; Jss-147; Jss-148; Jss-149; Jss-150; Jss-151; Jss-152; Jss-153; Jss-154; Jss-155; Jss-156; Jss-157; Jss-158; Jss-159; Jss-160; Jss-161; Jss-162; Jss-163; Jss-164; Jss-165; Jss-166; Jss-167; Jss-168; Jss-169; Jss-170; Jss-171; Jss-172; Jss-173; Jss-174; Jss-175; Jss-176; Jss-177; Jss-178; Jss-179; Jss-180; Jss-181; Jss-182; Jss-183; Jss-184; Jss-185; Jss-186; Jss-187; Jss-188; Jss-189; Jss-190; Jss-191; Jss-192; Jss-193; Jss-194; Jss-195; Jss-196; Jss-197; Jss-198; Jss-199; Jss-200; Jss-201; Jss-202; Jss-203; Jss-204; Jss-205; Jss-206; Jss-207; Jss-208; Jss-209; Jss-210; Jss-211; Jss-212; Jss-213; Jss-214; Jss-215; Jss-216; Jss-217; Jss-218; Jss-219; Jss-220; Jss-221; Jss-222; Jss-223; Jss-224; Jss-225; Jss-226; Jss-227; Jss-228; Jss-229; Jss-230; Jss-231; Jss-232; Jss-233; Jss-234; Jss-235; Jss-236; Jss-237; Jss-238; Jss-239; Jss-240; Jss-241; Jss-242; Jss-243; Jss-244; Jss-245; Jss-246; Jss-247; Jss-248; Jss-249; Jss-250; Jss-251; Jss-252; Jss-253; Jss-254; Jss-255; Jss-256; Jss-257; Jss-258; Jss-259; Jss-260; Jss-261; Jss-262; Jss-263; Jss-264; Jss-265; Jss-266; Jss-267; Jss-268; Jss-269; Jss-270; Jss-271; Jss-272; Jss-273; Jss-274; Jss-275; Jss-276; Jss-277; Jss-278; Jss-279; Jss-280; Jss-281; Jss-282; Jss-283; Jss-284; Jss-285; Juglans; Jun-286; Jun-287; Jun-288; Jun-289; Jun-290; Jun-291; Jun-292; Jun-293; Jun-294; Jun-295; Jun-296; Jun-297; Jun-298; Jun-299; Jun-300; Jun-301; Jun-302; Jun-303; Jun-304; Jun-305; Jun-306; Jun-307; Jun-308; Jun-310; Jun-311; Jun-312; Jun-313; Jun-314; Jun-315; Jun-316; Jun-317; Jun-318; Jun-319; Jun-320; Jun-321; Jun-322; Jun-323; Jun-324; Jun-325; Jun-326; Jun-327; Jun-328; KUNASH1; KUNASH2; KUNASH3; KUNASH4; KUNASH5; KUNASH6; KUNASH7; KUNASH8; Larix; Latitude of event; Longitude of event; MOKH1; MOKH10; MOKH100; MOKH101; MOKH102; MOKH103; MOKH104; MOKH105; MOKH106; MOKH107; MOKH108; MOKH109; MOKH11; MOKH110; MOKH111; MOKH112; MOKH113; MOKH114; MOKH115; MOKH116; MOKH117; MOKH118; MOKH119; MOKH12; MOKH120; MOKH121; MOKH122; MOKH123; MOKH124; MOKH125; MOKH126; MOKH127; MOKH128; MOKH129; MOKH13; MOKH130; MOKH131; MOKH133; MOKH134; MOKH135; MOKH136; MOKH137; MOKH138; MOKH139; MOKH14; MOKH140; MOKH141; MOKH142; MOKH143; MOKH144; MOKH145; MOKH146; MOKH147; MOKH148; MOKH149; MOKH15; MOKH150; MOKH151; MOKH152; MOKH153; MOKH154; MOKH155; MOKH156; MOKH157; MOKH158; MOKH159; MOKH16; MOKH160; MOKH161; MOKH162; MOKH163; MOKH164; MOKH165; MOKH166; MOKH167; MOKH168; MOKH169; MOKH17; MOKH170; MOKH171; MOKH172; MOKH173; MOKH174; MOKH175; MOKH176; MOKH177; MOKH178; MOKH18; MOKH180; MOKH181; MOKH182; MOKH183; MOKH184; MOKH185; MOKH186; MOKH187; MOKH188; MOKH189; MOKH19; MOKH194; MOKH195; MOKH196; MOKH197; MOKH199; MOKH2; MOKH200; MOKH202; MOKH204; MOKH206; MOKH207; MOKH208; MOKH209; MOKH21; MOKH210; MOKH211; MOKH212; MOKH213; MOKH214; MOKH215; MOKH216; MOKH217; MOKH218; MOKH219; MOKH22; MOKH220; MOKH221; MOKH223; MOKH224; MOKH225; MOKH226; MOKH227; MOKH228; MOKH23; MOKH231; MOKH233; MOKH234; MOKH237; MOKH238; MOKH239; MOKH24; MOKH240; MOKH241; MOKH242; MOKH25; MOKH26; MOKH27; MOKH28; MOKH29; MOKH3; MOKH30; MOKH31; MOKH32; MOKH33; MOKH34; MOKH35; MOKH36; MOKH38; MOKH39; MOKH40; MOKH41; MOKH42; MOKH43; MOKH44; MOKH45; MOKH46; MOKH47; MOKH48; MOKH49; MOKH50; MOKH51; MOKH53; MOKH54; MOKH55; MOKH56; MOKH59; MOKH6; MOKH60; MOKH61; MOKH62; MOKH63; MOKH64; MOKH65; MOKH66; MOKH67; MOKH68; MOKH69; MOKH7; MOKH71; MOKH72; MOKH73; MOKH75; MOKH76; MOKH77; MOKH78; MOKH79; MOKH8; MOKH80; MOKH81; MOKH82; MOKH83; MOKH84; MOKH85; MOKH86; MOKH87; MOKH88; MOKH89; MOKH9; MOKH91; MOKH92; MOKH93; MOKH94; MOKH95; MOKH96; MOKH97; MOKH98; MOKH99; Myrica; Oku-013; Oku-014; Oku-015; Oku-016; Oku-017; Oku-018; Oku-019; Oku-020; Oku-021; Oku-022; Oku-023; Oku-024; Oku-025; Oku-026; Oku-027; Oku-028; Oku-029; Oku-030; Oku-031; Oku-035; Oku-036; Oku-037; Oku-038; Oku-039; Oku-040; Oku-041; Oku-042; Oku-043; Oku-044; Oku-045; Oku-046; Oku-047; Oku-048; Oku-051; Oku-052; Oku-053; Oku-054; Oku-055; Oku-056; Oku-057; Oku-058; Oku-059; Oku-060; Oku-061; Oku-062; Oku-063; Oku-064; Oku-065; Oku-066; Oku-067; Oku-068; Oku-069; Oku-070; Oku-071; Oku-072; Oku-073; Oku-074; Oku-075; Oku-076; Oku-077; Oku-078; Oku-079; Oku-080; Oku-081; Oku-082; Oku-083; Oku-084; Oku-085; Oku-086; Oku-087; Oku-088; Oku-089; Oku-090; Oku-091; Oku-092; Oku-093; Oku-094; Oku-095; Oku-096; Oku-097; Oku-098; Oku-099; Oku-100; Oku-101; Oku-102; Oku-103; Oku-105; Oku-106; Oku-107; Oku-108; Oku-109; Oku-110; Oku-111; Oku-112; Pav_1; Pav_10; Pav_11; Pav_12; Pav_13a; Pav_13b; Pav_14; Pav_15; Pav_16; Pav_17; Pav_18; Pav_19; Pav_2; Pav_20; Pav_21; Pav_22; Pav_23; Pav_24; Pav_25; Pav_3a; Pav_3b; Pav_3c; Pav_3d; Pav_4a; Pav_4b; Pav_4c; Pav_5; Pav_6; Pav_7; Pav_8; Pav_9; Pav_H12-1; Pav_H13-1; Pav_H13-2; Pav_H13-2(2); Pav_H13-3; Pav_H14-1; Pav_H14-2; Pav_H17-1; Pav_H17-2; Pav_H19-1; Pav_H19-2; Pav_H19-3; Pav_H19-4; Pav_H19-4bis; Pav_H19-5; Pav_H19-6; Pav_H20-1; Pav_H20-2; Pav_H20-3; Pav_H20-4; Pav_H20-5; Pav_H20-6; Picea; Pinus; Podocarpus; Quercus, deciduous; Quercus evergreen; Reference/source; Rhododendron; Rhus; Russia; SAKH_01; SAKH_03; SAKH_04; SAKH_06; SAKH_08; SAKH_10; SAKH_11; SAKH_13; SAKH_15; SAKH_17; SAKH_19; SAKH_21; SAKH_23; SAKH_25; SAKH_26; SAKH_28; SAKH_29; SAKH_31; SAKH_33; SAKH_35; SAKH_36; SAKH_37; SAKH_39; SAKH_40; SAKH_41; SAKH_43; SAKH_45; SAKH_47; SAKH_49; SAKH_51; SAKH_53; SAKH_54; SAKH_55; SAKH_57; SAKH_58; SAKH_59; SAKH_61; SAKH_62; SAKH_63; Salix; Sciadopitys; Symplocos; Taxodiaceae; Tilia; Tsuga; Ulmus; Viburnum
Online Access:
Acceder al recurso
Tags:
Add Tag
No Tags, Be the first to tag this record!
