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Therapeutic Collection (page 2)

Experience the healing power of stone therapy, as smooth stones are placed on your body to promote relaxation and balance

Background imageTherapeutic Collection: View of a room of the Pellizzari Institute, in Florence, used for physioradiotherapeutic therapy

View of a room of the Pellizzari Institute, in Florence, used for physioradiotherapeutic therapy, 1905 (glass plate)
494196 View of a room of the Pellizzari Institute, in Florence, used for physioradiotherapeutic therapy, 1905 (glass plate) by Fratelli Alinari (fl.1854-1920); Alinari

Background imageTherapeutic Collection: The Theriac Seller (w / c on paper)

The Theriac Seller (w / c on paper)
CHT344092 The Theriac Seller (w/c on paper) by French School, (17th century); Bibliotheque Nationale, Paris, France; (add.info)

Background imageTherapeutic Collection: Physiotherapy: mechanotherapy apparatus invented by Swedish physician

Physiotherapy: mechanotherapy apparatus invented by Swedish physician and orthopedist Gustav Zander (engraving)
5216909 Physiotherapy: mechanotherapy apparatus invented by Swedish physician and orthopedist Gustav Zander (engraving) by German School

Background imageTherapeutic Collection: An Oiran Seated in a Parlor Applies the Fire Treatment to the Bared Back of Another Woman

An Oiran Seated in a Parlor Applies the Fire Treatment to the Bared Back of Another Woman

Background imageTherapeutic Collection: Hypnotism, ca. 1845. Creator: John Adams Whipple

Hypnotism, ca. 1845. Creator: John Adams Whipple
Hypnotism, ca. 1845

Background imageTherapeutic Collection: Mercurialis, (1530-1606), 1830. Creator: Unknown

Mercurialis, (1530-1606), 1830. Creator: Unknown
Mercurialis, (1530-1606), 1830. Girolamo Mercuriale (1530-1606) Italian philologist and physician, famous for his work De Arte Gymnastica one of the first explanations of physiotherapy

Background imageTherapeutic Collection: Convalescent Hospital - How soon shall I be able to fly again?, 1941. Artist: Cecil Beaton

Convalescent Hospital - How soon shall I be able to fly again?, 1941. Artist: Cecil Beaton
Convalescent Hospital - How soon shall I be able to fly again?, 1941. From Air of Glory, by Cecil Beaton. [His Majestys Stationery Office, London, 1941]

Background imageTherapeutic Collection: Convalescent Hospital - Pulling his weight, 1941. Artist: Cecil Beaton

Convalescent Hospital - Pulling his weight, 1941. Artist: Cecil Beaton
Convalescent Hospital - Pulling his weight, A serviceman using a weights machine to strengthen his muscles after being wounded. From Air of Glory, by Cecil Beaton

Background imageTherapeutic Collection: Trephination, 1593

Trephination, 1593. Using an elevator to remove a piece of bone from the skull. Trephination as a therapeutic or magico-religious procedure dates back to Neolithic times

Background imageTherapeutic Collection: The treatment of German wounded, 1915

The treatment of German wounded, 1915. Exercising the muscles of the arms by means of embroidery work. From The Manchester Guardian History of the War Vol. III - 1915

Background imageTherapeutic Collection: One of the Spacious Exercise Halls, c1898

One of the Spacious Exercise Halls, c1898. The Sandow Institute of Curative Physical Therapeutics, at 32A, St. Jamess Street, London. From The Connoisseur Volume XXV. [The Connoisseur Ltd

Background imageTherapeutic Collection: One of the Reception Rooms at the Sandow Institute, c1898

One of the Reception Rooms at the Sandow Institute, c1898. Eugen Sandow (1867-1925) was a German pioneering bodybuilder known as the father of modern bodybuilding

Background imageTherapeutic Collection: Engraving depicting a therapeutic electric head bath. Dated 20th century

Engraving depicting a therapeutic electric head bath. Dated 20th century

Background imageTherapeutic Collection: Teriflunomide multiple sclerosis drug F007 / 0193

Teriflunomide multiple sclerosis drug F007 / 0193
Teriflunomide multiple sclerosis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Waitress serving Blue Cocktails at the Blue Lagoon thermal spa

Waitress serving Blue Cocktails at the Blue Lagoon thermal spa. Iceland, Near Reykjavik, Waitress serving Blue Cocktails at the Blue Lagoon thermal spa

Background imageTherapeutic Collection: Andorra Andorra La Vella Hot Spring Complex Caldea lit up in the evening

