Fachroel Aziz
Dados Biográficos
| ID | 90654 |
|---|---|
| NOME | Fachroel Aziz |
| PRENOMES | Fachroel |
| SOBRENOME | Aziz |
| ASSINATURA | AZIZ F |
| AFILIAÇÕES | Centre for Research and Development |
| VERIFICADO | Não |
| TOTAL DE OBRAS | 25 |
| TOTAL DE CITAÇÕES | 347 |
| TOTAL COMO AUTOR | 25 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 1989 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2022 |
| ÍNDICE H | 9 |
Modern human teeth unearthed from below the ∼128,000-year-old level at Punung, Java
Homo floresiensis-like fossils from the early Middle Pleistocene of Flores
Homo erectus calvaria from Ngawi (Java) and its evolutionary implications
Ngawi 1 is an undated but well-preserved Homo erectus calvaria from Java. Previous craniometric and morphological studies have shown its similarities to late Javanese H. erectus from Ngandong as well as Sambungmacan (Sm 1 [and Sm 3]). Some researchers emphasize their morphological homogeneity, and suggest that this 'Ngandong/Sambungmacan/Ngawi group' is morphologically distinct from H. erectus from the Early Pleistocene of Sangiran and Trinil, po…
Cranial Morphology and Variation of the Earliest Indonesian Hominids
New reconstruction and morphological description of a Homo erectus cranium
Hominins on Flores, Indonesia, by one million years ago
Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1
Stone technology at the Middle Pleistocene site of Mata Menge, Flores, Indonesia
Brief communication
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…
Early stone technology on Flores and its implications for Homo floresiensis
Taxonomic affinities and evolutionary history of the early Pleistocene hominids of Java
Temporal changes, within‐group variation, and phylogenetic positions of the Early Pleistocene Javanese hominids remain unclear. Recent debate focused on the age of the oldest Javanese hominids, but the argument so far includes little morphological basis for the fossils. To approach these questions, we analyzed a comprehensive dentognathic sample from Sangiran, which includes most of the existing hominid mandibles and teeth from the Early Pleistoc…
Hominid Mandibular Remains from Sangiran
Eight hominid mandibular and associated dental remains discovered between 1952–1986 from the Early Pleistocene deposits of Sangiran, Central Java, are described. Although the specimens are surface finds, their original stratigraphic positions can be reasonably inferred on the basis of coincidental sources of information. These specimens significantly increase the dento‐gnathic sample available for intensive morphological investigation of the earl…
The first hominid fossil recovered from West Java, Indonesia
Historical Evidence of the 1936 Mojokerto Skull Discovery, East Java
Late Pleistocene Homo sapiens in a tropical rainforest fauna in East Java
Homo erectus Calvarium from the Pleistocene of Java
A Homo erectus calvarium [Sambungmacan 4 (Sm 4)] was recovered from Pleistocene sediments at Sambungmacan in central Java. Micro–computed tomography analysis shows a modern human–like cranial base flexion associated with a low platycephalic vault, implying that the evolution of human cranial globularity was independent of cranial base flexion. The overall morphology of Sm 4 is intermediate between that of earlier and later Javanese Homo erectus ;…
Early Pleistocene 40 Ar/ 39 Ar ages for Bapang Formation hominins, Central Jawa, Indonesia
The Sangiran dome is the primary stratigraphic window for the Plio-Pleistocene deposits of the Solo basin of Central Jawa. The dome has yielded nearly 80 Homo erectus fossils, around 50 of which have known findspots. With a hornblende 40 Ar/ 39 Ar plateau age of 1.66 ± 0.04 mega-annum (Ma) reportedly associated with two fossils [Swisher, C.C., III, Curtis, G. H., Jacob, T., Getty, A. G., Suprijo, A. & Widiasmoro (1994) Science 263, 1118–1121), th…
Lithostratigraphic Context for Kln-1993.05-SNJ, a Fossil Colobine Maxilla from Jokotingkir, Sangiran Dome
A new hominid incisor from Sangiran, Central Java
First Known Tibia of an Early Javanese Hominid
Dating of the hominid fossil tibia from Sambungmacan, Jawa
Did Homo erectus reach the island of Flores
Pleistocene zoogeographic evolution of Java (Indonesia) and glacio-eustatic sea level fluctuations
Early Dispersal of Man on Islands of the Indonesian Archipelago