Cite this
Text this
Email this
Print
Export Record
Export to RefWorks
Export to EndNoteWeb
Export to EndNote
Save to List
Permanent link
Holdings
Description
Comments
Similar Items
Staff View
Similar Items
(Table S1) Modern climate variables of 798 modern surface pollen sampling sites
by: Tarasov, Pavel E, et al.
Published: (2011)
(Table S3) Modern climate variables at the modern surface pollen sites reconstructed using modern-analogue technique and reference pollen-climate dataset
by: Tarasov, Pavel E, et al.
Published: (2011)
(Table S1) Modern climate variables of 326 modern surface pollen sampling sites from northern Japan
by: Leipe, Christian, et al.
Published: (2013)
(Table S2) Reference pollen dataset of 326 modern surface spectra from northern Japan
by: Leipe, Christian, et al.
Published: (2013)
Geochemistry of tertiary-quaternary lavas of Mt. Oku Northwest Cameroon
by: Njilah Konfor
Published: (2007)
La mirada hacia el sol naciente: vínculos entre las estéticas de Juan García Ponce y Jun'ichirō Tanizaki
by: David Issai Saldaña Moncada
Published: (2022)
Abundance and biomass of mesozooplankton collected from 1987-1991 allong the romanian littoral
by: Petranu, Adriana, et al.
Published: (2015)
Major elements, trace elements and Sr-Nd-Pb isotopes form lavas of lakes Nyos, Wum, Elum and Oku sampled in the Oku Volcanic Group of the Cameroon Volcanic Line
by: Asaah, Asobo N E, et al.
Published: (2017)
Abundance and biomass of mesozooplankton collected from 1984-1986 allong the romanian littoral
by: Petranu, Adriana, et al.
Published: (2015)
《山海经》神权空间认知新范式——第7篇:二元神权论的两极范式:帝俊日月体系的隐神统摄与三星堆神权的显神反噬——基于《山海经》文本与考古遗存的互证研究
by: Chen, Shuang
Published: (2026)
Abundance and biomass of mesozooplankton from the Romanian littoral during DANUBS_2000 in spring and autumn 2000
by: Moldoveanu, Mariana
Published: (2015)
Abundance and biomass of mesozooplankton in the western Black sea during Steaua de Mare cruise in 1982 and 1983
by: Petranu, Adriana, et al.
Published: (2015)
Abundance and biomass of zooplankton from the Romanian littoral collected in April, June and September 1999
by: Petranu, Adriana, et al.
Published: (2015)
Abundance and biomass of zooplankton collected from 1996 to 1998 collected allong the Romanian littoral
by: Petranu, Adriana, et al.
Published: (2015)
Abundance and biomass of mesozooplankton from the Romanian littoral during DANUBS_2001 in spring and autumn 2001
by: Moldoveanu, Mariana
Published: (2015)
Intersex Figures in Modern Japanese Literature and Art
by: Winston, Leslie
Published: (2025)
Time series of physical oceanography and carbon dioxide measurements at mooring site WHOTS_158W_23N_Jun20
by: Sabine, Christopher L
Published: (2014)
Time series of physical oceanography and carbon dioxide measurements at mooring site Papa_145W_50N_Jun200
by: Sabine, Christopher L
Published: (2014)
Time series of physical oceanography and carbon dioxide measurements at mooring site 316420070626-1
by: Sutton, Adrienne, et al.
