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Jatmiko

Biographic Data

ID2950286
NAMEJatmiko
FAMILY NAMEJatmiko
SIGNATUREJATMIKO
AFFILIATIONSPusat Penelitian Arkeologi Nasional
ORCID0000-0002-2593-2395
VERIFIEDYes
TOTAL WORKS32
TOTAL CITATIONS593
AUTHOR COUNT32
EDITOR COUNT0
FIRST PUBLICATION YEAR2005
LATEST PUBLICATION YEAR2026
H-INDEX12
  • Rapid minimally invasive subsurface archaeological site prospection on Roti Island, Indonesia

    Open Access•Kasih Norman, Kelsey Lowe et al.•ARTICLE•Quaternary International•2026

  • Further insight into the shape variability of handaxes from Indonesia

    Open Access•Mohammad Ruly Fauzi, Jatmiko et al.•ARTICLE•Archaeological Research in Asia•2025•References: 25

  • A new method for quantifying flake scar organisation on cores using orientation statistics

    Open Access•C Lin, C Clarkson et al.•ARTICLE•Journal of Archaeological Science•2024•Cited by: 5•References: 60

    In stone artefact studies, researchers often rely on qualitative classifications to describe flake scar arrangements on cores. While this approach provides a broad overview of core reduction patterns, its application can be ambiguous due to the three-dimensional complexities of core geometry and the subjective nature of qualitative classifications, making it challenging to objectively compare flake scar patterning across different analytical sett…

  • Prey body size generates bias for human and avian agents: Cautions for interpreting small game assemblages

    Open Access•Elizabeth G Veatch, I Made Agus Julianto et al.•ARTICLE•Journal of Archaeological Science•2023•Cited by: 1•References: 72

  • Homo floresiensis

    M W Tocheri, Matthew Tocheri et al.•CHAPTER•Oxford Handbook of Early…•2022

    Homo floresiensis—the holotype of which stood ~106 cm tall, weighed ~27.5 kg, and had a brain ~426 cm3—is the taxonomic name given to hominin remains discovered in Late Pleistocene deposits at Liang Bua, a limestone cave on the Indonesian island of Flores. This species, and the skeletal and cultural remains attributed to it, has been the source of considerable scientific and public interest as well as intense debate since its discovery was first …

  • Characterising the stone artefact raw materials at Liang Bua, Indonesia

    Open Access•C Lin, Lloyd T White et al.•ARTICLE•Journal of Paleolithic Archaeology•2022•Cited by: 1•References: 39

    At Liang Bua, the type site of Homo floresiensis on the Indonesian island of Flores, the stone artefact assemblages are dominated by two raw materials, qualitatively classified as chert and silicified tuff in previous studies. Field observations describe both stone types as locally abundant and of good flaking quality, but no systematic analysis has yet been carried out to characterise their nature. In this study, we conducted the first geologica…

  • Song Gede: Situs Gua Hunian Sejak Masa Pleistosen Akhir di Pulau Nusa Penida, Bali

    Open Access•Ati Rati Hidayah, I Dewa Kompiang Gede et al.•ARTICLE•PURBAWIDYA Jurnal Penelitian dan…•2021

    Prehistoric archaeological research in Indonesia recently showed the existence of dwelling caves from the late Pleistocene, starting from Sumatra, Java, Sulawesi to East Nusa Tenggara. The Song Gede site is one of the dwelling caves from the late Pleistocene which was very interesting to be discused, especially when tracing the distribution of early modern humans in Southeast Asia. The location of the Song Gede site is considered to have a very s…

  • Using niche construction theory to generate testable foraging hypotheses at Liang Bua

    Open Access•Elizabeth G Veatch, Erik J Ringen et al.•ARTICLE•Evolutionary Anthropology Issues…•2021

    Niche construction theory (NCT) has emerged as a promising theoretical tool for interpreting zooarchaeological material. However, its juxtaposition against more established frameworks like optimal foraging theory (OFT) has raised important criticism around the testability of NCT for interpreting hominin foraging behavior. Here, we present an optimization foraging model with NCT features designed to consider the destructive realities of the archae…