Sea barriers are an effective means of limiting the dispersal of terrestrial vertebrates. Fossil evidence shows, however, that land mammals have colonized islands. The island faunas are impoverished, and from the faunal composition it can be learned that only large mammals with good swimming and/or floating capacities could settle on these islands. Such mammals include elephants, deer, and hippos. In some cases paleoecological conditions on islan…
The Excavations by Dubois (1891-1900), Selenka (1906-1908), and the Geological Survey by the Indonesian-Japanese Team (1976-1977) at Trinil (Java, Indonesia)
The excavations by DUBOIS (1891-1900) and SELENKA (1906-1908) are reconsidered and compared. Recent information of the geological survey of the Indonesian-Japanese team (1976-1977) at Trinil is added
Taxonomic affinities and evolutionary history of the early Pleistocene hominids of Java
Temporal changes, within‐group variation, and phylogenetic positions of the Early Pleistocene Javanese hominids remain unclear. Recent debate focused on the age of the oldest Javanese hominids, but the argument so far includes little morphological basis for the fossils. To approach these questions, we analyzed a comprehensive dentognathic sample from Sangiran, which includes most of the existing hominid mandibles and teeth from the Early Pleistoc…
Hominid Mandibular Remains from Sangiran
Eight hominid mandibular and associated dental remains discovered between 1952–1986 from the Early Pleistocene deposits of Sangiran, Central Java, are described. Although the specimens are surface finds, their original stratigraphic positions can be reasonably inferred on the basis of coincidental sources of information. These specimens significantly increase the dento‐gnathic sample available for intensive morphological investigation of the earl…
Late Pleistocene Homo sapiens in a tropical rainforest fauna in East Java
Stone technology at the Middle Pleistocene site of Mata Menge, Flores, Indonesia
New reconstruction and morphological description of a Homo erectus cranium
Homo erectus calvaria from Ngawi (Java) and its evolutionary implications
Ngawi 1 is an undated but well-preserved Homo erectus calvaria from Java. Previous craniometric and morphological studies have shown its similarities to late Javanese H. erectus from Ngandong as well as Sambungmacan (Sm 1 [and Sm 3]). Some researchers emphasize their morphological homogeneity, and suggest that this 'Ngandong/Sambungmacan/Ngawi group' is morphologically distinct from H. erectus from the Early Pleistocene of Sangiran and Trinil, po…
First Known Tibia of an Early Javanese Hominid
Brief communication
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…
Historical Evidence of the 1936 Mojokerto Skull Discovery, East Java
The first hominid fossil recovered from West Java, Indonesia
A new hominid incisor from Sangiran, Central Java
Modern human teeth unearthed from below the ∼128,000-year-old level at Punung, Java
Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1
Early Dispersal of Man on Islands of the Indonesian Archipelago
Sea barriers are an effective means of limiting the dispersal of terrestrial vertebrates. Fossil evidence shows, however, that land mammals have colonized islands. The island faunas are impoverished, and from the faunal composition it can be learned that only large mammals with good swimming and/or floating capacities could settle on these islands. Such mammals include elephants, deer, and hippos. In some cases paleoecological conditions on islan…
Lithostratigraphic Context for Kln-1993.05-SNJ, a Fossil Colobine Maxilla from Jokotingkir, Sangiran Dome
Pleistocene zoogeographic evolution of Java (Indonesia) and glacio-eustatic sea level fluctuations
Did Homo erectus reach the island of Flores
The Excavations by Dubois (1891-1900), Selenka (1906-1908), and the Geological Survey by the Indonesian-Japanese Team (1976-1977) at Trinil (Java, Indonesia)
The excavations by DUBOIS (1891-1900) and SELENKA (1906-1908) are reconsidered and compared. Recent information of the geological survey of the Indonesian-Japanese team (1976-1977) at Trinil is added
Early Dispersal of Man on Islands of the Indonesian Archipelago