Andorra Andorra La Vella Hot Spring Complex Caldea lit up in the evening

Background imageTherapeutic Collection: VILANOVA, Arnau de (1238-1311). Alchemist, astrologer

VILANOVA, Arnau de (1238-1311). Alchemist, astrologer and physician of Catalan origin who had a great reputation in the medieval world

Background imageTherapeutic Collection: Sprudelhof spa house, Bad Nauheim, Hesse, Germany, Europe

Sprudelhof spa house, Bad Nauheim, Hesse, Germany, Europe

Background imageTherapeutic Collection: NEW ZEALAND: SPA, c1903. Therapeutic water massage at the thermal springs of Rotorua

NEW ZEALAND: SPA, c1903. Therapeutic water massage at the thermal springs of Rotorua, New Zealand, c1903

Background imageTherapeutic Collection: Villa Tournesol, 1899. A revolving clinic designed to take full advantage of the heat

Villa Tournesol, 1899. A revolving clinic designed to take full advantage of the heat and light of the sun for therapeutic purposes. Supported on a metal platform mounted on bearings

Background imageTherapeutic Collection: Bleomycin drug molecule F005 / 6675

Bleomycin drug molecule F005 / 6675
Bleomycin, molecular model. Bleomycin is an antibiotic produced by the bacterium Streptomyces verticillus. It is used in the treatment of cancer and warts

Background imageTherapeutic Collection: Bleomycin drug molecule F005 / 6761

Bleomycin drug molecule F005 / 6761
Bleomycin, molecular model. Bleomycin is an antibiotic produced by the bacterium Streptomyces verticillus. It is used in the treatment of cancer and warts

Background imageTherapeutic Collection: Stem cell-derived retinal cells

Stem cell-derived retinal cells. Fluorescence light micrograph of retinal pigment epithelium (RPE) cells that have been derived from human embryonic stem cells (HESC)

Background imageTherapeutic Collection: Stem cell-derived neurons, micrograph

Stem cell-derived neurons, micrograph
Stem cell-derived neurons. Light micrograph of human nerve cells (neurons) that have been derived from induced pluripotent stem cells (IPS). Tuj1 proteins are cyan, and cell nuclei are red

Background imageTherapeutic Collection: Lomitapide hypercholesterolemia drug F007 / 0160

Lomitapide hypercholesterolemia drug F007 / 0160
Lomitapide hypercholesterolemia drug, molecular model. Lomitapide is used in the treatment of homozygous familial hypercholesterolemia

Background imageTherapeutic Collection: Vortioxetine antidepressant drug F007 / 0207

Vortioxetine antidepressant drug F007 / 0207
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Vortioxetine antidepressant drug F007 / 0206

Vortioxetine antidepressant drug F007 / 0206
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Vortioxetine antidepressant drug F007 / 0205

Vortioxetine antidepressant drug F007 / 0205
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Vemurafenib melanoma drug F007 / 0204

Vemurafenib melanoma drug F007 / 0204
Vemurafenib melanoma drug, molecular model. Vemurafenib is a B-Raf enzyme inhibitor used in the treatment of melanoma skin cancer

Background imageTherapeutic Collection: Vemurafenib melanoma drug F007 / 0203

Vemurafenib melanoma drug F007 / 0203
Vemurafenib melanoma drug, molecular model. Vemurafenib is a B-Raf enzyme inhibitor used in the treatment of melanoma skin cancer

Background imageTherapeutic Collection: Treprostinil drug, molecular model F007 / 0200

Treprostinil drug, molecular model F007 / 0200
Treprostinil drug, molecular model. Treprostinil is used in the treatment of pulmonary arterial hypertension. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey)

Background imageTherapeutic Collection: Treprostinil drug, molecular model F007 / 0199

Treprostinil drug, molecular model F007 / 0199
Treprostinil drug, molecular model. Treprostinil is used in the treatment of pulmonary arterial hypertension. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey)

Background imageTherapeutic Collection: Trametinib melanoma cancer drug F007 / 0198

Trametinib melanoma cancer drug F007 / 0198
Trametinib melanoma cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow)

Background imageTherapeutic Collection: Trametinib melanoma cancer drug F007 / 0197

Trametinib melanoma cancer drug F007 / 0197
Trametinib melanoma cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow)

Background imageTherapeutic Collection: Tofacitinib rheumatoid arthritis drug F007 / 0196

