Skip to main content
Erschienen in: International Journal of Legal Medicine 1/2020

04.11.2019 | Original Article

Ballistic gelatine—what we see and what we get

verfasst von: Christian Walter Albert Schyma

Erschienen in: International Journal of Legal Medicine | Ausgabe 1/2020

Einloggen, um Zugang zu erhalten

Abstract

Since decades, 10% gelatine is used to visualize and estimate the energy transfer of projectiles. The study performed investigates the correlation of the temporary cavity (TC) recorded by high-speed video (HSV) and the cracks in gelatine slices. A total of 36 shots were performed from distance using form-stable bullets (FMJ), 12 using deforming bullets (HP) in the calibres .32 auto, .38 special and 9 mm Luger. The target models were prepared according to Fackler’s standard as 10% gelatine cubes with 12 cm edge length doped with a paint pad beneath the front cover (“reference cube”). Scaled images of the TC were recorded with 40.000 fps. The cubes were cut into 1-cm-thick gelatine cross sections, which were scanned. The evaluation of the destruction (cracks) was performed by the mean of image analysis measuring the longest crack, the wound profile according to Fackler and applying the polygon method. The height of the TC was measured each cm along the bullet path. The energy deposited ranged between 54 and 269 J. FMJ caused tubular, HP provoked pear-like TC. The tubular aspect was consistent with the quasi-constant deceleration of FMJ; however, the pear-like TC did not metrically represent the deceleration of HP. The profiles of destruction parameters were convex for both projectile types and did not match the profile of bullet deceleration. The maximum of TC stretching observed in HSV did not coincide with maximum gelatine destruction (crack lengths). The total energy transfer correlated with all considered destruction parameters in their sum; however, the cross-sectional parameters did not reflect the energy transfer per centimetre bullet path. The sum of the TC’s heights correlated with the energy deposited, but differently for FMJ and HP. Obviously, the 12-cm reference cube reflects the energy transfer by a bullet as a whole.
Literatur
1.
Zurück zum Zitat Kneubuehl BP (2011) Simulants. In: Kneubuehl B (ed) Wound ballistics: basics and applications. Springer, Berlin Heidelberg, pp 136–143 Kneubuehl BP (2011) Simulants. In: Kneubuehl B (ed) Wound ballistics: basics and applications. Springer, Berlin Heidelberg, pp 136–143
2.
Zurück zum Zitat Fackler ML, Surinchak JS, Malinowski JA, Bowen RE (1984) Bullet fragmentation: a major cause of tissue disruption. J Trauma 24(1):35–39CrossRef Fackler ML, Surinchak JS, Malinowski JA, Bowen RE (1984) Bullet fragmentation: a major cause of tissue disruption. J Trauma 24(1):35–39CrossRef
3.
Zurück zum Zitat Fackler ML, Surinchak JS, Malinowski JA, Bowen RE (1984) Wounding potential of the Russian AK-74 assault rifle. J Trauma 24(3):263–266CrossRef Fackler ML, Surinchak JS, Malinowski JA, Bowen RE (1984) Wounding potential of the Russian AK-74 assault rifle. J Trauma 24(3):263–266CrossRef
4.
Zurück zum Zitat Fackler ML, Malinowski JA (1988) Ordnance gelatin for ballistic studies. Detrimental effect of excess heat used in gelatin preparation. Am J Forensic Med Pathol 9(3):218–219CrossRef Fackler ML, Malinowski JA (1988) Ordnance gelatin for ballistic studies. Detrimental effect of excess heat used in gelatin preparation. Am J Forensic Med Pathol 9(3):218–219CrossRef
5.
Zurück zum Zitat Jussila J (2004) Preparing ballistic gelatine—review and proposal for a standard method. Forensic Sci Int 141(2–3):91–98CrossRef Jussila J (2004) Preparing ballistic gelatine—review and proposal for a standard method. Forensic Sci Int 141(2–3):91–98CrossRef
6.
Zurück zum Zitat Jussila J (2005) Measurement of kinetic energy dissipation with gelatine fissure formation with special reference to gelatine validation. Forensic Sci Int 150(1):53–62CrossRef Jussila J (2005) Measurement of kinetic energy dissipation with gelatine fissure formation with special reference to gelatine validation. Forensic Sci Int 150(1):53–62CrossRef
7.
Zurück zum Zitat Gawlick H, Knappworst J (1975) Zielballistische Untersuchungsmethoden an Jagdbüchsengeschossen, Ballistisches Laboratorium für Munition der Dynamit. Nobel AG, Werk Stadeln Gawlick H, Knappworst J (1975) Zielballistische Untersuchungsmethoden an Jagdbüchsengeschossen, Ballistisches Laboratorium für Munition der Dynamit. Nobel AG, Werk Stadeln
8.
Zurück zum Zitat Ragsdale BD, Josselson A (1988) Predicting temporary cavity size from radial fissure measurements in ordnance gelatin. J Trauma 28(1 Suppl):S5–S9CrossRef Ragsdale BD, Josselson A (1988) Predicting temporary cavity size from radial fissure measurements in ordnance gelatin. J Trauma 28(1 Suppl):S5–S9CrossRef
9.
Zurück zum Zitat Fackler ML, Malinowski JA (1985) The wound profile: a visual method for quantifying gunshot wound components, J. Trauma 25(6):522–529CrossRef Fackler ML, Malinowski JA (1985) The wound profile: a visual method for quantifying gunshot wound components, J. Trauma 25(6):522–529CrossRef
10.
Zurück zum Zitat Schyma CW (2010) Colour contrast in ballistic gelatine. Forensic Sci Int 197(1-3):114–118CrossRef Schyma CW (2010) Colour contrast in ballistic gelatine. Forensic Sci Int 197(1-3):114–118CrossRef
11.
Zurück zum Zitat Schyma C, Madea B (2012) Evaluation of the temporary cavity in ordnance gelatine. Forensic Sci Int 214(1–3):82–87CrossRef Schyma C, Madea B (2012) Evaluation of the temporary cavity in ordnance gelatine. Forensic Sci Int 214(1–3):82–87CrossRef
17.
Zurück zum Zitat Zhang J, Yoganandan N, Pintar FA, Guan Y, Gennarelli TA (2007) Experimental model for civilian ballistic brain injury biomechanics quantification. J Biomech 40(10):2341–2346CrossRef Zhang J, Yoganandan N, Pintar FA, Guan Y, Gennarelli TA (2007) Experimental model for civilian ballistic brain injury biomechanics quantification. J Biomech 40(10):2341–2346CrossRef
18.
Zurück zum Zitat Schyma C (2012) Wounding capacity of muzzle-gas pressure. Int J Legal Med 126(3):371–376CrossRef Schyma C (2012) Wounding capacity of muzzle-gas pressure. Int J Legal Med 126(3):371–376CrossRef
19.
Zurück zum Zitat Schyma C, Greschus S, Urbach H, Madea B (2012) Combined radio-colour contrast in the examination of ballistic head models. Int J Legal Med 126(4):607–613CrossRef Schyma C, Greschus S, Urbach H, Madea B (2012) Combined radio-colour contrast in the examination of ballistic head models. Int J Legal Med 126(4):607–613CrossRef
21.
Zurück zum Zitat Ragsdale BD, Josselson AR (1986) Winchester Silvertip® ammunition – a study in ordnance gelatin. J Forensic Sci 31(3):855–868CrossRef Ragsdale BD, Josselson AR (1986) Winchester Silvertip® ammunition – a study in ordnance gelatin. J Forensic Sci 31(3):855–868CrossRef
22.
Zurück zum Zitat Lazarjan MS, Geoghegan PH, Jermy MC, Taylor M (2014) Experimental investigation of the mechanical properties of brain simulants used for cranial gunshot simulation. Forensic Sci Int 239:73–78CrossRef Lazarjan MS, Geoghegan PH, Jermy MC, Taylor M (2014) Experimental investigation of the mechanical properties of brain simulants used for cranial gunshot simulation. Forensic Sci Int 239:73–78CrossRef
Metadaten
Titel
Ballistic gelatine—what we see and what we get
verfasst von
Christian Walter Albert Schyma
Publikationsdatum
04.11.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
International Journal of Legal Medicine / Ausgabe 1/2020
Print ISSN: 0937-9827
Elektronische ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-019-02177-z