Published: (2016)
Time series of physical oceanography and carbon dioxide measurements at mooring site 316420070626-2
by: Sutton, Adrienne, et al.
Published: (2016)
Time series of physical oceanography and carbon dioxide measurements at mooring site 316420070608
by: Sutton, Adrienne, et al.
Published: (2016)
Time series of physical oceanography and carbon dioxide measurements at mooring site PAPA_145W_50N cruise 316420140618
by: Sutton, Adrienne, et al.
Published: (2018)
Baseline year round and sex resolved morphometrics of banded-dye murex, Hexaplex trunculus in the southeastern Adriatic Sea
by: Grđan, Sanja
Published: (2026)
Time series of physical oceanography and carbon dioxide measurements at mooring site 316420100616
by: Sutton, Adrienne, et al.
Published: (2016)
Oceanographic conditions in the Coquimbo upwelling system during the year 2023
by: Aguilera, Victor M, et al.
Published: (2025)
Zooplankton measurements in the Coquimbo upwelling system during the year 2023
by: Aguilera, Victor M, et al.
Published: (2025)
Biological conditions in the Coquimbo upwelling system during the year 2023
by: Aguilera, Victor M, et al.
Published: (2025)
Data accounting and error counting
by: Gajda, Michał J.
Published: (2023)
Abundance and biomass of zooplankton collected monthly from January 1980 to december 1980 in front of Constanta city, Black Sea
by: Petranu, Adriana
Published: (2015)
Abundance and biomass of zooplankton collected monthly from January 1979 to december 1979 in front of Constanta city, Black Sea
by: Petranu, Adriana
Published: (2015)
Designing Trustful Cooperation Ecosystems is Key to the New Space Exploration Era
by: Baima, Renan Lima, et al.
Published: (2024)
Time series of physical oceanography and carbon dioxide measurements at mooring site 316420110610
by: Sutton, Adrienne, et al.
Published: (2016)
Time series of physical oceanography and carbon dioxide measurements at mooring site TAO_170W_0N_Aug2008_J
by: Sabine, Christopher L
Published: (2014)
Time series of physical oceanography and carbon dioxide measurements at mooring site TAO_170W_0N_Jun2009_D
by: Sabine, Christopher L
Published: (2014)
Trustful Coopetitive Infrastructures for the New Space Exploration Era
by: Baima, Renan Lima, et al.
Published: (2024)
Abundance and biomass of zooplankton collected monthly from January 1978 to december 1978 in front of Constanta city, Black Sea
by: Petranu, Adriana
Published: (2015)
Abundance and biomass of zooplankton collected monthly from January 1977 to december 1977 in front of Constanta city, Black Sea
by: Petranu, Adriana
Published: (2015)
N3-O≡MoS5, G = -2653.370053 => Triplet G = -2653.343570
by: Rzepa, Henry
Published: (2026)
Digital Twin sensors in cultural heritage applications
by: Niccolucci, Franco, et al.
Published: (2024)
SPARTA: Scalable and Principled Benchmark of Tree-Structured Multi-hop QA over Text and Tables
by: Park, Sungho, et al.
Published: (2026)
Prev
Next
Similar Items
(Table S1) Modern climate variables of 798 modern surface pollen sampling sites
by: Tarasov, Pavel E, et al.
Published: (2011)
(Table S3) Modern climate variables at the modern surface pollen sites reconstructed using modern-analogue technique and reference pollen-climate dataset
by: Tarasov, Pavel E, et al.
Published: (2011)
(Table S1) Modern climate variables of 326 modern surface pollen sampling sites from northern Japan
by: Leipe, Christian, et al.
Published: (2013)
(Table S2) Reference pollen dataset of 326 modern surface spectra from northern Japan
by: Leipe, Christian, et al.
Published: (2013)
Geochemistry of tertiary-quaternary lavas of Mt. Oku Northwest Cameroon
by: Njilah Konfor
Published: (2007)