The Flickr Paleozoic Image Generatr

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This page simply reformats the Flickr public Atom feed for purposes of finding inspiration through random exploration. These images are not being copied or stored in any way by this website, nor are any links to them or any metadata about them. All images are © their owners unless otherwise specified.

This site is a busybee project and is supported by the generosity of viewers like you.

Amiskwia by Halichoeres

© Halichoeres, all rights reserved.

Pambdelurion by Halichoeres

© Halichoeres, all rights reserved.

Hurdia by Halichoeres

© Halichoeres, all rights reserved.

Fossil Trilobite by Ron Wolf

© Ron Wolf, all rights reserved.

Fossil Trilobite

Fossil Trilobite (Flexicalymene ouzregui) of Ordovician age from the Ktaoua Formation. Erfoud, Errachidia Province, Morocco.

010 - Feb 6, 2025 - Recepticulites fossil in Tyndall Stone at Fasken Building in Toronto by deana110

© deana110, all rights reserved.

010 - Feb 6, 2025 - Recepticulites fossil in Tyndall Stone at Fasken Building in Toronto

011 - Feb 6, 2025 - Recepticulites fossil in Tyndall Stone at Fasken Building in Toronto by deana110

© deana110, all rights reserved.

011 - Feb 6, 2025 - Recepticulites fossil in Tyndall Stone at Fasken Building in Toronto

Back at church again! by Tim Kiser

© Tim Kiser, all rights reserved.

Back at church again!

Here we go again!

-----------------------

In downtown Battle Creek, Michigan, on March 31st, 2024, was a datestone at St. Thomas Episcopal Church (built 1876-1877; designed by Mortimer Smith; trimmed in Berea sandstone; a "contributing property" in the Van Buren Street Historic District, 96000367 on the National Register of Historic Places) at the intersection of Capital Avenue NE and West Van Buren Street.

Berea Sandstone, quarried in Ohio, was formed during the Famennian stage (~372.2 to ~358.9 million years ago) of the Devonian period of the Paleozoic era.

-----------------------

Getty Thesaurus of Geographic Names terms:
• Battle Creek (7013360)
• Calhoun (county) (1002222)

Art & Architecture Thesaurus terms:
• churches (buildings) (300007466)
• cornerstones (300002616)
• date stones (300374978)
• Devonian (300391468)
• engraving (action) (300053829)
• Episcopal Church (300153831)
• Gothic Revival (300021452)
• historic buildings (300008063)
• historic districts (300000737)
• Paleozoic (300391254)
• red brick (material) (300444202)
• sandstone (300011376)

Wikidata items:
• 14 June 1876 (Q69239959)
• 31 March 2024 (Q69307122)
• 1870s in architecture (Q74241498)
• 1876 in architecture (Q2744620)
• 1877 in architecture (Q2744630)
• Berea Sandstone (Q30632002)
• contributing property (Q76321820)
• Famennian (Q253839)
• June 14 (Q2612)
• June 1876 (Q15148768)
• Kalamazoo-Battle Creek-Portage, MI Combined Statistical Area (Q125502770)
• March 31 (Q2461)
• March 2024 (Q61312976)
• National Register of Historic Places (Q3719)
• Southern Michigan (Q7570136)
• Treaty of Chicago (1821) (Q928799)
• Van Buren Street Historic District (Q64584838)
• West Michigan (Q3358100)

Library of Congress Subject Headings:
• Anglican church buildings (sh85025866)

Union List of Artist Names IDs:
• Smith, Mortimer L. (American architect and painter, 1840-1896) (500000719)

Furcacauda by Halichoeres

© Halichoeres, all rights reserved.

Ctenaspis by Halichoeres

© Halichoeres, all rights reserved.

Rhinopteraspis by Halichoeres

© Halichoeres, all rights reserved.

Doryaspis by Halichoeres

© Halichoeres, all rights reserved.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite about 3cm in diameter. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite about 3cm in diameter. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite about 3cm in diameter. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.

Renaultia sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Renaultia sp.

Renaultia sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Renaultia sp.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite about 3cm in diameter. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.

Renaultia sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Renaultia sp.

Goniatites sp. by calum'sfossils

© calum'sfossils, all rights reserved.

Goniatites sp.

Age: 343-337Ma
Viséan
Middle Mississippian Epoch
Carboniferous Period - Giant arthropods and amphibians, early reptiles, most plants fern or lycophyte-like, known for tropical forests and seas
Paleozoic Era - pre-Dinosaurs

Location: England
Lancashire
Hurst Green (Stonyhurst)
Dinckley
Dinckley Hall
The brook east of Dinckley Bridge

Rock Type: Bowland Shale Formation mudstone.

Specimen:
A goniatite. Slight shell ridging can be seen. Very crushed and flattened in the shale.

Species:
Goniatites is a genus of extinct ammonoid cephalopods that lived from the Devonian to the Permian periods, roughly 390 to 250 million years ago. The genus belongs to the order Goniatitida, which is characterised by its intricately folded, or lobed, suture lines along the shells. These marine animals had coiled, chambered shells that served as buoyancy aids, allowing them to move vertically within the water column.

