References
- B.R. Nelson, B. Satyanarayana, J.M.H. Zhong, F. Shaharom,
M. Sukumaran, A. Chatterji, Episodic human activities
and seasonal impacts on the Tachypleus gigas (Müller, 1785)
population at Tanjung Selangor in Peninsular Malaysia,
Estuarine Coastal Shelf Sci., 164 (2015) 313–323.
- B.R. Nelson, B. Satyanarayana, J.H.Z. Moh, M. Ikhwanuddin,
A. Chatterji, F. Shaharom, The final spawning ground of
Tachypleus gigas (Müller, 1785) on the East Peninsular Malaysia
is at risk: a call for action, PeerJ, 4 (2016) e2232.
- N. Fairuz-Fozi, B. Satyanarayana, N.A.M. Zauki,
A.M. Muslim, M.L. Husain, S. Ibrahim, B.R. Nelson,
Carcinoscorpius rotundicauda (Latreille, 1802) population status
and spawning behavior at Pendas coast, Peninsular Malaysia,
Global Ecol. Conserv., 15 (2018) e00422.
- B.A. John, B.R. Nelson, H.I. Sheikh, S.G. Cheung, Y. Wardiatno,
B.P. Dash, K. Tsuchiya, Y. Iwasaki, S. Pati, A review on fisheries
and conservation status of Asian horseshoe crabs, Biodivers.
Conserv., 27 (2018) 3573–3598.
- B.R. Nelson, J.M.H. Zhong, N.A.M. Zauki, B. Satyanarayana,
A.J.K. Chowdhury, Effects of shore sedimentation to Tachypleus
gigas (Müller, 1785) spawning activity from Malaysian waters,
J. Sustainable Sci. Manage., 14 (2019) 41–60.
- B.R. Nelson, B. Satyanarayana, J.H.Z. Moh, F. Shaharom, Does
human infringement at the spawning grounds challenge
horseshoe crab eggs and their embryogenesis, J. Sustainable Sci.
Manage., Special Issue, 1 (2016) 1–10.
- M.L. Botton, M. Hodge, T.I. Gonzalez, High tolerance to
tributyltin in embryos and larvae of the horseshoe crab, Limulus
polyphemus, Estuaries, 21 (1998) 340–346.
- T. Itow, R.E. Loveland, M.L. Botton, Developmental
abnormalities in horseshoe crab embryos caused by exposure to
heavy metals, Arch. Environ. Contam. Toxicol., 35 (1998) 33–40.
- T. Itow, T. Igarashi, R.E. Loveland, M.L. Botton, Heavy metals
inhibit limb regeneration in horseshoe crab larvae, Arch.
Environ. Contam. Toxicol., 35 (1998) 457–463.
- A. Paul, M.L. Khan, A.K. Das, Population structure and
regeneration status of rhododendrons in temperate mixed
broad-leaved forests of western Arunachal Pradesh, India,
Geol. Ecol. Landscapes, 3 (2019) 168–186.
- C.C. Okpoli, D.O. Iselowo, Hydrogeochemistry of Lekki,
Ajah and Ikorodu water resources, Southwestern Nigeria,
J. CleanWas, 3 (2019) 20–24.
- A. Rezaei, H. Hassani, S.B.F. Mousavi, N. Jabbari, Evaluation
of heavy metals concentration in Jajarm Bauxite deposit in
northeast of Iran using environmental pollution indices,
Malaysian J. Geosci., 3 (2019) 12–20.
- M.H. Mahtab, M. Ohara, M. Rasmy, The impact of rainfall
variations on flash flooding in Haor Areas in Bangladesh, Water
Conserv. Manage., 2 (2018) 6–10.
- M.Z. Suhaili, M.D.M. Samsudin, Utilization of wastewater for
corrosion prevention of carbon steel pipe using single chamber
microbial fuel cells, Environ. Ecosyst. Sci., 2 (2018) 47–52.
- Y. Coursey, N. Ahmad, B.M. McGee, N. Steimel,
M. Kimble, Amoebocyte production begins at stage 18 during
embryogenesis in Limulus polyphemus, the American horseshoe
crab, Biol. Bull., 204 (2003) 21–27.
- R.D. Farley, Book gill development in embryos and first and
second in stars of the horseshoe crab Limulus polyphemus L. (Chelicerata, Xiphosura), Arthropod Struct. Dev., 39 (2010)
369–381.