Weitere Artikel der Ausgabe 1/2020

International Journal of Legal Medicine 1/2020 Zur Ausgabe

Neu im Fachgebiet Rechtsmedizin

Molekularpathologische Untersuchungen im Wandel der Zeit

Open Access Biomarker Leitthema

Um auch an kleinen Gewebeproben zuverlässige und reproduzierbare Ergebnisse zu gewährleisten ist eine strenge Qualitätskontrolle in jedem Schritt des Arbeitsablaufs erforderlich. Eine nicht ordnungsgemäße Prüfung oder Behandlung des …

Vergleichende Pathologie in der onkologischen Forschung

Pathologie Leitthema

Die vergleichende experimentelle Pathologie („comparative experimental pathology“) ist ein Fachbereich an der Schnittstelle von Human- und Veterinärmedizin. Sie widmet sich der vergleichenden Erforschung von Gemeinsamkeiten und Unterschieden von …

Gastrointestinale Stromatumoren

Open Access GIST CME-Artikel

Gastrointestinale Stromatumoren (GIST) stellen seit über 20 Jahren ein Paradigma für die zielgerichtete Therapie mit Tyrosinkinaseinhibitoren dar. Eine elementare Voraussetzung für eine mögliche neoadjuvante oder adjuvante Behandlung bei …

Personalisierte Medizin in der Onkologie

Aufgrund des erheblichen technologischen Fortschritts in der molekularen und genetischen Diagnostik sowie zunehmender Erkenntnisse über die molekulare Pathogenese von Krankheiten hat in den letzten zwei Jahrzehnten ein grundlegender …