  • Use-polished stone flakes from Liang Bua, Indonesia: Implications for plant processing and fibrecraft in the Late Pleistocene

    Open Access•Elspeth Hayes, Richard Fullagar et al.•ARTICLE•Journal of Archaeological Science…•2021•Cited by: 9•References: 19

    Edge-glossed flakes, usually recognised as stone tools with macroscopically visible polish from use, have been documented in parts of Southeast Asia from contexts spanning the past 12,000 years and possibly more than 30,000 years. It has been proposed that the edges of these flakes were polished by cutting, splitting or otherwise processing siliceous and fibrous plants for matting, basketry and bindings, and possibly by the reaping of cereals suc…

  • Mitogenomics of macaques (Macaca) across Wallace's Line in the context of modern human dispersals

    Open Access•Ben J Evans, Marie-Theres Gansauge et al.•ARTICLE•Journal of Human Evolution•2020•Cited by: 1•References: 74

    Wallace's Line demarcates a biogeographical boundary between the Indomalaya and Australasian ecoregions. Most placental mammalian genera, for example, occur to the west of this line, whereas most marsupial genera occur to the east. However, macaque monkeys are unusual because they naturally occur on both western and eastern sides. To further explore this anomalous distribution, we analyzed 222 mitochondrial genomes from ∼20 macaque species, inclu…

  • Temporal shifts in the distribution of murine rodent body size classes at Liang Bua (Flores, Indonesia) reveal new insights into the paleoecology of Homo floresiensis and associated fauna

    Open Access•Elizabeth G Veatch, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 9•References: 55

    Liang Bua, the type locality of Homo floresiensis, is a limestone cave located in the western part of the Indonesian island of Flores. The relatively continuous stratigraphic sequence of the site spans the past ∼190 kyr and contains ∼275,000 taxonomically identifiable vertebrate skeletal elements, ∼80% of which belong to murine rodent taxa (i.e., rats). Six described genera are present at Liang Bua (Papagomys, Spelaeomys, Hooijeromys, Komodomys, …

  • Incorporating terpenes, monoterpenoids and alkanes into multiresidue organic biomarker analysis of archaeological stone artefacts from Liang Bua (Flores, Indonesia)

    Open Access•Susan Luong, M W Tocheri et al.•ARTICLE•Journal of Archaeological Science…•2018•Cited by: 1•References: 11

    A sensitive and selective gas chromatography-tandem mass spectrometry (GC–MS/MS) method for the detection and quantification of terpenes, monoterpenoids and alkanes was developed and validated, to complement an existing analytical workflow set up for organic biomarker analysis of stone artefacts. This method was applied to seven stone artefacts—six of which contained potential use-residues based on a previous study using non-volatile low molecula…

  • The spatio-temporal distribution of archaeological and faunal finds at Liang Bua (Flores, Indonesia) in light of the revised chronology for Homo floresiensis

    Open Access•T Sutikna, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2018•Cited by: 37•References: 66

    Liang Bua, the type site of Homo floresiensis, is a limestone cave on the Indonesian island of Flores with sedimentary deposits currently known to range in age from about 190 thousand years (ka) ago to the present. Recent revision of the stratigraphy and chronology of this depositional sequence suggests that skeletal remains of H. floresiensis are between ∼100 and 60 ka old, while cultural evidence of this taxon occurs until ∼50 ka ago. Here we e…

  • Revised stratigraphy and chronology for Homo floresiensis at Liang Bua in Indonesia

    Open Access•T Sutikna, M W Tocheri et al.•ARTICLE•Nature•2016

  • Initial micromorphological results from Liang Bua, Flores (Indonesia): Site formation processes and hominin activities at the type locality of Homo floresiensis

    Open Access•Mike W Morley, Paul Goldberg et al.•ARTICLE•Journal of Archaeological Science•2016•Cited by: 38•References: 35