- G.A. Bannon, G.G. Brown, Vesicle involvement in the egg
cortical reaction of the horseshoe crab Limulus polyphemus L., Dev. Biol., 76 (1980) 418–427.
- T. Itow, K. Sekiguchi, Morphogenic movement and
experimentally induced decrease in number of embryonic
segments in the Japanese horseshoe crab, Tachypleus tridentatus,
Biol. Bull., 158 (1980) 324–338.
- G.G. Brown, S.R. Barnum, Postfertilization changes in the
horseshoe crab Limulus polyphemus L., Biol. Bull., 164 (1983)
163–175.
- J. Schaep, C. Vandecasteele, A.W. Mohammad, W.R. Bowen,
Analysis of the salt retention of nanofiltration membranes using
the Donnan-steric partitioning pore model., Sep. Sci. Technol.,
34 (1999) 3009–3030.
- J. Schaep, C. Vandecasteele, A.W. Mohammad, W.R. Bowen,
Modelling the retention of ionic components for different
nanofiltration membranes, Sep. Purif. Technol., 22–23 (2001)
169–179.
- X.L. Wang, T. Tsuru, S. Nakao, S. Kimura, Electrolyte transport
through nanofiltration membranes by the space-charge model
and the comparison with Teorell–Meyer–Sievers model,
J. Membr. Sci., 103 (1995) 117–133.
- P. Fievet, B. Aoubiza, A. Szymczyk, J. Pagetti, Membrane
potentials in charged porous membranes, J. Membr. Sci., 160
(1999) 267–275.
- Organisation for Economic Co-operation and Development
(OECD), Fish Embryo Toxicity (FET) Test, OECD Guidelines for
the Testing of Chemicals, Paris, 2006, pp. 1–11.
- University of Wisconsin-Madison (UW-M), Laboratory Safety
Guide Chapter 7: Chemical Disposal Procedures, Chemical,
and Radiation Protection Office, Safety Department, UW Press,
ISBN: 0-9670043-9-x, 2011, pp. 153–188.
- University of Wisconsin-Madison (UW-M). Laboratory Safety
Guide Chapter 8: Laboratory Animals and Animal Tissue
Disposal, Chemical and Radiation Protection Office, Safety
Department, UW Press, ISBN: 0-9670043-9-x, 2011, pp. 189–202.
- S. Ashoka, B.M. Peake, G. Bremner, K.J. Hageman, M.R. Reid,
Comparison of digestion methods for ICP-MS determination
of trace elements in fish tissue, Anal. Chim. Acta, 663 (2009)
191–199.
- D. Kanakaraju, F. Ibrahim, M.N. Berseli, Comparative study
of heavy metal concentrations in razor clam (Solen regularis) in
Moyan and Serpan, Sarawak, Global J. Environ. Res., 2 (2008)
87–91.
- L.C. Junqueira, J. Carneiro, Basic Histology Text and Atlas
International Edition, 11th ed., McGraw Hill, New York, 2005,
pp. 1–22.
- L. Luna, Manual of Histologic Staining Methods from the AFIP,
3rd ed., McGraw-Hill, New York, 1968, pp. 162–163.
- F. Carson, Histotecnolog: A Self-instructional Text, 1st ed., ASCP
Press, Chicago, 1968, pp. 162–163.
- T.J. Silva, C.E. Bracker, M.W. Orcutt, J.C. Forrest, M.D. Judge,
Preparation of muscle samples for comparative electron
microscopy, J. Animal Sci., 70 (1992) 2452–2461.
- J. Burger, Trace element levels in pine snake hatchlings: tissue
and temporal differences, Arch. Environ. Contam. Toxicol.,
22 (1992) 209–213.
- J. Burger, Heavy metals in avian eggshells: another excretion
method, J. Toxicol. Environ. Health, 41 (1994) 207–220.
- K. Sekiguchi, Biology of Horseshoe Crabs, Science House Co.
Ltd., Tokyo, Japan, 1988, pp. 1–68.
- H. Sugita, Environmental Adaptations of Embryos,
K. Sekiguchi, ed., Biology of Horseshoe Crabs, Science House,
Tokyo, 1988, pp. 195–224.
- R. Eisler, Selenium Hazards to Fish, Wildlife, and Invertebrates:
a Synoptic Review, US Fish and Wildlife Service Biological
Report 85 (1.5), Washington, DC, 1985, pp. 4–41.