Tofacitinib rheumatoid arthritis drug F007 / 0196
Tofacitinib rheumatoid arthritis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imageTherapeutic Collection: Tofacitinib rheumatoid arthritis drug F007 / 0195

Tofacitinib rheumatoid arthritis drug F007 / 0195
Tofacitinib rheumatoid arthritis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imageTherapeutic Collection: Teriflunomide multiple sclerosis drug F007 / 0194

Teriflunomide multiple sclerosis drug F007 / 0194
Teriflunomide multiple sclerosis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Sumatriptan migraine headache drug F007 / 0192

Sumatriptan migraine headache drug F007 / 0192
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Sumatriptan migraine headache drug F007 / 0190

Sumatriptan migraine headache drug F007 / 0190
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Sumatriptan migraine headache drug F007 / 0191

Sumatriptan migraine headache drug F007 / 0191
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Riociguat pulmonary hypertension drug F007 / 0189

Riociguat pulmonary hypertension drug F007 / 0189
Riociguat pulmonary hypertension drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Riociguat pulmonary hypertension drug F007 / 0188

Riociguat pulmonary hypertension drug F007 / 0188
Riociguat pulmonary hypertension drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imageTherapeutic Collection: Regorafenib colorectal cancer drug F007 / 0187

Regorafenib colorectal cancer drug F007 / 0187
Regorafenib colorectal cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), chlorine (green)

Background imageTherapeutic Collection: Regorafenib colorectal cancer drug F007 / 0186

Regorafenib colorectal cancer drug F007 / 0186
Regorafenib colorectal cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), chlorine (green)

Background imageTherapeutic Collection: Prostaglandin I2 drug molecule F007 / 0185

Prostaglandin I2 drug molecule F007 / 0185
Prostaglandin I2 (PGI2, epoprostenol) pulmonary hypertension drug, molecular model. PGI2 is an eicosanoid drug that inhibits platelet activation and causes vasodilation

Background imageTherapeutic Collection: Prostaglandin I2 drug molecule F007 / 0184

Prostaglandin I2 drug molecule F007 / 0184
Prostaglandin I2 (PGI2, epoprostenol) pulmonary hypertension drug, molecular model. PGI2 is an eicosanoid drug that inhibits platelet activation and causes vasodilation

Background imageTherapeutic Collection: Prostaglandin E1 drug molecule F007 / 0179

Prostaglandin E1 drug molecule F007 / 0179
Prostaglandin E1 (alprostadil, PGE1) erectile dysfunction drug, molecular model. PGE1 is a prostaglandin used in the treatment of erectile dysfunction

Background imageTherapeutic Collection: Prostaglandin E1 drug molecule F007 / 0178

Prostaglandin E1 drug molecule F007 / 0178
Prostaglandin E1 (alprostadil, PGE1) erectile dysfunction drug, molecular model. PGE1 is a prostaglandin used in the treatment of erectile dysfunction



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Experience the healing power of stone therapy, as smooth stones are placed on your body to promote relaxation and balance. Embark on a journey of rejuvenation with embryonic stem cell therapy, where tiny needles deliver powerful regenerative properties to revitalize your body from within. Discover the ancient art of cupping, as suction cups create a therapeutic vacuum that helps release tension and improve blood flow. Immerse yourself in the healing waters of Bad Wildungen, Germany, known for their numerous health benefits. Let nature's gift restore your vitality and well-being. Step back in time with Mr. Sandow Attending To His Days Correspondence in 1898 - a glimpse into the early days of physical therapy when strength training was considered therapeutic. Explore the centuries-old practice of harvesting honey, known for its medicinal properties. Indulge in this natural remedy that has stood the test of time. Indulge your senses at Mentari Beach Resort and Spa in Ko Samui, Thailand with massage oils that transport you to a state of pure bliss. Surrender to ultimate relaxation amidst breathtaking surroundings. Get lost in a sea of vibrant summer flowers as their beauty uplifts your spirit and brings tranquility to your soul. Nature's colors have an undeniable therapeutic effect on our well-being. Witness the wonders of electrotherapy at Salpetriere - electric baths and localized electrification were used as innovative treatments back in 1887. Experience how science meets healing hands-on. Be amazed by Dr. Vigouroux's diagnostic skills through electrotherapy at Salpetriere in 1887 - an engraving capturing medical advancements that brought relief to countless patients. Incorporate these diverse therapeutic practices into your life and unlock new levels of wellness and serenity. Embrace holistic approaches rooted in history while embracing modern techniques for optimal health.