  • Descriptions of the dental remains of Homo floresiensis

    Open Access•Yousuke Kaifu, Reiko T Kono et al.•ARTICLE•Anthropological Science•2015•Cited by: 17•References: 56

    Dental remains of Homo floresiensis excavated during 2002–2004 at Liang Bua, Flores, Indonesia, consist of one partial maxillary dentition, two nearly complete mandibular dentitions, and four isolated teeth. We present here morphological descriptions of all these specimens and report aspects of their dentition, occlusion, and oral health condition. This dental assemblage represents probably five but possibly four or six individuals. These differe…

  • New wrist bones of Homo floresiensis from Liang Bua (Flores, Indonesia)

    Open Access•C M Orr, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2013•Cited by: 25•References: 89

  • Craniofacial morphology of Homo floresiensis: Description, taxonomic affinities, and evolutionary implication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 39•References: 102

  • A Reply to Trueman’s “A new cladistic analysis of Homo floresiensis.”

    Open Access•Debbie Argue, Mike Morwood et al.•ARTICLE•Journal of Human Evolution•2010•Cited by: 2•References: 3

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1: A reply to Eckhardt and Henneberg

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Cited by: 5•References: 7

  • Preface: Research at Liang Bua, Flores, Indonesia

    Open Access•M J Morwood, T Sutikna et al.•ARTICLE•Journal of Human Evolution•2009

  • Brief communication: “Pathological” deformation in the skull of LB1, the type specimen of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 10•References: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • The type specimen (LB1) of Homo floresiensis did not have Laron Syndrome

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 8•References: 55

    The type specimen (LB1) of Homo floresiensis has been hypothesized to be a pathological human afflicted with Laron Syndrome (LS), a type of primary growth hormone insensitivity (Hershkovitz et al.: Am J Phys Anthropol 134 [2007] 198–208). Comparing measurements, photographs and three‐dimensional, computed‐tomography reconstructions of LB1 with data and diagnoses from the literature on LS, we critically evaluate numerous skull and postcranial trai…

  • Continuities in stone flaking technology at Liang Bua, Flores, Indonesia

    Open Access•M W Moore, T Sutikna et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 97•References: 39

  • Homo floresiensis: A Cladistic Analysis

    Open Access•Deborah Argue, M J Morwood et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 59•References: 59

Next
  • Continuities in stone flaking technology at Liang Bua, Flores, Indonesia

    Open Access•M W Moore, T Sutikna et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 97•References: 39

  • Age and biostratigraphic significance of the Punung Rainforest Fauna, East Java, Indonesia, and implications for Pongo and Homo

    Open Access•Kira Westaway, K E Westaway et al.•ARTICLE•Journal of Human Evolution•2007•Cited by: 72•References: 30

  • Homo floresiensis and the evolution of the hominin shoulder

    Open Access•G Larson, Susan G Larson et al.•ARTICLE•Journal of Human Evolution•2007•Cited by: 66•References: 63

  • Homo floresiensis: A Cladistic Analysis

    Open Access•Deborah Argue, M J Morwood et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 59•References: 59

  • LB1's virtual endocast, microcephaly, and hominin brain evolution

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 49•References: 70

  • Craniofacial morphology of Homo floresiensis: Description, taxonomic affinities, and evolutionary implication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 39•References: 102

  • Initial micromorphological results from Liang Bua, Flores (Indonesia): Site formation processes and hominin activities at the type locality of Homo floresiensis

    Open Access•Mike W Morley, Paul Goldberg et al.•ARTICLE•Journal of Archaeological Science•2016•Cited by: 38•References: 35

  • The spatio-temporal distribution of archaeological and faunal finds at Liang Bua (Flores, Indonesia) in light of the revised chronology for Homo floresiensis

    Open Access•T Sutikna, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2018•Cited by: 37•References: 66