Sea barriers are an effective means of limiting the dispersal of terrestrial vertebrates. Fossil evidence shows, however, that land mammals have colonized islands. The island faunas are impoverished, and from the faunal composition it can be learned that only large mammals with good swimming and/or floating capacities could settle on these islands. Such mammals include elephants, deer, and hippos. In some cases paleoecological conditions on islan…
Did Homo erectus reach the island of Flores
Pleistocene zoogeographic evolution of Java (Indonesia) and glacio-eustatic sea level fluctuations
Dating of the hominid fossil tibia from Sambungmacan, Jawa
Lithostratigraphic Context for Kln-1993.05-SNJ, a Fossil Colobine Maxilla from Jokotingkir, Sangiran Dome
A new hominid incisor from Sangiran, Central Java
First Known Tibia of an Early Javanese Hominid
Early Pleistocene 40 Ar/ 39 Ar ages for Bapang Formation hominins, Central Jawa, Indonesia
The Sangiran dome is the primary stratigraphic window for the Plio-Pleistocene deposits of the Solo basin of Central Jawa. The dome has yielded nearly 80 Homo erectus fossils, around 50 of which have known findspots. With a hornblende 40 Ar/ 39 Ar plateau age of 1.66 ± 0.04 mega-annum (Ma) reportedly associated with two fossils [Swisher, C.C., III, Curtis, G. H., Jacob, T., Getty, A. G., Suprijo, A. & Widiasmoro (1994) Science 263, 1118–1121), th…
Homo erectus Calvarium from the Pleistocene of Java
A Homo erectus calvarium [Sambungmacan 4 (Sm 4)] was recovered from Pleistocene sediments at Sambungmacan in central Java. Micro–computed tomography analysis shows a modern human–like cranial base flexion associated with a low platycephalic vault, implying that the evolution of human cranial globularity was independent of cranial base flexion. The overall morphology of Sm 4 is intermediate between that of earlier and later Javanese Homo erectus ;…
Taxonomic affinities and evolutionary history of the early Pleistocene hominids of Java
Temporal changes, within‐group variation, and phylogenetic positions of the Early Pleistocene Javanese hominids remain unclear. Recent debate focused on the age of the oldest Javanese hominids, but the argument so far includes little morphological basis for the fossils. To approach these questions, we analyzed a comprehensive dentognathic sample from Sangiran, which includes most of the existing hominid mandibles and teeth from the Early Pleistoc…
Hominid Mandibular Remains from Sangiran
Eight hominid mandibular and associated dental remains discovered between 1952–1986 from the Early Pleistocene deposits of Sangiran, Central Java, are described. Although the specimens are surface finds, their original stratigraphic positions can be reasonably inferred on the basis of coincidental sources of information. These specimens significantly increase the dento‐gnathic sample available for intensive morphological investigation of the earl…
The first hominid fossil recovered from West Java, Indonesia
Historical Evidence of the 1936 Mojokerto Skull Discovery, East Java
Late Pleistocene Homo sapiens in a tropical rainforest fauna in East Java
Early stone technology on Flores and its implications for Homo floresiensis
Stone technology at the Middle Pleistocene site of Mata Menge, Flores, Indonesia
Brief communication
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…
Hominins on Flores, Indonesia, by one million years ago
Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1
Cranial Morphology and Variation of the Earliest Indonesian Hominids
New reconstruction and morphological description of a Homo erectus cranium
Homo erectus calvaria from Ngawi (Java) and its evolutionary implications
Ngawi 1 is an undated but well-preserved Homo erectus calvaria from Java. Previous craniometric and morphological studies have shown its similarities to late Javanese H. erectus from Ngandong as well as Sambungmacan (Sm 1 [and Sm 3]). Some researchers emphasize their morphological homogeneity, and suggest that this 'Ngandong/Sambungmacan/Ngawi group' is morphologically distinct from H. erectus from the Early Pleistocene of Sangiran and Trinil, po…
Homo floresiensis-like fossils from the early Middle Pleistocene of Flores
Modern human teeth unearthed from below the ∼128,000-year-old level at Punung, Java
Pleistocene-Era Hominins and Archaeology (19 obras) · Geography (18 obras) · Pleistocene (17 obras) · Paleontology (16 obras) · Archaeology (15 obras) · Biology (15 obras) · Paleontology (13 obras) · Forensic Anthropology and Bioarchaeology Studies (12 obras) · Geology (12 obras) · Homo erectus (11 obras)