The name Goniatites is derived from the Greek word "gonia," meaning "angle," referring to the angular lobes in their suture patterns. This suture design differentiates them from later ammonoids like ceratites and ammonites, which have more complex sutures. As with all ammonoids, the animal resided in the outermost chamber of its shell, while the inner chambers were filled with gas or fluid to control buoyancy.

The shell of Goniatites was generally smooth or only slightly ribbed, and its size varied widely depending on the species, with some reaching several centimetres in diameter. Like other ammonoids, Goniatites is believed to have been an active predator, feeding on small marine organisms such as crustaceans and plankton.

Fossils of Goniatites are commonly found in marine sediments across the world, especially in areas that were once part of shallow seas. Their wide geographic distribution and distinctive suture patterns make them valuable index fossils for dating Palaeozoic rocks. The extinction of Goniatites occurred during the Permian mass extinction, marking the end of this genus.

Ammonoids are an extinct group of spiral-shelled cephalopods belonging to the subclass Ammonoidea, more closely related to modern coleoids (octopuses, squids, and cuttlefish) than to shelled nautiloids like Nautilus. They first appeared during the Devonian period (around 409 million years ago) and went extinct shortly after the Cretaceous-Paleogene extinction event (66 million years ago). Originating from bactritoid nautiloids, ammonoids are commonly referred to as "ammonites," although this term technically applies to the order Ammonitida, the last surviving group of ammonoids from the Jurassic until their extinction.
Ammonites are prized as index fossils, as their presence helps geologists link rock layers to specific time periods. Their fossilized shells typically appear as tightly coiled planispirals, but some variations, such as helically coiled or non-spiraled forms (heteromorphs), have been discovered.
The name "ammonite" derives from the spiral shape of their fossilized shells, which resemble coiled ram's horns. The term comes from Pliny the Elder, who called them "ammonis cornua" ("horns of Ammon") after the Egyptian god Ammon, often depicted with ram’s horns. Many ammonite genera have names ending in -ceras, from the Greek word "kéras" meaning "horn."
Ammonoids are distinguished from nautiloids by the structure of their septa, the walls dividing the chambers of their shells (phragmocone). Their suture lines—the intersection of septa with the outer shell—are more complex, featuring lobes and saddles. Three main suture patterns define ammonoids: Goniatitic – Characterized by undivided lobes and saddles, typical of Paleozoic ammonoids. Ceratitic – Lobes with subdivided tips (saw-toothed) and rounded saddles, common in Triassic ammonoids. Ammonitic – Highly subdivided lobes and saddles, found in Jurassic and Cretaceous ammonoids.
The soft body of ammonoids occupied the largest chamber at the end of the shell coil, while earlier chambers, filled with gas, aided in buoyancy. A tube called the siphuncle connected these chambers, allowing the ammonoid to regulate buoyancy by emptying water from the chambers through osmotic processes. Their shells were generally planispiral, with varying degrees of overlap between the whorls. This degree of overlap is reflected in two main shell types: Involute shells (e.g., Anahoplites) have outer whorls that largely cover earlier whorls. Evolute shells (e.g., Dactylioceras) have minimal overlap, with a large umbilicus exposing earlier whorls.
Ammonoids exhibited various shell forms, each suggesting different lifestyles and levels of hydrodynamic efficiency. Some major forms include: Oxycone – Narrow, involute shells with sharp keels, adapted for rapid swimming. Serpenticone – Evolute, discoidal shells; flattened for efficient acceleration, likely planktonic or nektonic. Spherocone – Broad, globular shells, suited for vertical migration in the water column. Platycone and Discocone – Intermediate forms between oxycones, spherocones, and serpenticones.
These shapes likely influenced how ammonoids swam, with some species (such as Oxynoticeras) thought to have been efficient swimmers, while others were slower bottom-dwellers.
Ammonoids likely lived in the upper 250 meters of the water column and are often found in rocks deposited in open-water conditions. Fossil evidence suggests they may have fed on plankton, with some ammonites showing remains of small molluscs and isopod larvae in their buccal cavities. Like modern cephalopods, ammonoids may have defended themselves by ejecting ink, a feature occasionally preserved in fossil specimens.
The chambered structure of ammonite shells, known as the phragmocone, consisted of progressively larger chambers (camerae) divided by septa. The living animal occupied the last chamber, continuously adding new chambers as it grew. This chambered design helped maintain buoyancy and control movement within the water column. Ammonites with shells that diverged from the typical planispiral shape are known as heteromorphs, featuring more open or non-spiral coiling.
In medieval Europe, ammonite fossils were believed to be petrified snakes, known as "snakestones" or "serpentstones," often associated with legends of saints such as St. Hilda of Whitby and St. Patrick. Traders would sometimes carve or paint snake heads on the fossils to enhance their resemblance to snakes, selling them as objects of mythological or healing significance.