    Liang Bua, the type site of Homo floresiensis, is a limestone cave on the Indonesian island of Flores with sedimentary deposits currently known to range in age from about 190 thousand years (ka) ago to the present. Recent revision of the stratigraphy and chronology of this depositional sequence suggests that skeletal remains of H. floresiensis are between ∼100 and 60 ka old, while cultural evidence of this taxon occurs until ∼50 ka ago. Here we e…

  • Climate, people and faunal succession on Java, Indonesia: Evidence from Song Gupuh

    Open Access•M J Morwood, T Sutikna et al.•ARTICLE•Journal of Archaeological Science•2008•Cited by: 28•References: 9

  • New wrist bones of Homo floresiensis from Liang Bua (Flores, Indonesia)

    Open Access•C M Orr, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2013•Cited by: 25•References: 89

  • Descriptions of the dental remains of Homo floresiensis

    Open Access•Yousuke Kaifu, Reiko T Kono et al.•ARTICLE•Anthropological Science•2015•Cited by: 17•References: 56

    Dental remains of Homo floresiensis excavated during 2002–2004 at Liang Bua, Flores, Indonesia, consist of one partial maxillary dentition, two nearly complete mandibular dentitions, and four isolated teeth. We present here morphological descriptions of all these specimens and report aspects of their dentition, occlusion, and oral health condition. This dental assemblage represents probably five but possibly four or six individuals. These differe…

  • Reconstructing the geomorphic history of Liang Bua, Flores, Indonesia: A Stratigraphic Interpretation of the Occupational Environment

    Open Access•Kira Westaway, K E Westaway et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 14•References: 15

  • Brief communication: “Pathological” deformation in the skull of LB1, the type specimen of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 10•References: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • Use-polished stone flakes from Liang Bua, Indonesia: Implications for plant processing and fibrecraft in the Late Pleistocene

    Open Access•Elspeth Hayes, Richard Fullagar et al.•ARTICLE•Journal of Archaeological Science…•2021•Cited by: 9•References: 19

    Edge-glossed flakes, usually recognised as stone tools with macroscopically visible polish from use, have been documented in parts of Southeast Asia from contexts spanning the past 12,000 years and possibly more than 30,000 years. It has been proposed that the edges of these flakes were polished by cutting, splitting or otherwise processing siliceous and fibrous plants for matting, basketry and bindings, and possibly by the reaping of cereals suc…

  • Temporal shifts in the distribution of murine rodent body size classes at Liang Bua (Flores, Indonesia) reveal new insights into the paleoecology of Homo floresiensis and associated fauna

    Open Access•Elizabeth G Veatch, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 9•References: 55

    Liang Bua, the type locality of Homo floresiensis, is a limestone cave located in the western part of the Indonesian island of Flores. The relatively continuous stratigraphic sequence of the site spans the past ∼190 kyr and contains ∼275,000 taxonomically identifiable vertebrate skeletal elements, ∼80% of which belong to murine rodent taxa (i.e., rats). Six described genera are present at Liang Bua (Papagomys, Spelaeomys, Hooijeromys, Komodomys, …

  • The type specimen (LB1) of Homo floresiensis did not have Laron Syndrome

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 8•References: 55

    The type specimen (LB1) of Homo floresiensis has been hypothesized to be a pathological human afflicted with Laron Syndrome (LS), a type of primary growth hormone insensitivity (Hershkovitz et al.: Am J Phys Anthropol 134 [2007] 198–208). Comparing measurements, photographs and three‐dimensional, computed‐tomography reconstructions of LB1 with data and diagnoses from the literature on LS, we critically evaluate numerous skull and postcranial trai…

  • A new method for quantifying flake scar organisation on cores using orientation statistics

    Open Access•C Lin, C Clarkson et al.•ARTICLE•Journal of Archaeological Science•2024•Cited by: 5•References: 60

    In stone artefact studies, researchers often rely on qualitative classifications to describe flake scar arrangements on cores. While this approach provides a broad overview of core reduction patterns, its application can be ambiguous due to the three-dimensional complexities of core geometry and the subjective nature of qualitative classifications, making it challenging to objectively compare flake scar patterning across different analytical sett…

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1: A reply to Eckhardt and Henneberg

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Cited by: 5•References: 7

  • A Reply to Trueman’s “A new cladistic analysis of Homo floresiensis.”

    Open Access•Debbie Argue, Mike Morwood et al.•ARTICLE•Journal of Human Evolution•2010•Cited by: 2•References: 3

  • Prey body size generates bias for human and avian agents: Cautions for interpreting small game assemblages

    Open Access•Elizabeth G Veatch, I Made Agus Julianto et al.•ARTICLE•Journal of Archaeological Science•2023•Cited by: 1•References: 72

  • Characterising the stone artefact raw materials at Liang Bua, Indonesia

    Open Access•C Lin, Lloyd T White et al.•ARTICLE•Journal of Paleolithic Archaeology•2022•Cited by: 1•References: 39

    At Liang Bua, the type site of Homo floresiensis on the Indonesian island of Flores, the stone artefact assemblages are dominated by two raw materials, qualitatively classified as chert and silicified tuff in previous studies. Field observations describe both stone types as locally abundant and of good flaking quality, but no systematic analysis has yet been carried out to characterise their nature. In this study, we conducted the first geologica…

  • Mitogenomics of macaques (Macaca) across Wallace's Line in the context of modern human dispersals

    Open Access•Ben J Evans, Marie-Theres Gansauge et al.•ARTICLE•Journal of Human Evolution•2020•Cited by: 1•References: 74

    Wallace's Line demarcates a biogeographical boundary between the Indomalaya and Australasian ecoregions. Most placental mammalian genera, for example, occur to the west of this line, whereas most marsupial genera occur to the east. However, macaque monkeys are unusual because they naturally occur on both western and eastern sides. To further explore this anomalous distribution, we analyzed 222 mitochondrial genomes from ∼20 macaque species, inclu…

  • Incorporating terpenes, monoterpenoids and alkanes into multiresidue organic biomarker analysis of archaeological stone artefacts from Liang Bua (Flores, Indonesia)

    Open Access•Susan Luong, M W Tocheri et al.•ARTICLE•Journal of Archaeological Science…•2018•Cited by: 1•References: 11

    A sensitive and selective gas chromatography-tandem mass spectrometry (GC–MS/MS) method for the detection and quantification of terpenes, monoterpenoids and alkanes was developed and validated, to complement an existing analytical workflow set up for organic biomarker analysis of stone artefacts. This method was applied to seven stone artefacts—six of which contained potential use-residues based on a previous study using non-volatile low molecula…

  • The Brain of LB1, Homo floresiensis

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•Science•2005

    The brain of Homo floresiensis was assessed by comparing a virtual endocast from the type specimen (LB1) with endocasts from great apes, Homo erectus, Homo sapiens , a human pygmy, a human microcephalic, specimen number Sts 5 ( Australopithecus africanus ), and specimen number WT 17000 ( Paranthropus aethiopicus ). Morphometric, allometric, and shape data indicate that LB1 is not a microcephalic or pygmy. LB1's brain/body size ratio scales like t…

  • The Primitive Wrist of Homo floresiensis and Its Implications for Hominin Evolution

    Open Access•M W Tocheri, C M Orr et al.•ARTICLE•Science•2007

    Whether the Late Pleistocene hominin fossils from Flores, Indonesia, represent a new species, Homo floresiensis, or pathological modern humans has been debated. Analysis of three wrist bones from the holotype specimen (LB1) shows that it retains wrist morphology that is primitive for the African ape-human clade. In contrast, Neandertals and modern humans share derived wrist morphology that forms during embryogenesis, which diminishes the probabil…

  • Homo floresiensis and the evolution of the hominin shoulder

    Open Access•G Larson, Susan G Larson et al.•ARTICLE•Journal of Human Evolution•2007•Cited by: 66•References: 63

  • Age and biostratigraphic significance of the Punung Rainforest Fauna, East Java, Indonesia, and implications for Pongo and Homo

    Open Access•Kira Westaway, K E Westaway et al.•ARTICLE•Journal of Human Evolution•2007•Cited by: 72•References: 30

  • Climate, people and faunal succession on Java, Indonesia: Evidence from Song Gupuh

    Open Access•M J Morwood, T Sutikna et al.•ARTICLE•Journal of Archaeological Science•2008•Cited by: 28•References: 9

  • Preface: Research at Liang Bua, Flores, Indonesia

    Open Access•M J Morwood, T Sutikna et al.•ARTICLE•Journal of Human Evolution•2009

  • Brief communication: “Pathological” deformation in the skull of LB1, the type specimen of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 10•References: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • The type specimen (LB1) of Homo floresiensis did not have Laron Syndrome

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•American Journal of Physical…•2009•Cited by: 8•References: 55

    The type specimen (LB1) of Homo floresiensis has been hypothesized to be a pathological human afflicted with Laron Syndrome (LS), a type of primary growth hormone insensitivity (Hershkovitz et al.: Am J Phys Anthropol 134 [2007] 198–208). Comparing measurements, photographs and three‐dimensional, computed‐tomography reconstructions of LB1 with data and diagnoses from the literature on LS, we critically evaluate numerous skull and postcranial trai…

  • Continuities in stone flaking technology at Liang Bua, Flores, Indonesia

    Open Access•M W Moore, T Sutikna et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 97•References: 39

  • Homo floresiensis: A Cladistic Analysis

    Open Access•Deborah Argue, M J Morwood et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 59•References: 59

  • Reconstructing the geomorphic history of Liang Bua, Flores, Indonesia: A Stratigraphic Interpretation of the Occupational Environment

    Open Access•Kira Westaway, K E Westaway et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 14•References: 15

  • LB1's virtual endocast, microcephaly, and hominin brain evolution

    Open Access•D Falk, Charles Hildebolt et al.•ARTICLE•Journal of Human Evolution•2009•Cited by: 49•References: 70

  • A Reply to Trueman’s “A new cladistic analysis of Homo floresiensis.”

    Open Access•Debbie Argue, Mike Morwood et al.•ARTICLE•Journal of Human Evolution•2010•Cited by: 2•References: 3

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1: A reply to Eckhardt and Henneberg

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Cited by: 5•References: 7

  • Craniofacial morphology of Homo floresiensis: Description, taxonomic affinities, and evolutionary implication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 39•References: 102

  • New wrist bones of Homo floresiensis from Liang Bua (Flores, Indonesia)

    Open Access•C M Orr, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2013•Cited by: 25•References: 89

  • Descriptions of the dental remains of Homo floresiensis

    Open Access•Yousuke Kaifu, Reiko T Kono et al.•ARTICLE•Anthropological Science•2015•Cited by: 17•References: 56

    Dental remains of Homo floresiensis excavated during 2002–2004 at Liang Bua, Flores, Indonesia, consist of one partial maxillary dentition, two nearly complete mandibular dentitions, and four isolated teeth. We present here morphological descriptions of all these specimens and report aspects of their dentition, occlusion, and oral health condition. This dental assemblage represents probably five but possibly four or six individuals. These differe…

  • Revised stratigraphy and chronology for Homo floresiensis at Liang Bua in Indonesia

    Open Access•T Sutikna, M W Tocheri et al.•ARTICLE•Nature•2016

  • Initial micromorphological results from Liang Bua, Flores (Indonesia): Site formation processes and hominin activities at the type locality of Homo floresiensis

    Open Access•Mike W Morley, Paul Goldberg et al.•ARTICLE•Journal of Archaeological Science•2016•Cited by: 38•References: 35

  • Incorporating terpenes, monoterpenoids and alkanes into multiresidue organic biomarker analysis of archaeological stone artefacts from Liang Bua (Flores, Indonesia)

    Open Access•Susan Luong, M W Tocheri et al.•ARTICLE•Journal of Archaeological Science…•2018•Cited by: 1•References: 11

    A sensitive and selective gas chromatography-tandem mass spectrometry (GC–MS/MS) method for the detection and quantification of terpenes, monoterpenoids and alkanes was developed and validated, to complement an existing analytical workflow set up for organic biomarker analysis of stone artefacts. This method was applied to seven stone artefacts—six of which contained potential use-residues based on a previous study using non-volatile low molecula…

  • The spatio-temporal distribution of archaeological and faunal finds at Liang Bua (Flores, Indonesia) in light of the revised chronology for Homo floresiensis

    Open Access•T Sutikna, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2018•Cited by: 37•References: 66

    Liang Bua, the type site of Homo floresiensis, is a limestone cave on the Indonesian island of Flores with sedimentary deposits currently known to range in age from about 190 thousand years (ka) ago to the present. Recent revision of the stratigraphy and chronology of this depositional sequence suggests that skeletal remains of H. floresiensis are between ∼100 and 60 ka old, while cultural evidence of this taxon occurs until ∼50 ka ago. Here we e…

  • Temporal shifts in the distribution of murine rodent body size classes at Liang Bua (Flores, Indonesia) reveal new insights into the paleoecology of Homo floresiensis and associated fauna

    Open Access•Elizabeth G Veatch, M W Tocheri et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 9•References: 55

    Liang Bua, the type locality of Homo floresiensis, is a limestone cave located in the western part of the Indonesian island of Flores. The relatively continuous stratigraphic sequence of the site spans the past ∼190 kyr and contains ∼275,000 taxonomically identifiable vertebrate skeletal elements, ∼80% of which belong to murine rodent taxa (i.e., rats). Six described genera are present at Liang Bua (Papagomys, Spelaeomys, Hooijeromys, Komodomys, …

  • Mitogenomics of macaques (Macaca) across Wallace's Line in the context of modern human dispersals

    Open Access•Ben J Evans, Marie-Theres Gansauge et al.•ARTICLE•Journal of Human Evolution•2020•Cited by: 1•References: 74

    Wallace's Line demarcates a biogeographical boundary between the Indomalaya and Australasian ecoregions. Most placental mammalian genera, for example, occur to the west of this line, whereas most marsupial genera occur to the east. However, macaque monkeys are unusual because they naturally occur on both western and eastern sides. To further explore this anomalous distribution, we analyzed 222 mitochondrial genomes from ∼20 macaque species, inclu…

  • Song Gede: Situs Gua Hunian Sejak Masa Pleistosen Akhir di Pulau Nusa Penida, Bali

    Open Access•Ati Rati Hidayah, I Dewa Kompiang Gede et al.•ARTICLE•PURBAWIDYA Jurnal Penelitian dan…•2021

    Prehistoric archaeological research in Indonesia recently showed the existence of dwelling caves from the late Pleistocene, starting from Sumatra, Java, Sulawesi to East Nusa Tenggara. The Song Gede site is one of the dwelling caves from the late Pleistocene which was very interesting to be discused, especially when tracing the distribution of early modern humans in Southeast Asia. The location of the Song Gede site is considered to have a very s…

  • Using niche construction theory to generate testable foraging hypotheses at Liang Bua

    Open Access•Elizabeth G Veatch, Erik J Ringen et al.•ARTICLE•Evolutionary Anthropology Issues…•2021

    Niche construction theory (NCT) has emerged as a promising theoretical tool for interpreting zooarchaeological material. However, its juxtaposition against more established frameworks like optimal foraging theory (OFT) has raised important criticism around the testability of NCT for interpreting hominin foraging behavior. Here, we present an optimization foraging model with NCT features designed to consider the destructive realities of the archae…

Pleistocene-Era Hominins and Archaeology (24 works) · Geography (22 works) · Biology (19 works) · Archaeology (18 works) · Paleontology (14 works) · Paleontology (14 works) · Forensic Anthropology and Bioarchaeology Studies (13 works) · Geology (11 works) · Pacific and Southeast Asian Studies (11 works) · Primate Behavior and Ecology (10 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae